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Design and Study of Heavy Tipper Multistage Hydraulic Cylinder Based on CAD/CAE

机译:基于CAD / CAE的重型自卸多级液压缸的设计与研究

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The hydraulic cylinder is an actuator of hydraulic lifting system in the heavy tipper, which also plays an important role in unloading. Aiming at the existing multistage hydraulic cylinder design method's insufficiency, the CAD/CAE technology is introduced into the domains of multistage hydraulic cylinder design. In this paper push-forwarding five-stage hydraulic cylinder is designed, and virtual assembly is established based on three-dimensional digital model using PRO/E sofeware. The multistage hydraulic cylinder's load-supporting characteristics are analyzed by ANSYS. The result of finite element analysis shows that the stress on the top front part of three down hydraulic cylinder is biggest, those on the trunnion and the cylinder's bottom are also bigger. It is also proved that the multistage hydraulic cylinder designed with CAD/CAE technology can satisfy the requirements of intensity, rigidity and supporting stability.
机译:液压缸是重型卸车的液压升降系统的致动器,其在卸载中也起着重要作用。针对现有的多级液压缸设计方法的不足,CAD / CAE技术被引入多级液压缸设计的域。在本文中,设计了推进的五级液压缸,并且使用Pro / E Sofeware基于三维数字模型建立虚拟组装。通过ANSYS分析多级液压缸的负载支撑特性。有限元分析的结果表明,三个下部液压缸的顶部前部的应力最大,耳轴上的那些在躯干上,气缸的底部也更大。还证明,设计用CAD / CAE技术设计的多级液压缸可以满足强度,刚性和支撑稳定性的要求。

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