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Effect of welding processes and consumables on fatigue crack growth behaviour of armour grade quenched and tempered steel joints

机译:焊接工艺和耗材对铠装级调质钢接头疲劳裂纹扩展行为的影响

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摘要

Quenched and Tempered (Q&T) steels are widely used in the construction of military vehicles due to its high strength to weight ratio and high hardness. These steels are prone to hydrogen induced cracking (HIC) in the heat affected zone (HAZ) after welding. The use of austenitic stainless steel (ASS) consumables to weld the above steel was the only available remedy because of higher solubility for hydrogen in austenitic phase. The use of stainless steel consumables for a non-stainless steel base metal is not economical. Hence, alternate consumables for welding Q&T steels and their vulnerability to HIC need to be explored. Recent studies proved that low hydrogen ferritic steel (LHF) consumables can be used to weld Q&T steels, which can give very low hydrogen levels in the weld deposits. The use of ASS and LHF consumables will lead to distinct microstructures in their respective welds. This microstructural heterogeneity will have a drastic influence in the fatigue crack growth resistance of armour grade Q&T steel welds. Hence, in this investigation an attempt has been made to study the influence of welding con-sumables and welding processes on fatigue crack growth behaviour of armour grade Q&T Steel joints. Shielded metal arc welding (SMAW) and Flux cored arc welding (FCAW) were used for fabrication of joints using ASS and LHF consumables. The joints fabricated by SMAW process using LHF consumable exhibited superior fatigue crack growth resistance than all other joints.
机译:淬火和淬火(Q&T)钢被广泛用于军用车辆的构造,因为其高强度与重量比和高硬度高。在焊接后,这些钢在热影响区域(HAZ)中易于氢致裂化(HIC)。使用奥氏体不锈钢(ASS)焊料以焊接上述钢是唯一可用的补救措施,因为奥氏体相中氢的溶解度较高。使用不锈钢耗材的非不锈钢基础金属是不经济的。因此,需要探索焊接Q&T钢的替代耗材及其对HIC的脆弱性。最近的研究证明,低氢铁钢(LHF)耗材可用于焊接Q&T钢,这可以在焊接沉积物中给出非常低的氢水量。 AS和LHF消耗品的使用将导致各自焊缝中的不同微观结构。这种微观结构的异质性在装甲级Q&T钢焊缝的疲劳裂纹生长抗性中具有激烈的影响。因此,在这项调查中,已经尝试研究焊接扩张和焊接过程对装甲级Q&T钢结构疲劳裂纹生长行为的影响。屏蔽金属弧焊(SMAW)和磁通芯弧焊(FCAW)用于使用ASS和LHF消耗制造接头。通过使用LHF消耗化的Smaw工艺制造的接头表现出比所有其他关节的疲劳裂纹裂纹抗性耐高采烈。

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  • 来源
    《兵工学报(英文版)》 |2014年第1期|47-59|共13页
  • 作者单位

    Department of Mechanical Engineering, PSNA College of Engineering & Technology, Kothandaraman Nagar, Muthanampatti, 624622 Tamilnadu, India;

    Centre for Materials Joining & Research, Department of Manufacturing Engineering, Annamalai University, Annamalai Nagar, 608002 Tamil Nadu, India;

    Metal Joining Group, Solidification Technology Division, Defence Metallurgical Research Laboratory, Kanchanbagh, Hyderabad 500058, India;

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  • 入库时间 2022-08-19 03:35:07
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