李丹, 边建朝. 矿用无轨胶轮车失速保护系统受力部件静力分析及优化设计[J]. 煤矿安全, 2017, 48(12): 120-122,126.
    引用本文: 李丹, 边建朝. 矿用无轨胶轮车失速保护系统受力部件静力分析及优化设计[J]. 煤矿安全, 2017, 48(12): 120-122,126.
    LI Dan, BIAN Jianchao. Static Structural Analysis and Optimized Design on Stressed-part of Stall Protection System for Mine Trackless Rubber-tired Vehicle[J]. Safety in Coal Mines, 2017, 48(12): 120-122,126.
    Citation: LI Dan, BIAN Jianchao. Static Structural Analysis and Optimized Design on Stressed-part of Stall Protection System for Mine Trackless Rubber-tired Vehicle[J]. Safety in Coal Mines, 2017, 48(12): 120-122,126.

    矿用无轨胶轮车失速保护系统受力部件静力分析及优化设计

    Static Structural Analysis and Optimized Design on Stressed-part of Stall Protection System for Mine Trackless Rubber-tired Vehicle

    • 摘要: 介绍了一种矿用无轨胶轮车失速保护系统,采用ANSYS Workbench对其主要受力部件进行有限元分析,得出在静载下结构的整体变形与应力分布,根据结果进行了优化设计;进行静加载试验及实际制动试验验证了有限元模拟的准确性,同时也分析了造成试验结果有差异的原因。

       

      Abstract: A new stall protection system for mine trackless rubber-tired vehicle is introduced. Finite element analysis of the main stressed-part of stall protection system is calculated by ANSYS Workbench, we obtained the whole deformation and stress distribution. According to the results, main structure design is optimized. Static load test and actual braking tests are performed, which verifies the accuracy of finite element simulation. The cause of difference between the test results and the facts is analyzed.

       

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