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A multianalysis thermography-based approach for fatigue and damage investigations of ASTM A182 F6NM steel at two stress ratios

机译:基于多重分析热成像的方法在两种应力比下对ASTM A182 F6NM钢进行疲劳和损伤研究

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摘要

Infrared thermography allows an alternative energy-based approach for studying the fatigue behaviour of materials to better understand damage phenomena. In particular, the methodology of infrared thermography can explain the complex dissipative mechanisms promoted by the input parameters, such as the loading ratio, can rapidly provide information about the fatigue strength, and has low cost. In this work, analysis of the thermographic sequences of ASTM A 182 grade F6NM steel obtained during fatigue testing provided four thermal indexes that were used to investigate the thermoelastic and plastic behaviour of material. Fatigue tests at two opportunely chosen loading ratios (R = -0.1, R = 0.5) were performed to investigate the relation between the material behaviour and each index at a specific loading ratio. Finally, estimation of the fatigue strength by means of suitable analysis procedures allowed for an investigation of the damage behaviour of materials under specific loading conditions.
机译:红外热成像技术是一种基于能量的替代方法,可用于研究材料的疲劳行为,以更好地了解损坏现象。特别地,红外热成像的方法可以解释由输入参数(例如负载率)促进的复杂耗散机制,可以快速提供有关疲劳强度的信息,并且成本低廉。在这项工作中,对在疲劳测试期间获得的ASTM A 182级F6NM钢的热成像序列进行分析,提供了四个热指数,用于研究材料的热弹性和塑性行为。在两个适当选择的加载比率(R = -0.1,R = 0.5)下进行了疲劳测试,以研究材料性能与特定加载比率下每个指标之间的关系。最后,通过适当的分析程序估算疲劳强度,可以研究在特定载荷条件下材料的损坏行为。

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