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Measurement of Residual Stresses on Deep Rolled Round Aluminum Samples Using Hole Drilling Strain Gage Method

机译:采用孔钻株应变计法测量深层轧铝样品上的残余应力

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Deep rolling is an established process to induce plastic deformation on the surface of engineering parts. As a result, a cold worked surface and a compressive layer of residual stresses are generated in subsurface regions. Thus, strength can be increased. Although deep rolling is mostly applied to axisym-metric parts with comparatively low diameters, effect of process parameters on induced stresses are usually investigated on flat surfaces. However, different residual stress profiles are expected in depth direction in flat and cylindrical parts. In the current study, residual stresses induced in deep rolled round EN AW-6082 aluminum samples with a diameter of 14 mm were measured using hole-drilling strain-gage method. Hole drilling calibration matrices were derived using finite element simulations. These matrices were compared with the ones used for flat specimens. Evaluated residual stress profiles by using these matrices were compared for both a flat workpiece and cylindrical workpiece.
机译:深度轧制是一种诱导工程零件表面上塑性变形的既定过程。结果,在地下区域产生冷加工表面和残余应力的压缩层。因此,可以增加力量。尽管深轧大部分用于具有相对低的直径的轴 - 度量部件,但通常在平坦表面上研究了工艺参数对诱导应力的影响。然而,在平坦和圆柱形部件的深度方向上预期不同的残余应力曲线。在目前的研究中,使用空穴钻孔应变剂测量法测量直径为14mm的深轧件ZH-6082铝样品中诱导的残余应力。使用有限元模拟导出孔钻校准矩阵。将这些基质与用于平面样本的那些进行比较。将使用这些基质进行评估的残留应力分布,用于扁平工件和圆柱形工件。

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