The document describes the services provided by Dimensional Management Services, including GD&T and tolerance stack-up analysis, related training, solving quality issues, and applying GD&T to new product development. Key services are conversion of drawings to GD&T standards, tolerance stack-up analysis to optimize tolerances and predict defects, ASME-certified GD&T training, root cause analysis and quality process implementation to ensure consistent quality, and incorporating best practices into new product development.
Prashanth kumar b m 3+ yrs exp in procurementPrashanth Kumar
Prashanth Kumar is seeking a career-oriented opportunity that allows him to utilize his 3+ years of experience in mechanical and IT procurement. He currently works as an Assistant Manager of Commercials & Procurement at Qwikcilver Solutions, where he heads a team of 3 and is responsible for invoice resolution, purchase order processing, negotiating prices, and developing new vendors. Previously, he worked as a Purchase & Procurement Engineer at Ingwenya Mineral Tech, where he handled procurement totaling $2 million and reduced costs on various projects between 4-20%. Prashanth holds a Bachelor's degree in Mechanical Engineering and is proficient in Microsoft Office, Tally ERP 9, and Windows operating systems.
- Vaishnav Mithun N. is a mechanical engineer and certified value engineer seeking career opportunities in value engineering and should costing, preferably with growth-oriented organizations related to new product development.
- He has over 4 years of experience in value engineering and should costing of sheet metal, plastics, and casting parts for gas turbines, aero engines, and oil and gas applications.
- His skills include competitive teardown and benchmarking, design process improvement, should costing, negotiating with suppliers, and applying value analysis/value engineering techniques to reduce product costs.
Divyesh Vaghela is a highly motivated senior mechanical engineer with over 3 years of experience in design, development, analysis, experimentation and testing of pump and turbine systems and components. He has a strong background in turbomachinery and has demonstrated competence leading multiple projects. His skills include CAD, CFD, project management and communication. He has achieved reductions in design cycle time and cost through optimization and standardization of processes.
IRJET- Multi Tasking Software for Manufacturing IndustryIRJET Journal
This document discusses developing a multi-tasking software for the manufacturing industry in India. It proposes combining CAD, CAM, and CAE software into a single program to optimize time and improve manufacturing processes. Currently, these design, manufacturing, and analysis programs usually operate separately, but integrating them could increase efficiency. The document provides background on CAD, CAM, and CAE technologies. It suggests such a multi-tasking program could generate CNC and 3D printing programs to control machines. This would help modernize manufacturing in India and make the processes faster and more productive to close the technology gap with countries like China, USA, and Japan.
The document compares traditional product development to concurrent engineering. In traditional development, design engineering completes work before manufacturing begins. Concurrent engineering involves manufacturing early in design. It focuses on design for manufacturing, quality, cost, and life cycle to reduce waste and reworking and get products to market faster. Concurrent engineering maximizes profits through efficiency gains from collaboration across departments.
This document provides an overview of process planning. It discusses the key steps in process planning which include analyzing the finished product, preparing a bill of materials, deciding which parts to manufacture internally and purchase externally, selecting manufacturing processes, determining the sequence of operations, assigning operations to machines, determining tooling and inspection needs, and estimating time and costs. The purpose of process planning is to efficiently manufacture products by determining the best processes and coordinating manufacturing efforts. It aims to establish requirements for equipment procurement and provide a plan for using existing facilities.
The document describes the services provided by Dimensional Management Services, including GD&T and tolerance stack-up analysis, related training, solving quality issues, and applying GD&T to new product development. Key services are conversion of drawings to GD&T standards, tolerance stack-up analysis to optimize tolerances and predict defects, ASME-certified GD&T training, root cause analysis and quality process implementation to ensure consistent quality, and incorporating best practices into new product development.
Prashanth kumar b m 3+ yrs exp in procurementPrashanth Kumar
Prashanth Kumar is seeking a career-oriented opportunity that allows him to utilize his 3+ years of experience in mechanical and IT procurement. He currently works as an Assistant Manager of Commercials & Procurement at Qwikcilver Solutions, where he heads a team of 3 and is responsible for invoice resolution, purchase order processing, negotiating prices, and developing new vendors. Previously, he worked as a Purchase & Procurement Engineer at Ingwenya Mineral Tech, where he handled procurement totaling $2 million and reduced costs on various projects between 4-20%. Prashanth holds a Bachelor's degree in Mechanical Engineering and is proficient in Microsoft Office, Tally ERP 9, and Windows operating systems.
- Vaishnav Mithun N. is a mechanical engineer and certified value engineer seeking career opportunities in value engineering and should costing, preferably with growth-oriented organizations related to new product development.
- He has over 4 years of experience in value engineering and should costing of sheet metal, plastics, and casting parts for gas turbines, aero engines, and oil and gas applications.
- His skills include competitive teardown and benchmarking, design process improvement, should costing, negotiating with suppliers, and applying value analysis/value engineering techniques to reduce product costs.
Divyesh Vaghela is a highly motivated senior mechanical engineer with over 3 years of experience in design, development, analysis, experimentation and testing of pump and turbine systems and components. He has a strong background in turbomachinery and has demonstrated competence leading multiple projects. His skills include CAD, CFD, project management and communication. He has achieved reductions in design cycle time and cost through optimization and standardization of processes.
