The document compares and contrasts shaper and planer machines. It states that a shaper uses a single cutting tool that moves vertically, while a planer uses multiple stationary cutting tools and moves the workpiece horizontally on a table. It also notes that shapers are used for smaller, lighter work, while planers are designed for heavier duty operations involving larger workpieces.
This document provides information about milling and grinding machines. It defines milling as a metal cutting process that removes material from a workpiece using a revolving cutting tool called a milling cutter. It also defines grinding as an abrasive machining process that removes a thin layer of material from a workpiece through the abrasive action of rotating grinding wheels. The document then describes various types of milling machines like horizontal milling machines and vertical milling machines. It also discusses grinding machines, abrasives, bonding materials, and different grinding operations like surface grinding and cylindrical grinding. Overall, the document presents an overview of milling and grinding processes and machines.
This document discusses milling machines and their components and operations. It defines milling as a machining process that uses a rotating multi-tooth cutter to remove material from a workpiece as it travels along different axes relative to the workpiece. It describes the different types of milling machines, milling parameters such as cutting speed and feed, common milling operations including peripheral, face and end milling, and components like the worktable, saddle, knee, and head.
The document discusses grinding machines and their components and processes. Grinding involves removing a thin layer of material using an abrasive wheel. There are different types of grinding machines such as surface grinding machines, cylindrical grinding machines, and centerless grinding machines. The document describes the components and working of surface grinding machines, which are used to grind flat surfaces and include a base, column, table, and grinding wheel that removes material when moved along the workpiece.
There are several types of grinding machines classified based on their construction and purpose, including rough grinders and precision grinders, floor stand and bench grinders, portable and flexible shaft grinders, swing frame grinders, abrasive belt grinders, cylindrical grinders, surface grinders, tool & cutter grinders, and special grinders. Common grinding machines are bench & pedestal grinders, portable or flexible shaft grinders, swing frame grinders, external and internal cylindrical grinders, surface grinders, and universal tool and cutter grinders.
Grinding is a precision machining process used to shape and finish components through material removal from metal or other materials. It can achieve surface finishes up to ten times better than other processes like turning or milling. There are different types of grinding including cylindrical grinding, which rotates the workpiece around a fixed axis to machine concentric external surfaces, and internal grinding which uses small wheels to finish the inside of pre-drilled holes. Internal grinders hold the workpiece and have a separate wheelhead and spindle that can move in and out as well as reciprocate for grinding.
The document discusses surface grinding machines. It describes that surface grinding machines use an abrasive wheel to remove material from flat surfaces of workpieces. The workpiece is mounted on a reciprocating table that moves back and forth beneath the grinding wheel. Surface grinding machines have horizontal wheel spindles and use straight or cylinder grinding wheels. They also have systems for automatic coolant application and recirculation to the workpiece and wheel. Operators must follow safety precautions like wearing goggles and never adjusting the workpiece while the machine is operating.
The document compares and contrasts shaper and planer machines. It states that a shaper uses a single cutting tool that moves vertically, while a planer uses multiple stationary cutting tools and moves the workpiece horizontally on a table. It also notes that shapers are used for smaller, lighter work, while planers are designed for heavier duty operations involving larger workpieces.
This document provides information about milling and grinding machines. It defines milling as a metal cutting process that removes material from a workpiece using a revolving cutting tool called a milling cutter. It also defines grinding as an abrasive machining process that removes a thin layer of material from a workpiece through the abrasive action of rotating grinding wheels. The document then describes various types of milling machines like horizontal milling machines and vertical milling machines. It also discusses grinding machines, abrasives, bonding materials, and different grinding operations like surface grinding and cylindrical grinding. Overall, the document presents an overview of milling and grinding processes and machines.
This document discusses milling machines and their components and operations. It defines milling as a machining process that uses a rotating multi-tooth cutter to remove material from a workpiece as it travels along different axes relative to the workpiece. It describes the different types of milling machines, milling parameters such as cutting speed and feed, common milling operations including peripheral, face and end milling, and components like the worktable, saddle, knee, and head.
The document discusses grinding machines and their components and processes. Grinding involves removing a thin layer of material using an abrasive wheel. There are different types of grinding machines such as surface grinding machines, cylindrical grinding machines, and centerless grinding machines. The document describes the components and working of surface grinding machines, which are used to grind flat surfaces and include a base, column, table, and grinding wheel that removes material when moved along the workpiece.
There are several types of grinding machines classified based on their construction and purpose, including rough grinders and precision grinders, floor stand and bench grinders, portable and flexible shaft grinders, swing frame grinders, abrasive belt grinders, cylindrical grinders, surface grinders, tool & cutter grinders, and special grinders. Common grinding machines are bench & pedestal grinders, portable or flexible shaft grinders, swing frame grinders, external and internal cylindrical grinders, surface grinders, and universal tool and cutter grinders.
