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Improved strength and ductility balance of medium-carbon steel with chromium and titanium fabricated by friction stir welding process

机译:通过摩擦搅拌焊接工艺制造铬和钛的中碳钢的强度和延展性平衡

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摘要

To investigate the effect of alloying elements on the microstructure and mechanical properties of medium-carbon steel weldments, 0.4% carbon steels with different chromium and titanium contents were fabricated by melting and hot-rolling for friction stir welding (FSW). The microstructures in the stir zones of friction stir welded (FSWed) medium-carbon steels without chromium, with 1% chromium and 4% chromium are ferrite and pearlite, bainite, and fully lath martensite, respectively. The prior austenite grain size was refined by the addition of titanium. High densities of ultrafine-twins are observed in the martensite of FSWed 0.4%C-4%Cr and 0.4% C-4%Cr-0.2%Ti steels, while dense auto-tempered iron carbides with less ultrafine-twins are observed in the lath martensite of FSWed 0.4%C-4%Cr-0.4%Ti steel. The strength of FSWed 0.4%C-4%Cr steels is improved by the martensitic structure, while the ductility of 0.4%C-4%Cr steels decreases significantly compared to that of 0.4%C steels with low chromium content. A small amount of 0.4% titanium addition significantly increases the ductility of 0.4%C-4%Cr-0.4Ti steel, leading to a good combination of high strength of 2270 MPa and high elongation of 18.3%. The substructure changes of the lath martensitic structure caused by the addition of titanium contribute to the brittle to ductile transition of FSWed medium-carbon steel with 4% chromium.
机译:为了研究合金元素对中碳钢焊件微观结构和机械性能的影响,通过熔化和热轧摩擦搅拌焊接(FSW)来制造0.4%具有不同铬和钛含量的碳钢。摩擦搅拌焊接(FSWED)中碳钢的搅拌区中的微观结构分别为1%铬和4%铬是铁氧体和珠光体,贝氏体和完全Lath Martensite。通过加入钛改装先前的奥氏体晶粒尺寸。在FSWED 0.4%C-4%Cr和0.4%C-4%Cr-0.2%Ti钢的马氏体中观察到高密度超细双胞胎,而在较少超细双胞胎的致密自动回火铁碳化铁FSWED 0.4%C-4%CR-0.4%TI钢的Lath马氏体。 FSWED 0.4%C-4%CR钢的强度由马氏体结构改善,而0.4%C-4%Cr钢的延展性与具有低铬含量的0.4%C钢的延展性显着降低。少量0.4%的钛添加显着提高0.4%C-4%CR-0.4ti钢的延展性,导致高强度的良好组合2270MPa,高伸长率为18.3%。由加入钛引起的Lath马氏体结构的亚结构变化有助于具有4%铬的FSWED介质 - 碳钢的脆性转变。

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