IRJET- Multi Tasking Software for Manufacturing IndustryIRJET Journal
This document discusses developing a multi-tasking software for the manufacturing industry in India. It proposes combining CAD, CAM, and CAE software into a single program to optimize time and improve manufacturing processes. Currently, these design, manufacturing, and analysis programs usually operate separately, but integrating them could increase efficiency. The document provides background on CAD, CAM, and CAE technologies. It suggests such a multi-tasking program could generate CNC and 3D printing programs to control machines. This would help modernize manufacturing in India and make the processes faster and more productive to close the technology gap with countries like China, USA, and Japan.
The document compares traditional product development to concurrent engineering. In traditional development, design engineering completes work before manufacturing begins. Concurrent engineering involves manufacturing early in design. It focuses on design for manufacturing, quality, cost, and life cycle to reduce waste and reworking and get products to market faster. Concurrent engineering maximizes profits through efficiency gains from collaboration across departments.
This document provides an overview of process planning. It discusses the key steps in process planning which include analyzing the finished product, preparing a bill of materials, deciding which parts to manufacture internally and purchase externally, selecting manufacturing processes, determining the sequence of operations, assigning operations to machines, determining tooling and inspection needs, and estimating time and costs. The purpose of process planning is to efficiently manufacture products by determining the best processes and coordinating manufacturing efforts. It aims to establish requirements for equipment procurement and provide a plan for using existing facilities.
This document discusses Design for Lean (DFL), which is an approach for designing facilities to deliver products or services with minimal waste. It outlines why DFL is needed to avoid issues like excess material handling, long value streams, bottlenecks, and wasted space. The document then provides an overview of BMGI's DFL methodology, which follows a three-step process to design facilities based on customer demand, layout, work station design, process sequencing, lean principles, and more. The goal is to build process excellence into the system from the start.
Michael Scott Hay is seeking a position in engineering, quality, purchasing, or manufacturing. He has over 10 years of experience in aircraft engine repair manuals, OEM development, overseeing welding and other manufacturing processes. He is skilled in AutoCAD, SAP, Excel, and has a bachelor's degree in mechanical engineering. His experience includes process engineering roles at aerospace companies where he created work instructions, analyzed quality issues, and improved on-time delivery.
Astroid Technologies provides engineering services and product development expertise including design, tool manufacturing, model-based definition, and should cost modeling. It aims to deliver pre-determined results defined by customers and become a world-class engineering and manufacturing solutions provider. The company offers services such as press tool design, machine design, legacy data conversion, NC programming, tool manufacturing, design documentation, technical data packages, and should cost modeling to help with make-buy decisions and cost reduction.
Value Engineering is a technique for determining the manufacturing requirements of a
product/service; it is concerned with its evaluation and finally the selection of less costly
conditions. VE is a process for achieving the optimal result in a way that quality, safety, reliability
and convertibility of every monetary unit are improved.
Here theory of Value Engineering along with case study of UTM is presented.
This document discusses concurrent engineering and related concepts like sequential engineering, design for manufacturing (DFM), and design for assembly (DFA). It defines concurrent engineering as handling product design, development, manufacturing equipment/processes, and repair tools simultaneously rather than consecutively. This decreases development time and improves productivity and costs. The document contrasts sequential and concurrent engineering processes. It also outlines the benefits of DFM and DFA, like simpler fabrication/assembly and improved quality. Tools for concurrent engineering include design guidelines, computer-aided design, and failure analysis. The conclusion states that implementing concurrent engineering and DFMA approaches can reduce costs and time to market.
The document presents the portfolio of REDinvent Technologies which includes CAD, CAE and manufacturing solutions. It provides examples of projects involving 2D to 3D conversion, rendering of 3D models, deformation analysis, stress analysis, modal analysis, flow analysis, special purpose machines, material handling and assembly automation. Contact information is provided at the end.
The document summarizes the capabilities of a regional turnkey contract manufacturer. It provides an overview of the company's mission to be a trusted manufacturing partner, details of its facilities, equipment, and processes for board design, prototyping, production, quality assurance, and supply chain management. The company has been in business for over 15 years, employs 300 people across a 68,000 square foot facility, and aims to ensure quality and on-time delivery for its diverse customer base.
Arbortext IsoDraw can help bridge the gap between engineering design and technical publications teams. It allows illustrators to access and manipulate 3D CAD models, enabling them to start work on illustrations and documentation earlier. Any changes to the CAD files will automatically update the illustrations. This improves efficiency by eliminating redundant work and delays, and helps ensure documentation is accurate and up-to-date as product designs evolve. The software's core capabilities support the full illustration process from leveraging 3D data to authoring tools. Using IsoDraw can streamline workflows and time to market.
The document describes a value engineering study conducted on a tap switch control assembly used in distribution transformers. The objectives were to reduce costs, simplify the design, and find alternatives to expensive materials without compromising quality. The team analyzed the functions of each component and identified areas for cost savings. They generated alternative ideas and evaluated the most feasible ones. The recommended design eliminated the brass plug and reduced costs by over 50% per assembly, with estimated annual savings of $96,000. The new design also provided benefits like simplified assembly and fewer components.
