The document summarizes Omega elastomer couplings produced by Rexnord. The couplings use a split-in-half flex element design that allows for simplified assembly and disassembly. They can accommodate misalignment through a torsionally soft flex element. The couplings are suitable for both horizontal and vertical applications in industries like brewing.
Bearing Description about basic, types, failure causesPankaj
This document discusses different types of bearings. It begins by defining a bearing as a device that allows constrained relative motion between two parts, typically rotation or linear movement. It then classifies bearings based on the motions they allow and their principle of operation. The document goes on to describe various types of bearings in detail, including ball bearings, roller bearings, thrust bearings, tapered roller bearings, and cylindrical roller bearings. It provides information on the characteristics, advantages, applications, and physical features of each bearing type.
Este documento trata sobre cojinetes y rodamientos. Explica que los cojinetes son puntos de apoyo para sostener y guiar ejes y árboles, permitiendo su rotación. Se clasifican en de deslizamiento o de rodadura, y según la dirección de la carga en radiales, axiales o de contacto angular. Los rodamientos más comunes son de bolas y de rodillos cilíndricos, cónicos o de agujas. El documento también describe la designación y fallas típicas de los rodamientos.
Lecture 2 Introduction to bearing and its typeashish7185
1. Bearings are machine elements that support moving parts and allow relative motion while carrying loads.
2. Bearings are classified based on the direction of load (radial or thrust) and the nature of contact (sliding or rolling).
3. Common types of bearings include journal/sleeve bearings, slipper/guide bearings, hydrostatic bearings, and hydrodynamic bearings.
This document discusses rotating equipment alignment. It provides information on:
1. Types of couplings used in shaft alignment like rigid, flexible, gear, and torque converters.
2. The importance of proper shaft alignment to reduce vibration, heat, and maximize equipment life. Misalignment can cause early bearing failure.
3. Alignment procedures including preparation checks, use of dial indicators, and correction of parallel and angular misalignments.
4. Factors that affect alignment like thermal growth, soft foot, pipe strain, and runout must be considered.
This document provides an overview of machine alignment, including definitions of different types of misalignment, causes of misalignment, effects of misalignment, and methods for detecting and correcting misalignment. It discusses alignment techniques such as using straight edges, dial indicators, and lasers. Precise alignment requires preparing machines by checking for issues like soft foot, pipe strain, coupling gaps, and runout before implementing alignment methods.
This document discusses angular contact ball bearings, including their components, configurations, load capabilities, preload, clearance, lubrication, and applications. Some key points covered include:
- Angular contact ball bearings can be arranged singly, in tandem, back-to-back, or face-to-face configurations.
- The contact angle influences load capability. Variations in inner and outer ring contact angles affect life.
- Preload and clearance impact bearing life and load distribution. Proper preloading extends bearing life.
- Bearings are available with different cage types for various applications like fans, pumps, compressors.
- Induction heating helps press fitting. Lubrication methods include oil baths
Este documento presenta información sobre los diferentes tipos y diseños de rodamientos producidos por SKF, incluyendo rodamientos de bolas, rodillos cónicos y a rótula. Describe las características, aplicaciones y sufijos de cada tipo de rodamiento. SKF es la compañía líder mundial en rodamientos con presencia en más de 150 países.
La alineación es el proceso de alinear el eje de una máquina como un motor con el eje de otra máquina acoplada como una bomba para eliminar esfuerzos no deseados, lograr una mayor durabilidad y disponibilidad, y ahorrar costos. Existen varios métodos de alineación y tipos de acoples como acoples rígidos, acoples elásticos, embragues y cadenas que conectan máquinas. La falta de alineación puede causar sobrecalentamiento, vibraciones y desgaste prematuro.
Bearing Description about basic, types, failure causesPankaj
This document discusses different types of bearings. It begins by defining a bearing as a device that allows constrained relative motion between two parts, typically rotation or linear movement. It then classifies bearings based on the motions they allow and their principle of operation. The document goes on to describe various types of bearings in detail, including ball bearings, roller bearings, thrust bearings, tapered roller bearings, and cylindrical roller bearings. It provides information on the characteristics, advantages, applications, and physical features of each bearing type.
Este documento trata sobre cojinetes y rodamientos. Explica que los cojinetes son puntos de apoyo para sostener y guiar ejes y árboles, permitiendo su rotación. Se clasifican en de deslizamiento o de rodadura, y según la dirección de la carga en radiales, axiales o de contacto angular. Los rodamientos más comunes son de bolas y de rodillos cilíndricos, cónicos o de agujas. El documento también describe la designación y fallas típicas de los rodamientos.
Lecture 2 Introduction to bearing and its typeashish7185
1. Bearings are machine elements that support moving parts and allow relative motion while carrying loads.
2. Bearings are classified based on the direction of load (radial or thrust) and the nature of contact (sliding or rolling).
3. Common types of bearings include journal/sleeve bearings, slipper/guide bearings, hydrostatic bearings, and hydrodynamic bearings.
This document discusses rotating equipment alignment. It provides information on:
1. Types of couplings used in shaft alignment like rigid, flexible, gear, and torque converters.
2. The importance of proper shaft alignment to reduce vibration, heat, and maximize equipment life. Misalignment can cause early bearing failure.
3. Alignment procedures including preparation checks, use of dial indicators, and correction of parallel and angular misalignments.
4. Factors that affect alignment like thermal growth, soft foot, pipe strain, and runout must be considered.
This document provides an overview of machine alignment, including definitions of different types of misalignment, causes of misalignment, effects of misalignment, and methods for detecting and correcting misalignment. It discusses alignment techniques such as using straight edges, dial indicators, and lasers. Precise alignment requires preparing machines by checking for issues like soft foot, pipe strain, coupling gaps, and runout before implementing alignment methods.
This document discusses angular contact ball bearings, including their components, configurations, load capabilities, preload, clearance, lubrication, and applications. Some key points covered include:
- Angular contact ball bearings can be arranged singly, in tandem, back-to-back, or face-to-face configurations.
- The contact angle influences load capability. Variations in inner and outer ring contact angles affect life.
- Preload and clearance impact bearing life and load distribution. Proper preloading extends bearing life.
