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The sensitivity analysis of microstructure and mechanical properties to welding parameters for linear friction welded rail steel joints

机译:线性摩擦焊接钢轨接头组织和力学性能对焊接参数的敏感性分析

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摘要

In this study, high carbon rail steel (U71Mn, Chinese grade) was welded by linear friction welding (LFW) under different welding parameters. The microstructure and mechanical properties of the joints were characterized to investigate the connection mechanism of the joint. In order to fully yield the metal at the welding interface, sufficient heat input must be provided with friction to fully offset the heat loss. Therefore, welding parameters have a decisive influence on joint quality. The joint can be divided into the weld center zone (WCZ), the thermo-mechanically affected zone (TMAZ), the heat affected zone (HAZ) and the base material (BM). The BM have a mixed microstructure of the pearlite and upper bainite, and the TMAZ consists of pearlite and a small amount of martensite. In WCZ, the martensite content increases further due to the higher cooling rate. During LFW, dynamic recrystallization occurs in the weld, which results in a significant change in the ratio of the deformed grain, sub-structure grain and recrystallized grain compared with that in BM. In the tensile test, all samples have fractured in WCZ. The highest tensile strength reached of the joint is 78.5% of the BM strength. In addition, there is a large amount of martensite in WCZ, which increases the microhardness while reduces the toughness of the weld.
机译:在这项研究中,高碳钢(U71Mn,中国等级)是通过线性摩擦焊(LFW)在不同的焊接参数下进行焊接的。表征了接头的微观结构和力学性能,以研究接头的连接机理。为了在焊接界面处完全屈服金属,必须提供足够的热量输入并带有摩擦力,以完全抵消热量的损失。因此,焊接参数对接头质量具有决定性的影响。接头可分为焊接中心区(WCZ),热机械影响区(TMAZ),热影响区(HAZ)和基础材料(BM)。 BM具有珠光体和上贝氏体的混合微观结构,TMAZ由珠光体和少量马氏体组成。在WCZ中,由于较高的冷却速度,马氏体含量进一步增加。 LFW期间,焊缝中发生动态再结晶,与BM相比,变形晶粒,子结构晶粒和再结晶晶粒的比率发生了显着变化。在拉伸试验中,所有样品均在WCZ中断裂。接头达到的最高抗拉强度是BM强度的78.5%。此外,WCZ中存在大量的马氏体,从而增加了显微硬度,同时降低了焊接的韧性。

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