System Wear Life Estimation Under Uncertainty

Mohammad Pourmostafaei, M. Pourgol-Mohammad, M. Yazdani, Hossein Salimi
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引用次数: 1

Abstract

In this paper, a new model is proposed for system degradation evaluation under sliding wear failure mechanism. This model estimates the material loss by progression of sliding distance. This model is generated by considering physical and geometrical aspects of system under wear mechanism. Several sets of experimental data are used for validation of the presented model. These experimental data are related to pin-on-disc test of Tungsten Carbide pins. These sets of data include initially conformal and non-conformal contacts. One set of data of pin-on-disc test by ASTM-G99 standard is used for additional validation of the model and for investigation of normal load effects on the parameters of presented model. Finally, uncertainty analysis is done by Monte-Carlo simulation to determine the variations of the predicted wear caused material loss.
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不确定条件下系统磨损寿命估算
提出了一种基于滑动磨损失效机制的系统退化评估模型。该模型通过滑动距离的级数来估计材料损失。该模型综合考虑了系统在磨损作用下的物理和几何特性。用几组实验数据对模型进行了验证。这些实验数据与碳化钨销的销盘试验有关。这些数据集包括初始共形接触和非共形接触。采用ASTM-G99标准的一组销盘试验数据对模型进行了进一步验证,并研究了法向载荷对模型参数的影响。最后,通过蒙特卡罗模拟进行不确定性分析,确定预测磨损引起的材料损耗的变化。
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