- Bearings are available with different cage types for various applications like fans, pumps, compressors.
- Induction heating helps press fitting. Lubrication methods include oil baths
Este documento presenta información sobre los diferentes tipos y diseños de rodamientos producidos por SKF, incluyendo rodamientos de bolas, rodillos cónicos y a rótula. Describe las características, aplicaciones y sufijos de cada tipo de rodamiento. SKF es la compañía líder mundial en rodamientos con presencia en más de 150 países.
La alineación es el proceso de alinear el eje de una máquina como un motor con el eje de otra máquina acoplada como una bomba para eliminar esfuerzos no deseados, lograr una mayor durabilidad y disponibilidad, y ahorrar costos. Existen varios métodos de alineación y tipos de acoples como acoples rígidos, acoples elásticos, embragues y cadenas que conectan máquinas. La falta de alineación puede causar sobrecalentamiento, vibraciones y desgaste prematuro.
This document discusses bearings and their functions. It describes how bearings support rotating shafts and reduce friction to allow for smooth rotation. There are two main types of bearings - plain/slider bearings which have a large contact area and high friction, and rolling/ball bearings which have less contact area and lower rolling friction. Ball and roller bearings are further described as having races, balls/rollers, and a cage that separates the balls to reduce friction. Common ball and roller bearing types and their applications are also outlined.
Transcat and Fluke Present: Precision Shaft Alignment Made EasyTranscat
The document discusses precision laser shaft alignment using the Fluke 830 Laser Alignment tool. It provides an overview of the benefits of precision alignment, describes laser alignment principles and the Fluke tool. The Fluke tool allows for quick, easy, and precise alignment in 3 steps: setup, measurement, and diagnosis/correction. It provides intuitive guidance and diagnostic information to correctly align shafts and maximize machine reliability and uptime.
Power Transmission Devices: Construction, working, comparison, applications and classification of: Belt Drive (Flat and V Belt), Chain Drive and Spur Gear Drive arranged with simple gear trains
This document provides information on shaft alignment, including definitions of key terms, types of couplings, alignment preparation procedures, how to perform an alignment, and potential consequences of misalignment. Shaft alignment is defined as positioning the rotational centers of two or more shafts to be co-linear under operating conditions. Proper alignment reduces vibration, bearing wear, and power consumption. The document outlines methods for measuring and correcting offset and angular misalignment.
Este documento proporciona instrucciones para la calibración de válvulas e inyector de un motor Caterpillar 3516B de 16 cilindros en V con 69.1 L de cilindrada. Describe la ubicación y configuración de las válvulas y cilindros, el procedimiento para quitar y colocar la tapa de válvulas, y los parámetros de ajuste para el mecanismo y juego de válvulas. También cubre la rotación del cigüeñal, sincronización del árbol de levas y procedim
Este documento describe los principales componentes y tipos de cojinetes. Los cojinetes constan de cuatro partes principales: aro externo, aro interno, elementos rodantes (bolas o rodillos) y separador. Se clasifican en cojinetes de fricción y de rodamiento. Entre los tipos de rodamientos más comunes se encuentran los cojinetes de bolas, de rodillos cilíndricos, de aguja y de rodillos cónicos. La vida útil de un cojinete depende de factores como la c
Este documento presenta una introducción al mundo de los rodamientos. Explica brevemente la historia de SKF y su fundador Sven Wingquist. Luego, cubre conceptos clave como nomenclaturas, propiedades, tipos de jaulas, sellos y rodamientos, incluidos rodamientos de bolas, de rodillos esféricos y cilíndricos. Finalmente, revisa temas como soportes, conicidad de agujeros, cargas, rotación, fijación axial y clasificación térmica de rodamientos.
Bearings are used to support rotating shafts and come in different types depending on whether they are designed to withstand axial thrusts, radial loads, or both. The main bearing types are ball bearings, which use spheres, and cylindrical roller bearings, which use cylinders, with each type having different capacities for loads and misalignment. Deep groove ball bearings can withstand both radial and axial loads, while angular contact ball bearings have increased axial load capacity and self-aligning ball bearings are very tolerant of misalignment.
This document discusses bearings, including their classification, types, materials, and load characteristics. It begins by defining bearings and their functions. It then covers classifications based on load direction and contact type. Various types of rolling contact bearings are described, including ball, roller, taper, and spherical bearings. Static and dynamic load capacities are discussed. Methods for calculating equivalent bearing loads and selecting bearings based on load and life are presented. The document provides a comprehensive overview of bearings and considerations for their selection and use.
This document discusses brakes and dynamometers. It begins by stating the purpose of brakes is to stop a vehicle in the shortest distance while maintaining control. It then describes the main types of brakes including drum, disc, internal expanding, hydraulic, vacuum, and air brakes. The document explains how hydraulic braking systems work using Pascal's law and the hydraulic advantage. It details the components and functions of master cylinders and wheel cylinders. Disc brake systems are also described along with their advantages over drum brakes. Several types of dynamometers are listed including absorption, transmission, driving, rope brake, Prony brake, hydraulic, and eddy current dynamometers. The document concludes with important questions about brakes and dynam
Definition, Use, Types of beariings, Types of Journal bearing, Materials for journal bearing, Failures of journal bearing, Design terms for journal bearing, Types of roller contact bearing, applications of roller contact bearing, Designation of roller contact bearing, Design terms for roller contact bearing, comparison between journal and roller bearings, characteristics of bearings, selection procedure of bearings
Bearings support rotating shafts and allow them to rotate with minimal friction. There are two main types: plain/slider bearings where the shaft slides against the bearing, and rolling element bearings like ball or roller bearings where balls or rollers allow the shaft and bearing to roll against each other with lower friction. Rolling element bearings have lower starting torque needs and friction compared to plain bearings. Journal, footstep, and thrust bearings are types of plain bearings that support axial or radial loads on vertical or horizontal shafts. Proper lubrication is important for all bearing types to reduce friction.
Basic Types Of Rolling Bearings
There are four basic types of rolling bearings: deep groove ball bearings, taper roller bearings, cylindrical roller bearings, and spherical roller bearings. Each type has a distinct design and is suited for different load characteristics. Deep groove ball bearings are the most common and can handle radial and axial loads. Taper roller bearings can handle both radial and axial loads. Cylindrical roller bearings are designed primarily for radial loads. Spherical roller bearings can handle misalignment and high speeds/loads. Rolling bearings are identified using designation systems which indicate type, dimensions, and other specifications.
