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Temperature and Loading-Rate Dependence on a Local Criterion for Cleavage Fracture in the Transition Region of the Tempered Martensitic Steel Eurofer97

机译:对钢化马氏体钢Eurofer97的过渡区裂解骨折局部标准的温度和装载率依赖性

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Finite element calculations of stationary cracks were performed in the ductile to brittle transition region of the reduced activation tempered martensitic steel Eurofer97, for which a large fracture toughness database was already available. Two models were run in this work: i) compact tension specimens simulated in 3D, and ii) small scale yielding boundary layer model in 2D plane strain conditions. The analysis was focused on the unusual low fracture toughness of Eurofer97 on the lower shelf, with respect to other "ferritic" steels, as well as in the lower transition. The analysis of the near tip stress field suggested that the minimum stress intensity factor on the lower shelf represents the minimum loading condition to have the local fracture stress act over a distance of the order of the prior austenite grain size. The effect of loading rate on the tip stress fields were also investigated by considering a strain rate dependence of the flow stress explicitly in the finite element calculations. These effects were shown to be non-negligible and to depend on the ratio between the peak stress in the fracture process zone and the local fracture stress.
机译:在减少活化的钢化马氏体钢Eurofer97的延性到脆性过渡区域的韧性裂缝的有限元计算,其中已经提供了大的断裂韧性数据库。两种型号在这项工作中运行:i)在3D中模拟的紧凑张力标本和II)小规模屈服边界层模型在2D平面应变条件下。该分析集中在较低搁架上的EureOfer97的不寻常低断裂韧性,关于其他“铁素体”钢,以及较低的过渡。接近尖端应力场的分析表明,下架上的最小应力强度因子代表了使局部断裂应力作用在先前奥氏体晶粒尺寸的距离上的最小负载条件。还通过考虑在有限元计算中明确地确定流量应力的应变速率依赖性来研究尖端应力场对尖端应力场的影响。这些效果被证明是不可忽略的,并且依赖于裂缝处理区和局部断裂应力之间的峰值应力之间的比率。

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