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SIMPLIFIED APPROACH TO DESIGN OF CRUSHABLE MATERIAL DUE TO DYNAMIC LOAD

机译:由于动态负荷引起的可抵碎材料设计的简化方法

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Crushable material has widely been used as an engineering solution for energy absorption devices among many industries. Abnormal and severe accident loads in the design of nuclear power plants are required to be addressed in order to comply with Nuclear Regulatory Commission (NRC) requirements which makes the crushable material more suitable in its highly dynamic application. One of the severe loads is from a postulated high energy piping system rupture. Its effects are required to be mitigated so that the proper operation of safety related systems, structures and components (SSC) of these facilities is assured. The postulated pipe rupture loads are among the highest loads that need to be addressed in the design process of nuclear power plants. The impact forces produced by the postulated pipe rupture are typically being absorbed by energy absorption devices called "Pipe Whip Restraints " in which the restraints can minimize the loads affecting the SSCs to within an acceptable limit. This paper provides a simplified closed-form solution to determine the energy absorbing characteristic that will help to design these devices. This paper will also provide a comparison between results of the proposed simplified closed-form solution equations to the experimental test results and the calculated results using finite element analysis.
机译:可抵碎材料广泛被用作许多行业中的能量吸收装置的工程解决方案。核电站设计中的异常和严重的事故负载需要解决,以便遵守核监管委员会(NRC)要求,这使得可抵碎材料更适合其高度动态应用。其中一个严重的负荷来自假设的高能管道系统破裂。需要减轻其效果,以确保这些设施的安全相关系统,结构和组件(SSC)的适当操作。假设的管道破裂负荷是在核电厂设计过程中需要解决的最高载荷之一。由假设管道破裂产生的冲击力通常被称为“管鞭束缚”的能量吸收装置吸收,其中限制可以最小化影响SSC的负荷在可接受的极限内。本文提供了一种简化的封闭式解决方案,以确定有助于设计这些设备的能量吸收特性。本文还将提供所提出的简化闭合液溶液方程的结果与实验测试结果的结果和使用有限元分析的计算结果。

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