A bearing is a device that supports load and reduces friction between moving parts. There are two main types: plain/slider bearings and rolling/anti-friction bearings. Rolling bearings use balls or rollers to create separation between surfaces and are more commonly used. Common bearing materials include metals, alloys, and some non-metals. Bearings must be properly selected, mounted, lubricated, and maintained to maximize their lifespan and prevent premature failure.
This document provides an overview of machinery alignment. It defines alignment as arranging the centerlines of rotating shafts in a straight line when machines are at operating temperature. Misalignment occurs when shaft centerlines do not match up and can be radial or angular. The document discusses types of misalignment, methods of alignment including straight edge, rim and face, and laser, symptoms of misalignment, tools used, and importance of precision alignment. It provides guidance on pre-alignment checks like foundation, piping, shims, and indicates alignment tolerances are required for proper machinery function.
This document provides an introduction to bearings and bearing design. It defines bearings and their purpose of supporting moving machine elements while allowing relative motion. Bearings are classified based on the direction of load and type of contact. Rolling contact bearings like ball and roller bearings are introduced, which have lower friction than sliding contact bearings. The document outlines the main parts of a ball bearing and provides steps for selecting an appropriate bearing for an application involving a 40mm shaft with 5000N of radial load and 3000N of thrust load operating at 400rpm. Through calculations, ball bearing SKF No. 6308 is determined to meet the load requirements.
Cursos desarrollados en desmontaje y montaje de rodamientos CAPACITAR PARA CRECER……
PORQUE A LA CIMA NO SE LLEGA SUPERANDO A LOS DEMAS…….
SINO SUPERANDOTE A VOS MISMO
20ME005_Allignment Testing on Drilling machine.pptxProfKaushalParikh
The document summarizes alignment testing procedures for a drilling machine. Ten key tests are described to check:
1) Flatness of the base and table clamping surfaces, ensuring errors do not exceed 0.1/1000mm.
2) Perpendicularity of the drill head guide to the base plate and table, with errors below 0.25/1000mm and 0.15/1000mm.
3) True running of the spindle taper using a test mandrel and dial indicator, with errors below 0.03/100mm or 0.04/300mm.
4) Parallelism and squareness of the spindle axis during vertical movement and table rotation, respectively, with errors below specified thresholds.
This document provides information about shaft mounted clutch couplings of type SO, including:
1) The SO series couplings are used to couple two in-line shafts, with the armature hub mounted to the load shaft and rotor assembly on the input shaft.
2) It lists specifications for torque, inertia, weight, electrical properties, and dimensions for various SO model couplings.
3) Installation and maintenance notes specify the customer shall maintain concentricity between shafts and an initial air gap setting.
Thomson Linear Super Metric Ball Bushing Bearings Electromate
The document describes new Super Metric Ball Bushing bearings and pillow blocks from Danaher Motion. The bearings offer low friction, self-alignment, high accelerations and speeds, integral wipers to keep out dirt, and adjustable open and closed configurations. The pillow blocks contain replaceable bearings, integral seals, and tapped or through-hole mounting for easy installation. They provide increased load capacity and travel life over single bearing versions.
This document discusses bearings and their functions. It describes how bearings support rotating shafts and reduce friction to allow for smooth rotation. There are two main types of bearings - plain/slider bearings which have a large contact area and high friction, and rolling/ball bearings which have less contact area and lower rolling friction. Ball and roller bearings are further described as having races, balls/rollers, and a cage that separates the balls to reduce friction. Common ball and roller bearing types and their applications are also outlined.
Transcat and Fluke Present: Precision Shaft Alignment Made EasyTranscat
The document discusses precision laser shaft alignment using the Fluke 830 Laser Alignment tool. It provides an overview of the benefits of precision alignment, describes laser alignment principles and the Fluke tool. The Fluke tool allows for quick, easy, and precise alignment in 3 steps: setup, measurement, and diagnosis/correction. It provides intuitive guidance and diagnostic information to correctly align shafts and maximize machine reliability and uptime.
Power Transmission Devices: Construction, working, comparison, applications and classification of: Belt Drive (Flat and V Belt), Chain Drive and Spur Gear Drive arranged with simple gear trains
This document provides information on shaft alignment, including definitions of key terms, types of couplings, alignment preparation procedures, how to perform an alignment, and potential consequences of misalignment. Shaft alignment is defined as positioning the rotational centers of two or more shafts to be co-linear under operating conditions. Proper alignment reduces vibration, bearing wear, and power consumption. The document outlines methods for measuring and correcting offset and angular misalignment.
Este documento proporciona instrucciones para la calibración de válvulas e inyector de un motor Caterpillar 3516B de 16 cilindros en V con 69.1 L de cilindrada. Describe la ubicación y configuración de las válvulas y cilindros, el procedimiento para quitar y colocar la tapa de válvulas, y los parámetros de ajuste para el mecanismo y juego de válvulas. También cubre la rotación del cigüeñal, sincronización del árbol de levas y procedim
Este documento describe los principales componentes y tipos de cojinetes. Los cojinetes constan de cuatro partes principales: aro externo, aro interno, elementos rodantes (bolas o rodillos) y separador. Se clasifican en cojinetes de fricción y de rodamiento. Entre los tipos de rodamientos más comunes se encuentran los cojinetes de bolas, de rodillos cilíndricos, de aguja y de rodillos cónicos. La vida útil de un cojinete depende de factores como la c
Este documento presenta una introducción al mundo de los rodamientos. Explica brevemente la historia de SKF y su fundador Sven Wingquist. Luego, cubre conceptos clave como nomenclaturas, propiedades, tipos de jaulas, sellos y rodamientos, incluidos rodamientos de bolas, de rodillos esféricos y cilíndricos. Finalmente, revisa temas como soportes, conicidad de agujeros, cargas, rotación, fijación axial y clasificación térmica de rodamientos.