Grinding is a precision machining process used to shape and finish components through material removal from metal or other materials. It can achieve surface finishes up to ten times better than other processes like turning or milling. There are different types of grinding including cylindrical grinding, which rotates the workpiece around a fixed axis to machine concentric external surfaces, and internal grinding which uses small wheels to finish the inside of pre-drilled holes. Internal grinders hold the workpiece and have a separate wheelhead and spindle that can move in and out as well as reciprocate for grinding.
The document discusses surface grinding machines. It describes that surface grinding machines use an abrasive wheel to remove material from flat surfaces of workpieces. The workpiece is mounted on a reciprocating table that moves back and forth beneath the grinding wheel. Surface grinding machines have horizontal wheel spindles and use straight or cylinder grinding wheels. They also have systems for automatic coolant application and recirculation to the workpiece and wheel. Operators must follow safety precautions like wearing goggles and never adjusting the workpiece while the machine is operating.
Presentation on different types of machine,spur gear making, single point cut...Reshad Ibn Momin
Different types of machines,such as
#Lathe Machine
#Milling Machine
#Grinding Machine
#Drilling Machine
#Shaper&Planer
and Spur Gear Making ,making of single point cutting tool.
Presented By the RESHAD,BAPPY,RAJIB,SAORAV,Kadery. (13 batch) Mechanical Engineering Dept of Chittagong University of Engineering & technology.
This document provides an overview of various grinding operations and processes. It describes how grinding is used to machine hard materials by producing a smooth surface with minimal surface pressure. The types of grinding operations discussed include rough and precision grinding, as well as specific processes like surface grinding, cylindrical grinding, centerless grinding, form and profile grinding, and plunge cut grinding. Electrochemical grinding is also summarized as a process that removes metal primarily through electrolysis rather than abrasion.
There are four main types of grinding machines: surface grinding machines, cylindrical grinding machines, internal grinding machines, and tool and cutter grinding machines. Surface grinding machines are classified by spindle orientation and table movement. Cylindrical grinding machines include plain, universal, and centerless types. Internal grinding machines include chucking, planetary, and centerless types. Tool and cutter grinding machines are used to manufacture or resharpen tools and cutters.
Broaching is a machining process where a broach tool with multiple cutting teeth is pushed or pulled through a workpiece to cut it into the desired shape. Broaching provides good dimensional accuracy and surface finish. There are different types of broaching machines like horizontal, vertical pull, continuous, and rotary table machines. Broaching is used to manufacture precision components like bearing caps, gears, and splines. It provides interchangeability but the initial costs of broaches and machines are high.
The document defines a lathe as a machine that removes metal from a workpiece to shape it. A lathe operates by rotating the workpiece while a fixed cutting tool is fed into it. Key components of a lathe include the bed, carriage, headstock, tailstock, and feed rod. Common types of lathes are engine lathes, bench lathes, speed lathes, automatic lathes, turret lathes, and computer controlled lathes. Basic lathe operations include turning, facing, boring, drilling, reaming, threading, and knurling.
The document discusses different types of grinding machines and their processes. It describes how grinding involves removing a thin layer of material from a workpiece using an abrasive wheel. The main types covered are surface grinding, cylindrical grinding, centerless grinding, and internal grinding machines. Each have different principles and applications depending on the shape and features of the workpiece being ground.
MILLING MACHINE PPT 1: WORKING PRINCIPLE ,MILLING METHODS AND SPECIFICATIONS ...POLAYYA CHINTADA
Milling machines are used to remove materials from a workpiece via a revolving cutting tool. There are two types of milling: up-milling and down-milling. Up-milling involves cutting against the workpiece movement, resulting in varying cutting forces. Down-milling cuts in the same direction as workpiece movement, generating less heat and allowing for a better surface finish. Milling machines can cut flat, curved, or angled surfaces using multiple tooth cutters mounted on an arbor or spindle. They are suitable for machining surfaces, contours, threads, and other cross-sections.
machining operations and machine tools.Mihir Dixit
This document discusses various machining operations and machine tools used in manufacturing. It describes turning operations which use a single point cutting tool on a lathe to generate cylindrical parts. Milling operations employ a rotating cutting tool with multiple edges to cut planar surfaces. Other operations covered include drilling, boring, tapping and shaping. A variety of machine tools are discussed for performing these operations, including lathes, milling machines, drill presses, shapers and sawing machines. The document provides detailed explanations of each machining process along with example applications and illustrations.
This document discusses machining and cutting tools. It defines machining as a process that removes excess material from preformed blanks using cutting tools to achieve desired dimensions and surface finish. It also describes different types of machine tools, cutting tool materials like high speed steel and stellite, cutting tool geometry, chip formation, cutting forces, mechanics of orthogonal cutting, and calculations of metal removal rate and cutting power consumption.
