随机冲击下非线性可恢复产品退化可靠性建模

Li Min, Wang Zhihua, Ren Jie, Wu Bo
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引用次数: 0

摘要

大量退化设备在长期运行中,经冲击载荷后非线性恢复,使整体退化变得复杂。然而,现有的模型不能很好地描述总退化,这将进一步阻碍准确的寿命预测。针对非线性恢复现象的非线性特性、可恢复程度和恢复周期等特点,构建了退化可靠性模型来描述由具有非线性恢复规律和连续退化的冲击损伤组成的整体退化过程。然后提出了一种极大似然参数估计方法。最后,通过半导体激光二极管的数值算例验证了所提模型的合理性和有效性。结果表明,为了获得精确的可靠性分析和寿命预测结果,在全退化建模中必须引入非线性恢复过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Degradation Reliability Modeling for Nonlinearly Recoverable Products Under Random Shock
A significant of degradation equipment nonlinearly recovers after shock loads in long-term operation, making the total degradation complicated. However, the total degradation cannot be appropriately described by exiting models, which will further obstruct accurate life prediction. In view of the features of nonlinear recovery phenomenon including the nonlinear character, recoverable level and recovery period, this paper constructs a degradation reliability model to depict the total degradation process composed of shock damages with nonlinear recovery regularity and continuous degradation. Then a maximum likelihood parameter estimation method is presented. Finally, the reasonability and effectiveness of the proposed model are verified by the numerical example of semiconductor laser diodes. The results demonstrate the necessity of nonlinear recovery process in the total degradation modeling to obtain precise reliability analysis and life prediction consequences.
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