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Cavitation erosion of the damping piston in double damping system of hydraulic rock drill and its influencing factors

机译:水力凿岩机双阻尼系统中阻尼活塞的气蚀作用及其影响因素

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The fast response property of double damping system is beneficial to improve damping characteristics. However, the intense pressure fluctuation in damping chambers often leads to the cavitation erosion of damping piston and seriously affects the normal use of seal and rock drill. The coupling model including the damping piston, damping valve, damping accumulator and connecting pipelines was established considering the structural feature and dynamic characteristics of damping system. The cavitation erosion mechanism was revealed by the simulation results. Analysis suggested that the pipeline damping and oil flow velocity between the primary and secondary damping chamber were the critical influencing factors for the cavitation erosion. The influence on system cavitation of damping valve structure and connecting pipeline types was discussed, and the reasonable range of matching parameters was given. Pressure curves in the primary, secondary damping chamber and noise spectra of cavitation were obtained by the field rock drilling test. The simulation and experimental results had consistency. The system cavitation was detected by the high-frequency pulsating pressure signal and its power spectral density analysis. This detection method provides a new approach for studying the cavitation behavior of hydraulic rock drills.
机译:双阻尼系统的快速响应特性有利于改善阻尼特性。但是,阻尼室中剧烈的压力波动通常会导致阻尼活塞的气蚀,严重影响密封件和凿岩机的正常使用。结合阻尼系统的结构特点和动力特性,建立了包括阻尼活塞,阻尼阀,阻尼蓄能器和连接管路的耦合模型。仿真结果揭示了气蚀的机理。分析表明,主阻尼腔和次阻尼腔之间的管道阻尼和油流速是影响气蚀的关键因素。讨论了阻尼阀结构对系统空化的影响以及连接管路的类型,并给出了合理的匹配参数范围。通过现场凿岩试验获得了第一,第二阻尼腔中的压力曲线和空化噪声谱。仿真和实验结果具有一致性。通过高频脉动压力信号及其功率谱密度分析来检测系统的气穴现象。该检测方法为研究液压凿岩机的空化行为提供了一种新方法。

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