Machine tools are powered machines used for metal cutting and finishing operations to shape workpieces. Lathes are one of the earliest and most important machine tools, capable of turning, facing, boring, drilling, threading, knurling, and other operations. The basic elements of a lathe include the bed, headstock, tailstock, carriage, saddle, and tooling such as the cross slide and compound rest. Turning operations produce straight, conical, or curved surfaces, while other operations like facing, boring, and threading create specific surface features.
Milling cutters are cutting tools used to remove material from workpieces in milling machines. They have cutting edges and flutes to remove chips of material. Common milling cutter types include end mills, face mills, and inserted tooth cutters. Milling cutters come in various geometries and are made of materials like high-speed steel or carbide depending on the application. Cutting parameters like spindle speed, feed rate, depth of cut, and surface cutting speed determine how efficiently a milling cutter removes material from a workpiece.
This document discusses machining and metal cutting. It defines machining as a process that converts raw materials into finished products with specific dimensions, shapes, and surfaces. It describes cutting speed, feed rate, depth of cut, and different types of chips formed during machining. It also covers tool geometry including rake angle, cutting edge angles, and tool signature. Mechanisms of chip formation and sources of heat generation during machining are explained. Different types of single point cutting tools and their nomenclature are discussed in detail.
The document discusses milling processes and provides details about various milling techniques. It defines milling, describes up and down milling methods, and covers topics such as milling machines, cutters, operations, and factors that influence tool life. Examples of peripheral and face milling are illustrated.
1. The document discusses various machining processes including turning, shaping, planning, milling, and drilling.
2. It provides details on milling operations such as plain milling, face milling, up-milling and down-milling. Formulas for undeformed chip thickness and volume of chips in milling are provided.
3. For drilling, it describes the process and components of drilling forces, as well as formulas for chip thickness and forces in drilling. Surface finish is also discussed for both milling and drilling.
IN THIS PPT INFORMATION OF LATHE MACHINE
A lathe mahine is a machine tool which rotates the workpiece on its axis to perform various operation such as cutting ,sliding, knurling ,drilling ,with tools that are applied to workpiece to create an object which has symmetry about an axis of rotation
thanks for watching
Give any suggestion in comment
Unit 3A1 Lathe turning and related operationsMechbytes
Coverage of machine tools classification, types, functions and Lathe machine, Turning & related operations, Lathe construction, parts, accessories and attachments
The document describes three logic gate techniques:
1) The first technique uses NAND gates to evaluate expressions.
2) The second technique uses both NAND and NOR gates.
3) The third technique only uses NAND gates.
Tables are included that show the output for different inputs using these techniques.
Presentation on different types of machine,spur gear making, single point cut...Reshad Ibn Momin
Different types of machines,such as
#Lathe Machine
#Milling Machine
#Grinding Machine
#Drilling Machine
#Shaper&Planer
and Spur Gear Making ,making of single point cutting tool.
Presented By the RESHAD,BAPPY,RAJIB,SAORAV,Kadery. (13 batch) Mechanical Engineering Dept of Chittagong University of Engineering & technology.
This document provides an overview of various grinding operations and processes. It describes how grinding is used to machine hard materials by producing a smooth surface with minimal surface pressure. The types of grinding operations discussed include rough and precision grinding, as well as specific processes like surface grinding, cylindrical grinding, centerless grinding, form and profile grinding, and plunge cut grinding. Electrochemical grinding is also summarized as a process that removes metal primarily through electrolysis rather than abrasion.
There are four main types of grinding machines: surface grinding machines, cylindrical grinding machines, internal grinding machines, and tool and cutter grinding machines. Surface grinding machines are classified by spindle orientation and table movement. Cylindrical grinding machines include plain, universal, and centerless types. Internal grinding machines include chucking, planetary, and centerless types. Tool and cutter grinding machines are used to manufacture or resharpen tools and cutters.
Broaching is a machining process where a broach tool with multiple cutting teeth is pushed or pulled through a workpiece to cut it into the desired shape. Broaching provides good dimensional accuracy and surface finish. There are different types of broaching machines like horizontal, vertical pull, continuous, and rotary table machines. Broaching is used to manufacture precision components like bearing caps, gears, and splines. It provides interchangeability but the initial costs of broaches and machines are high.
The document defines a lathe as a machine that removes metal from a workpiece to shape it. A lathe operates by rotating the workpiece while a fixed cutting tool is fed into it. Key components of a lathe include the bed, carriage, headstock, tailstock, and feed rod. Common types of lathes are engine lathes, bench lathes, speed lathes, automatic lathes, turret lathes, and computer controlled lathes. Basic lathe operations include turning, facing, boring, drilling, reaming, threading, and knurling.