Bearings are used to support rotating shafts and come in different types depending on whether they are designed to withstand axial thrusts, radial loads, or both. The main bearing types are ball bearings, which use spheres, and cylindrical roller bearings, which use cylinders, with each type having different capacities for loads and misalignment. Deep groove ball bearings can withstand both radial and axial loads, while angular contact ball bearings have increased axial load capacity and self-aligning ball bearings are very tolerant of misalignment.
This document discusses bearings, including their classification, types, materials, and load characteristics. It begins by defining bearings and their functions. It then covers classifications based on load direction and contact type. Various types of rolling contact bearings are described, including ball, roller, taper, and spherical bearings. Static and dynamic load capacities are discussed. Methods for calculating equivalent bearing loads and selecting bearings based on load and life are presented. The document provides a comprehensive overview of bearings and considerations for their selection and use.
This document discusses brakes and dynamometers. It begins by stating the purpose of brakes is to stop a vehicle in the shortest distance while maintaining control. It then describes the main types of brakes including drum, disc, internal expanding, hydraulic, vacuum, and air brakes. The document explains how hydraulic braking systems work using Pascal's law and the hydraulic advantage. It details the components and functions of master cylinders and wheel cylinders. Disc brake systems are also described along with their advantages over drum brakes. Several types of dynamometers are listed including absorption, transmission, driving, rope brake, Prony brake, hydraulic, and eddy current dynamometers. The document concludes with important questions about brakes and dynam
Definition, Use, Types of beariings, Types of Journal bearing, Materials for journal bearing, Failures of journal bearing, Design terms for journal bearing, Types of roller contact bearing, applications of roller contact bearing, Designation of roller contact bearing, Design terms for roller contact bearing, comparison between journal and roller bearings, characteristics of bearings, selection procedure of bearings
Bearings support rotating shafts and allow them to rotate with minimal friction. There are two main types: plain/slider bearings where the shaft slides against the bearing, and rolling element bearings like ball or roller bearings where balls or rollers allow the shaft and bearing to roll against each other with lower friction. Rolling element bearings have lower starting torque needs and friction compared to plain bearings. Journal, footstep, and thrust bearings are types of plain bearings that support axial or radial loads on vertical or horizontal shafts. Proper lubrication is important for all bearing types to reduce friction.
Basic Types Of Rolling Bearings
There are four basic types of rolling bearings: deep groove ball bearings, taper roller bearings, cylindrical roller bearings, and spherical roller bearings. Each type has a distinct design and is suited for different load characteristics. Deep groove ball bearings are the most common and can handle radial and axial loads. Taper roller bearings can handle both radial and axial loads. Cylindrical roller bearings are designed primarily for radial loads. Spherical roller bearings can handle misalignment and high speeds/loads. Rolling bearings are identified using designation systems which indicate type, dimensions, and other specifications.
A bearing is a device that supports load and reduces friction between moving parts. There are two main types: plain/slider bearings and rolling/anti-friction bearings. Rolling bearings use balls or rollers to create separation between surfaces and are more commonly used. Common bearing materials include metals, alloys, and some non-metals. Bearings must be properly selected, mounted, lubricated, and maintained to maximize their lifespan and prevent premature failure.
This document provides an overview of machinery alignment. It defines alignment as arranging the centerlines of rotating shafts in a straight line when machines are at operating temperature. Misalignment occurs when shaft centerlines do not match up and can be radial or angular. The document discusses types of misalignment, methods of alignment including straight edge, rim and face, and laser, symptoms of misalignment, tools used, and importance of precision alignment. It provides guidance on pre-alignment checks like foundation, piping, shims, and indicates alignment tolerances are required for proper machinery function.
This document provides an introduction to bearings and bearing design. It defines bearings and their purpose of supporting moving machine elements while allowing relative motion. Bearings are classified based on the direction of load and type of contact. Rolling contact bearings like ball and roller bearings are introduced, which have lower friction than sliding contact bearings. The document outlines the main parts of a ball bearing and provides steps for selecting an appropriate bearing for an application involving a 40mm shaft with 5000N of radial load and 3000N of thrust load operating at 400rpm. Through calculations, ball bearing SKF No. 6308 is determined to meet the load requirements.
Cursos desarrollados en desmontaje y montaje de rodamientos CAPACITAR PARA CRECER……
PORQUE A LA CIMA NO SE LLEGA SUPERANDO A LOS DEMAS…….
SINO SUPERANDOTE A VOS MISMO
20ME005_Allignment Testing on Drilling machine.pptxProfKaushalParikh
The document summarizes alignment testing procedures for a drilling machine. Ten key tests are described to check:
1) Flatness of the base and table clamping surfaces, ensuring errors do not exceed 0.1/1000mm.
2) Perpendicularity of the drill head guide to the base plate and table, with errors below 0.25/1000mm and 0.15/1000mm.
3) True running of the spindle taper using a test mandrel and dial indicator, with errors below 0.03/100mm or 0.04/300mm.
4) Parallelism and squareness of the spindle axis during vertical movement and table rotation, respectively, with errors below specified thresholds.
This document provides information about shaft mounted clutch couplings of type SO, including:
1) The SO series couplings are used to couple two in-line shafts, with the armature hub mounted to the load shaft and rotor assembly on the input shaft.
2) It lists specifications for torque, inertia, weight, electrical properties, and dimensions for various SO model couplings.
3) Installation and maintenance notes specify the customer shall maintain concentricity between shafts and an initial air gap setting.
Thomson Linear Super Metric Ball Bushing Bearings Electromate
The document describes new Super Metric Ball Bushing bearings and pillow blocks from Danaher Motion. The bearings offer low friction, self-alignment, high accelerations and speeds, integral wipers to keep out dirt, and adjustable open and closed configurations. The pillow blocks contain replaceable bearings, integral seals, and tapped or through-hole mounting for easy installation. They provide increased load capacity and travel life over single bearing versions.
Thomson super metric_ball_bushing_bearings_specsheetElectromate
The document describes new Super Metric Ball Bushing bearings and pillow blocks from Danaher Motion. The bearings offer low friction, self-alignment, high accelerations and speeds, integral wipers to keep out dirt, and adjustable open and closed configurations. The pillow blocks contain replaceable bearings, integral seals, and tapped or through-hole mounting for easy installation. They provide increased load capacity and travel life over single bearing versions.
