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On the effects associated with control parameters delay during biaxia cyclic loading of engineering materials

机译:工程材料偏压下循环加载过程中与控制参数延迟有关的影响

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The paper presents experimental results of investigations carried out on the P91 steel and 2024 aluminium alloy under complex stress states due to various combinations of an axial force and twisting moment. An influence of out-of-phase sinusoidal and trapezoidal strain signals on the mechanical behaviour of tested materials was considered. The experiments enabled identification of the second order effects connected with the non-proportional cyclic loadings such as the phase shift between stress and strain signals during the deformation along the circular strain path, and a significant stress drop of the one of loading components applied in the case of deformation enforced by the trapezoidal signals. The experimental programme also contained the tests of monotonic tensile deformation realized simultaneously with delayed torsional cycles. They enabled to observe a drastic variations of the proportional limit and yield point of the materials in the tensile direction. This fact manifests an important material feature which can be applied to the optimal designing of some metal forming processes like an extrusion or forging for example.
机译:本文介绍了在P91钢和2024铝合金由于轴向力和扭转力矩的各种组合而在复杂应力状态下进行的研究的实验结果。考虑了异相正弦和梯形应变信号对被测材料力学性能的影响。实验使得能够识别与非比例循环载荷有关的二阶效应,例如在沿圆形应变路径变形期间应力和应变信号之间的相移,以及施加在结构中的载荷分量之一的显着应力降。梯形信号导致变形的情况。实验程序还包含在延迟扭转周期的同时实现的单调拉伸变形的测试。他们能够观察到材料在拉伸方向上比例极限和屈服点的剧烈变化。这一事实表明了一个重要的材料特征,可以将其应用于某些金属成型工艺(例如挤压或锻造)的最佳设计。

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