首页> 外文会议>ASME international mechanical engineering congress and exposition >OPTIMIZING THE TOPOLOGIES OF COMPLIANT MECHANISMS USING THE IMPROVED MODIFIED QUADRILATERAL DISCRETIZATION MODEL
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OPTIMIZING THE TOPOLOGIES OF COMPLIANT MECHANISMS USING THE IMPROVED MODIFIED QUADRILATERAL DISCRETIZATION MODEL

机译:改进的改进的四边形离散模型优化相容机制的拓扑

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The improved modified quadrilateral discretization model for the topology optimization of compliant mechanisms is introduced in this paper. The design domain is discretized into quadrilateral design cells and each quadrilateral design cell is further subdivided into 16 triangular analysis cells. All kinds of dangling full and half quadrilateral design cells and sharp-corner triangular analysis cells are removed in the improved modified quadrilateral discretization model to enhance the material utilization. Every quadrilateral design cell or triangular analysis cell is either solid or void to implement the discrete topology optimization and eradicate topology uncertainty caused by intermediate material states. The local stress constraint is directly imposed on each triangular analysis cell to make the synthesized compliant mechanism safe. The binary bit-array genetic algorithm is used to search for the optimal topology to circumvent the geometrical bias against the vertical design cells. Two topology optimization examples of compliant mechanisms are solved based on the proposed improved modified quadrilateral discretization model to verify its effectiveness.
机译:介绍了一种改进的改进的四边形离散化模型,用于顺应性机构的拓扑优化。设计域离散为四边形设计单元,每个四边形设计单元进一步细分为16个三角形分析单元。在改进的改进的四边形离散化模型中,删除了各种悬空的四边形半角四边形设计单元和尖角三角形分析单元,以提高材料利用率。每个四边形设计单元或三角形分析单元都是实心的或空的,以实现离散的拓扑优化并消除由中间材料状态引起的拓扑不确定性。局部应力约束直接施加在每个三角形分析单元上,以使合成的柔顺机构安全。二进制位阵列遗传算法用于搜索最佳拓扑,以规避针对垂直设计单元的几何偏差。基于提出的改进的改进的四边形离散化模型,解决了顺应性机制的两个拓扑优化示例,以验证其有效性。

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