By Tom Drozda, Ramon Bakerjian, Charles Wick, John T. Benedict, Raymond F. Veilleux, Society of Manufacturing Engineers
Addresses very important issues of DFM, together with the way it pertains to Concurrent Engineering, administration matters, getting all started in DFM, find out how to justify utilizing DFM, making use of caliber instruments and the way DFM is affecting desktop expertise (and vice versa). Covers issues beginning with the artistic pondering procedure, to combining DFM with geometrical dimensioned tolerancing. additionally contains product layout info that designers should still recognize whilst committing pen to paper or mouse to mat
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Extra resources for Design for manufacturability
Use of computer-aided engineering (CAE) analysis and simulation tools at an early stage in the design can improve product reliability more inexpensively and in a shorter time than building and testing physical prototypes. Tools such as finite element analysis (FEA), fluid flow, thermal analysis, and integrated reliability prediction models are becoming more widely used, more user friendly, and less expensive. Taguchi quality engineering techniques can provide a structured, pro-active approach to improving reliability and robustness as compared to unstructured, reactive design/build/test approaches.
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2-2. CHAPTER CONTENTS: Design for Manufacturability 2-1 Design for Quality 2-5 Design for the Life Cycle 2-9 Design for cost 2-10 Enabling Technology 2-12 Concurrent Engineering and the Organization 2-15 Improving the Development Process 2-17 Summary 2-18 DESIGN FOR MANUFACTURABILITY A key concept of concurrent engineering is the design of a producible product that can be costeffectively manufactured within the enterprise’s production processes. The application of design for manufacturability/assembleability (DFIWA) principles and tools facilitates the development of a producible product.