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Analysis and optimization of the working parameters of the impact mechanism of hydraulic rock drill based on a numerical simulation

机译:基于数值模拟的液压岩钻冲击机理工作参数的分析与优化

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摘要

An impact system is the core part of the hydraulic rock drill. The dynamic simulation model of the hydraulic impact system is established based on the system simulation platform AMEsim. We used the AMEsim simulation model to verify the displacement, velocity curves of the piston, and valve by using stress wave testing data. The following key features of the impact system are determined: the characteristic curves of the pressure variations in the piston chambers, the influences of oil flow, the charging pressures of the high-pressure accumulator, the pre-setting pressure of the relief valve on impact performance, and impact efficiency. On the basis of orthogonal experiments, a response surface method is used to build a mathematical model of the impact system with efficient and various working parameters. The impact system with an optimal efficiency is designed, and the working parameters are optimized. Our proposed system efficiency increases by 17.7% after the working parameters are optimized. This study provides a theoretical basis for the design and optimization of the impact system parameters of the hydraulic rock drill with a sleeve valve.
机译:冲击系统是液压岩钻的芯部。基于系统仿真平台Amesim建立了液压冲击系统的动态仿真模型。我们使用Amesim仿真模型来验证活塞的位移,速度曲线,以及使用应力波测试数据。确定的冲击系统的关键特征:活塞室的压力变化的特性曲线,油流量的影响,高压蓄能器的充电压力,浮雕阀的预先设定压力冲击性能和影响效率。在正交实验的基础上,使用响应面方法来构建具有有效和各种工作参数的冲击系统的数学模型。设计具有最佳效率的冲击系统,并优化工作参数。优化工作参数后,我们所提出的系统效率增加了17.7%。本研究为使用套筒阀的液压凿岩钻的冲击系统参数的设计和优化提供了理论依据。

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