Improvement of Process and Product Layout for Metro Coach using Craft Method...IRJET Journal
This document discusses using the CRAFT (Computerized Relative Allocation of Facilities Technique) algorithm to improve the process and product layout of a metro coach manufacturing plant. CRAFT was developed in 1964 to help with computerized facilities design and layout optimization. The methodology involves collecting data on the current layout, material flow, and transportation costs. The CRAFT algorithm is then used to iteratively design a new proposed layout. When compared to the current layout, the new layout designed with CRAFT shows a 21.1% reduction in transportation costs by relocating departments to streamline material flow. In conclusion, using CRAFT for layout optimization can significantly improve productivity and reduce costs.
Anil Kumar Rustagi has over 25 years of experience in strategic sourcing, materials management, and vendor development. He has a proven track record of reducing procurement costs, simplifying processes, and improving supplier performance. Notable achievements include turning around vendor base to enhance production, reducing raw material inventory levels, and bringing down sourcing costs. He is proficient in strategic sourcing, cost analysis, and developing strong supplier relationships.
Value engineering is a systematic approach to reducing costs without compromising functionality. It focuses on identifying unnecessary costs and substituting cheaper alternatives. The value engineering process typically involves gathering information, generating alternatives, evaluating options, and presenting recommendations. Done effectively over several years, value engineering can significantly reduce construction costs for projects and homes, as demonstrated by a case study of a homebuilder that saved over $1 billion through value engineering methods.
Concurrent engineering is a strategy where all product development tasks are done in parallel by collaborating individuals, groups, and departments. It aims to reduce time to market and adapt quickly to changing needs. While implementation is challenging, concurrent engineering provides long-term competitive advantages like removing the need for multiple design reworks.
Compact Design is an industrial design and engineering firm that offers a range of services including 2D and 3D design, prototyping, consulting, and project management. They have over 75 years of combined industry experience across mechanical engineering, industrial design, and leading design technologies. Their benefits to clients include prompt turnaround within 4 business days, advantages over competition through shortened project timelines, and addressing all design needs in a single studio with superior industry knowledge and diligent project management.
The document discusses key aspects of product design and development including typical phases, economic analysis, designing for customers, and measuring performance. It outlines phases like planning, concept development, and testing. It describes using financial models for economic analysis and factors like costs. It also discusses translating customer requirements into engineering goals using a House of Quality matrix and using value analysis to lower costs. Design for manufacturability and measuring performance metrics are also covered.
This document is a curriculum vitae for Nikhil Patil. It includes his contact information, personal details like date of birth and marital status. It outlines his educational qualifications which includes a BE in Mechanical Engineering. It describes his work experience of over 4 years as a Mechanical Design Engineer. It lists his skills like leadership, problem solving, and analytical thinking. His objective is to obtain a challenging career where he can strengthen his skills and add value through commitment and hard work.
Jindal Panther has created a service called Quick Build to address issues in the Indian construction industry like labor shortages, lack of space on sites, and waste. Quick Build provides accurately cut and bent TMT rebar through an automated process, bringing improvements like more reliable supplies, better quality, faster schedules, and improved construction. It aims to enhance services and provide ready-to-use cut and bent rebar to help lower costs and reduce construction time.
This document contains the resume of Mahesh G. Biradar. It summarizes his objective of seeking a challenging position to utilize his skills and experience. It then outlines his core competencies which include over 3 years of experience in manufacturing processes and the metal cutting industry, expertise in machine tool project planning and implementation, and skills in optimization, manufacturing, operations, and maintaining statistical and financial records. It also provides details of his educational qualifications and work experience at Cooper Corporation as an Engineer Machine Shop/Manufacturing Engineer for the past 7 years where he is responsible for coordinating activities between departments to facilitate tool procurement and supervising engineering staff on projects.
IRJET- Study to Reduce Cost Price of Wood Products Manufacturing by Value Eng...IRJET Journal
This document discusses applying value engineering techniques to reduce the cost of manufacturing wood products. It begins by introducing value engineering and its benefits, which include quality management, improving resource efficiency, and lowering costs. The methodology section outlines analyzing the existing costs, estimated costs, and value gaps of product components. The conclusions recommend alternatives that could save 14.87% and 27.44% of costs per product through improvements like reducing waste time and operations. Value engineering is shown to increase production and profits in the wood products industry through regular inspections and continuous improvement.
- Vinay Kumar K has over 6 years of experience in project engineering and planning at Toyota Kirloskar Motors in Bangalore, India.
- He is skilled in vehicle project management, cost estimation, budget management, value analysis, and plant layout management.
- Vinay holds a B.Tech in Mechanical Engineering and has expertise in software like AutoCAD, Oracle EBS, and SMS-BR.
The document discusses a 4-point checklist for qualifying design development using SolidWorks: 1) Design for manufacturing, performance, quality and cost using tools like DFMXpress, Smart Fasteners, TolAnalyst and cost estimation. 2) Automate using Excel, APIs/macros, DriveWorks and task scheduler. 3) Validate using stress analysis, Trend Tracker and deformation/displacement. 4) Warrant designs using fatigue analysis, strength/life simulations and motion analysis. The document promotes SolidWorks solutions from EGS and provides an example customer.
