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Coupled Experimental/Numerical Approach to Determine the Creep Behavior of Zr-4 Cladding Under LOCA Condition

机译:耦合的实验/数值方法确定基因座条件下ZR-4覆层的蠕变行为

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摘要

The thermo-mechanical behavior of Zircaloy-4 fuel rods under Loss-Of-Coolant Accident (LOCA) conditions is investigated. A custom experimental setup is dedicated to the high-temperature creep ballooning study of 90mm long cladding samples. Creep tests were performed under an inert environment (argon), for temperatures from 750 to 850°C and internal pressures ranging from 1 to 5 MPa. As the high-temperature creep of metals is strongly influenced by the temperature, the setup allow for a heterogeneous thermal distribution along the specimen. A unique test provides a rich database about the steady-state creep of the alloy. A first campaign is dedicated to bare Stress Relieved Annealed Zr-4. Creep-rates are computed along a generatrix of the tube using 2-Dimensional Digital Image Correlation (2D-DIC) and are correlated to thermal distribution measurements allowed by Near Infra-Red Thermography (NIRT). As-received Zr-4 behavior laws are determined using Finite Element Model Updating (FEMU). Norton exponents and activation energies are determined for thermal-mechanical conditions of the performed tests.
机译:研究了在冷却剂失去的事故(基因座)条件下锆瓦洛-4燃料棒的热力学行为。定制实验设置专用于90mm长的包层样品的高温蠕变膨松研究。在惰性环境(氩气)下进行蠕变试验,温度为750至850°C,内部压力范围为1至5MPa。随着金属的高温蠕变受到温度的强烈影响,设定允许沿着样品的异质热分布。独特的测试提供了有关合金稳态蠕变的丰富数据库。第一个广告系列致力于裸露的压力缓解退火ZR-4。使用二维数字图像相关(2D-DIC)沿着管的Generatrix计算蠕变率,并且与靠近红外线热成像(NIRT)允许的热分布测量相关。使用有限元模型更新(FEMU)确定AS接收的ZR-4行为定律。确定进行测试测试的热电机械条件的Norton指数和激活能量。

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