Simulation-Based Mechanical Design
暫譯: 基於模擬的機械設計

Le, Xiaobin

  • 出版商: Springer
  • 出版日期: 2024-10-01
  • 售價: $3,860
  • 貴賓價: 9.5$3,667
  • 語言: 英文
  • 頁數: 315
  • 裝訂: Hardcover - also called cloth, retail trade, or trade
  • ISBN: 3031641310
  • ISBN-13: 9783031641312
  • 海外代購書籍(需單獨結帳)

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商品描述

This book establishes a modern practical approach to mechanical design. It introduces a full set of mechanical design theories and approaches to conduct and complete mechanical design tasks. The book uses Finite-Element Analysis (FEA) as a mechanical engineering tool to calculate stress/strain and then integrate it with failure theory to complete the mechanical design. FEA simulation always evaluates the stress and strain of any component/assembly no matter whether components/assemblies have complicated geometries and/or are under complicated loading conditions.

商品描述(中文翻譯)

本書建立了一種現代實用的機械設計方法。它介紹了一整套機械設計理論和方法,以進行和完成機械設計任務。本書使用有限元素分析(Finite-Element Analysis, FEA)作為機械工程工具來計算應力/應變,然後將其與失效理論結合,以完成機械設計。FEA 模擬始終評估任何元件/組件的應力和應變,無論這些元件/組件是否具有複雜的幾何形狀和/或處於複雜的載荷條件下。

作者簡介

Xiaobin Le, Ph.D., P.E., received a BS in Mechanical Engineering in 1982 and an MS in Mechanical Engineering in 1987 from Jiangxi University of Science and Technology, Ganzhou, Jiangxi. He received his first Ph.D. in Mechanical Design of Mechanical Engineering from Shanghai Jiao Tong University, Shanghai, in 1993, and his second Ph.D. in Solid Mechanics of Mechanical Engineering from Texas Tech University, Lubbock, Texas, in 2002. He is currently a professor in the Mechanical Engineering Department at Wentworth Institute of Technology, Boston, Massachusetts. His teaching and research interests are Computer-Aided Design, Mechanical Design, Finite Element Analysis, Fatigue Design, Solid Mechanics, Engineering Reliability, and Engineering Education Research.

作者簡介(中文翻譯)

樂小彬,博士,專業工程師,於1982年獲得江西科技大學(江西贛州)機械工程學士學位,並於1987年獲得該校機械工程碩士學位。他於1993年在上海交通大學獲得機械工程機械設計的第一個博士學位,並於2002年在德克薩斯科技大學(德克薩斯州拉伯克)獲得機械工程固體力學的第二個博士學位。目前,他是位於麻薩諸塞州波士頓的溫特沃斯科技學院機械工程系的教授。他的教學和研究興趣包括電腦輔助設計、機械設計、有限元素分析、疲勞設計、固體力學、工程可靠性以及工程教育研究。