The document discusses different types of grinding machines and their processes. It describes how grinding involves removing a thin layer of material from a workpiece using an abrasive wheel. The main types covered are surface grinding, cylindrical grinding, centerless grinding, and internal grinding machines. Each have different principles and applications depending on the shape and features of the workpiece being ground.
MILLING MACHINE PPT 1: WORKING PRINCIPLE ,MILLING METHODS AND SPECIFICATIONS ...POLAYYA CHINTADA
Milling machines are used to remove materials from a workpiece via a revolving cutting tool. There are two types of milling: up-milling and down-milling. Up-milling involves cutting against the workpiece movement, resulting in varying cutting forces. Down-milling cuts in the same direction as workpiece movement, generating less heat and allowing for a better surface finish. Milling machines can cut flat, curved, or angled surfaces using multiple tooth cutters mounted on an arbor or spindle. They are suitable for machining surfaces, contours, threads, and other cross-sections.
machining operations and machine tools.Mihir Dixit
This document discusses various machining operations and machine tools used in manufacturing. It describes turning operations which use a single point cutting tool on a lathe to generate cylindrical parts. Milling operations employ a rotating cutting tool with multiple edges to cut planar surfaces. Other operations covered include drilling, boring, tapping and shaping. A variety of machine tools are discussed for performing these operations, including lathes, milling machines, drill presses, shapers and sawing machines. The document provides detailed explanations of each machining process along with example applications and illustrations.
This document discusses machining and cutting tools. It defines machining as a process that removes excess material from preformed blanks using cutting tools to achieve desired dimensions and surface finish. It also describes different types of machine tools, cutting tool materials like high speed steel and stellite, cutting tool geometry, chip formation, cutting forces, mechanics of orthogonal cutting, and calculations of metal removal rate and cutting power consumption.
Machine tools are powered machines used for metal cutting and finishing operations to shape workpieces. Lathes are one of the earliest and most important machine tools, capable of turning, facing, boring, drilling, threading, knurling, and other operations. The basic elements of a lathe include the bed, headstock, tailstock, carriage, saddle, and tooling such as the cross slide and compound rest. Turning operations produce straight, conical, or curved surfaces, while other operations like facing, boring, and threading create specific surface features.
Milling cutters are cutting tools used to remove material from workpieces in milling machines. They have cutting edges and flutes to remove chips of material. Common milling cutter types include end mills, face mills, and inserted tooth cutters. Milling cutters come in various geometries and are made of materials like high-speed steel or carbide depending on the application. Cutting parameters like spindle speed, feed rate, depth of cut, and surface cutting speed determine how efficiently a milling cutter removes material from a workpiece.
This document discusses machining and metal cutting. It defines machining as a process that converts raw materials into finished products with specific dimensions, shapes, and surfaces. It describes cutting speed, feed rate, depth of cut, and different types of chips formed during machining. It also covers tool geometry including rake angle, cutting edge angles, and tool signature. Mechanisms of chip formation and sources of heat generation during machining are explained. Different types of single point cutting tools and their nomenclature are discussed in detail.
The document discusses milling processes and provides details about various milling techniques. It defines milling, describes up and down milling methods, and covers topics such as milling machines, cutters, operations, and factors that influence tool life. Examples of peripheral and face milling are illustrated.
1. The document discusses various machining processes including turning, shaping, planning, milling, and drilling.
2. It provides details on milling operations such as plain milling, face milling, up-milling and down-milling. Formulas for undeformed chip thickness and volume of chips in milling are provided.
3. For drilling, it describes the process and components of drilling forces, as well as formulas for chip thickness and forces in drilling. Surface finish is also discussed for both milling and drilling.
IN THIS PPT INFORMATION OF LATHE MACHINE
A lathe mahine is a machine tool which rotates the workpiece on its axis to perform various operation such as cutting ,sliding, knurling ,drilling ,with tools that are applied to workpiece to create an object which has symmetry about an axis of rotation
thanks for watching
Give any suggestion in comment
Unit 3A1 Lathe turning and related operationsMechbytes
Coverage of machine tools classification, types, functions and Lathe machine, Turning & related operations, Lathe construction, parts, accessories and attachments
The document describes three logic gate techniques:
1) The first technique uses NAND gates to evaluate expressions.
2) The second technique uses both NAND and NOR gates.
3) The third technique only uses NAND gates.
Tables are included that show the output for different inputs using these techniques.
The document discusses how job titles in the digital field such as bloggers, vloggers, social media managers are not officially recognized in employment contracts, which still list older job titles. It encourages digital workers to help recognize these new job titles by putting virtual name plates on social media profiles and emails listing their accurate job title, and signing a petition to get digital job titles officially classified in Romania. It aims to raise awareness and recognition for digital careers through grassroots efforts.
