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Submerged Arc Stainless Steel Strip Cladding-Effect of Post-Weld Heat Treatment on Thermal Fatigue Resistance

机译:埋弧不锈钢带熔覆-焊后热处理对耐热疲劳性的影响

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摘要

Two types of martensitic stainless steel strips, PFB-132 and PFB-131S, were deposited on SS41 carbon steel substrate by a three-pass submerged arc cladding process. The effects of post-weld heat treatment (PWHT) on thermal fatigue resistance and hardness were evaluated by thermal fatigue and hardness testing, respectively. The weld metal microstructure was investigated by utilizing optical microscopy, scanning electron microscopy (SEM) equipped with energy dispersive X-ray spectroscopy (EDS) and transmission electron microscopy (TEM). Results showed that, by increasing the PWHT temperature, hardness decreased but there was a simultaneous improvement in weldment thermal fatigue resistance. During tempering, carbide, such as (Fe, Cr){sub}23C{sub}6, precipitated in the weld metals and molybdenum appeared to promote (Fe, Cr, Mo){sub}23C{sub}6 formation. The precipitates of (Fe, Cr, Mo){sub}23C{sub}6 revealed a face-centered cubic (FCC) structure with fine grains distributed in the microstructure, thereby effectively increasing thermal fatigue resistance. However, by adding nickel, the A{sub}(C1) temperature decreased, causing a negative effect on thermal fatigue resistance.
机译:通过三遍埋弧熔覆工艺将两种类型的马氏体不锈钢带PFB-132和PFB-131S沉积在SS41碳钢基底上。通过热疲劳和硬度测试分别评估了焊后热处理(PWHT)对耐热疲劳性和硬度的影响。通过利用光学显微镜,配备有能量色散X射线能谱(EDS)的扫描电子显微镜(SEM)和透射电子显微镜(TEM)研究了焊接金属的显微组织。结果表明,通过提高PWHT温度,硬度降低,但焊件的抗热疲劳性同时提高。在回火过程中,焊缝金属中析出的碳化物,例如(Fe,Cr){sub} 23C {sub} 6,钼似乎促进了(Fe,Cr,Mo){sub} 23C {sub} 6的形成。 (Fe,Cr,Mo){sub} 23C {sub} 6的析出物显示出具有在微结构中分布的细晶粒的面心立方(FCC)结构,从而有效地提高了抗热疲劳性。然而,通过添加镍,A {sub}(C1)温度降低,从而对耐热疲劳性产生负面影响。

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