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出 处:《机械工程师》2014年第2期61-64,共4页Mechanical Engineer
摘 要:对MM52160龙门导轨磨床的立柱部分进行结构拓扑优化。建立立柱三维模型,对其进行静力学分析和模态分析。在原有模型不改变质量的情况下进行简化模型,结果表明:简化模型比原模型的最大静态位移减小了2.42μm,第一阶固有频率提高了2.85%。对简化模型进行拓扑优化,查看材料分布。对优化后的结构进行动静态刚度分析,分析结果表明:优化后的结构对比原模型后最大静态位移减小了0.81μm,第一阶固有频率提高了3.72%,质量减少了15%。通过结构拓扑优化,优化后的结构动静态刚度提高了,质量减少了。Structural topology optimization of the MM52160 gantry rail grinder column is carried out. Three- dimensional model of the column is built for static analysis and model analysis. The original model is simplified without changing its quality. The results showed that: the maximum static displacement of the simplified model is reduced 2.421xm than the original model, the first order natural frequency is increased by 2.85%. Topology optimization of the simplified model, the material distribution is checked. Dynamic and static stiffness al~ used to analyze the optimized structure, analysis results show that the maximum static displacement of the optimized structure is reduced 0.811xm than the original model, the first order natural frequency is increased 3.72%, tile weight is decreased 15%. Through the structural topology optimization, its dynamic and static stiffness are improved, but the weight is decreased.
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