Este documento describe la anatomía y fisiología del corazón. En resumen:
1) Describe la estructura interna y externa del corazón, incluyendo las cámaras, vasos sanguíneos, nervios y tejidos.
2) Explica el ciclo cardíaco, que incluye la diástole, sístole y flujo sanguíneo a través de las válvulas.
3) Detalla los mecanismos de generación y conducción del potencial de acción cardíaco, y el control del sistema nervios
This document discusses exploratory factor analysis (EFA). EFA is used to identify underlying factors that explain the pattern of correlations within a set of observed variables. The document outlines the steps of EFA including testing assumptions, constructing a correlation matrix, determining the number of factors, rotating factors, and interpreting the factor loadings. It provides an example of running EFA on a dataset with 11 physical performance and anthropometric variables from 21 participants. The analysis extracts 3 factors that explain over 80% of the total variance.
un síndrome clínico que se caracteriza por la incapacidad del organismo para mantener los niveles arteriales de oxígeno (O2) y de dióxido de carbono (CO2) adecuados para las demandas del metabolismo celular.
The International Convention for the Safety of Life at Sea (SOLAS) is an international maritime treaty which requires Signatory flag states to ensure that ships flagged by them comply with minimum safety standards in construction, equipment and operation. New regulations for the Safety of Life at Sea (SOLAS) took effect on July 1, 2016 and require shippers whose names appear on the bill of lading to verify the gross mass of all containers before they are shipped at the terminal. METTLER TOLEDO is the world's largest manufacturer of weighing equipment and your trusted partner for compliance with the new SOLAS convention guidelines. Our long-lasting scales and systems are legal-for-trade everywhere you weigh and are ready to deploy immediately anywhere along the logistics chain.
"There is plenty of room at the bottom" - Richard Feynmam. I made a project about an emerging field that focuses on modifying extremely small, usually not visible with naked eye, materials and creating new things with desired properties. The aim of my project is to foster people understanding about the subject that is believed to have a huge influence on us in a future. In my presentation I will discuss the main concepts of the discipline, where it can be applied and give some examples of new innovations. #Scichallenge2017
This document is a lab assignment submitted by Suhail Ahmed for a mechanics of materials lab course. It summarizes several types of machines and their working principles, including lathes, surface grinding machines, milling machines, drilling machines, power hacksaws, and grinding machines. For each machine type, it describes the main components, typical applications, and how it operates by removing material from a workpiece. The assignment was submitted to instructor Mr. Dawood Bukhari on April 14, 2017 for semester 3 of an aircraft maintenance technology program.
At Esskay Machines, we understand that heavy-duty applications demand equipment that can withstand extreme conditions and deliver exceptional performance. With decades of experience and a team of highly skilled engineers, we have perfected the art of designing and manufacturing heavy-duty machines that excel in even the toughest environments.
Esskay Machines is the best Lathe Machine Manufacturers in India.
1. The document discusses various machining and surface treatment processes including honing, lapping, painting, plastic coating, plating, shot blasting, shot penning, tumbling, buffing, polishing, power brushing, sandblasting, washing, and waxing.
2. It also discusses different types of machine tools including lathes, drilling machines, grinding machines, milling machines, planning machines, and shaping machines. Specific lathe operations like turning, boring, and screw cutting are outlined.
3. Special purpose machine tools like honing machines are described in more detail. Other special purpose machines mentioned are boring machines, broaching machines, gear-cutting machines, and lapping machines
1. The document discusses various machining and surface treatment processes including honing, lapping, painting, plastic coating, plating, shot blasting, shot penning, tumbling, buffing, polishing, power brushing, sandblasting, washing, and waxing.
2. It also discusses different types of machine tools including lathes, drilling machines, grinding machines, milling machines, planning machines, and shaping machines. Specific lathe operations like turning, boring, and screw cutting are outlined.
3. Special purpose machine tools like honing machines are described in more detail. Other special purpose machines mentioned are boring machines, broaching machines, gear-cutting machines, and lapping machines
This document provides an overview of various machining and surface treatment processes. It discusses operations like honing, lapping, painting, plating, shot blasting, and tumbling. It also describes common machining processes like drilling, milling, turning, grinding and different types of machines used like lathes, drilling machines, milling machines, planning machines and shaping machines. Finally, it mentions special purpose machines like honing machines.
This document discusses the design and development of a motorized double hacksaw machine that can cut two metal bars simultaneously to achieve high cutting speeds and mass production. It describes the key components of the machine, including the scotch yoke mechanism that converts rotary motion into reciprocating motion to power the hacksaws. Testing showed the motorized double hacksaw machine provided faster and more efficient cutting than a conventional hacksaw. The document also provides background on common sawing machines like power hacksaws and bandsaws, and their applications in metal cutting.
