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The brittle fracture behaviour of old mild steels

机译:老温和钢的脆性骨折行为

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In the assessment of old steel structures the verification of sufficient material toughness is important for the decision on necessary repair and reinforcement measures. Based on extensive fracture mechanics investigations the assessment methods in EN 1993-1-10 were developed. The determination of permissible element thickness for certain steel grades was determined for welded structures made of current steel grades (according to DIN EN 10025) with mostly high toughness's. This simplified method is not suitable for old mild steel structures with holes for riveted joints. In this article, experimental studies of the brittle fracture behaviour of structures with holes made of old mild steel are presented. The results were carried out through various research projects at the Technische Universitat Dresden and its cooperation partners (see, e.g. Stroetmann et al. (2015)). The main topics are extensive material analyses to determine the fracture toughness in the brittle-ductile transition region according to the Master Curve concept. The evaluations confirm that different steel grades can be defined depending on the manufacturing process of the old steels. Additionally, the newly obtained results are compared to existing correlations of impact and fracture toughness and are checked for their suitability for old mild steels. Furthermore, the analysis of metallography and mechanical properties on components with punched holes are described to analyse the crack initiation of quasi-static stressed components made of old mild steel.
机译:在评估旧钢结构中,足够的材料韧性的验证对于关于必要的维修和加固措施的决定是重要的。基于广泛的骨折力学研究,开发了EN 1993-1-10的评估方法。针对由当前钢等级(根据DIN EN 10025)制成的焊接结构的允许元素厚度的测定确定,具有大多是高韧性的焊接结构。这种简化的方法不适用于具有用于铆接接头的孔的旧温和钢结构。在本文中,提出了由旧温和钢制成的结构脆性断裂行为的实验研究。结果是通过Technische Univeritat Dresden及其合作伙伴的各种研究项目进行(参见,例如,Stroetmann等。(2015))。主要话题是广泛的材料分析,以确定根据主曲线概念的脆性延展转换区域中的断裂韧性。评估证实,可以根据旧钢的制造过程来定义不同的钢等级。另外,将新获得的结果与现有的冲击和断裂韧性相关的结果进行比较,并检查其对旧温和钢的适用性。此外,描述了对具有冲孔孔的部件上的金相谱和机械性能的分析,分析了由旧温和钢制成的准静态应力部件的裂纹启动。

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