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Reliability Modeling for Hydraulic Components of Heavy Duty Machine Tools Based on Degradation Path for Oil Contamination

机译:基于油污降解路径的重型机床液压部件可靠性建模

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The failures of heavy-duty machine tool was mainly on the hydraulic system and caused by oil contamination. Aim at the problem, the trend change test of oil contamination have been carried out. After the time domain analysis on test data of oil sample, the dimensional parameters of particle numbers was obtained. Through the analysis by Q-Q plot on dimensional parameters, it can be seen that the degradation data of contaminated particles obey the normal distribution. Hydraulic component was summarized into three categories, pipeline, valve and filter. The blockage of pipeline and valve was studied by the particle number about 5μm. The wear of pipeline and valve was studied by the particle number larger than 15μm. The blockage of filter was studied by particles with the similar filtering accuracy. The threshold of the particle number was set according to the 20/17 level of ISO4406 standard. Reliability models of various components for a single failure mode was established based on the degradation path. The reliability model under multiple failure modes was fused by the former model.
机译:重型机床的故障主要是在液压系统上,并且是由机油污染引起的。针对该问题,已经进行了油污染的趋势变化测试。通过对油样测试数据进行时域分析,得到了颗粒数的尺寸参数。通过对尺寸参数的Q-Q图分析,可以看出污染颗粒的降解数据服从正态分布。液压组件概括为三类,即管道,阀门和过滤器。用约5μm的颗粒数研究了管道和阀门的堵塞情况。通过大于15μm的颗粒数研究了管道和阀门的磨损。用具有相似过滤精度的颗粒研究了过滤器的堵塞情况。根据ISO4406标准的20/17水平设定颗粒数的阈值。基于降级路径,建立了针对单个故障模式的各种组件的可靠性模型。将多种失效模式下的可靠性模型与原模型进行了融合。

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