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Effect of welding processes on mechanical and microstructural characteristics of high strength low alloy naval grade steel joints 被引量:6
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作者 S.RAGU NATHAN V.BALASUBRAMANIAN +1 位作者 S.MALARVIZHI a.g.rao 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2015年第3期308-317,共10页
Naval grade high strength low alloy(HSLA) steels can be easily welded by all types of fusion welding processes. However, fusion welding of these steels leads to the problems such as cold cracking, residual stress, dis... Naval grade high strength low alloy(HSLA) steels can be easily welded by all types of fusion welding processes. However, fusion welding of these steels leads to the problems such as cold cracking, residual stress, distortion and fatigue damage. These problems can be eliminated by solid state welding process such as friction stir welding(FSW). In this investigation, a comparative evaluation of mechanical(tensile, impact,hardness) properties and microstructural features of shielded metal arc(SMA), gas metal arc(GMA) and friction stir welded(FSW) naval grade HSLA steel joints was carried out. It was found that the use of FSW process eliminated the problems related to fusion welding processes and also resulted in the superior mechanical properties compared to GMA and SMA welded joints. 展开更多
关键词 低合金高强度钢 焊接工艺 钢接头 组织结构 力学性能 搅拌摩擦焊 机械特性 焊接方法
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Consequence of reinforced SiC particles and post process artificial ageing on microstructure and mechanical properties of friction stir processed AA7075
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作者 H.A.Deore A.Bhardwaj +2 位作者 a.g.rao J.Mishra V.D.Hiwarkar 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2020年第5期1039-1050,共12页
Friction stir processing and post process artificial ageing was successfully carried out on AA7075 with and without reinforcement of SiC particles producing defect free processed zone with uniform distribution of fill... Friction stir processing and post process artificial ageing was successfully carried out on AA7075 with and without reinforcement of SiC particles producing defect free processed zone with uniform distribution of filler material.Effect of SiC particle reinforcement and artificial ageing times on the microstructural modifications was characterized using optical and electron microscopy,electron backscattered diffraction and X-Ray diffraction.Hardness,impact and wear tests were carried out to investigate mechanical behaviour before and after processing.Reinforcement of SiC particles during FSP and subsequent age hardening treatment brought about nearly twofold increase in hardness and impact toughness values by the combined effect of grain refinement,Zener pinning,dispersion strengthening and precipitation hardening.Significant improvement in wear resistance in terms of wear loss was also observed after processing compared to the reference material AA7075-T6.Fractured surface of post FSP age hardened AA7075 alloy exhibited features of ductile fracture during Charpy impact test. 展开更多
关键词 Friction stir processing EBSD Impact toughness Post process age hardening Zener pinning
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Influence of Multi-pass Friction Stir Processing on Microstructure and Mechanical Properties of Die Cast AI-7Si-3Cu Aluminum Alloy 被引量:3
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作者 L.John Baruch R.Raju +2 位作者 V.Balasubramanian a.g.rao I.Dinaharan 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2016年第5期431-440,共10页
The influence of overlap multi-pass friction stir processing on the microstructure and the mechanical properties, in particular, strength, ductility and hardness of die cast A1-7Si-3Cu aluminum alloy was investigated.... The influence of overlap multi-pass friction stir processing on the microstructure and the mechanical properties, in particular, strength, ductility and hardness of die cast A1-7Si-3Cu aluminum alloy was investigated. It was observed that increase in the number of overlap passes friction stir processing resulted in significant refinement and redistribution of aluminum silicon eutectic phase and elimination of casting porosities. The microstructural refinement by the friction stir processing not only increases the ultimate tensile strength from 121 to 273 MPa, but also increases the ductility as observed by the increase in fracture strain from 1.8% to 10%. Analysis of the fractured surface reveals that the microstructural refinement obtained by friction stir processing plays a vital role in transforming the fracture mode from completely mixed mode to the ductile mode of the fracture with increasing number of passes. The change in the size, shape, morphology and distribution of eutectic silicon particles and elimination of the porosities are the main reasons for the increases in tensile strength and ductility due to friction stir processing. 展开更多
关键词 Friction stir processing Overlap multi-pass Microstructure Mechanical properties
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