Milling is a machining process that uses a rotating multi-toothed cutter to remove material from a workpiece. Milling machines can hold one or more cutters and precisely rotate and index workpieces to cut flat, curved, and threaded surfaces to close tolerances. Milling machines are classified based on their design and include column and knee mills, manufacturing mills, and planer mills. The principal parts of a column and knee mill include the base, column, knee, saddle, overarm, spindle, arbor, and various milling cutters. Milling cutters come in different shapes like plain, side, angle, and end mills to perform operations like slotting and profiling.
Milling operations-types of milling cutter. Gear cutting – forming and generation principle and construction of gear milling, hobbing and gear shaping processes –finishing of gears.
Basics of Production Engineering In MetalworkingIJERA Editor
This document discusses milling machines and their operation. It describes the different types of milling machines, including horizontal, vertical, and universal milling machines. It explains the basic movements and functions of milling machines. The document also covers topics like milling processes, cutting speeds, workholding, and calculating cutting elements. Milling machines are used to machine flat, curved, and other surfaces on metal workpieces through removing layers of metal in the form of swarf.
Milling machines use a rotating multipoint cutter to remove material from a workpiece through feeding in various ways. There are several types of milling machines but the most common is the vertical knee-type mill which allows movement of the workpiece in multiple axes. Milling operations include plain milling for flat surfaces, face milling for perpendicular surfaces, and slot milling or angular milling for complex shapes. Milling provides fast metal removal for complex geometries through cutters that can cut on sides, ends, and faces.
The document discusses various machining processes including drilling, reaming, milling, and routing. It describes drilling as producing holes with drill bits and reaming as improving drilled holes with reamers. Milling removes metal by feeding work against a rotating cutter and can machine flat or curved surfaces. Various milling cutters and processes are discussed like end mills, gang milling, and straddle milling. Finally, routing is described as a linear process used in woodworking to make grooves and profiles with a rotating arm and changeable tools.
The document discusses various machining processes including drilling, reaming, milling, and routing. It describes drilling as producing holes with drill bits and reaming as improving drilled holes with reamers. Milling removes metal by feeding work against a rotating cutter and can machine flat or curved surfaces. Various milling cutters and processes are discussed like end mills, gang milling, and straddle milling. Finally, routing is described as a linear process used in woodworking to make grooves and profiles with interchangeable tools.
The document discusses milling and milling machines. It defines milling as a metal cutting process that removes material from a workpiece using a rotating cutting tool called a milling cutter. A milling machine is a machine tool that uses this milling process to remove metal as the workpiece is fed against the rotating cutter. The document describes the main components and functions of milling machines, different types including column and knee mills, horizontal and vertical mills, and special purpose mills. It also outlines common milling operations like face milling and pocket milling.
Milling cutters are cutting tools used in milling machines and other machine tools to remove material. There are various types of milling cutters that are used for different operations like shaping faces, cutting slots, making gears, and more. Some common types include end mills, slitting cutters, gear cutters, and face mills. End mills can cut in all directions and are used for operations like profiling and slot cutting.
Machine tools are manufacturing devices that use cutting tools to remove excess material from a workpiece, producing parts to precise shapes and sizes. The document discusses several common types of machine tools including lathes, drilling machines, milling machines, shapers, and planers. It provides details on their components, operations, and applications for machining various geometries and features on workpieces.
The document describes milling machine operations. It defines milling, the main components of milling machines, and different types of milling machines including horizontal, vertical, and speciality machines. It also explains various milling techniques such as plain milling, face milling, end milling, and gang milling. Key parts of milling machines like the spindle, table, and arbor are identified. Methods like up milling and down milling are compared.
This document provides information about various machining processes and machine tools. It describes machining as a metal removing process using machine tools and cutting tools. Lathe machines are commonly used to produce cylindrical surfaces and other operations like turning, drilling, boring, etc. Other machine tools discussed include milling machines, drilling machines, grinding machines, shaping machines, and planning machines. The document provides detailed descriptions of various operations that can be performed on these machines.
The document discusses drilling and boring machines. It describes how drilling machines are used to produce circular holes in workpieces using rotating cutters called drills. Different types of drilling machines are described, including portable drilling machines, sensitive bench drilling machines, upright drilling machines, radial drilling machines, gang drilling machines, turret drilling machines, and deep hole drilling machines. The document also covers topics such as tool nomenclature, drilling operations, tool holding devices, work holding devices, drill types, and reaming.