The document provides specifications and information about the Zipp Torque Booster. The Torque Booster is a compact device that fits between an impact wrench or torque tool and socket to boost output torque by up to 50%. It has an interchangeable output drive that fits various socket sizes for cost savings. The Torque Booster comes in various input and output drive size options and is designed to increase productivity by making it easier to remove stubborn or rusted fasteners.
The patented ZIPP Torque Booster is designed to generate more output torque of any type of pulse or impact wrenches driven by AC/DC or pneumatic power.
This document provides information about harmonic drive gearing components and their specifications. It describes the basic components of the harmonic drive gear set, which includes the wave generator, flexspline, circular spline, and dynamic spline. It also provides typical installation diagrams and ordering information examples. Performance ratings including torque, speed, backlash, and efficiency characteristics are outlined for various gear set sizes.
Kioti daedong dk450 l tractor service repair manualfjsekdmmem
The document provides general information about tractors, including:
- Tightening torque specifications for standard bolts and nuts of different sizes
- Dimensions, specifications, and capacities for various tractor models
- Identification information for the engine and chassis numbers
- Cautions and safety information for repair, assembly/disassembly, electrical and hydraulic systems, and lubrication
- A regular check list for maintenance intervals
Kioti Daedong DK35 Tractor Service Repair Manualhjnnsemmm
This is the Highly Detailed factory service repair manual for theKIOTI DAEDONG DK35 TRACTOR , this Service Manual has detailed illustrations as well as step by step instructions,It is 100 percents complete and intact. they are specifically written for the do-it-yourself-er as well as the experienced mechanic.KIOTI DAEDONG DK35 TRACTOR Service Repair Workshop Manual provides step-by-step instructions based on the complete dis-assembly of the machine. It is this level of detail, along with hundreds of photos and illustrations, that guide the reader through each service and repair procedure. Complete download comes in pdf format which can work under all PC based windows operating system and Mac also, All pages are printable. Using this repair manual is an inexpensive way to keep your vehicle working properly.
Service Repair Manual Covers:
Chapter 1 general information
1. tractor view
2. tightening torque for standard bolts and nuts
3. specifications
4. identification
5. caution before repair
6. regular check
7. oil & water supply list
Chapter 2 engine system
1. general
2. structure and function
3. disassembling and servicing
Chapter 3 main body
1. exterior
2. clutch
3. transmission
4. rear axle
5. brake
6. front axle
7. steering system
8. hydraulic system
Chapter 4 electric system
1. electronic instrumentation
2. switches
3. lamps
4. fuse box and relay
5. motors
6. battery
7. wiring diagram
8. trouble shooting
File Format: PDF
Compatible: All Versions of Windows & Mac
Language: English
Requirements: Adobe PDF Reader
NO waiting, Buy from responsible seller and get INSTANT DOWNLOAD, Without wasting your hard-owned money on uncertainty or surprise! All pages are is great to haveKIOTI DAEDONG DK35 TRACTOR Service Repair Workshop Manual.
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Kioti Daedong DK35 Tractor Service Repair Manual.pdfkm7seyduh7dw
The document provides general information about a tractor, including:
- Tightening torque specifications for standard bolts and nuts of different sizes
- Engine specifications like model, power, displacement, cooling system etc.
- Overall dimensions, weights, and other specifications
- Identification information like engine and chassis numbers
- Cautions and guidelines for repair, assembly, lubrication and the electrical system
- A regular check list of maintenance items and intervals
- A list of recommended oils and fluids for the fuel, coolant, and engine
The document contains technical specifications, maintenance guidelines and other general reference information for the tractor.
Kioti Daedong DK450L Tractor Service Repair Manual.pdfkm7seyduh7dw
The document provides general information about a tractor, including:
- Tightening torque specifications for standard bolts and nuts of different sizes
- Identification information like the engine and chassis serial numbers
- Specifications for the engine, dimensions, hydraulic system, transmission and other components
- Cautions for repair, assembly/disassembly, electrical and hydraulic systems
- A regular check list for maintenance intervals
- A list of recommended oils and fluids for the fuel, coolant, engine and other systems
The summary covers the key topics and information provided in the document at a high level in 3 sentences, as requested.
Kioti Daedong DK40 Tractor Service Repair Manual.pdfkm7seyduh7dw
The document provides general information about a tractor, including:
- Tightening torque specifications for standard bolts and nuts of different sizes
- Identification information like the engine and chassis serial numbers
- Specifications for the engine, transmission, hydraulic system, dimensions, and other components
- Cautions for repair, assembly/disassembly, electrical and hydraulic systems, and lubrication
- A regular maintenance checklist with recommended service intervals
Kioti daedong dk35 tractor service repair manualfjskkmemem
The document provides general information about tractors, including:
- Tightening torque specifications for standard bolts and nuts of various sizes.
- Identification information like engine and chassis serial numbers.
- Specifications for engine, transmission, hydraulic system, dimensions, capacities, and tires.
- Cautions for repair, including using proper lubricants and protecting electrical components.
It also includes a regular maintenance checklist for items to inspect or replace at various hourly intervals.
Kioti daedong dk450 l tractor service repair manualhhjsekmdmm
The document provides general information about tractors, including:
- Tightening torque specifications for standard bolts and nuts of various sizes.
- Identification information like engine and chassis serial numbers.
- Specifications for engine, transmission, hydraulic system, dimensions, capacities, and tires.
- Cautions for repair, including using proper lubricants and protecting electrical components.
It also includes a regular maintenance checklist for items to inspect at various hourly intervals.
Kioti daedong dk35 tractor service repair manualfjkskekkemmmd
The document provides general information about tractors, including:
- Tightening torque specifications for standard bolts and nuts of different sizes
- Identification information like engine and chassis serial numbers
- Specifications for engine, transmission, hydraulic system, dimensions, and other components for different tractor models
- Maintenance instructions and a regular check list for items to inspect at various hourly intervals.
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2. 2
OEM Performance and Coverage
The unique split-in-half flex element and reversible hubs
significantly reduce total costs by reducing inventory and
assembly time.
