Local strain evolution and microstructural characterisation of hydrogen-induced damage at different strain rates in dual phase (DP 780) steel

IF 3.2 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY Forces in mechanics Pub Date : 2023-09-11 DOI:10.1016/j.finmec.2023.100237
Anuranjan Kumar, Surajit Kumar Paul
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Abstract

Effect of strain rate on the damage behaviour of hydrogen (H)-charged dual phase (DP 780) steel via the in-situ digital image correlation (DIC) technique is investigated in this work. Since stress concentration sites like notches are common in engineering practice, two types of uniaxial tensile tests have been carried out using smooth and notch tensile specimens for detailed analysis. The study reveals the significance of hydrogen embrittlement in DP 780 steel, as no strain rate effect is observed on the mechanical property in the case of an uncharged smooth tensile specimen. However, a significant effect of strain rate is detected after the H-charging. Hydrogen showed a lesser ability to aid the failure process when the applied strain rate is raised, as it could diffuse over a limited distance during the tensile test. The local axial and width strains, along with necking and fracture strains, are quantified for each specimen to understand the strain rate effect better. A centre-line crack is observed in every H-charged specimen's fracture surface owing to the presence of MnS inclusion in DP steel along the central line and its interaction with the atomic hydrogen. Moreover, the degree of hydrogen embrittlement is substantially higher in the notch tensile specimens than in the smooth ones.

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不同应变速率下双相(dp780)钢氢致损伤的局部应变演化与显微组织特征
本文采用原位数字图像相关(DIC)技术研究了应变速率对充氢双相(DP780)钢损伤行为的影响。由于缺口等应力集中部位在工程实践中很常见,因此使用光滑和缺口拉伸试样进行了两种类型的单轴拉伸试验,以进行详细分析。该研究揭示了DP 780钢中氢脆的重要性,因为在不带电的光滑拉伸试样的情况下,没有观察到应变速率对机械性能的影响。然而,在H充电之后检测到应变率的显著影响。当施加的应变速率升高时,氢对破坏过程的辅助能力较弱,因为在拉伸试验过程中,氢可能会扩散到有限的距离上。对每个试样的局部轴向应变和宽度应变,以及颈缩应变和断裂应变进行量化,以更好地了解应变速率效应。由于DP钢中沿中心线存在MnS夹杂物及其与氢原子的相互作用,在每个带氢试样的断裂表面都观察到中心线裂纹。此外,缺口拉伸试样的氢脆程度明显高于光滑试样。
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来源期刊
Forces in mechanics
Forces in mechanics Mechanics of Materials
CiteScore
3.50
自引率
0.00%
发文量
0
审稿时长
52 days
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