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Microstructure and strain rate sensitivity behavior of SM490 structural steel weld zone investigated using indentation

机译:用压痕研究SM490结构钢焊接区的微观结构和应变速率灵敏度

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摘要

In this study, a series of optical microscope examinations, constant loading rate indentation (CLR), and creep indentation (CI) tests were performed on room temperature to investigate the strain rate sensitivity behavior of the SM490 structural steel weld zone. Microstructures of weld metal (WM), fine-grain heat-affected zone (HAZ), and base metal (BM) in the weld zone were observed using optical microscopy. Numerous CLR tests were performed at a wide range of strain rate indentation from 0.02 s(-1) to 0.2 s(-1) in the middle regions of WM, fine-grain HAZ, and BM across the weld zone, and as a result strain rate indentation effects on both indentation hardness and yield strength were investigated. The results showed that both yield strength and indentation hardness of WM, fine-grain HAZ, and BM exhibit the strain rate-dependent behavior, in which yield strength and indentation hardness tend to increase with increasing strain rate indentation. Strain rate sensitivity (SRS) values of WM, fine-grain HAZ, and BM were determined by using three different models: indentation hardness, yield strength, and creep indentation models. The SRS behavior of SM490 structural steel weld zone was investigated. The results indicated that, while both yield strength and indentation hardness of BM are lower than those when compared with HAZ and WM, BM has the highest SRS value than does fine-grain HAZ and WM. Furthermore, WM has the lowest SRS value compared with the SRS values of other components in the weld zone. The results of this study were used to assess and understand the strain rate sensitivity behavior of SM490 structural steel weld zone. (C) 2019 Published by Elsevier Ltd.
机译:在该研究中,在室温下进行一系列光学显微镜检查,恒定的装载速率压痕(CLR)和蠕变压痕(CI)测试,以研究SM490结构钢焊接区的应变速率灵敏度行为。使用光学显微镜观察焊接金属(WM),细粒度热影响区(HAZ)和焊接区中的基金属(BM)的微观结构。在WM,细粒度HAZ和BM的中间区域的0.02 s(-1)至0.2 s(-1)的各种应变速率压痕下进行多种CLR测试,并因此研究了对凹口硬度和产量强度的应变率压痕效应。结果表明,随着应变率压痕的增加,屈服强度和缩进硬度表现出应变率依赖性行为,从而增加屈服强度和压痕硬度。通过使用三种不同的型号来确定WM,细粒度HAZ和BM的应变率灵敏度(SRS)值:压痕硬度,屈服强度和蠕变压痕模型。研究了SM490结构钢焊接区的SRS行为。结果表明,虽然BM的屈服强度和缩进硬度低于HAZ和WM的屈服强度和缩进硬度,但BM具有比细粒度HAZ和WM的最高SRS值。此外,与焊接区中其他组件的SRS值相比,WM具有最低的SRS值。该研究的结果用于评估和理解SM490结构钢焊接区的应变速率灵敏度行为。 (c)2019年由elestvier有限公司发布

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