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An Expanding Plug Test Method for Determining Hoop Stress - Strain Curves of Irradiated Nuclear Fuel Cladding

机译:用于确定辐射核燃料包层箍应力 - 应变曲线的扩展插头试验方法

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A method, referred to as the expanding plug test method, for determining the room-temperature hoop stress - strain curves of irradiated nuclear fuel cladding has been developed and applied to evaluate tensile strength and ductility in the hoop direction of clad material irradiatedto high neutron fluences. The test utilizes an incompressible plug fitted within a tubular cladding specimen. A cylindrical punch is used to compress the plug axially, which generates a radial displacement that acts upon the inner diameter of the specimen. Position sensors track the radial displacement of the specimen outer diameter as the compression proceeds. An auxiliary compression test of the plug alone is also performed. Using these two sets of data, a procedure was developed to determine the hoop stress in the clad specimen. The development of this simple, cost - effective, highly reproducible test method to determine stress-strain curves in the hoop direction of irradiated clad specimens represents a significant advancement in the mechanical characterization of irradiated cladding. This paper will present an overview of the expanding plug testing technique and will discuss tests performed on irradiated clad specimens to date.
机译:已经开发了一种方法,用于确定照射核燃料包层的室温箍应力 - 应变曲线的膨胀插头试验方法的方法,并应用于评价辐射高中中子流量的包层材料箍方向上的拉伸强度和延展性。该测试利用装配在管状包层标本内的不可压缩塞。圆柱形冲头用于轴向压缩插头,这产生了作用在样本的内径上的径向位移。当压缩所需,位置传感器跟踪样品外径的径向位移。还执行单独的插头的辅助压缩测试。使用这两组数据,开发了一种程序以确定包层标本中的箍应力。这种简单,成本效益,高度可重复的测试方法的发展,以确定辐射包层标本箍方向上的应力 - 应变曲线表示辐照包层的机械表征中的显着提高。本文将概述扩展插头测试技术,并将讨论迄今为止对辐照的包层标本进行的测试。

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