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首页> 外文期刊>International Journal of Mechanical Sciences >Analysis of forming limit behaviour of high strength steels under non-linear strain paths using a micromechanics damage modelling
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Analysis of forming limit behaviour of high strength steels under non-linear strain paths using a micromechanics damage modelling

机译:使用微机械损伤模型分析了非线性应变路径下的高强度钢的形成极限行为

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摘要

The formability characteristics of advanced high strength (AHS) steel grades 780 and 1000 subjected to varying forming histories including strain path changes were described by means of a damage modelling approach. The Marciniak tests of the examined steels were firstly carried out to apply pre-strains under various deformation modes. Afterwards, tensile, stretch-bending and hole expansion test of the pre-strained samples were performed. FE simulations coupled with the Gurson-Tvergaard-Needleman (GTN) ductile damage model were conducted to predict failure occurrences of AHS samples in the two-stage forming tests. The damage model parameters were determined under consideration of pre-strain effects on void evolution mechanisms and its interdependencies with microstructure constituents of steels, for which hybrid methods of metallographic analyses, local strain measurement and representative volume element (RVE) simulations were employed. Then, forming limits of the investigated steels in different forming procedures with non-proportional loading paths were characterized. It was shown that the micromechanics damage simulations in combination with the proposed parameter identification scheme could precisely represent the fracture states of steels under such complex forming conditions.
机译:通过损坏建模方法描述了对包括应变路径变化的变化形成历史的高级高强度(AHS)钢等级780和1000的可成形性特性。首先进行了检查钢的Marciniak测试,以在各种变形模式下施加预株。然后,进行预束样品的拉伸,拉伸弯曲和空穴膨胀试验。与Gurson-Tvergaard-ConseLeman(GTN)扩展模型相结合的FE模拟以预测两级成型测试中AHS样品的故障发生。考虑到对空隙演化机制的预应变效应和其与钢的微观结构成分的相互依赖性确定损伤模型参数,其中采用了金相分析,局部应变测量和代表体积元素(RVE)模拟的杂化方法。然后,表征了具有非比例负载量的不同成形程序中所研究的钢的形成限制。结果表明,与所提出的参数识别方案相结合的微机械损伤模拟可以在这种复杂的成形条件下精确地代表钢的骨折状态。

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