Simulation of the compression test of the Zr1Nb fuel cladding ring

Vojtěch Smolík, Alžběta Endrychová, Jakub Krejčí
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Abstract

Fuel cladding is a first protective barrier against the loss of fission products that must withstand extreme conditions, from normal operation to final and interim dry storage. This hostile environment results in mechanical and microstructural damage of cladding caused by different stress levels, temperature, corrosion, hydrogen pick up and other degradation processes further enhanced by radiation. For this reason, the integrity of the cladding is a critical issue. The aim of this work is to simulate a ring compression test to evaluate the stress-strain behavior and hoop fracture properties of a zirconium-based alloy with niobium, which was chosen because it is widely used as fuel cladding in light water nuclear reactors.
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模拟 Zr1Nb 燃料包层环的压缩试验
燃料包壳是防止裂变产物损失的第一道保护屏障,必须经受从正常运行到最终和临时干储存的极端条件。这种恶劣的环境会导致不同应力水平、温度、腐蚀、氢析出以及辐射进一步加剧的其他降解过程造成包层的机械和微观结构损伤。因此,包层的完整性是一个关键问题。这项工作的目的是模拟环压试验,以评估含铌的锆基合金的应力应变行为和环状断裂特性,之所以选择这种合金,是因为它被广泛用作轻水核反应堆的燃料包壳。
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