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Reliability Analysis over I-Section of Beam due to Uniform Distribution of Load

机译:由于负载均匀分布,光束I段的可靠性分析

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The failure of a system depends on many parameters, such as complexity, time, design, reliability of components, and operating conditions. If failure depends on the stress of a component, such reliability models are called stress dependent models. There are many types of stresses that occur in the body, like tensile, compressive, shear, and bending. Shear stress develops in a body when a pair of opposite forces act across the section tangentially. A reliability analysis over the I-section of a beam due to a uniformly distributed load has been conducted by finding the shear stress in the web and flange of the I-section. It is obtained that the maximum stress occurred at the neutral axis of the section and zero stress at the top of the section. In this article, the failure rate is considered to follow a Weibull distribution. The reliability is derived for constant, linear, and non-linear failure rates and is computed for various parameters. It is observed from the computations that reliability decreases as the load and overall depth of the section increase. It also increases as the thickness and depth of the web increase.
机译:系统的故障取决于许多参数,例如复杂性,时间,设计,组件的可靠性以及操作条件。如果故障取决于组件的应力,则这种可靠性模型称为应力依赖模型。身体中存在许多类型的应力,如拉伸,压缩,剪切和弯曲。当一对相反的力在切向上行动时,剪切应力在身体中发育。通过在I-截面的幅材和法兰中找到剪切应力,通过了由于均匀分布的负载引起的光束I段的可靠性分析。获得的是,在该部分顶部的截面的中性轴和零应力处发生在截面上的最大应力。在本文中,将考虑失败率以遵循Weibull分布。可靠性导出用于恒定,线性和非线性故障率,并且用于各种参数计算。从计算中观察到可靠性随着截面的负载和整体深度增加而降低。它也随着腹板的厚度和深度增加而增加。

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