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Effects of crack surface roughness on crack heat generation characteristics of ultrasonic infrared thermography

机译:裂缝表面粗糙度对超声红外热成像裂纹发热特性的影响

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摘要

This study examined the effect of the fatigue crack contact roughness on the thermal characteristics of ultrasonic infrared thermography. Fatigue cracks were prepared on grade 45 steel samples; the crack surface roughness was tested, and ultrasonic infrared thermography experiments were carried out. The results showed that a rougher crack surface caused the fatigue crack to generate more heat. Combined with the finite element simulation results, the frictional force was concluded to determine the heat generation by a crack under ultrasonic excitation. Differences in the crack surface roughness change the friction coefficient, which affects the contact force of the crack surface and in turn affects the heat generation.
机译:本研究检测了疲劳裂纹接触粗糙度对超声波红外热成像热特性的影响。 在45级钢样品上制备疲劳裂缝; 测试裂缝表面粗糙度,进行超声波红外热成像实验。 结果表明,令人讨厌的裂缝表面导致疲劳裂缝产生更多的热量。 结合有限元模拟结果,结论摩擦力以确定超声波激发下裂纹的发热。 裂缝表面粗糙度的差异改变了摩擦系数,从而影响裂缝表面的接触力并且反过来影响发热。

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