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Characterization of ductile fracture properties of quench-hardenable boron steel: Influence of microstructure and processing conditions

机译:淬硬硼钢的韧性断裂性能表征:微观组织和加工条件的影响

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Developments of the hot stamping technology have enabled the production of components with differential microstructure composition and mechanical properties. These can increase the performance of certain crash-relevant automotive structures by combining high intrusion protection and energy absorption. This paper presents a comprehensive experimental investigation on the flow and ductile fracture properties of boron-alloyed steel with a wide range of different microstructure compositions. Three types of dual phase microstructures at three different volume fractions, and one triple phase grade, were generated by thermal treatment Flow curves extending beyond necking and the equivalent plastic strain to fracture for each grade was determined by tensile testing using full-field measurements. The influence of phase composition and microstructural parameters were further investigated by means of a multi-scale modeling approach based on mean-field homogenization in combination with local fracture criteria. Inter-phase and intra-phase fracture mechanisms were considered by adopting two separate fracture criteria formulated in terms of the local average stress field. The micromechanical model captures with useful accuracy the strong influence of microstructure and processing conditions on the flow and fracture properties, implying promising prospects of mean-field homogenization for the constitutive modeling of hot stamped components.
机译:热冲压技术的发展使得能够生产具有不同的微观结构组成和机械性能的组件。通过结合高度的入侵防护和能量吸收功能,这些功能可以提高某些与碰撞相关的汽车结构的性能。本文对具有多种不同显微组织成分的硼合金钢的流动性和延性断裂性能进行了全面的实验研究。通过热处理生成三种类型的三相双相微结构,分别具有三种不同的体积分数和一个三相相,流动曲线延伸超过颈缩,并且通过使用全场测量的拉伸试验确定了每种梯度的等效塑性应变直至断裂。通过基于平均场均化并结合局部断裂准则的多尺度建模方法,进一步研究了相组成和微结构参数的影响。通过采用根据局部平均应力场制定的两个单独的断裂准则来考虑相间和相内断裂机理。微观力学模型以有用的精度捕获了微观结构和加工条件对流动性和断裂性能的强烈影响,这意味着对热冲压构件的本构模型进行平均场均化的前景广阔。

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