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Effects of loading rate, notch geometry and loading mode on the local cleavage fracture stress of a C-Mn steel

机译:加载速率,缺口几何形状和加载方式对C-Mn钢局部劈裂断裂应力的影响

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摘要

In this work, notched specimens with two notch geometries were tested in two loading modes (four-point bending (4PB) and three-point bending (3PB)) at various loading rates at a temperature of - 110 deg C for a C-Mn steel. An elastic-plastic finite-element method (FEM) is used to determine the stress distributions ahead of notches. By accurately measuring the distances of the cleavage initiation sites from the notch roots, the local cleavage fracture stress sigma_f is measured. The results obtained and combining with previous studies by the authors show that the local cleavage fracture stress sigma_f is closely related to the cleavage fracture mechanism (critical events) in steels. The sigma_f values do not change with loading rate, notch geometry and loading mode, as long as the critical event of cleavage fracture does not change at various testing conditions. The sigma_f is mainly determined by the steel microstructure, and its scatter is mainly caused by the size distribution of the weakest constituent in steels (ferrite grain or pearlite colony with large sizes and large second phase particles) and the change of the critical events in cleavage process. The sigma_f can characterize the intrinsic toughness of steels and may be used in a "local approach" model for assessing integrity of flawed structures. The sigma_f values could be measured by both 4PB and 3PB tests.
机译:在这项工作中,在两种加载模式下(四点弯曲(4PB)和三点弯曲(3PB)),在C-Mn的温度为-110℃的不同加载速率下,测试了具有两种切口几何形状的切口试样钢。弹塑性有限元方法(FEM)用于确定缺口之前的应力分布。通过精确地测量从切口根开始的解理起始位点的距离,可以测量局部解理断裂应力sigma_f。所得结果与作者先前的研究相结合表明,局部劈裂断裂应力sigma_f与钢的劈裂断裂机理(临界事件)密切相关。 sigma_f值不会随加载速率,槽口几何形状和加载模式而变化,只要在不同的测试条件下劈裂断裂的临界事件不发生变化即可。 sigma_f主要由钢的微观结构决定,其散布主要是由钢中最弱的成分(铁素体晶粒或大尺寸的第二相颗粒的珠光体菌落)的尺寸分布以及解理临界事件的变化引起的。处理。 sigma_f可以表征钢的固有韧性,并且可以在“局部方法”模型中用于评估缺陷结构的完整性。 sigma_f值可以通过4PB和3PB测试来测量。

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