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Small punch testing and Its numerical simulations under constant deflection force conditions

机译:恒定变形力条件下的小冲头试验及其数值模拟

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摘要

A comparison of results of small punch tests on miniaturized discs under a constant force with their simulation by means of FEM is presented. A heat resistant steel of type CSN 41 5313 (EN 10CrMo9-10) was selected for our investigations. The small punch tests as well as the necessary conventional creep tests on massive specimens were performed at 873 K. For simulations, the Norton power-law and the exponential relationships were applied in the FEM model of the SPT arrangement. Parameters of both relationships were derived from stress dependences of minimum creep rate obtained from the conventional creep tests. While at higher loads the Norton power-law yields results more comparable with those obtained from experiments, at lower loads the exponential relationship gives better results. The investigation also confirms the simple relation between stress in conventional tests and force in small punch tests resulting in identical time to fracture of both types of tests.
机译:给出了在恒定力下对小型圆盘进行小冲孔测试的结果与通过有限元法进行仿真的结果的比较。我们选择了CSN 41 5313类型的耐热钢(EN 10CrMo9-10)。在873 K上对大型试样进行了小型冲压试验和必要的常规蠕变试验。为进行仿真,将诺顿幂律和指数关系应用于SPT装置的FEM模型中。两种关系的参数均来自常规蠕变测试获得的最小蠕变速率的应力依赖性。在较高的负载下,诺顿幂律屈服结果与从实验中获得的结果更具有可比性,而在较低的负载下,指数关系给出的结果更好。研究还证实了常规测试中的应力与小冲头测试中的力之间的简单关系,导致两种测试类型的断裂时间相同。

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  • 作者

    Dymacek P.; Milicka K.;

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  • 年度 2008
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  • 正文语种 en
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