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应用ANSYS Workbench对大断面集成材压机机架的优化设计 被引量:9

Optimization Design of Pressing Machine Frame by ANASYS Workbench Software
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摘要 利用ANSYS Workbench有限元分析软件对大断面集成材压机机架的单个框架进行了静力学分析,以其质量与强度指标为目标,采用ANSYS Gold Driven Optimization模块进行优化设计,旨在研究框架工作过程中的应力、应变分布状态,降低框架生产成本。研究结果表明:优化前,框架存在局部应力集中现象,但最大应力为156.2 MPa,明显小于框架的许用应力196 MPa,强度富余,有进一步优化的空间;水平和垂直方向的最大位移值分别为0.31、0.08mm,刚度可靠。优化后,框架的最大等效应力与最大位移分别为179.8 MPa与0.44 mm,保证框架强度与刚度的前提下,框架的质量降低了26.3%,可显著降低生产成本。 The finite element model for pressing machine frame was created by ANSYS Workbench software. The statics analysis was completed. The gold driven optimization was applied for optimization design processing to reduce the mass of frame.The statics analysis results indicated that some local stress concentration was found in the chamfer position of frame in original design. The maximum stress in the frame was 156.2 MPa,which was lower than permissible stress of the selected material( 196 MPa). The displacement in horizontal and vertical direction were 0.31 mm and 0.08 mm,respectively. It satisfied the stiffness requirements of material. The statics analysis results showed that it was possible to optimize the structure size of frame due to the strength surplus. After optimization,the maximum stress and total displacement were 179.8 MPa and 0.44 mm,respectively. The optimized results could be satisfied the stiffness and strength requirements of frame. The mass of frame reduced by 26.3% compare to the value before optimization.
出处 《东北林业大学学报》 CAS CSCD 北大核心 2017年第12期62-66,共5页 Journal of Northeast Forestry University
基金 国家重点研发计划项目(2017YFD0601104) 中国博士后科学基金项目(2017M610778) 南京林业大学高学历人才启动基金(GXL2016031) "十二五"国家科技支撑计划课题(2012BAD24B01)
关键词 集成材 压机 机架 有限元 优化 Glulam Pressing machine Frame Finite element methodology Optimization
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