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Residual stress/strain evolution due to low-cycle fatigue by removing local material volume and optical interferometric data

机译:通过去除局部材料体积和光学干涉管数据,由于低循环疲劳导致的残余应力/应变进化

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摘要

Three experimental methods, based on optical interferometric measurements of deformation response to local material removing, have been implemented for residual stresses determination. Two first techniques are employed to characterize initial residual stress values and their evolution near welded joints of aluminium plates under low-cycle fatigue. The hole-drilling method gives high-accurate dependencies between residual stress components and number of cycles. The second approach comprises cracks modelling by narrow notches to describe residual stress distributions in more wide spatial range near the weld. The results demonstrate residual stress evolution is of complex character and cannot be uniquely qualified as a gradual relaxation. Besides, the secondary hole drilling method is developed and used as a fast and reliable tool to quantify the redistribution of residual strains near cold-expanded holes due to low-cycle fatigue. Dependencies of circumferential residual strains along the secondary hole edge versus number of cycles are constructed.
机译:三种实验方法基于对局部材料去除的变形响应的光学干涉测量,已经实现了残余应力测定。使用两种第一技术来表征初始残余应力值及其在低循环疲劳下铝板焊接接头附近的演化。空穴钻孔方法在残余应力分量和周期数之间提供高精度的依赖性。第二种方法包括窄凹口的裂缝建模,以描述在焊缝附近更宽的空间范围内的残余应力分布。结果表明残余应力进化是复杂的性质,并且不能是逐渐放松的独特合格。此外,开发了二次孔钻孔方法并用作快速可靠的工具,以量化由于低循环疲劳而在冷膨胀孔附近的残留菌株的再分布。构建沿次孔边缘与循环数的周向残余菌株的依赖性。

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