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A novel test method based on small specimens for obtaining low-cycle-fatigue properties of materials

机译:一种基于小样本的新测试方法以获得材料的低周疲劳特性

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摘要

In this study, a novel method for low-cycle-fatigue (LCF) tests on small funnel and Ring specimens to obtain the Manson-Coffin law of materials is proposed based on the median energy equivalence principle. It includes a method for solving the cyclic stress-strain relationship of the material according to the cycling stability curve of load amplitude-displacement amplitude, and another method for acquiring the conversion relationship between the measuring displacement amplitudes and local strain amplitudes of the specimen. LCF experiments under constant displacement amplitude loading were performed on small funnel and Ring specimens, as well as standard straight-round bar specimens of the two materials, G115 and 16Mn. The results indicated that the uniaxial cyclic stress-strain relationship and Manson-Coffin law results of the G115 and 16Mn materials obtained by the new method were highly consistent with those obtained by the traditional standard method.
机译:在这项研究中,基于中位能量当量原理,提出了一种对小漏斗和环形试样进行低周疲劳测试的新方法,以求得材料的曼森-科芬定律。它包括一种根据载荷振幅-位移振幅的循环稳定性曲线来求解材料的循环应力-应变关系的方法,以及另一种获取测量的位移振幅与样本局部应变振幅之间的转换关系的方法。在恒定位移振幅载荷下的LCF实验是在小漏斗和Ring样品以及两种材料的标准直圆棒样品G115和16Mn上进行的。结果表明,新方法获得的G115和16Mn材料的单轴循环应力-应变关系和曼森-科芬定律结果与传统标准方法高度一致。

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