Rexnord Omega couplings are non-lubricated, material-flexing
couplings utilizing a specially formulated polyurethane material
engineered for maximum durabilty, strength and fatigue
resistance.
The Rex Omega HSU coupling (green) is specifically designed
for hot and humid conditions.
Rexnord is the leading coupling provider in the industry with a
full-line of available solutions supported by trained customer
service and application engineering professionals focused only
on our coupling product line. For more information, contact
your local Rexnord account executive.
Omega® Elastomeric Couplings
Features and Benefits
• Split-in-half flex element
design for simplified
assembly and disassembly
• Interchangeable hubs allow
for reduced inventory
• High misalignment capacity
accommodates unavoidable
misalignment with low
reactionary forces
• Torsionally soft flex
element cushions shock
loads and vibration
extending equipment life
• Polyurethane flex element
does not require lubrication
• Polyurethane-to-metal
bond eliminates assembly
and slippage problems
associated with mechanically
clamped designs
• Our selection software
makes choosing the
right coupling a snap
• Rexnord field specialists are
locally based experts available
to support key end-users
• The Rexnord Omega
HSU coupling (green) is
specifically designed for hot
and humid environments.
In addition, the HSU material
performs well in caustic
and acidic environments.
Consult Rexnord engineering
for your application.
Rexnord Omega couplings operate in
either horizontal or vertical applications
without any additional components.
Ease of installation, ease of
maintenance, and visual inspection
make these couplings a must for
many applications such as this mash
cooker in a brewery.Never operate
coupling without an OSHA approved guard.
Polyurethane-to-Metal Bond
Torsionally Soft
Flex Element
Radial Bolting
Interchangeable Hubs
Split-in-Half Design
DESCRIPTION PAGE
Installation and Misalignment Ratings 3
Standard Close Coupled Design 4 – 5
Spacer Design 6 – 7
Spacing Options and Extended Spacer Design 8 – 9
Mill Motor Design 10
Special Designs 11
Selection 12–14
Bore Specifications and Finished Stock Bore Hubs 15
Ordering 16
Table Of Contents
3. 3
Installation
Tested Tough
Mount one hub to shaft, leave other
hub loose for adjustment of spacing.
Place half of the Rexnord® Omega®
element around hubs and secure with
self-locking capscrews. Omega
element will space the other hub.
Now secure the other hub.
Mount other half of the Omega
element. Tighten all capscrews to
recommended torques below and
you’re done! Refer to the installation
instruction for further details.
Rigorous testing demonstrates that
the Rexnord Omega coupling protects
connected equipment from the damaging
effects of misalignment, vibration and
gross overload. Where other coupling
designs might allow equipment
damage, the super flexible element of
Rexnord Omega couplings minimizes
the reactionary forces on equipment
bearings under severe misalignment
conditions and reduces the effects
of excessive shock overloads.
- Important-
Recommended Capscrew Tourque
For Proper Installation
Severe static testing (5 × rating)
shows element flexibility, rugged
design and positive adhesive
bond to the metal shoes.
Demonstrates coupling’s ability to
accept severe misalignment.
4°
3°
2°
1°
0°
1/32 1/16 3/32 1/8 3/16
Size 2-10
Size 20-50
Size 60-80
Size 100-140
OMEGA
HUB OMEGA
HUB
Parallel
Parallel
OMEGA
HUB
OMEGA
HUB
Angular
Angular
Omega® Coupling
Allowable Misalignment
Coupling
Size
Torque - Dry
In. Lbs. Ft. Lbs.
2
204 17
3
4
5
10
20
360 30
30
40
50
60
900 7570
80
100
3240 270
120
140 7080 590
Note:
Any combination of parallel and angular misalignment which falls under the triangle
will not cause a premature fatigue failure of the flexible element in normal use.
NOTE: Capscrews have self locking patches which
should not be reused more than twice. Capscrews can
be further used if a thread locking adhesive is applied.
Do NOT Lubricate Capscrew Threads
Important Note:
Coupling alignment is directly related to
smooth, efficient equipment operation. Care
should be taken for best possible alignment.
4. Note: Dimensions subject to change. Certified dimensions of ordered material furnished on request.4
With Straight Bore Hubs
(OUT) (OUT) (IN) (IN)
D
B B
F
(HUBS OUTBOARD)
A
C B B
F
(HUBS INBOARD)
C
Note: Hub/shoulder design
varies per coupling
size. Consult Rexnord
for specific size
assembly drawings.
Omega
Coupling
Size
Recom.
Max.
Bore
(In.)
Continuous
HP/100
RPM
Continuous
Torque
(In. Lbs.)
Max.
RPM
Dimensions In Inches
Weight
(Lb.)A B
C
D
F
(In.) (Out) (In.) (Out)
E2 1.13 0.30 190 7500 3.5 0.94 1.34 1.90 1.85 3.22 3.78 1.2
E3 1.38 0.58 365 7500 4.00 1.50 0.81 1.31 2.32 3.81 4.31 2.4
E4 1.63 0.88 550 7500 4.56 1.69 0.44 1.31 2.60 3.81 4.69 3.0
E5 1.88 1.48 925 7500 5.38 1.75 0.81 1.81 3.13 4.31 5.31 5.4
E10 2.13 2.30 1450 7500 6.38 1.88 0.56 1.81 3.65 4.31 5.56 8.2
E20 2.38 3.65 2300 6600 7.25 2.06 0.50 2.38 4.48 4.62 6.50 13.0
E30 2.88 5.79 3650 5800 8.25 2.31 0.56 2.44 5.42 5.19 7.06 21
E40 3.38 8.85 5500 5000 9.50 2.50 0.56 2.68 6.63 5.56 7.68 35
E50 3.63 12.14 7650 4200 11.00 2.75 0.63 3.38 8.13 6.13 8.88 54
E60 4 19.84 12,500 3800 12.50 3.25 0.69 3.44 8.75 7.19 9.94 72
E70 4.5 35.12 22,125 3600 14.00 3.62 0.75 3.75 9.25 8.00 11.00 86
E80 6 62.7 39,500 2000 16.00 4.87 0.75 5.00 11.25 10.50 14.75 170
E100 6.75 135 85,050 1900 21.00 5.50 1.75 3.75 14.13 12.75 14.75 244
E120 7.5 270 170,100 1800 25.00 6.00 2.25 4.88 17.63 14.24 16.88 425
E140 11 540 340,200 1500 30.00 7.00 3.00 5.00 20.88 17.00 19.00 746
• Split-In-Half Flex Element
Allows disassembly and replacement without
disturbing hubs or connected equipment.
