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基于OptiStruct的闭式压力机组合机身的拓扑优化
英文标题:Topology optimization on combined frame of straight side press based on OptiStruct
作者:于涛 刘秀杰 孔令赞 范欣 燕玉虎 郭涛 
单位:山东科技大学 
关键词:压力机 组合机身 OptiStruct 变密度法 拓扑优化 
分类号:TG315.5
出版年,卷(期):页码:2017,42(8):83-87
摘要:
通过拓扑优化寻找机身材料的合理布置,以闭式压力机组合机身为研究对象,利用SolidWorks建立机身的三维模型,然后导入到HyperMesh中,建立有限元分析模型。采用变密度法,以静力学分析为基础,定义材料的密度为设计变量,设置不同的约束条件和目标函数,通过OptiStruct求解器对机身进行拓扑优化。通过对比两种方案的优化结果,改进机身的结构,并对优化后的模型进行静力学和模态分析,验证了优化后的压力机机身符合实际使用要求。优化后压力机机身重量减少7.6%,实现了机身的轻量化,节约了成本,提高了企业的竞争力。
A reasonable layout of the fuselage material was found by the topology optimization. Then, for the combined frame of straight side press, its three-dimensional model was established by SolidWorks, and the finite element analysis model was built by HyperMesh. Based on the variable density method and the static analysis, the density of material was defined as the design variable, the topology optimization of fuselage was carried out by OptiStruct solver under different setting constraints and objective functions. Comparing with the optimization results of two schemes, the structure of fuselage was improved, and the optimized model was analyzed by static and modal analysis. Finally, it is verified that the optimized press body meets the requirements of actual use. The weight of press frame decreases by 7.6% to achieve the lightweight body, save costs and improve the competitiveness of enterprises after optimizing. 
 
基金项目:
中国煤炭工业协会科技指导性计划项目(MTKJ 2012-344)
作者简介:
于涛(1972-),男,博士,副教授 刘秀杰(1989-),女,硕士研究生
参考文献:


[1]张皓, 贾方, 王兴松. 闭式压力机组合机身的有限元分析[J].锻压装备与制造技术, 2006, 41(4):32-35.Zhang H, Jia F, Wang X S. FE analysis of combined frame of straight side press[J].China Metalforming Equipment & Manufacturing Technology, 2006, 41(4):32-35.
[2]刘运玺. HD-200高速压力机工作机构的动力学仿真及其机身结构优化[D]. 济南:山东大学, 2013.Liu Y X. Dynamics Simulation of the Operating Mechanism and Structure Optimization of the Frame of the HD-200 High-speed Press [D]. Ji′nan: Shandong University, 2013.
[3]钱抗抗. JG21-250A型压力机机身的有限元分析及其优化设计[D]. 青岛:山东科技大学, 2008.Qian K K. FEM Analysis and Optimum Design for Frame of JG21-250A Press[D]. Qingdao:Shandong University of Science and Technology, 2008.
[4]Korta J, Raniolo R, Danti M, et al. Multi-objective optimization of a car body structure [J]. SAE International Journal of Passenger Cars- Mechanical Systems, 2012, 5(3):1143-1152.
[5]Xu X, Wang L, Liu G, et al. Optimal design of dual derricks[J]. International Journal of Modelling Identification & Control, 2012, 17(1):61-67.
[6]黄志超, 程雯玉, 占金青,等. 基于目标驱动优化技术的自冲铆接机C型框架结构优化[J]. 锻压技术, 2013, 38(5):104-109.Huang Z C, Cheng W Y, Zhan J Q, et al. Structure optimization of C-frame self-piercing riveting machine using goal driven optimization [J]. Forging & Stamping Technology, 2013, 38(5):104-109.
[7]张德恒,鹿晓阳. 结构拓扑优化设计的理论与方法[J]. 化学工程与装备,2011,(1):155-158.Zhang D H, Lu X Y. The theory and method of structural topology optimization design [J].Chemical Engineering & Equipment, 2011,(1):155-158.
[8]朱剑峰, 林逸, 陈潇凯,等. 汽车变速箱壳体结构拓扑优化设计[J]. 吉林大学学报:工学版, 2013, 43(3):584-589.Zhu J F, Lin Y, Chen X K, et al. Structural topology optimization based design of automotive transmission housing structure[J]. Journal of Jilin University:Engineering and Technology Edition, 2013, 43(3):584-589.
[9]侯伟. 半挂车车架的拓扑优化设计与研究[D].天津:河北工业大学,2011.Hou W. Topology Optimization of Semi-trailer Frame Design and Research[D]. Tianjin:Hebei University of Technology, 2011.
[10]徐晶, 刘基冈, 张懿骅,等. 基于Hypermesh的液压机机身结构优化设计[J]. 锻压技术, 2015, 40(11):48-52.Xu J, Liu J G, Zhang Y H, et al. Structure optimization design of hydraulic press body based on hypermesh [J]. Forging & Stamping Technology, 2015, 40(11):48-52.

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