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A PRACTICAL SAFETY FACTOR METHOD FOR RELIABILITY-BASED COMPONENT DESIGN

机译:基于可靠性的组件设计的实用安全因子方法

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摘要

Reliability-based design (RBD) identifies design variables that maintain reliability at a required level. For many routine component design jobs, RBD may not be practical as it requires nonlinear optimization and specific reliability methods, especially for those design jobs which are performed manually or with a spreadsheet. This work develops a practical approach to reliability-based component design so that the reliability target can be achieved by conducting traditional component design repeatedly using a deterministic safety factor. The new component design is based on the First Order Reliability Method, which iteratively assigns the safety factor during the design process until the reliability requirement is satisfied. In addition to a number of iterations of deterministic component design, the other additional work is the calculation of the derivatives of the design margin with respect to the random input variables. The proposed method can be used for a wide range of component design applications. For example, if a deterministic component design is performed manually or with a spreadsheet, so it the reliability-based component design. Three examples are used to demonstrate the practicality of the new design method.
机译:基于可靠性的设计(RBD)标识了在所需级别保持可靠性的设计变量。对于许多例程组件设计作业,RBD可能并不实用,因为它需要非线性优化和特定的可靠性方法,尤其适用于手动或使用电子表格执行的那些设计作业。这项工作开发了基于可靠性的组件设计的实用方法,使得可以通过使用确定性安全系数反复进行传统的组件设计来实现可靠性目标。新的组件设计基于第一阶可靠性方法,它迭代地分配设计过程中的安全系数,直到满足可靠性要求。除了确定性组件设计的许多迭代之外,其他附加工作是计算关于随机输入变量的设计边缘的衍生物。该方法可用于各种组件设计应用。例如,如果手动或使用电子表格执行确定性组件设计,因此它是基于可靠性的组件设计。三个例子用于证明新设计方法的实用性。

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