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Effects of Carbon Variation on Microstructure Evolution in Weld Heat-Affected Zone of Nb-Ti Microalloyed Steels

机译:碳变异对Nb-Ti微合金钢焊接热影响区的微观结构演化的影响

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We investigated the effects of C concentration variation from 0.028 to 0.058 wt pct on microstructure of the coarse grained heat-affected zone (CGHAZ) of low heat input girth welded Ti-Nb microalloyed steels by using electron microscope and atom probe tomography. It is found that the CGHAZ microstructure exhibits a systematic response to C variation. Increased C raises the temperature for precipitation of NbC. This leads to coarser (Ti, Nb)N-Nb(C, N) but finer delayed strain-induced NbC in the high-C steel than in the low-C steel. Fine strain-induced NbC are ineffective in preventing austenite grain coarsening in CGHAZ due to their fast dissolution upon heating. For a given inter-particle spacing originally determined by (Ti, Nb)N particles, increased epitaxial growth of Nb(C, N) on pre-existing (Ti, Nb)N in the high-C steel results in a smaller austenite grain size of 34 mu m in the CGHAZ of the high-C steel than that of 52 mu m in the low-C steel. Increased C promotes a microstructure consisting of bainitic lath structure with C Cottrell atmospheres at dislocation debris and martensitic layers of 30 to 100 nm in thickness at inter-lath boundaries in the CGHAZ. Increased C promotes configuration of crystallographic variants belonging to different Bain groups in the neighbors, preferentially twin-related variant pairs within a bainite packet. (C) The Minerals, Metals & Materials Society and ASM International 2018
机译:通过使用电子显微镜和原子探测断层扫描,我们研究了C浓度变化对低热量焊接Ti-Nb微合金钢的粗粒热影响区(CGHAZ)的微观结构的影响。发现CGHAZ微观结构表现出对C变异的系统响应。增加的C提高了NBC沉淀的温度。这导致较粗糙(Ti,Nb)N-Nb(C,N),但在高C钢中较细的延迟应变诱导的NBC而不是低C钢。由于它们在加热时快速溶解,细菌诱导的NBC无效地防止在CGHAZ中粗化。对于最初由(Ti,Nb)N颗粒确定的给定颗粒间隔,在高C钢中的预先存在(Ti,Nb)N上的Nb(C,N)的外延生长增加导致较小的奥氏体晶粒高C钢的CGHAZ大小为34亩,低于低C钢52μm。增加的C促进了由贝氏体板条结构组成的微观结构,其在脱位碎片和在CGHAZ中的内部范围内厚度为30至100nm的马氏体层。增加的C促进了邻居中属于不同咬合组的结晶变体的配置,优先与贝氏体包内的双相关变型对。 (c)2018年矿物质,金属和材料协会和ASM国际

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