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Evolution of residual stresses with fatigue crack growth in integral structures with crack retarders

机译:含缓速器的整体结构中随着疲劳裂纹扩展而产生的残余应力的演变

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Bonded straps are investigated for their ability to retard a growing fatigue crack in metallic structures. The evolution of the residual stresses in the vicinity of the strap with fatigue crack growth has been studied. Cracks were grown in single edge-notched tension (SEN(T)) specimens reinforced with either a titanium or a carbon fibre reinforced plastics (CFRP) strap. The residual stress evolution has been measured in situ during crack growth using neutron diffraction, and modelled with a finite element approach. The peak residual stresses induced by the mismatch of the coefficient of thermal expansion between the strap and plate materials were seen to be fairly constant with crack growth. Good correlation between the experimental and the modelling results was found, except at very long crack lengths for a specimen that exhibited considerable fracture surface roughness at long crack lengths. The difference was attributed to wedging of the fracture surface changing the expected stress state, rather than any effect of the strap.
机译:研究了粘合带抑制金属结构中疲劳裂纹扩展的能力。研究了带钢附近疲劳裂纹扩展引起的残余应力的变化。在用钛或碳纤维增强塑料(CFRP)带加固的单边缘缺口拉力(SEN(T))标本中产生裂纹。已使用中子衍射在裂纹扩展过程中现场测量了残余应力的演变,并用有限元方法进行了建模。可以看出,由于带材和板材之间的热膨胀系数不匹配而引起的峰值残余应力在裂纹扩展时是相当恒定的。在实验和建模结果之间发现了良好的相关性,只是在裂纹长度很长的情况下,在较长裂纹长度下表现出相当大的断裂表面粗糙度的试样除外。差异归因于断裂表面的楔形改变了预期的应力状态,而不是带的任何作用。

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