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Determination of normal and shear residual stresses from fracture surface mismatch

机译:由断裂表面不匹配确定法向和剪切残余应力

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摘要

The contour method of residual stress measurement has recently been adapted to measure fractured, rather than cut specimens. The fracture contour method was capable of determining normal residue stresses acting prior to the plane-strain failure of a large aluminium alloy forging, but shear residual stresses could not be measured (Prime et al., 2014). We demonstrate that the application of digital image correlation to topographic measurements of a fracture surface pair allows the determination of shear residual stresses in addition to the normal stress component. Miniature compact tension samples were extracted at an angle from a bent beam to give a known variation in normal and shear residual stress on the fracture plane. The material used was a metal matrix composite, which could be deformed plastically to introduce a known distribution of stresses and also present limited plasticity upon fracture, allowing plane-strain condition in a small specimen. The samples were fractured at cryogenic temperatures to further restrict plasticity. Although the fracture surface was non-planar and evidence suggested the occurrence of plasticity near the edges, experimental results correlated fairly well with the calculated normal and shear residual stress profiles.
机译:残余应力测量的轮廓方法最近已用于测量断裂的样本,而不是切割的样本。断裂轮廓法能够确定在大型铝合金锻件的平面应变破坏之前作用的法向残余应力,但无法测量剪切残余应力(Prime等人,2014)。我们证明了将数字图像相关性应用于裂缝表面对的形貌测量可以确定法向应力分量之外的剪切残余应力。从弯曲的梁中以一定角度提取微型致密拉伸样品,以给出断裂面上法向残余应力和剪切残余应力的已知变化。所使用的材料是金属基复合材料,可以进行塑性变形以引入已知的应力分布,并且在断裂时还具有有限的可塑性,从而允许在小样本中进行平面应变条件。样品在低温下破裂以进一步限制可塑性。尽管断裂表面是非平面的,并且证据表明在边缘附近存在可塑性,但是实验结果与计算出的法向应力和剪切残余应力曲线的相关性很好。

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