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Possibility to Estimate Fracture Toughness of Ductile Steel Materials from Small Punch Test Data

机译:从小冲击测试数据估计延性钢材的断裂韧性的可能性

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This paper presents a procedure to predict fracture toughness of steel material using small punch test (or notched small punch test) and finite element (FE) damage analysis. Tensile property can be determined from setting the constitutive equations and can be validated by comparing the small punch (SP) test data with FE results applying the determined tensile property. FE damage analysis used in this paper is based on the strain-based fracture model. Material constants in the model are normally determined from analyzing notched bar tensile tests. To determine these material constants from SP test instead of notched bar tensile tests, simplified model (with only one material constant) can be introduced and used in the simulations. SP test and notched small punch (NSP) test are simulated via FE damage analyses using the tensile property and simplified strain-based fracture model. NSP simulation results are sensitive to element size. However, SP simulation results are not sensitive to element size. Compact tension (C(T)) test is also simulated and it can be found that the proper element size for C(T) simulation is four times of that for NSP simulation to predict cracking initiation toughness.
机译:本文介绍了使用小冲击试验(或缺口小冲击试验)和有限元(Fe)损伤分析来预测钢材断裂韧性的程序。可以通过设定本构体方程来确定拉伸性能,并且可以通过将小冲头(SP)测试数据与Fe结果进行比较应用所确定的拉伸性能来验证。本文使用的Fe损伤分析基于基于应变的裂缝模型。通常确定模型中的材料常数从分析缺口条拉伸试验。为了确定来自SP测试代替缺口条拉伸试验的这些材料常数,可以在模拟中引入并使用简化的模型(仅具有一种材料常数)。通过使用拉伸性能和简化的基于菌株的裂缝模型,通过Fe损伤分析模拟SP测试和缺口小孔(NSP)测试。 NSP仿真结果对元素大小敏感。但是,SP仿真结果对元素大小不敏感。还模拟了紧凑的张力(C(T))测试,可以发现C(T)模拟的适当元件尺寸是NSP仿真预测开裂启动韧性的四倍。

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