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An improved M–K model coupled with different ductile criteria for fracture limit predictions of Inconel 718 alloy

机译:一种改进的M-K模型,与不同的延性标准相结合,用于裂缝极限预测的Inconel 718合金的预测

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Fracture Forming Limit Diagram (FFLD) is gaining special attention for high strength materials like Inconel 718 alloy where the substantial necking tendency rarely seen. The present study mainly aims at accurate evolution of forming limits for Inconel 718 alloy with an improved Marciniak–Kuczynski (M–K) model coupled and various ductile fracture criteria. Firstly, uniaxial test has been performed for analyzing material properties and anisotropic parameters. The stretch forming tests have been conducted to evaluate the limiting forming limits of Inconel 718 alloy. Subsequently, an improved M–K model coupled with ductile fracture criteria has been developed for the theoretical prediction of the fracture strains. The different ductile fracture criteria, namely; Clift, Cockcroft and Latham, Oyane and Brozzo, have been implemented in the improved M–K model. A Newton–Raphson method has been used to solve improved M–K model. The improved M–K model coupled with Oyane's fracture criterion has shown good predictability of the fracture loci with the least average absolute errors and root-mean-square deviation (Δavg?=?0.075 and RMSD?=?0.105).
机译:骨折形成限位图(FFLD)正在特别注意高强度材料,如第718个合金,其中很少见到很少见的颈倾向。本研究主要旨在精确地演变,具有改进的Marciniak-Kuczynski(M-K)模型耦合和各种延性骨折标准的形成率为718合金的限制。首先,已经进行了单轴测试,用于分析材料性质和各向异性参数。已经进行了拉伸形成测试以评估Inconel 718合金的限制性限制。随后,已经开发了与延展性裂缝标准偶联的改进的M-K模型用于骨折菌株的理论预测。不同的韧性骨折标准,即; Clift,Cockcroft和Latham,Oyane和Brozzo,已在改进的M-K模型中实施。牛顿-Raphson方法已被用于解决改进的M-K模型。与Oyane的骨折标准相结合的改进的M-K模型表明了骨折基因座的良好可预测性,具有最小的平均绝对误差和根均方偏差(Δavg≤X.075和RMSD?0.105)。

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