The document discusses drilling machines, including their history, parts, operation, working principle, types, and safety precautions. It describes how drilling machines hold and rotate drill bits to cut holes in materials. Key parts include the head, spindle, drill chuck, and table. Operations include drilling, boring, reaming, counterboring, tapping, and trepanning. Types include portable, upright, radial, and gang drilling machines. Safety precautions when using drilling machines are also outlined.
Similar to Esskay international machine tools company (20)
How are Lilac French Bulldogs Beauty Charming the World and Capturing Hearts....Lacey Max
“After being the most listed dog breed in the United States for 31
years in a row, the Labrador Retriever has dropped to second place
in the American Kennel Club's annual survey of the country's most
popular canines. The French Bulldog is the new top dog in the
United States as of 2022. The stylish puppy has ascended the
rankings in rapid time despite having health concerns and limited
color choices.”
[To download this presentation, visit:
https://www.oeconsulting.com.sg/training-presentations]
This presentation is a curated compilation of PowerPoint diagrams and templates designed to illustrate 20 different digital transformation frameworks and models. These frameworks are based on recent industry trends and best practices, ensuring that the content remains relevant and up-to-date.
Key highlights include Microsoft's Digital Transformation Framework, which focuses on driving innovation and efficiency, and McKinsey's Ten Guiding Principles, which provide strategic insights for successful digital transformation. Additionally, Forrester's framework emphasizes enhancing customer experiences and modernizing IT infrastructure, while IDC's MaturityScape helps assess and develop organizational digital maturity. MIT's framework explores cutting-edge strategies for achieving digital success.
These materials are perfect for enhancing your business or classroom presentations, offering visual aids to supplement your insights. Please note that while comprehensive, these slides are intended as supplementary resources and may not be complete for standalone instructional purposes.
Frameworks/Models included:
Microsoft’s Digital Transformation Framework
McKinsey’s Ten Guiding Principles of Digital Transformation
Forrester’s Digital Transformation Framework
IDC’s Digital Transformation MaturityScape
MIT’s Digital Transformation Framework
Gartner’s Digital Transformation Framework
Accenture’s Digital Strategy & Enterprise Frameworks
Deloitte’s Digital Industrial Transformation Framework
Capgemini’s Digital Transformation Framework
PwC’s Digital Transformation Framework
Cisco’s Digital Transformation Framework
Cognizant’s Digital Transformation Framework
DXC Technology’s Digital Transformation Framework
The BCG Strategy Palette
McKinsey’s Digital Transformation Framework
Digital Transformation Compass
Four Levels of Digital Maturity
Design Thinking Framework
Business Model Canvas
Customer Journey Map
Brian Fitzsimmons on the Business Strategy and Content Flywheel of Barstool S...Neil Horowitz
On episode 272 of the Digital and Social Media Sports Podcast, Neil chatted with Brian Fitzsimmons, Director of Licensing and Business Development for Barstool Sports.
What follows is a collection of snippets from the podcast. To hear the full interview and more, check out the podcast on all podcast platforms and at www.dsmsports.net
[To download this presentation, visit:
https://www.oeconsulting.com.sg/training-presentations]
This PowerPoint compilation offers a comprehensive overview of 20 leading innovation management frameworks and methodologies, selected for their broad applicability across various industries and organizational contexts. These frameworks are valuable resources for a wide range of users, including business professionals, educators, and consultants.
Each framework is presented with visually engaging diagrams and templates, ensuring the content is both informative and appealing. While this compilation is thorough, please note that the slides are intended as supplementary resources and may not be sufficient for standalone instructional purposes.
This compilation is ideal for anyone looking to enhance their understanding of innovation management and drive meaningful change within their organization. Whether you aim to improve product development processes, enhance customer experiences, or drive digital transformation, these frameworks offer valuable insights and tools to help you achieve your goals.
INCLUDED FRAMEWORKS/MODELS:
1. Stanford’s Design Thinking
2. IDEO’s Human-Centered Design
3. Strategyzer’s Business Model Innovation
4. Lean Startup Methodology
5. Agile Innovation Framework
6. Doblin’s Ten Types of Innovation
7. McKinsey’s Three Horizons of Growth
8. Customer Journey Map
9. Christensen’s Disruptive Innovation Theory
10. Blue Ocean Strategy
11. Strategyn’s Jobs-To-Be-Done (JTBD) Framework with Job Map
12. Design Sprint Framework
13. The Double Diamond
14. Lean Six Sigma DMAIC
15. TRIZ Problem-Solving Framework
16. Edward de Bono’s Six Thinking Hats
17. Stage-Gate Model
18. Toyota’s Six Steps of Kaizen
19. Microsoft’s Digital Transformation Framework
20. Design for Six Sigma (DFSS)
To download this presentation, visit:
https://www.oeconsulting.com.sg/training-presentations
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How MJ Global Leads the Packaging Industry.pdfMJ Global
MJ Global's success in staying ahead of the curve in the packaging industry is a testament to its dedication to innovation, sustainability, and customer-centricity. By embracing technological advancements, leading in eco-friendly solutions, collaborating with industry leaders, and adapting to evolving consumer preferences, MJ Global continues to set new standards in the packaging sector.
