1996Chapman & Hall eBooksRequires access

Design for X : concurrent engineering imperatives

Guo Quan Huang

Open publisher page 204 citations

Abstract

One Dfx Experience.- 1. Design for Manufacture and Assembly: The B & D Experience.- 2. Case Experience with Design for Assembly Methods.- 3. Applying DFX Experience in Design for Environment.- 4. Design for Competition: The Swedish DFX Experience.- 5. Developing DFX Tools.- 6. Implementing DFX Tools.- Two Design For Life Cycle.- 7. GRAI Approach to Product Development.- 8. Design for Dimensional Control.- 9. Design for Assembly Cost for Printed Circuit Boards.- 10. Design for Inspectability.- 11. Design for Effective Material Storage and Distribution.- 12. Design for Reliability.- 13. Design for Electromagnetic Compatibility.- 14. Design for Serviceability.- 15. Ease-of-Disassembley Evaluation in Design for Recycling.- Three Design For Competitiveness.- 16. Design for Quality.- 17. Design for Modularity.- 18. Design for Optimal Environmental Impact.- 19. Design for the Life Cycle: Activity Based Costing and Uncertainty.- Four Tradeoff And Integration.- 20. Design Optimisation for Product Life Cycle.- 21. A Meta-Methodology for the Application of DFX Guidelines.- 22. Design for Technical Merit.

About this research paper

What this paper is about

One Dfx Experience.- 1. Design for Manufacture and Assembly: The B & D Experience.- 2. Case Experience with Design for Assembly Methods.- 3. Applying DFX Experience in Design for Environment.- 4. Design for Competition: The Swedish DFX Experience.- 5. Developing DFX Tools.- 6. Implementing DFX Tools.- Two Design For Life Cycle.- 7. GRAI Approach to Product Development.- 8. Design for Dimensional Control.- 9. Design for Assembly Cost for Printed Circuit Boards.- 10. Design for Inspectability.- 11. Design for Effective Material Storage and Distribution.- 12. Design for Reliability.- 13. Design for Electromagnetic Compatibility.- 14. Design for Serviceability.- 15. Ease-of-Disassembley Evaluation in Design for Recycling.- Three Design For Competitiveness.- 16. Design for Quality.- 17. Design for Modularity.- 18. Design for Optimal Environmental Impact.- 19. Design for the Life Cycle: Activity Based Costing and Uncertainty.- Four Tradeoff And Integration.- 20. Design Optimisation for Product Life Cycle.- 21. A Meta-Methodology for the Application of DFX Guidelines.- 22. Design for Technical Merit.

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Available abstract

One Dfx Experience.- 1. Design for Manufacture and Assembly: The B & D Experience.- 2. Case Experience with Design for Assembly Methods.- 3. Applying DFX Experience in Design for Environment.- 4. Design for Competition: The Swedish DFX Experience.- 5. Developing DFX Tools.- 6. Implementing DFX Tools.- Two Design For Life Cycle.- 7. GRAI Approach to Product Development.- 8. Design for Dimensional Control.- 9. Design for Assembly Cost for Printed Circuit Boards.- 10. Design for Inspectability.- 11. Design for Effective Material Storage and Distribution.- 12. Design for Reliability.- 13. Design for Electromagnetic Compatibility.- 14. Design for Serviceability.- 15. Ease-of-Disassembley Evaluation in Design for Recycling.- Three Design For Competitiveness.- 16. Design for Quality.- 17. Design for Modularity.- 18. Design for Optimal Environmental Impact.- 19. Design for the Life Cycle: Activity Based Costing and Uncertainty.- Four Tradeoff And Integration.- 20. Design Optimisation for Product Life Cycle.- 21. A Meta-Methodology for the Application of DFX Guidelines.- 22. Design for Technical Merit.

Key concepts: Design for X, Design technology, Product design, Probabilistic design, Computer-automated design, Engineering, Reliability engineering, Systems engineering

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