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Effect of Stress Relief Annealing on Microstructure & Mechanical Properties of Welded Joints Between Low Alloy Carbon Steel and Stainless Steel

机译:应力消除退火对低合金碳钢和不锈钢焊接接头微观结构和力学性能的影响

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摘要

Two types of welded joints were prepared using low alloy carbon steel and austenitic stainless steel as base materials. In one variety, buttering material and weld metal were Inconel 82. In another type, buttering material and weld metal were Inconel 182. In case of Inconel 82, method of welding was GTAW. For Inconel 182, welding was done by SMAW technique. For one set of each joints after buttering, stress relief annealing was done at similar to 923 K (650 A degrees C) for 90 minutes before further joining with weld metal. Microstructural investigation and sub-size in situ tensile testing in scanning electron microscope were carried out for buttered-welded and buttered-stress relieved-welded specimens. Adjacent to fusion boundary, heat-affected zone of low alloy steel consisted of ferrite-pearlite phase combination. Immediately after fusion boundary in low alloy steel side, there was increase in matrix grain size. Same trend was observed in the region of austenitic stainless steel that was close to fusion boundary between weld metal-stainless steel. Close to interface between low alloy steel-buttering material, the region contained martensite, Type-I boundary and Type-II boundary. Peak hardness was obtained close to fusion boundary between low alloy steel and buttering material. In this respect, a minimum hardness was observed within buttering material. The peak hardness was shifted toward buttering material after stress relief annealing. During tensile testing no deformation occurred within low alloy steel and failure was completely through buttering material. Crack initiated near fusion boundary between low alloy steel-buttering material for welded specimens and the same shifted away from fusion boundary for stress relieved annealed specimens. This observation was at par with the characteristics of microhardness profile. In as welded condition, joints fabricated with Inconel 82 exhibited superior bond strength than the weld produced with Inconel 182. Stress relief annealing reduced the strength of transition joints and the reduction was maximum for specimen welded with Inconel 82. (C) The Minerals, Metals & Materials Society and ASM International 2016
机译:使用低合金碳钢和奥氏体不锈钢为基材,制备两种类型的焊接接头。在一个品种,黄油材料和焊接金属都因科镍合金82在另一种类型,黄油材料和焊接金属都因科镍合金182在因科镍合金82的情况下,焊接的方法是GTAW。对于铬镍铁合金182,焊接是由手工电弧焊技术来完成。对于一组堆焊后的各接头,消除应力退火是在类似于923 K(650℃)进一步用焊接金属接合之前进行90分钟。原位拉伸显微组织调查和子尺寸在扫描电子显微镜测试是为黄油焊接和黄油-应力消除焊接试样进行。邻近于融合边界,低合金钢的热影响区包括铁素体 - 珠光体相组合。在低合金钢侧融合边界后,立即出现了增加基质的晶粒尺寸。在奥氏体不锈钢,这是接近焊缝金属不锈钢之间的融合边界的区域中,观察到相同的趋势。接近低合金钢-巴结材料之间的界面,该区域含有马氏体,I型边界和II型边界。峰值硬度得到接近低合金钢和黄油材料之间的融合边界。在这方面,被内黄油材料中观察到的最小硬度。峰值硬度朝向消除应力退火后巴结材料移位。在拉伸试验不变形发生低合金钢内和失败是完全通过堆焊材料。裂纹引发低合金钢-巴结材料之间接近熔融边界为焊接样品和相同的从熔融边界移开用于消除应力退火试样。这个观察是在同水准与硬度分布的特性。在作为焊接条件,关节制造成具有因科镍合金82表现出优异的粘接强度比用因科镍合金182应力退火产生的焊接减少过渡接头的强度和减少是最大为试样焊接用因科镍合金82(C)矿物,金属与材料协会和ASM国际2016

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    Natl Inst Technol Dept Met &

    Mat Engn Adv Mat Proc Lab Tiruchchirappalli 620015 Tamil Nadu India;

    CSIR Natl Met Lab Mat Sci &

    Technol Div Jamshedpur 831007 Bihar India;

    CSIR Natl Met Lab Mat Sci &

    Technol Div Jamshedpur 831007 Bihar India;

    CSIR Natl Met Lab Mat Sci &

    Technol Div Jamshedpur 831007 Bihar India;

    Bhaba Atom Res Ctr Reactor Safety Div Mumbai 400085 Maharashtra India;

    Natl Inst Technol Dept Met &

    Mat Engn Adv Mat Proc Lab Tiruchchirappalli 620015 Tamil Nadu India;

    Bhaba Atom Res Ctr Reactor Safety Div Mumbai 400085 Maharashtra India;

    CSIR Natl Met Lab Mat Sci &

    Technol Div Jamshedpur 831007 Bihar India;

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  • 正文语种 eng
  • 中图分类 冶金技术;
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