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Optimal Design of Rotary Tool based on ANSYS Workbench

Optimal Design of Rotary Tool based on ANSYS Workbench
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摘要 Rotary tool of garbage crusher is the key component of the whole mechanism, which is of vital importance to tool design and analysis. Based on ANSYS Workbench 3D modeling, we carried on finite element analysis to tool, and used the method of goal driven optimization to optimize the rotary tool. The optimization proves that the optimized maximum equivalent stress is 544.14 MPa, the quality is less, and the optimized rotary tool size is more reasonable. So it provided reasonable and scientific reference frame to the structural design of rotary tool. Rotary tool of garbage crusher is the key component of the whole mechanism, which is of vital importance to tool design and analysis. Based on ANSYS Workbench 3D modeling, we carried on finite element analysis to tool, and used the method of goal driven optimization to optimize the rotary tool. The optimization proves that the optimized maximum equivalent stress is 544.14 MPa, the quality is less, and the optimized rotary tool size is more reasonable. So it provided reasonable and scientific reference frame to the structural design of rotary tool.
出处 《International Journal of Plant Engineering and Management》 2017年第1期59-64,共6页 国际设备工程与管理(英文版)
关键词 ANSYS Workbench 3D entity model finite element modal analysis static analysis optimal design rotary tool ANSYS Workbench 3D entity model finite element modal analysis static analysis optimal design rotary tool
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