首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Numerical simulation on an effect of backing plates on joint temperature and weld quality in air and immersed FSW of AA2014-T6
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Numerical simulation on an effect of backing plates on joint temperature and weld quality in air and immersed FSW of AA2014-T6

机译:用于AA2014-T6空气接头温度和焊接质量的背衬板效果的数值模拟及AA2014-T6的FSW

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摘要

In immersed friction stir welding (FSW), the workpiece is fully immersed in the water during welding. Thermal numerical model development of air and immersed FSW is carried out using three-dimensional heat transfer model. FSW joints were produced in AA2014-T6 plate using different backing plates like mild steel, asbestos, and copper in both air and immersed conditions. K-type thermocouples are used to measure the temperature profile at different locations on the workpiece during air and immersed FSW. Commercially available software ANSYS is used to develop thermal numerical model using temperature-dependent material properties of AA2014-T6. The coefficient of friction between a tool and plate has been considered constant throughout the analysis for the simplification for both air and immersed conditions. Simulation results obtained both for air and immersed FSW are in good agreement with those obtained experimentally. It is observed that diffusivity of backing plate affects the temperature of weld region. It is also observed that higher tensile strength and microhardness attained for the joints produced using mild steel backing plate in immersed FSW compared with other backing plates for the same weld parameters.
机译:在浸渍摩擦搅拌焊接(FSW)中,在焊接过程中,工件完全浸入水中。使用三维传热模型进行空气和浸没的FSW的热数模型开发。在AA2014-T6板中使用不同的背衬板,在空气和浸入条件下,在AA2014-T6板中生产FSW接头。 K型热电偶用于在空气中测量工件上不同位置的温度曲线并浸没FSW。市售的软件ANSYS用于使用AA2014-T6的温度依赖性材料特性开发热数模型。在整个分析过程中,工具和板之间的摩擦系数被认为是恒定的,用于空气和浸入条件的简化。对空气和浸入FSW的仿真结果与实验获得的人吻合良好。观察到背板的扩散性影响焊接区域的温度。还观察到,与用于相同焊接参数的其他板板相比,使用温和钢背板在浸入的FSW中使用温和钢背衬板产生的接头达到较高的拉伸强度和显微硬度。

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