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HAZ softening in Nb-, Ti- and Ti plus V-bearing quenched and tempered steel welds

机译:Nb,Ti和Ti加V轴承调质钢焊接中的HAZ软化

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摘要

Three high-strength Nb-, Ti- and Ti + V-microalloyed S690QL steels were welded to investigate the formation of softened HAZ and its impact on tensile properties. The welding was performed with three levels of heat input to produce softened zones with different characteristics (softening width, minimum hardness and softening ratio), and then, further tensile tests were done to study their influence on weld performance. The results showed that Ti bearing steel exhibited the lowest resistance to softening with the presence of largest soften width and lowest hardness value, causing final tensile failure occurred at softened HAZ. The metallurgical reason for the lower hardness is the high fraction of coarse ferrite. Nb- and Ti + V-bearing steels suffered moderate softening, due to high hardenability with addition of Mo, Nb and V, but the softening effect did not remarkably influence the tensile properties of these two steels.
机译:焊接了三种高强度Nb,Ti和Ti + V +微合金化S690QL钢,以研究软化热影响区的形成及其对拉伸性能的影响。在三个输入热量级别下进行焊接,以产生具有不同特性(软化宽度,最小硬度和软化率)的软化区域,然后进行进一步的拉伸试验以研究其对焊接性能的影响。结果表明,Ti轴承钢在最大的软化宽度和最低的硬度值下表现出最低的抗软化性,导致在软化的热影响区发生最终的拉伸破坏。较低硬度的冶金学原因是粗铁素体的比例较高。含Nb和Ti + V的钢由于添加了Mo,Nb和V的高淬透性而遭受了适度的软化,但是软化效果并未显着影响这两种钢的拉伸性能。

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