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Finite Element Analysis of the Stress Intensity Factor and the Residual Stress by Cold Expansion Method in CT Specimen

机译:CT标本中冷膨胀法的应力强度因子和残余应力的有限元分析

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Cold expansion method retards the crack initiation due to the compressive residual stress developed on a hole surface. Most previous researches have shown only the beneficial distribution of residual stresses in the retardation of the crack initiation at the stress concentration area. Also, there have been only few studies on the relation between crack growth and residual stress around other adjacent holes. A few fastener holes of aircraft structures is a shot distance which is less than 20mm between holes. The purpose of this study is to provide better understanding of the residual stress effect around a hole in a structure as crack growth starts from another hole. By finite element method, this study showed that residual stress in a CT specimen is redistributed by cold expansion process and that tensile stress increases in proportion to the cold expansion ratio in the vicinity of the crack. Stress intensity factor increases as the cold expansion ratio increases.
机译:冷膨胀方法由于在孔表面上产生的压缩残余应力而延迟了裂纹启动。最先前的研究已经仅示出了残余应力在应力浓度区域的裂纹引发的延迟中的有益分布。此外,裂缝生长与其他相邻孔周围的裂缝生长和残余应力之间的关系仅有很少的研究。一些飞机结构的紧固件孔是孔之间小于20mm的射击距离。本研究的目的是更好地了解结构中孔周围的残余应力效应,因为裂缝生长从另一个孔开始。通过有限元方法,该研究表明,CT样本中的残余应力被冷膨胀过程重新分布,并且抗拉应力与裂纹附近的冷膨胀比成比例地增加。随着冷膨胀比增加,应力强度因子增加。

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