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Modeling and Simulation of Hydraulic Hammer for Sleeve Valve
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作者 zishan xu Guoping Yang 《Engineering(科研)》 2016年第9期657-668,共12页
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... 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 to 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. 展开更多
关键词 Sleeve Type MODELING AMESIM Power Bond Graph Test Verification Optimizing
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Dynamic Performance Analysis of Gas-Liquid United Hydraulic Hammer 被引量:3
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作者 zishan xu Guoping Yang +1 位作者 Hanghang Wei Shutao Ni 《Engineering(科研)》 2015年第8期499-505,共7页
In order to improve the impactor performance, the dynamic performance of gas-liquid united hydraulic hammer should be optimized. Based on the analysis of the operating principle for the hydraulic impactor, one simulat... In order to improve the impactor performance, the dynamic performance of gas-liquid united hydraulic hammer should be optimized. Based on the analysis of the operating principle for the hydraulic impactor, one simulation model of gas-liquid united hydraulic impactor was built with AMESim software. By setting different simulation parameters, curves of displacement, velocity, acceleration and cavity pressure were obtained under different working conditions. The key component can be obtained by the analysis of activity index. The whole simulation results provide a reliable basis for component selection and parameter optimization of hydraulic impactor. 展开更多
关键词 Hydraulic IMPACTOR Operating PRINCIPLE AMESIM (Advanced Modeling Environment for SIMULATION Engineering Systems) SIMULATION Activity Index
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