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基于最小损伤值的齿轮毛坯锻造成形过程工艺参数优化设计
引用本文:陈学文,王进,陈军,阮雪榆. 基于最小损伤值的齿轮毛坯锻造成形过程工艺参数优化设计[J]. 上海交通大学学报, 2005, 39(7): 1070-1072
作者姓名:陈学文  王进  陈军  阮雪榆
作者单位:上海交通大学,模具CAD国家工程研究中心,上海,200030;上海交通大学,模具CAD国家工程研究中心,上海,200030;上海交通大学,模具CAD国家工程研究中心,上海,200030;上海交通大学,模具CAD国家工程研究中心,上海,200030
摘    要:介绍了材料损伤的基本原理以及Cockroft-Latham损伤模型,提出了一种基于简约下降梯度法的锻造成形工艺优化方法.设计过程中,采用有限元分析技术与优化技术相结合的方法优化变形工艺参数,使得工件内部损伤值最小.用锻件(除去飞边部分)所有单元的最大损伤值为衡量锻件变形损伤的指标,以零件毛坯的初始高径比为设计变量,建立了优化设计的数学模型.应用该方法对齿轮毛坯非等温热锻成形工艺参数进行优化,取得了良好的效果.

关 键 词:锻造  损伤  数值模拟  工艺参数  设计优化
文章编号:1006-2467(2005)07-1070-03
收稿时间:2004-06-15
修稿时间:2004-06-15

The Technological Parameter Optimization of Gear Billet Hot Forging Process with Damage Minimization
CHEN Xue-wen,WANG Jin,CHEN Jun,RUAN Xue-yu. The Technological Parameter Optimization of Gear Billet Hot Forging Process with Damage Minimization[J]. Journal of Shanghai Jiaotong University, 2005, 39(7): 1070-1072
Authors:CHEN Xue-wen  WANG Jin  CHEN Jun  RUAN Xue-yu
Abstract:The principle of material damage and the Cockroft-Latham damage model were introduced. A method of forging process design optimization was proposed based on a generalized reduced gradient. In order to minimize the damage in the billet during forging process, the finite element analysis technique is adopted to verify the design and calculate the objective function. The mathematical design optimization model was established, the objective is the max damage of all elements in net forging and the design parameter is the initial H/D ratio of billet. Finally, the case study was conducted for a gear billet nonisothermal hot forging process. The optimal initial H/D ratio of the billet was obtained.
Keywords:forging   damage    numerical simulation    technological parameter    design optimization
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