The document discusses common design hurdles for automotive industries such as identifying interference issues, keeping production engineers informed during design stages, difficulty visualizing models and their mechanisms, time spent on tolerance checks and prototyping. It then explains how SOLIDWORKS can help overcome these hurdles by enabling interference detection, incorporating eDrawings for design approval, leveraging motion/animation tools to visualize functionality, using TolAnalyst for tolerance analysis, achieving greater accuracy and optimizing designs through simulation. Benefits of SOLIDWORKS include accelerated assembly, streamlined documentation, improved quality, compressed development cycles and enhanced remote communications.
This document discusses Design for Lean (DFL), which is an approach for designing facilities to deliver products or services with minimal waste. It outlines why DFL is needed to avoid issues like excess material handling, long value streams, bottlenecks, and wasted space. The document then provides an overview of BMGI's DFL methodology, which follows a three-step process to design facilities based on customer demand, layout, work station design, process sequencing, lean principles, and more. The goal is to build process excellence into the system from the start.
Michael Scott Hay is seeking a position in engineering, quality, purchasing, or manufacturing. He has over 10 years of experience in aircraft engine repair manuals, OEM development, overseeing welding and other manufacturing processes. He is skilled in AutoCAD, SAP, Excel, and has a bachelor's degree in mechanical engineering. His experience includes process engineering roles at aerospace companies where he created work instructions, analyzed quality issues, and improved on-time delivery.
Astroid Technologies provides engineering services and product development expertise including design, tool manufacturing, model-based definition, and should cost modeling. It aims to deliver pre-determined results defined by customers and become a world-class engineering and manufacturing solutions provider. The company offers services such as press tool design, machine design, legacy data conversion, NC programming, tool manufacturing, design documentation, technical data packages, and should cost modeling to help with make-buy decisions and cost reduction.
Value Engineering is a technique for determining the manufacturing requirements of a
product/service; it is concerned with its evaluation and finally the selection of less costly
conditions. VE is a process for achieving the optimal result in a way that quality, safety, reliability
and convertibility of every monetary unit are improved.
Here theory of Value Engineering along with case study of UTM is presented.
This document discusses concurrent engineering and related concepts like sequential engineering, design for manufacturing (DFM), and design for assembly (DFA). It defines concurrent engineering as handling product design, development, manufacturing equipment/processes, and repair tools simultaneously rather than consecutively. This decreases development time and improves productivity and costs. The document contrasts sequential and concurrent engineering processes. It also outlines the benefits of DFM and DFA, like simpler fabrication/assembly and improved quality. Tools for concurrent engineering include design guidelines, computer-aided design, and failure analysis. The conclusion states that implementing concurrent engineering and DFMA approaches can reduce costs and time to market.
The document presents the portfolio of REDinvent Technologies which includes CAD, CAE and manufacturing solutions. It provides examples of projects involving 2D to 3D conversion, rendering of 3D models, deformation analysis, stress analysis, modal analysis, flow analysis, special purpose machines, material handling and assembly automation. Contact information is provided at the end.
The document summarizes the capabilities of a regional turnkey contract manufacturer. It provides an overview of the company's mission to be a trusted manufacturing partner, details of its facilities, equipment, and processes for board design, prototyping, production, quality assurance, and supply chain management. The company has been in business for over 15 years, employs 300 people across a 68,000 square foot facility, and aims to ensure quality and on-time delivery for its diverse customer base.
Arbortext IsoDraw can help bridge the gap between engineering design and technical publications teams. It allows illustrators to access and manipulate 3D CAD models, enabling them to start work on illustrations and documentation earlier. Any changes to the CAD files will automatically update the illustrations. This improves efficiency by eliminating redundant work and delays, and helps ensure documentation is accurate and up-to-date as product designs evolve. The software's core capabilities support the full illustration process from leveraging 3D data to authoring tools. Using IsoDraw can streamline workflows and time to market.
The document describes a value engineering study conducted on a tap switch control assembly used in distribution transformers. The objectives were to reduce costs, simplify the design, and find alternatives to expensive materials without compromising quality. The team analyzed the functions of each component and identified areas for cost savings. They generated alternative ideas and evaluated the most feasible ones. The recommended design eliminated the brass plug and reduced costs by over 50% per assembly, with estimated annual savings of $96,000. The new design also provided benefits like simplified assembly and fewer components.
Improvement of Process and Product Layout for Metro Coach using Craft Method...IRJET Journal
This document discusses using the CRAFT (Computerized Relative Allocation of Facilities Technique) algorithm to improve the process and product layout of a metro coach manufacturing plant. CRAFT was developed in 1964 to help with computerized facilities design and layout optimization. The methodology involves collecting data on the current layout, material flow, and transportation costs. The CRAFT algorithm is then used to iteratively design a new proposed layout. When compared to the current layout, the new layout designed with CRAFT shows a 21.1% reduction in transportation costs by relocating departments to streamline material flow. In conclusion, using CRAFT for layout optimization can significantly improve productivity and reduce costs.
Anil Kumar Rustagi has over 25 years of experience in strategic sourcing, materials management, and vendor development. He has a proven track record of reducing procurement costs, simplifying processes, and improving supplier performance. Notable achievements include turning around vendor base to enhance production, reducing raw material inventory levels, and bringing down sourcing costs. He is proficient in strategic sourcing, cost analysis, and developing strong supplier relationships.
