首页> 外文会议>ASME Turbo Expo: Turbomachinery Technical Conference and Exposition >IMPROVEMENT OF THE INVERSE FINITE ELEMENT ANALYSIS APPROACH FOR TENSILE AND TOUGHNESS PREDICTIONS BY MEANS OF SMALL PUNCH TECHNIQUE
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IMPROVEMENT OF THE INVERSE FINITE ELEMENT ANALYSIS APPROACH FOR TENSILE AND TOUGHNESS PREDICTIONS BY MEANS OF SMALL PUNCH TECHNIQUE

机译:通过小冲床技术改进抗拉强韧性预测的逆有限元分析方法

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This paper focuses on the inverse FEA to calculate the SPT tests and the prediction of the tensile and fracture toughness behavior. For the description of the SPT tests via FEA the hardening rule of Ramberg-Osgood and the damage model of Gursson-Tvergaard-Needleman (GTN) were used. The inverse FEA optimization process cannot provide a unique solution for the 12 parameters included in the material model. This results from a dependency between some parameters, which leads to the same solution in the optimization. Hence a novel description of the dependent parameters was developed and implemented within the optimization process. Therefore, an enhanced inverse FEA approach was proposed which provides a fast converging solution for determination of the material model parameters. Within this study the forged turbine shaft material EN: 27NiCrMoV15-6 was investigated. For comparison purposes SPT tests as well as tensile tests and fracture toughness tests were carried out. In the case of the tensile properties the test and simulation show coincidence in the curve as well as the characteristic values. For the toughness behavior the characteristic value of the test was met by the simulation.
机译:本文重点介绍了逆fea,以计算SPT测试和拉伸和断裂韧性行为的预测。为了通过FEA进行SPT测试的描述,使用了Ramberg-Osgood的硬化规则和Gbursson-Tvergaard-Constleman(GTN)的损伤模型。反向FEA优化过程无法为材料模型中包含的12个参数提供唯一解决方案。这导致某些参数之间的依赖性,这导致优化中相同的解决方案。因此,在优化过程中开发和实现了对所属参数的新颖描述。因此,提出了增强的逆FEA方法,其提供了一种用于确定材料模型参数的快速会聚解决方案。在这项研究中,调查了锻造涡轮轴材料EN:27nicrmov15-6。为了进行比较,目的是进行SPT测试以及拉伸试验和断裂韧性试验。在拉伸性能的情况下,测试和模拟显示曲线中的巧合以及特征值。对于韧性行为,通过模拟满足了测试的特征值。

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