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Strain ratcheting and stress relaxation around interference-fitted single-holed plates under cyclic loading: experimental and numerical investigations

机译:循环载荷下过盈配合的单孔板周围的应变棘轮和应力松弛:实验和数值研究

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Longitudinal strain ratcheting and stress relaxation in interference-fitted single-holed plates were investigated both experimentally and numerically. In the experimental part single-holed plates made from Al-alloy 7075-T6 were force-fitted with oversized pins to create 1% and 2% nominal interference fit sizes. Then these plates (specimens) were instrumented with dynamic strain gauges in longitudinal direction around the hole to measure the strain during interference fit and strain ratcheting during subsequent cyclic loading. In the numerical part, 2D finite element code has been written to simulate the interference fit process and subsequent cyclic loading to obtain strains and stresses around the force fitted hole. To predict the strain ratcheting, Ohno-Wang kinematic hardening model was applied for simulation of stress/strain path. The strain ratcheting predicted from the finite element code and experimental test results were compared. The results showed that there is a good agreement between the measured and numerically evaluated strains, and the strain ratcheting is bigger for higher cyclic load level, but it is smaller for larger interference size.
机译:实验和数值研究了过盈配合单孔板的纵向应变棘轮和应力松弛。在实验部分中,将由铝合金7075-T6制成的单孔板压入超大销,以产生1%和2%的名义过盈配合尺寸。然后将这些板(试样)沿孔的纵向安装动态应变仪,以测量过盈配合过程中的应变以及后续循环加载过程中的应变棘轮。在数字部分,已编写了二维有限元代码,以模拟过盈配合过程和随后的循环载荷,从而获得力配合孔周围的应变和应力。为了预测应变棘轮,将Ohno-Wang运动硬化模型用于模拟应力/应变路径。比较了由有限元代码预测的应变棘轮效应和实验测试结果。结果表明,在实测和数值评估的应变之间有很好的一致性,应变棘轮效应在较高的循环载荷水平下较大,而在较大的干扰尺寸下较小。

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