Value engineering is a systematic approach to reducing costs without compromising functionality. It focuses on identifying unnecessary costs and substituting cheaper alternatives. The value engineering process typically involves gathering information, generating alternatives, evaluating options, and presenting recommendations. Done effectively over several years, value engineering can significantly reduce construction costs for projects and homes, as demonstrated by a case study of a homebuilder that saved over $1 billion through value engineering methods.
Concurrent engineering is a strategy where all product development tasks are done in parallel by collaborating individuals, groups, and departments. It aims to reduce time to market and adapt quickly to changing needs. While implementation is challenging, concurrent engineering provides long-term competitive advantages like removing the need for multiple design reworks.
Compact Design is an industrial design and engineering firm that offers a range of services including 2D and 3D design, prototyping, consulting, and project management. They have over 75 years of combined industry experience across mechanical engineering, industrial design, and leading design technologies. Their benefits to clients include prompt turnaround within 4 business days, advantages over competition through shortened project timelines, and addressing all design needs in a single studio with superior industry knowledge and diligent project management.
The document discusses key aspects of product design and development including typical phases, economic analysis, designing for customers, and measuring performance. It outlines phases like planning, concept development, and testing. It describes using financial models for economic analysis and factors like costs. It also discusses translating customer requirements into engineering goals using a House of Quality matrix and using value analysis to lower costs. Design for manufacturability and measuring performance metrics are also covered.
This document is a curriculum vitae for Nikhil Patil. It includes his contact information, personal details like date of birth and marital status. It outlines his educational qualifications which includes a BE in Mechanical Engineering. It describes his work experience of over 4 years as a Mechanical Design Engineer. It lists his skills like leadership, problem solving, and analytical thinking. His objective is to obtain a challenging career where he can strengthen his skills and add value through commitment and hard work.
Jindal Panther has created a service called Quick Build to address issues in the Indian construction industry like labor shortages, lack of space on sites, and waste. Quick Build provides accurately cut and bent TMT rebar through an automated process, bringing improvements like more reliable supplies, better quality, faster schedules, and improved construction. It aims to enhance services and provide ready-to-use cut and bent rebar to help lower costs and reduce construction time.
This document contains the resume of Mahesh G. Biradar. It summarizes his objective of seeking a challenging position to utilize his skills and experience. It then outlines his core competencies which include over 3 years of experience in manufacturing processes and the metal cutting industry, expertise in machine tool project planning and implementation, and skills in optimization, manufacturing, operations, and maintaining statistical and financial records. It also provides details of his educational qualifications and work experience at Cooper Corporation as an Engineer Machine Shop/Manufacturing Engineer for the past 7 years where he is responsible for coordinating activities between departments to facilitate tool procurement and supervising engineering staff on projects.
IRJET- Study to Reduce Cost Price of Wood Products Manufacturing by Value Eng...IRJET Journal
This document discusses applying value engineering techniques to reduce the cost of manufacturing wood products. It begins by introducing value engineering and its benefits, which include quality management, improving resource efficiency, and lowering costs. The methodology section outlines analyzing the existing costs, estimated costs, and value gaps of product components. The conclusions recommend alternatives that could save 14.87% and 27.44% of costs per product through improvements like reducing waste time and operations. Value engineering is shown to increase production and profits in the wood products industry through regular inspections and continuous improvement.
- Vinay Kumar K has over 6 years of experience in project engineering and planning at Toyota Kirloskar Motors in Bangalore, India.
- He is skilled in vehicle project management, cost estimation, budget management, value analysis, and plant layout management.
- Vinay holds a B.Tech in Mechanical Engineering and has expertise in software like AutoCAD, Oracle EBS, and SMS-BR.
The document discusses a 4-point checklist for qualifying design development using SolidWorks: 1) Design for manufacturing, performance, quality and cost using tools like DFMXpress, Smart Fasteners, TolAnalyst and cost estimation. 2) Automate using Excel, APIs/macros, DriveWorks and task scheduler. 3) Validate using stress analysis, Trend Tracker and deformation/displacement. 4) Warrant designs using fatigue analysis, strength/life simulations and motion analysis. The document promotes SolidWorks solutions from EGS and provides an example customer.
The document discusses common design hurdles for automotive industries such as identifying interference issues, keeping production engineers informed during design stages, difficulty visualizing models and their mechanisms, time spent on tolerance checks and prototyping. It then explains how SOLIDWORKS can help overcome these hurdles by enabling interference detection, incorporating eDrawings for design approval, leveraging motion/animation tools to visualize functionality, using TolAnalyst for tolerance analysis, achieving greater accuracy and optimizing designs through simulation. Benefits of SOLIDWORKS include accelerated assembly, streamlined documentation, improved quality, compressed development cycles and enhanced remote communications.
Design for Quality using Six Sigma approach, empowers Design engineers to know upfront the assembly build quality, correctness and completeness of drawings and their tolerances of features and provide inspection using Automated Programming with PAS-CMM
Today's fast paced product market has shorter lifecycles and tighter budgetary concerns. Tolerance analysis software provides an ideal solution to reduce the number of crucial steps needed to optimize a product at the design step itself. 3DCS Variation Analyst is the world's most used tolerance analysis software that is fully integrated into NX/ CATIA V5/ Creo and CAD Neutral Multi-CAD. 3DCS Variation Analyst is designed to use a consistent format and set of mathematical formulae that create reliable results, enabling engineers to gain a complete insight into their design. The software empowers design engineers to control variation and optimize their designs to account for inherent process and part variation, which in turn reduces non-conformance, scrap, rework and other associated costs.
