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作 者:章真雄 龙海强 ZHANG Zhen-xiong;LONG Hai-qiang(Suzhou Maikage Automation Equipment Co.,Ltd.,Suzhou 215163,China;Chongqing City Management College,Chongqing 401331,China)
机构地区:[1]苏州迈卡格自动化设备有限公司,江苏苏州215163 [2]重庆城市管理职业学院,重庆401331
出 处:《机械工程与自动化》2024年第5期69-71,77,共4页Mechanical Engineering & Automation
基 金:苏州高新区领军人才项目(SGXW2022-190-06-066);江苏省产学研项目(BY20230874);重庆市教委科技项目(KJQN202303304)。
摘 要:立柱结构是超高堆垛机的核心部件,为提高超高堆垛机立柱刚度、强度等性能指标,应用有限元方法和全尺寸模型验证超高堆垛机立柱结构刚度、强度等性能。针对立柱结构刚度略低于评价目标,开展了截面优化设计和仿真验证。仿真结果表明:使用有限元方法优化截面结构设计和连接方式可以有效提升超高堆垛机立柱结构刚度和强度,同时整机结构减重240 kg,节省了产品成本。The column structure is the core component of the ultra-high stacker.In order to improve the performance indicators such as rigidity,strength and other properties of the ultra-high stacker column,the finite element method and full size model are used to verify the rigidity and strength of the ultra-high stacker column structure.Section optimization design and simulation verification were carried out for the column structural rigidity slightly lower than the evaluation target.The simulation results show that using the finite element method to optimize the cross-section structure design and connection methods can effectively improve the rigidity and strength of the column structure of the ultra-high stacker,and at the same time,the overall structure reduces the weight of the whole machine by 240 kg,saving product costs.
分 类 号:TP391.7[自动化与计算机技术—计算机应用技术]
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