首页> 外文会议>2003 TMS Annual Meeting, Mar 2-6, 2003, San Diego, California >Thermographic Detection of Fatigue Damage of Reactor Pressure Vessel (RPV) Steels
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Thermographic Detection of Fatigue Damage of Reactor Pressure Vessel (RPV) Steels

机译:反应堆压力容器(RPV)钢疲劳损伤的热成像检测

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摘要

An infrared (IR) thermography technique, as a nondestructive evaluation technique, was applied to investigate the fatigue damage of reactor pressure vessel (RPV) steels during 20 Hz and 1,000 Hz fatigue testing. Five stages of the temperature profile were observed: an initial increase of the average specimen temperature, a region of temperature decrease, an equilibrium (steady-state) temperature region, an abrupt increase of the temperature, and a drop of temperature following specimen failure. The relationship among the temperature, stress-strain state, and fatigue behavior is discussed. Both thermodynamic and heat-transfer theories are applied to model the observed temperature variation during fatigue. The stress-strain state of the material has been back-calculated from the observed temperature profiles. The predicted and measured inelastic behavior during fatigue were found to be in good agreement. Thermography appears to provide a useful method of investigating the stress-strain behavior during fatigue.
机译:红外(IR)热成像技术作为一种无损评估技术,被用于研究20 Hz和1,000 Hz疲劳测试期间反应堆压力容器(RPV)钢的疲劳损伤。观察到温度分布的五个阶段:平均样本温度的初始升高,温度降低的区域,平衡(稳态)温度区域,温度的突然升高以及样本失效后温度的下降。讨论了温度,应力-应变状态和疲劳行为之间的关系。热力学和传热理论都可以用来模拟疲劳过程中观察到的温度变化。已从观察到的温度曲线反算了材料的应力应变状态。发现疲劳期间的预测和测量的非弹性行为非常吻合。热成像似乎为研究疲劳过程中的应力应变行为提供了一种有用的方法。

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