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Residual stress test and simulation of incremental hole drilling method

机译:增量钻孔法的残余应力测试与仿真

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Residual stress of thin-walled blanks with complex cavity structure is an important influence factor on the stability of machining. The most residual stress testing technologies is only suitable to measure residual stress of surface or shallow surface. It is difficult to ensure the accuracy to measure residual stress inside workpiece. In order to study the reliability and accuracy of incremental hole drilling method measuring interior residual stress, according to residual stress test for casting ZL205A aluminum alloy tapered thin-walled blank, finite element (FE) model with initial residual stress is established to simulate incremental hole drilling on the platform of ANSYS. Then error and the rationality of the finite element simulation model has been analyzed by comparing the simulation stress value with the test. The results indicate that the incremental hole drilling method has some errors to measures residual stress inside workpiece. The method is only suitable to measure surface residual stress.
机译:复杂腔体结构的薄壁坯料的残余应力是对加工稳定性的重要影响因素。最残留的压力测试技术仅适合测量表面或浅表面的残余应力。很难确保测量工件内残留应力的准确性。为了研究的可靠性和增量钻孔法测量内部残余应力的精度,根据用于铸造ZL205A铝合金锥形薄壁空白残余应力试验,与初始残余应力的有限元(FE)模型被建立,以模拟增量孔钻孔在Ansys的平台上。然后通过将模拟应力值与测试进行比较,分析了误差和有限元模拟模型的合理性。结果表明,增量孔钻探方法有一些误差,以测量工件内的残余应力。该方法仅适合测量表面残余应力。

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