• Reversible Hubs
Accommodates different shaft spacing
requirements, and allows compression bushings
to be installed from either side of the hub.
Straight Bore Hubs QD Hubs and Bushings TAPER-LOCK® Hubs and Bushings
See page 14 for larger bore capacities with shallow keyways
8. 8
Shaft Spacing Possibilities
(Using Straight Bore Hubs)
Figure A
Both hubs mounted outboard
Figure B
One hub mounted inboard
One hub mounted outboard
Figure C
Both hubs mounted inward
Figure D
Figure E Figure F
(OUT) (OUT) (OUT) (IN)
(IN) (IN)
Note: Optional capscrew hole mounting positions
allow easy on-site adjustment to meet
various shaft spacing requirements.
Note: Shaft engagement should be equal to or
greater than .8 times shaft diameter.
100% shaft engagement is suggested for
compression bushed hubs.
The Rexnord® Omega® spacer coupling design (pages 6-7) provides clear space between hubs. There are no interfering center
members or spools which allows shaft spacing as small as 1
/4”; however, for such small spacings, use of the standard Omega coupling
would be recommended. The maximum shaft spacing for each coupling is shown of pages 6-7. Any ANSI, ISO or DIN spacing between
1
/4 inch and the maximum listed can be achieved without any additional parts. Hubs can be placed on the shafts as shown below.
Use one half of the flex element to establish shaft spacing and appropriate mounting position. Optional hole mounting positions
and reversible hubs allow adjustments as needed. Select the combination which most closely matches the dimensions
desired between shafts (Figure D). Drawings with specific mounting positions/dimensions are available from Rexnord.
Hubs can be flush with the shaft end (not shown), extended beyond the end of the shaft (Figure E) or recessed
behind the shaft end provided there is sufficient keyway engagement (Figure F). Special sleeve extensions
(see page 9) are available for spacing requirements in excess of those listed on pages 6-7.
“Adjustability”
9. Note: Dimensions subject to change. Certified dimensions of ordered material furnished on request. 9
Rexnord® Omega® extended spacer couplings are designed to connect equipment with shaft spacing requirements
beyond the Omega spacer coupling capabilities. They are ideal for applications with wide non-standard shaft
gaps, and can be an economic alternative to floating shaft couplings (i.e. stock pump applications).
Sleeve extensions (“SE”) are furnished in steel. They mount to regular Omega spacer elements (standard
elements for sizes E100 & E120) and cast iron or steel hubs – straight bore or compression bushed design.
By adjusting the hub/shaft engagement (see figures E & F on page 8) and spacer element mounting position,
the Omega extended spacer coupling can be utilized for many shaft spacing requirements.
Extended Spacer Coupling
C
Single Extension
C
Double Extension
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R-3SE 0081 0063 00.5 00.7 00.9 — — — 83.5 83.7 83.9 2.1
R-4SE 0081 0063 00.5 00.7 00.9 65.5 65.7 65.9 83.5 83.7 83.9 4.1
R-5SE 0081 0063 00.5 00.7 00.9 60.5 60.7 60.9 83.5 83.7 83.9 5.1
R-01SE 0081 0063 00.5 00.7 00.9 94.5 94.7 94.9 52.5 52.7 52.9 6.1
02SE 0081 0063 00.7 57.9 05.21 69.6 17.9 64.21 57.6 05.9 52.21 7.3
03SE 0081 0063 00.7 57.9 05.21 44.6 79.8 27.11 05.6 52.9 00.21 5.4
04SE 0081 0063 00.7 57.9 05.21 47.5 32.8 89.01 00.6 57.8 05.11 3.5
05SE 0081 0013 00.7 57.9 05.21 42.6 37.8 84.11 00.6 57.8 05.11 0.8
06SE 0081 0082 57.9 83.41 00.91 86.7 13.21 39.61 57.8 83.31 00.81 8.02
07SE 0081 0062 57.9 31.51 05.02 27.6 01.21 74.71 43.7 27.21 90.81 6.43
08SE 0051 0081 57.9 83.51 00.12 67.4 93.01 10.61 48.6 73.21 00.81 2.64
001E 0051 0081 57.3 57.8 57.31 57.1 00.7 52.21 00.6 52.11 05.61 0.67
021E 0051 0081 88.4 31.01 83.51 47.1 47.6 47.11 31.7 31.21 31.71 3.18
041E 0021 0051 00.5 05.10 00.22 3.00 8.50 14.00 7.00 12.50 18.00 122.0
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Ordering Information: When ordering, be sure to specify whether one of two sleeve
extensions are required. If custom length, specify distance between shaft ends.
• Optional sleeve extensions (“SE”)
An economical alternative to floating shaft couplings (i.e., stock pump applications).
Sleeve Extensions
11. Note: Dimensions subject to change. Certified dimensions of ordered material furnished on request. 11
Special Designs
Stainless
Steel
Rexnord® Omega® HSU Element
Hydrolytically Stable Urethane for superior resistance to hot and
humid conditions in addition to acidic and alkaline environments.
The Omega HSU element in interchangeable with existing hubs.
Rexnord® Omega® Positive Drive
Coupling
With interlocking drive fail safe requirements.
Rexnord® Omega® Keyless Hub/
Bushing Design
Several optional keyless Hub/Bushing designs are available
for increased bore end shaft gap requirements.
Rexnord® Omega® Stainless Steel
Element
Corrosion resistant 303/304 stainless steel shoes for severe
environments.
Stainless steel hubs also available.
Rexnord® Omega® Spline Bore Hub
1. Number of Teeth – Ex. 14T
2. Pitch Fraction – Ex. 12/24 Pitch
3. Pressure Angle – 30° P.A.
4. Type of Tooth Shape – Ex. Involute or Straight Side
5. Type of Root – Ex. Fillet or Flat Root
6. Tolerance – Ex. Class I thru VII
7. Type of Fit – Ex. Side Fit or Major Diameter Fit
Rexnord® Omega® Light Duty Element
Available in size E2LD only. Minimum O.D. (2.5”) for low
profile applications. Max torque rating of 100 In. Lbs.