3DCS Variation Analyst
Used by the world’s leading manufacturing OEM’s to reduce the cost of quality, 3DCS Variation Analyst comes in two flavours:
1) 3DCS Variation Analyst (NX / CAA V5 or Creo Based) is an integrated solution for NX / CATIA V5 or Creo. Since it is an integrated solution, users can not only activate 3DCS workbenches from within the modelling solution, they can use many of its inbuilt functionality to support their modelling.
3DCS Variation Analyst provides three analysis methods:
Monte Carlo Analysis
High-Low-Mean (Sensitivity Analysis) and
Geofactor Analysis (Relationship)
Ptc creo parametric sub bundles (with lite details explained)Victor Mitov
This document describes several capabilities of PTC Creo Parametric, a 3D CAD modeling software. It discusses augmented reality tools that allow publishing CAD data to AR formats. It also covers multi-CAD collaboration tools for integrating data from other CAD systems and repairing imported geometry. Other areas covered include 2D documentation, 3D annotations for design and manufacturing, part and assembly modeling, sheet metal design, plastic part design, and automation tools.
Creo packaging and solution capabilities presentation (1) za sajta creo_desig...Victor Mitov
This document describes several capabilities of Creo Parametric including augmented reality, multi-CAD collaboration, importing data, 2D detailing, 3D annotations, part and assembly modeling, weld design, freeform design, surfacing, sheetmetal design, plastic part design, design reuse, and assembly management. For each capability, it identifies who would need it and describes the business value, process improvements, and technologies involved.
Creo packaging and solution capabilities presentation (1) za sajta creo desig...Victor Mitov
This document describes several Creo Parametric capabilities including augmented reality, multi-CAD collaboration, import data doctor, 2D detailing, 3D annotations, part and assembly modeling, weld design, freestyle design, surfacing, sheetmetal design, plastic part design, design reuse, assembly management, mechanism design, model animation, additive manufacturing, performance advisor, and eLearning libraries. Each capability is summarized in terms of who needs it, potential business value, process improvements, and key technologies.
Creo packaging and solution capabilities presentation (1) za sajta creo desig...Victor Mitov
This document describes various capabilities of Creo Parametric software including:
1) Augmented reality tools to define, publish and distribute AR experiences from Creo models.
2) Multi-CAD collaboration and consolidation tools to integrate and work with data from other CAD systems.
3) Import data doctor tools to automate repairing and cleaning up imported geometry.
4) Specialized 2D detailing and documentation tools to manage component displays and system performance.
The document summarizes 50 enhancements in SOLIDWORKS 2019, including new tools like slicing tool for sketches, bounding boxes in assemblies, and custom properties in the treehouse. It outlines benefits of each enhancement such as simplifying assemblies using the defeature property manager, improved performance from OpenGL rendering, and exporting CAD files to augmented reality formats. The document encourages attendees to contact the company for any support or feedback on using SOLIDWORKS 2019.
Creo packaging and solution capabilities presentation (1) za sajta creo_desig...Victor Mitov
This document summarizes Creo Parametric capabilities for augmented reality, multi-CAD collaboration, importing and repairing data, 2D documentation, 3D annotations, part and assembly modeling, weld design, freeform surfaces, sheetmetal design, plastic part design, design reuse, and assembly management. It describes who needs each capability and the business value, process improvements, and technologies provided.
PTC offers scalable 3D CAD software packages under their Creo Parametric brand to meet varied engineering design needs. The Essentials Packages provide powerful yet easy to use 3D modeling tools for tasks like part and assembly design, sheet metal design, and rendering. They integrate with PTC's PLM and math software and can be upgraded over time. The packages are available through PTC resellers and range from basic to premium levels, adding capabilities for structural analysis, motion simulation, and other functions.
This document provides an overview of CAD/CAM/CAE. It discusses the need for CAD/CAM/CAE to increase productivity, improve quality and communications, and create manufacturing databases and optimized tool paths. It then defines CAD as using computers to assist in design creation, modification, analysis and optimization. CAM is defined as using computers to plan, manage and control manufacturing operations. Finally, CAE is defined as using computer software to solve engineering problems through improved graphics, workstations and standards. Specific software for each is also identified.
This document discusses computer aided engineering and design (CAD) packages. It defines CAD as computer aided design, which is using computers to create, modify, and analyze digital representations of physical objects. The document outlines the benefits of CAD such as creating conceptual models, viewing objects from different angles, preparing drawings for manufacturing, analyzing designs, storing drawings for future use, and high productivity. It also discusses different CAD software packages that can be used for drafting, modeling, analysis, and computer aided process planning.
Syam Sundar Singh Badugu is an accomplished design manager with over 15 years of experience in design, manufacturing, new product development, and automation. He has expertise in conceptual design, CAD, project management, and leading cross-functional teams. Currently serving as Leader Designate at PARI Limited, he has previously held project lead and design roles at companies like CYIENT Limited and ITW India Limited.
