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A Proposed Process for Structural Reliability Analysis of Automotive Components

机译:建议的汽车组件结构可靠性分析方法

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In the design of automotive structural components is common scaling of the data for the "worst case", i.e. a condition of the component of least resistance (stress) and maximum load conditions applied (strength). However, in a real situation, it is not possible to determine with absolute certainty these amounts due to the random nature of the parameters involved. Thus, this design should be treated in a probabilistic manner, where the parameters involved could be considered as random variables, and the project could be qualified for a desired condition of reliability. This paper presents a proposed process (flowchart) for performing computational experiments for reliability analysis in automotive structural components regarding stochastic conditions of involved parameters. The process showed itself as able to identify the most adequate method of predicting reliability to solve problems of stress -strength interference in a design of structural automotive component.
机译:在汽车结构组件的设计中是“最坏情况”的常见缩放,即施加最小值(应力)和最大负荷条件的组分的条件(强度)。然而,在真实情况下,由于所涉及的参数的随机性,因此无法确定这些金额。因此,应该以概率的方式对此设计进行处理,其中所涉及的参数可以被视为随机变量,并且该项目可以有资格获得所需的可靠性条件。本文介绍了用于对涉及参数随机条件的汽车结构部件中的可靠性分析进行计算实验的提出的过程(流程图)。该过程表明,该过程能够识别最适当的方法来预测可靠性,以解决结构汽车组分设计中的应力 - 经长干扰问题。

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