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首页> 外文期刊>International Journal of Fatigue >Infrared thermography-based evaluation of the elastic-plastic J-integral to correlate fatigue crack growth data of a stainless steel
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Infrared thermography-based evaluation of the elastic-plastic J-integral to correlate fatigue crack growth data of a stainless steel

机译:基于红外热成像的弹性塑料J-Integral的评价,以相关的不锈钢疲劳裂纹增长数据

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摘要

The elastic-plastic J-integral is adopted to correlate fatigue crack growth data of ductile metals. An analytical link is known to exist between the J-integral and the strain energy density averaged in a control volume embracing the crack tip. On the other hand, the strain energy fluctuation is the source of temperature variations close to a fatigue crack tip of a metal material; hence the possibility to measure the J-integral from infrared thermographic scanning at the crack tip is envisaged and it is the focus of this paper. It is proposed that the elastic component of the J-integral is derived from a thermoelastic stress analysis, while the plastic component of the J-integral is derived from the heat energy loss. An analytical expression is formalised to apply this novel approach. Therefore, the elastic-plastic J-integral range was evaluated starting from infrared temperature maps measured in situ during crack propagation tests of AISI 304L stainless steel specimens. The range of the infrared thermography-based J-integral correlated well the crack growth data generated in small as well as large scale yielding conditions. Finally, the experimental values of the J-integral were successfully compared with the corresponding numerical values obtained from elastic-plastic finite element analyses.
机译:采用弹性塑料J-积分来关联延性金属的疲劳裂纹生长数据。已知分析链路存在于在具有裂缝尖端的控制体积中平均的J-积分和应变能密度之间存在分析链路。另一方面,应变能量波动是靠近金属材料的疲劳裂纹尖端的温度变化源;因此,设想了测量裂缝尖端的红外热成像扫描的J-Intional的可能性,并且是本文的重点。提出J-积分的弹性部件源自热弹性应力分析,而J-Integral的塑料部件源自热能损失。分析表达式正式化以应用这种新方法。因此,从AISI 304L不锈钢样本的裂纹传播测试期间从原位测量的红外温度图开始评估弹性塑料J-积分范围。基于红外热成像的J-Integryal的系列井中产生的裂缝生长数据以及大规模产生的条件。最后,将J-积分的实验值与从弹性塑料有限元分析中获得的相应数值进行了比较。

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