Crane Designer is a software that automates crane design, optimization, and quoting to help crane manufacturers reduce efforts and costs. It can (1) reduce quoting and design time by 60-90% by automating the entire process from initial quote to final drawings and models, (2) optimize designs to reduce weight by 10-30% through thousands of calculations, and (3) improve quality by ensuring accurate weights and compliance with standards.
Crane Design and quote automation , design optimization .ApCADTechnologies
Crane designer is a Crane Design , quote automation and design optimization software .It automates your design process and quotation process nearly 100% .It can also help to optimize the designs by helping you reduce weight and improve the performance of the cranes.
The document provides an overview of career opportunities in engineering design and services. It discusses the engineering design process, types of engineering design including conceptual design, product design, and detailed design. It also outlines the major industries served by engineering design such as automotive, manufacturing, aerospace, and more. Additionally, it lists some of the top engineering design software tools used like SolidWorks, CATIA, Creo, ANSYS, and key skills required for those seeking employment in this field.
Similar to Why buy SolidWorks? 8 reasons to invest in SolidWorks - EGS India (20)
This document discusses how to define a machine for a setup in SolidWorks CAM. It explains that the first step is to enable the SolidWorks CAM add-in. It then describes how to open a part model and select "Define Machine" in the command manager or feature tree to start defining the machine. It also discusses how to customize machine data by launching the Technology Database and either modifying an existing machine or creating a new one by copying an existing one and defining parameters.
The document discusses how to automate multilevel bills of materials for control panels using SolidWorks Electrical. A multilevel bill of materials has a hierarchical structure that illustrates the parent-child relationship between assemblies and their components. SolidWorks Electrical allows designers to automate bill of material creation after designing a control panel schematic or 3D model. This automation eliminates manual errors and enables faster time to market by facilitating reuse of design data and custom product creation.
This document discusses geometric dimensioning and tolerancing (GD&T) and tolerance analysis software. It provides an overview of GD&T standards and practices, who benefits from GD&T, and tolerance analysis software from EGS Computers called DimXpert and TolAnalyst. DimXpert automates dimensioning and tolerancing of 3D models and ensures completeness. TolAnalyst performs tolerance stackup analysis to study the effects of tolerances and assembly methods on dimensional variations.
Communicating about technical product or specialized topics by leveraging of 3D CAD data and by using technology or providing instructions about how to do something.
This document discusses printed circuit board (PCB) design and how it has evolved with technology. It summarizes key features of PCB design software like schematic capture, layout, routing, and collaboration with 3D mechanical design tools. The software aims to improve design efficiency through reduced costs and time to market by integrating electronics and mechanical design, enabling real-time feedback and reducing errors. It also discusses how the software seamlessly connects PCB and 3D mechanical design within SOLIDWORKS for end-to-end product development.
SOLIDWORKS Composer is a powerful tool for preparing Technical Documentation in 2D and 3D graphical content that engage users to make clear product as well as process.
Using an Options file for SOLIDWORKS 3D CAD Inactivity
SNL allows for an options file that will give advanced control
Timeout settings for inactive system
List of options keywords with description
The document discusses Solidworks solutions for valve design offered by EGS Computers India Pvt. Ltd. It outlines various Solidworks capabilities that can help with valve design such as parametric modeling, simulation, analysis tools for thickness, curvature, draft, etc. It also mentions benefits of using Solidworks like reducing costs, time and improving quality and engineering excellence. It provides contact information to learn more about their Solidworks solutions.
SolidWorks allows equations to trigger macros by linking to embedded or external macro files. There are several steps to set this up: create the macro file, embed it in the design binder or link to its external location, create a text file with variable names that match the macro, import this text file to add the equation, and use "SwApp.RunMacro" to reference external macro files from equations on rebuild. This allows macros to automatically execute on each rebuild through equations in part or assembly templates.
This document discusses how SOLIDWORKS can be used to simplify and automate design processes. It describes how Excel files can be used to create product versions and input design parameters. Fillable forms and templates can standardize designs and properties and enable collaboration. BOM information can be automatically generated and updated from the CAD model. Shortcuts, gestures, and scheduling can automate repetitive tasks to reduce design time. The overall benefits highlighted include quicker response times, reduced errors, easier customization, and decreased design and development cycles.
Solidworks introduced the Advance Hole feature in 2017 which allows engineers to create complex multi-diameter holes with counterbores, countersinks, tapers, and straight sections in a single operation. This new feature helps designers customize holes within SolidWorks for manifolds and reduces the need for multiple features and callouts. Designers can position advanced holes using dimensions, sketches, and inference lines and save favorite hole configurations for reuse to improve consistency and save time and money during the manufacturing process.
This document discusses three SolidWorks solutions: E-Drawing, Composer, and Visualize. E-Drawing allows users to view, measure, mark up, and protect 2D and 3D design data from anywhere. Composer helps explain products and processes through illustrations, images, and animations. Visualize improves design reviews and reduces the need for physical prototypes, saving time and costs. It also enables more realistic marketing imagery earlier in the process.
SOLIDWORKS 2017 introduces some great new capabilities that make the design process even more productive. Even the simplest looking design can be visually complex and hard to interpret, due to high amounts of internal detail.
