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Stress analysis and Design Optimization of Piston Slipper assembly in an Axial Piston Pump

机译:轴向柱塞泵活塞滑块总成的应力分析与设计优化

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摘要

The amount of research carried out on piston assemblies of axial piston pump is a good indication of the problems which have been encountered. Fortunately this is one branch of engineering where research is usually well ahead of production failures. A representative domain for the high development of the axial piston pumps manufacturing is the aeronautics. In this industrial branch, light hydraulic transmissions that operate in very safe conditions are required. The mass reduction must be done according to an optimal design of the machines geometry, taking into account the static and dynamic stress and deflection states of the mechanical components. In this paper, a steady state stress analysis and also an optimization of the piston slipper assembly has been carried out by using ANSYS software. Optimization is done using Sub-problem approximation method where the main objective is to minimize the volume of the piston and slipper. Dimensions of the assembly are taken from SPV 22 axial piston pump, made by ZTS Company. This optimization technique minimizes the volume of the piston and also slipper. The paper concludes with the Comparison of the piston and slipper dimensions before and after optimization.
机译:对轴向柱塞泵活塞组件进行的大量研究很好地表明了所遇到的问题。幸运的是,这是工程学的一个分支,研究通常比生产失败要早得多。轴向柱塞泵制造的高度发展的代表领域是航空。在这个工业分支中,需要在非常安全的条件下运行的轻型液压变速器。必须根据机器几何形状的最佳设计来实现质量降低,同时考虑机械部件的静态和动态应力以及挠曲状态。在本文中,已经使用ANSYS软件进行了稳态应力分析以及活塞滑块组件的优化。使用子问题逼近方法进行优化,其主要目的是最小化活塞和滑块的体积。组件的尺寸取自ZTS公司制造的SPV 22轴向柱塞泵。这种优化技术可最大程度地减少活塞和滑套的体积。本文以优化前后活塞和滑块尺寸的比较作为结束。

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