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Titlebook: Design and Development of Metal-Forming Processes and Products Aided by Finite Element Simulation; Ming Wang Fu Book 2017 Springer Interna

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发表于 2025-3-21 16:06:39 | 显示全部楼层 |阅读模式
书目名称Design and Development of Metal-Forming Processes and Products Aided by Finite Element Simulation
编辑Ming Wang Fu
视频videohttp://file.papertrans.cn/269/268552/268552.mp4
概述Presents cutting-edge research on simulation-based metal formed product development.Complements concrete examples with extensive and informative illustrations, tables, and photographs.Provides real-li
丛书名称Engineering Materials and Processes
图书封面Titlebook: Design and Development of Metal-Forming Processes and Products Aided by Finite Element Simulation;  Ming Wang Fu Book 2017 Springer Interna
描述.This book presents state-of-the-art research on forming processes and formed metal product development aided by the Finite Element Method (FEM). Using extensive and informative illustrations, tables and photographs, it systematically presents real-life case studies and established findings regarding various forming processes and methods aided by FEM simulation, and addresses various issues related to metal formed part design, process determination, die design and die service life analysis and prolongation, as well as product quality assurance and improvement...Metal forming has been widely used in many industries. This traditional manufacturing process, however, has long been linked to many years of apprenticeship and skilled craftsmanship, and its conventional design and development paradigm appeared to involve more know-how and trial-and-error than in-depth scientific calculation, analysis and simulation. The design paradigm for forming processes and metal formed product development thus cannot meet the current demands for short development lead-times, low production costs and high product quality. With the advent of numerical simulation technologies, the design and development
出版日期Book 2017
关键词Finite Element Method (FEM); Finite Element Simulation; Integrated Process and Product Development; Met
版次1
doihttps://doi.org/10.1007/978-3-319-46464-0
isbn_softcover978-3-319-83526-6
isbn_ebook978-3-319-46464-0Series ISSN 1619-0181 Series E-ISSN 2365-0761
issn_series 1619-0181
copyrightSpringer International Publishing AG 2017
The information of publication is updating

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https://doi.org/10.1007/978-1-4684-7158-8optimal design with the best parameter configuration. Therefore, the simulation-enabled die design and development paradigm needs to overcome the disadvantages of the traditional die design practice and approaches as they cannot well and accurately predict and evaluate the performance and service li
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Formula Index to NMR Literature Data. For the large-scaled parts made via plastic deformation, ductile fracture often occurs in the process and has been extensively studied with the intended goal of defect-free production. The systematic knowledge in terms of fracture formation mechanism, affecting factor, prediction criterion, classi
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1619-0181 evelopment thus cannot meet the current demands for short development lead-times, low production costs and high product quality. With the advent of numerical simulation technologies, the design and development 978-3-319-83526-6978-3-319-46464-0Series ISSN 1619-0181 Series E-ISSN 2365-0761
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Introduction,uct design and development (PDD) paradigm thus needs to be developed for carrying out these design activities such that the design and development of metal-formed parts via plastic deformation can be realized with shorter design and development lead time, lower production cost, and higher product qu
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Evaluation of Forming System Design,gn solution and conduct design solution evaluation and optimization is a non-trivial issue. In metal-forming product design and development, it is difficult to simultaneously address the design issues related to metal-formed part design, forming process determination, process parameter configuration
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