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Modeling and Simulation of Hydraulic Hammer for Sleeve Valve

机译:袖阀液压锤的建模与仿真。

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摘要

Hydraulic hammer is commonly used hydraulic equipment in engineering work. The characteristics, high acceleration, high frequency and inertial working pressure, make it greatly different from the working conditions of conventional hydraulic equipment, while hydraulic hammer for sleeve type is also not the same as other hydraulic hammers in structure, efficiency and working performance. Based on the principle of hydraulic hammer for sleeve type, the mathematical model of hydraulic hammer for sleeve type was set with various conditions in the reciprocating movement of piston. In addition, more detailed sketch model can be easily built with the mathematical model in multi-domain system analysis software, AMESim. The simulation system of breaker built based on the principle of power bond graph structures in AMESim system is considered comprehensively t6 achieve its functions and characteristics, which can quickly realize the calculation of main simulation parameters for impactor. The calculated parameters can be proved to be biased with the test prototype. So these parameters must be optimized by Design Exploration to find the appropriate parameters.
机译:液压锤是工程工作中常用的液压设备。高加速度,高频率和惯性工作压力的特性使其与常规液压设备的工作条件有很大的不同,而套筒式液压锤的结构,效率和工作性能也与其他液压锤不同。根据套筒式液压锤的原理,在活塞往复运动的各种条件下,建立了套筒式液压锤的数学模型。此外,在多领域系统分析软件AMESim中,可以使用数学模型轻松构建更详细的草图模型。充分考虑了AMESim系统中基于功率键合图结构原理构建的断路器仿真系统,达到了其功能和特点,可以快速实现冲击器主要仿真参数的计算。可以证明计算出的参数与测试原型有偏差。因此,必须通过Design Exploration优化这些参数以找到适当的参数。

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