主要燃气管道钢经长期降解后的低温冲击韧性

P. Maruschak, I. Danyliuk, R. Bishchak, T. Vuherer
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引用次数: 29

摘要

研究了17G1S管线钢的显微组织、温度与夏比v型缺口冲击性能的相关性。在物理细观力学的概念中,试样的动态破坏被表示为剪切稳定性丧失的连续过程,这发生在材料的不同结构/尺度水平上。分析了各种破坏模式的特征阶段,确定了典型的荷载水平和振荡周期等。本文还讨论了试验所得低温、显微组织与夏比(v型缺口)韧性试验结果之间的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low temperature impact toughness of the main gas pipeline steel after long-term degradation
The correlation of microstructure, temperature and Charpy V-notch impact properties of a steel 17G1S pipeline steel was investigated in this study. Within the concept of physical mesomechanics, the dynamic failure of specimens is represented as a successive process of the loss of shear stability, which takes place at different structural/scale levels of the material. Characteristic stages are analyzed for various modes of failure, moreover, typical levels of loading and oscillation periods, etc. are determined. Relations between low temperature derived through this test, microstructures and Charpy (V-notch) toughness test results are also discussed in this paper.
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