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Degradation assessment and life prediction of electro-hydraulic servo valve under erosion wear

机译:腐蚀磨损下电动液压伺服阀的退化评估和寿命预测

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摘要

This paper presents a degradation assessment and life prediction method for electro-hydraulic servo valve (EHSV). Unlike traditional statistical methods, our work is motivated by the failure mechanism of erosion wear. The degradation of performance characteristic was related with structure wear in twin flapper-nozzle valve and spool valve. Mathematic models of turbulent and erosion wear were established by the combined technologies of computational fluid dynamics and erosion theory. By visual simulation, we analyzed the erosion wear distribution and erosion wear rate under different contaminated oil conditions and working missions. Furthermore, degradation models of performance characteristic were built according to degradation trends of system performance under different erosive wear stages. Finally, the assessment results show that: (1) Hydraulic oil with contaminant particles will distinctly erode the sharp edges of valve bushing and spool. Besides, the erosion rate depends on valve structure and port opening size. (2) Wear at sharp edges of spool valve influences pressure gain, null leakage flow and lap. Furthermore, these performance indicators are monotonically degraded. With the definition of failure for the EHSV, the service life is 9000 missions by our simple mission profile.
机译:本文提出了一种电动液压伺服阀(EHSV)的退化评估和寿命预测方法。与传统的统计方法不同,我们的工作是受侵蚀磨损的失效机制驱动的。性能特征的下降与双瓣阀和滑阀的结构磨损有关。利用计算流体动力学和冲蚀理论相结合的技术,建立了湍流和冲蚀磨损的数学模型。通过视觉模拟,我们分析了在不同污染油条件和工作任务下的腐蚀磨损分布和腐蚀磨损率。此外,根据不同侵蚀磨损阶段系统性能的下降趋势,建立了性能特征的退化模型。最后,评估结果表明:(1)带有污染物颗粒的液压油会明显腐蚀阀衬套和阀芯的尖锐边缘。此外,腐蚀速率取决于阀门结构和端口开口尺寸。 (2)滑阀尖锐边缘的磨损会影响压力增益,零泄漏流量和搭接率。此外,这些性能指标单调下降。根据EHSV的故障定义,通过简单的任务配置文件,使用寿命为9000个任务。

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