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首页> 外文期刊>Indian journal of engineering and materials sciences >Effect of induction heated friction stir welding on corrosive behaviour, mechanical properties and microstructure of AISI 410 stainless steel
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Effect of induction heated friction stir welding on corrosive behaviour, mechanical properties and microstructure of AISI 410 stainless steel

机译:感应加热搅拌摩擦焊对AISI 410不锈钢的腐蚀行为,力学性能和显微组织的影响

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In the current scenario, the industry requires a joining or welding method, which does not produce any environmental hazards. Friction stir welding (FSW) is the future of all metal joining methods because FSW does not produce any harmful byproducts and it enhances the joining strength too. The main limitation of friction stir welding was the difficulty to weld hard metals. The tool damage is very high while welding hard metals. These problems happen while using FSW can be recovered by using an additional heating source such as induction heating, arc heating or resistance heating. The induction heating is the quickest heating method as well as an economic method compared to other heating methods. AISI 410 stainless steel (SS) plate is difficult to weld by conventional welding methods, due to the glassy surface and this glassy surface cause sputtering. AISI 410 SS is chosen for this work and welded by using induction heated friction stir welding method (IH-FSW). The tool used for welding AISI 410 SS is made by using tungsten carbide with a hexagonal profile. A sound joint is fabricated at a spindle speed of 1200 rpm, welding speed of 45 mm/min, plunge depth of 0.05 mm and an additional heat input by using the induction-heating coil is about 100°C at 50 W power respectively.
机译:在当前情况下,该行业需要一种不会产生任何环境危害的连接或焊接方法。搅拌摩擦焊(FSW)是所有金属连接方法的未来,因为FSW不会产生任何有害的副产品,并且还能提高连接强度。搅拌摩擦焊的主要局限性是难以焊接硬质金属。焊接硬质金属时,工具损坏非常严重。这些问题在使用FSW时发生,可以通过使用其他加热源(例如感应加热,电弧加热或电阻加热)来恢复。与其他加热方法相比,感应加热是最快的方法,也是一种经济的方法。 AISI 410不锈钢(SS)板很难通过传统的焊接方法进行焊接,这是因为其玻璃状表面会引起溅射。为此选择AISI 410 SS,并使用感应加热摩擦搅拌焊接方法(IH-FSW)进行焊接。用于焊接AISI 410 SS的工具是使用具有六边形轮廓的碳化钨制成的。以1200 rpm的主轴速度,45 mm / min的焊接速度,0.05 mm的插入深度制造声音接头,并且使用感应加热线圈以50 W的功率分别输入大约100°C的热量。

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