12. 12
Selection Procedures
1. Determine HP/100RPM: HP/100 RPM = Horsepower x 100
RPM
2. Determine Service Factor:
Select the proper Service Factor from Table on page
13. If not listed, see Load Classification Table.
Remember to consider both driver and driven
equipment and temperature requirements.
3. Multiply HP/100 by the service factor to get equivalent HP/100 RPM.
4. Select the Coupling Size:
From Table 1, with a rating equal to or greater than the
equivalent HP/100 RPM determined in Step 3.
5. Check Limiting Conditions:
Be sure that the operating speed of the coupling does
not exceed maximum RPM listed on page 4-7.
6. Select Desired Hub Type:
Select desired hub type and check maximum
allowable coupling bore on page 14.
OR
1. Determine Operating Torque:
(
63,000 x HP
) RPM
2. Multiply by Service Factor
Select the proper Service Factor from Table on page 13.
3. Select the Coupling Size:
Select coupling size from Table 2 with a capacity
equal to or greater than determined in Step 2.
4. Follow Steps 5 & 6 Above
Service Factors
Service Factors are a means of classifying different equipment and applications into various load classifications.
Due to variations in application of equipment, service factors are used to adjust equipment ratings to accommodate
for variable loading conditions. This is a general guide. More specific factors are given on page 13.
Continuous service and running loads vary only slightly. 1.0
Torque loading varies during operation of the equipment. 1.5
Torque loading varies during operation, frequent stop/
start cycles are encountered.
2.0
For shock loading and substantial torque variations. 2.5
For heavy shock loading or light reversing drives. 3.0
Reversing torque loads do not necessarily mean reversal
of rotation. Depending upon severity of torque reversal,
such loads must be classified between “medium” and
“extreme.”
Consult Rexnord
Load Classifications Service Factors
The service factor adjustment
for high temperature is in
addition to the service factor
consideration for the driver and
driven equipment. However, if
high temperatures are typical for
a specific application, maximum
temperature consideration is
incorporated into the “typical”
service factor listing on page 13.
i.e., steel mill runout tables.
Table 1
Size Equivalent
HP/100 RPMStandard Spacer
E2 ES2 0.3
E3 ES3 0.58
E4 ES4 0.88
E5 ES5 1.48
E10 ES10 2.3
E20 ES20 3.65
E30 ES30 5.79
E40 ES40 8.85
E50 ES50 12.14
E60 ES60 19.84
E70 ES70 35.12
E80 ES80 62.7
E100 NA 135
E120 NA 270
E140 NA 540
Table 2
Torque Capacity
Size
Continuous
Torque
(In. Lbs.)
Size
Continuous
Torque
(In. Lbs.)
2 190 40 5,500
3 365 50 7,650
4 550 60 12,500
5 925 70 22,125
10 1,450 80 39,500
20 2,300 100 85,050
30 3,650 120 170,100
140 340,200
Omega® Element
Temperature Range (Ambient)
-40°F +200°F
to
-40°C +93°C
High Temperature
Service Factor Adjustment*
Ambient Temp. S.F. Adjust.
+150°F (66°C) 0.025
+165°F (74°C) 0.05
+180°F (82°C) 0.75
+200°F (93°C) 1
*Added to application service factor
16. 16
Ordering Instructions
1. Drawing of HUB showing complete
bore and keyway details.
— OR —
2. Drawing of SHAFT with dimensions shown
below, allowing Rexnord to bore hubs to suit.
(LD) Large Diameter, Specify in Decimals.
(S) Length of Taper, Measure parallel to Shaft centerline.
(T) Taper per Foot, Difference in Diameter in one foot length.
(P) Clearance space for drawing Hub up on tapered shaft.
Usually 1
/8” or 1
/4”, depending on shaft size and taper.
Keyway: Width, Depth.
Note: Specify if keyway is parallel to Taper or if parallel to shaft
center line.
Specify depth at larger diameter of Taper if
keyway is parallel to shaft center line.
With connected equipment in fixed position, the
following additional information is necessary:
Dimensions “V” and “X” must be given when one or both
connected machines are fixed on their bases. Advise if
dimension “X” is fixed, or if variable between what limits.
A fixed “X” dimension may require altered or special coupling
hubs. Often the straight bored hub can be positioned on its shaft
allowing the use of a standard coupling. See illustrations below.
Consult A.G.M.A. Standard 9002 “Taper Bores
for Flexible Couplings” for new applications.
Tapered Bores
HUB SHORTENEDSHAFT PROJECTSHUB COUNTERBORED
AVAILABLE
LENGTH OF
SHAFTKEYWAY
C
XVES
T
E
NLDN
W
PP
HUB SHORTENEDSHAFT PROJECTSHUB COUNTERBORED
AVAILABLE
LENGTH OF
SHAFTKEYWAY
C
XVES
T
E
NLDN
W
PP
HUB SHORTENEDSHAFT PROJECTSHUB COUNTERBORED
AVAILABLE
LENGTH OF
SHAFTKEYWAY
C
XVES
T
E
NLDN
W
PP
Standard and Spacer Couplings
When ordering a complete coupling, specify size/type of element and hubs (two hubs per complete coupling) options include:
Element
[E2 – E140] standard (close coupled)
[ES2-R – ES80] spacer
Hub
[2HRB – 140HRB] straight hub-rough bore
[2HSB – 60HSB] straight hub-stock bore (specify bore size from table on page 15)
[2HCB – 140HCB] straight hub-custom bore (specify bore and keyway)
[4HQD – 140HQD] hub-QD (bushing not included)
[3HTL – 140HTL] hub-TAPER-LOCK® (bushing not included)
[10HMM – 140HMM] straight hub-mill motor (specify mill motor number, rough or custom bore)
Order Example:
Complete E50 standard (close coupled) coupling with one finished bore 21
/8”hub w/standard keyway and one QD hub less bushing.
Order description:
1 ea. E50 element
1 ea. 50HSB – 21
/8” – std.
1 ea. 50 HQD – steel