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The Radar reflects input from APCO’s teams located around the world. It distils a host of interconnected events and trends into insights to inform operational and strategic decisions. Issues covered in this edition include:
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How to Start Up a Company: A Step-by-Step Guide Starting a company is an exciting adventure that combines creativity, strategy, and hard work. It can seem overwhelming at first, but with the right guidance, anyone can transform a great idea into a successful business. Let's dive into how to start up a company, from the initial spark of an idea to securing funding and launching your startup.
Introduction
Have you ever dreamed of turning your innovative idea into a thriving business? Starting a company involves numerous steps and decisions, but don't worry—we're here to help. Whether you're exploring how to start a startup company or wondering how to start up a small business, this guide will walk you through the process, step by step.
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This session provided an update as to the latest valuation data in the UK and then delved into a discussion on the upcoming election and the impacts on valuation. We finished, as always with a Q&A
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How to Implement a Strategy: Transform Your Strategy with BSC Designer's Comp...Aleksey Savkin
The Strategy Implementation System offers a structured approach to translating stakeholder needs into actionable strategies using high-level and low-level scorecards. It involves stakeholder analysis, strategy decomposition, adoption of strategic frameworks like Balanced Scorecard or OKR, and alignment of goals, initiatives, and KPIs.
Key Components:
- Stakeholder Analysis
- Strategy Decomposition
- Adoption of Business Frameworks
- Goal Setting
- Initiatives and Action Plans
- KPIs and Performance Metrics
- Learning and Adaptation
- Alignment and Cascading of Scorecards
Benefits:
- Systematic strategy formulation and execution.
- Framework flexibility and automation.
- Enhanced alignment and strategic focus across the organization.
2. Lathe Machine
Lathe machine works to cut unwanted material form a
workpiece rotated against a cutter to form the desired
part. Lathe is the typical turning machine tool in
industrial revolution of metal trimming or cutting
operations.
3. Drilling Machine
Drilling machine is the general
purpose use machine for boring
holes into a wood or metal with the
sharp edges of its rotating cutter drill
that brings enlarges holes at a high
speed in revolutions per minute. It
can also perform functions as
tapping, reaming, counter sinking or
boring, spot facing, trepanning.
4. Milling Machine
Milling machine is power operated
machine meant for use of removing
excess metal from a workpiece fed
against a rotating multipoint cutting
point widely considered for
production work and meant for
operations like creating flat or
contour turning surfaces as well.
Whilst can be used for boring,
drilling, threading and slotting.
5. Radial Drilling Machine
Radial machine is efficient working
machine from medium to heavy jobs in
metal working industry permits holes up
to 100mm on the workpiece with a
column supporting a radial arm
mechanism to adjust the drill head in
height and rotates. It is capable of doing
operations such as boring holes,
grinding and countersinking.
6. Shaper Machine
Shaper machine works for shaping the workpiece
mounts on a table to generate flat surfaces and also
cuts curves and angles. The reciprocating movement
of the ram moves back and forth while the feed handle
feed the cutter into the material slowly. It is primarily
used for making slots, grooves, keyways and contour.
7. Power Press Machine
Power press machine forms sheet
metal materials in desired shapes
and mass production attached to
ram operating part which
facilitates process by applying force
without removing chips. The
purposes include folding,
stamping, rolling, bending,
coining, embossing and such more.
8. Horizontal Boring
Horizontal boring capable of producing long holes
inside diameter of the work material revolve in a
horizontal direction and do perform functions like
reaming, grooving, milling, facing, turning, threading
and so on .
9. CNC Lathe Machine
Sophisticated CNC lathe
machine offers flexibility
to perform wide
processes on workpiece
surfaces including cut off
operated via
programming automated
controls designed by
computer aided
manufacturing.
10. Shearing Machine
Shearing machine comprises of
a mechanism that facilitates
cutting accuracy without
forming chips. It basically
forms operations on sheet
metal or plates in many ways
works with a fixed blade and
moving blade arrangement to
get specific finished size
workpiece. Its shearing type
works involve trimming is
regarding cut away of scrap in
defined cutting line whereas
piercing or blanking is about
cutting parts in predetermined
contour.
11. Hydraulic Press Brake
Hydraulic press brake is
a machine tool for metal
forming and
predetermined bending
responsible for helping
the workpiece clamped
between a die and a
matching punch results
in accuracy, reliability
and at high operating
speed.