SolidWorks will help Engineers to Design and Validate your product as per the industrial standards and applications. There are some considerations to be done for conducting the best design approach
The document discusses Solidworks Costing, a tool within Solidworks that automates the cost estimation and quotation process for manufacturing parts and assemblies. It allows calculating costs for various manufacturing methods like machining, casting, plastic molding, and 3D printing. Costing templates can be customized and costs are derived based on defined material, stock size, quantity, shop rates, and other inputs. Automated reports of estimated part costs can then be generated.
SOLIDWORKS MBD (Model Based Definition) is a built-in drawingless manufacturing solution for SOLIDWORKS. It helps companies define, organize, and publish 3D Product Manufacturing Information (PMI) in industry standard file formats such as 3D PDF and eDrawings®.
Solution for designers, engineers, marketing, and other content creators
SOLIDWORKS Visualization products help organizations, including nontechnical users, leverage 3D CAD data to create photorealistic marketing content that is print and web ready in minutes.
Focus on Design & Innovation
As EPDM takes care of Data structuring and Process Automation inside an organization.
To Automate the 5 Key process explained in this presentation
contact us: info@egs.co.in
Web: www.egsindia.com | www.egs.co.in
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2. www.egsindia.com
Chennai * Coimbatore * Trichy * India
What do Industries want?
● First Time Right
● Least Cost Designs
● Consistent Product Quality
● Improved Customer Satisfaction
● Value Analysis & Value Engineering
● Shortest possible Product Development Time
● Improved USP for their products
● Increased Profitability
4. www.egsindia.com
Chennai * Coimbatore * Trichy * India
How does SolidWorks address these?
✔ Design for Cost
✔ Design for Manufacture
✔ Design for Quality
✔ Marketing by Design
✔ Productivity in Design
✔ Collaborative Engineering
✔ Design for Performance
✔ Best-in-Class Processes
5. www.egsindia.com
Chennai * Coimbatore * Trichy * India
Design for Cost
● Manufacturing Cost Estimation
● Design Optimization for Cost
● Customized costing inputs
based on company and
regional conditions
● Assess manufacturing cost for
sheet metal and machined
parts in real time with
automatic updates every time
the design is changed
6. www.egsindia.com
Chennai * Coimbatore * Trichy * India
Design for Manufacture
● Compare Design to standardized manufacturing rules
to assess if Design can be produced
● Quickly understand if parts can be easily removed from
mold, cast, or form tooling
● Easily assess if Sheet Metal Parts can be developed
from flat stock
● Drilled hole Milled Feature/ Turned Part checks
● Sheet metal checks—hole diameters vs. available
tooling, hole-to-edge distance, hole spacing, bend radii
● Standard hole size checks—checks hole vs. available
tooling
● Injection molding checks—maximum and minimum wall
checks
7. www.egsindia.com
Chennai * Coimbatore * Trichy * India
Design for Quality
● TolAnalyst is a tolerance analysis
tool used to study the effects
tolerances and assembly methods
have on dimensional stack-up
between two features of an
assembly. The result of each
study is a minimum and maximum
tolerance stack, a minimum and
maximum root sum squared
(RSS) tolerance stack, and a list
of contributing features and
tolerances.
9. www.egsindia.com
Chennai * Coimbatore * Trichy * India
Productivity in Design
● Automated Design
based on Rules
● Drawing Automation for
error-free drawing
development
● Faster Drawing
generation for RFQ
requirements from Sales
● Faster response to
customer requests
10. www.egsindia.com
Chennai * Coimbatore * Trichy * India
Collaborative Engineering
● eDrawings for 2D & 3D
● Easy customer
approval
● Supplier Seamless
Integration
● Inter-operability with
Creo/Pro-Engineer,
SolidEdge, Autodesk
Inventor
11. www.egsindia.com
Chennai * Coimbatore * Trichy * India
Design for Performance
● Estimate Forces
● Determine Factors of
Safety
● Optimize for life
● Value Analysis &
Value Engineering
12. www.egsindia.com
Chennai * Coimbatore * Trichy * India
Best-in-Class Processes
● Incorporate DFMEA with CAD data
● Integrate Microsoft Excel calculations to
drive design dimensions
● Validate Designs for Cost &
Performance
● Ensure consistent Product Quality
● Upfront Engineering for Manufacturing,
Inspection
● Incorporation of Voice of Customer
● Doing it Once, Getting it Right
13. www.egsindia.com
Chennai * Coimbatore * Trichy * India
Answers to Customer Requirements
✔ First Time Right
✔ Least Cost Designs
✔ Consistent Product Quality
✔ Improved Customer Satisfaction
✔ Value Analysis & Value Engineering
✔ Shortest possible Product Development Time
✔ Improved USP for their products
✔ Increased Profitability
14. www.egsindia.com
Chennai * Coimbatore * Trichy * India
Get Started with EGS India TODAY
● We help customers achieve success in
their endeavours
● Assured Support – Many Satisfied
customers since 1993
● Help Indian Manufacturing Industries
achieve Self-Reliance, Higher Profitability
and Compete in Global market with
World-Class Products
● Partner to develop mission-critical
technologies and products
Contact Today: info@egs.co.in