A Cup Forming Optimization Using a New Method for Stress Equivalent Static Loads

来源 :7th China-Japan-Korea Joint Symposium on Optimization of Str | 被引量 : 0次 | 上传用户:ameiameiiou
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
  An optimization problem is formulated to obtain the desired shape of a forming product.The results of a forming process depend on the shape parameters of the blank shape.Structural optimization has been applied to obtain the desired shape of sheet forming.The equivalent static loads method for non linear static response structural optimization (ESLSO) has been utilized to perform sheet forming optimization since nonlinear dynamic analysis is required in sheet metal forming analysis.In the method, equivalent static loads (ESLs) are defined based on the strains.Strain ESLs are static loads that generate the same displacement as well as strain fields of linear static analysis as those of nonlinear dynamic analysis.In this paper, a new method for stress ESLs is presented using a similar concept of the method to calculate strain ESLs by redefining the value of material properties.That is, ESLs that generate the same displacement as well as stress fields of linear static analysis as those of nonlinear dynamic analysis and the generated ESLs are used in the optimization process.A cup sheet metal forming optimization problem is performed to obtain the desired shape using the stress ESLs.The forming process is analyzed by using the finite element method a commercial system called LS-DYNA is used for the analysis.Nastran is used for optimization.
其他文献
  本报告将介绍国际生物燃料的利用现状及前景;各国生物燃料政策的主要驱动力,以及欧盟、美国、巴西生物燃料政策实施进展及成果;重点介绍美国可再生燃料标准第二阶段实施、欧
会议
  France still rely on its Nuclear energy and presently the total Renewable energy (REN) still very limited in production but actions has been taken following
  结合密码芯片的物理设计和工艺流程,分析、寻找半侵入分析的切入点,为分析者提供有参考意义的模型和分析方法。首先从密码芯片的物理模型开始,简述了从沙子逐步演变到多层结
会议
  本报告主要结合当前国内外密码芯片或安全芯片的发展现状,展望密码芯片发展趋势,针对不同种类的密码芯片的应用场合,重点探讨高性能对称和非对称密码芯片的设计特点,同时还就
会议
会议
会议
会议
  The discrete optimal orientation design of the composite laminate can be treated as a material selection problem dealt with by using the concept of continuo
会议
会议
会议