首页> 外文期刊>Proceedings of the institution of mechanical engineers >An experimental investigation and optimization of friction stir welding process for AA6082 T6 (cryogenic treated and untreated) using an integrated approach of Taguchi, grey relational analysis and entropy method
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An experimental investigation and optimization of friction stir welding process for AA6082 T6 (cryogenic treated and untreated) using an integrated approach of Taguchi, grey relational analysis and entropy method

机译:田口集成法,灰色关联分析和熵权法综合评价AA6082 T6(深冷处理和未处理)摩擦搅拌焊接工艺的实验研究和优化。

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摘要

Friction stir welding is a solid state welding in which two metal parts are joined without melting with the help of frictional heat generated between the work material and non-consumable tool. Because of the poor microstructure, cracks, porosity and residual stresses in fusion welding of aircraft aluminium alloys, friction stir welding is highly attractive for joints in aircraft structures. In the present work, using Taguchi's design of experiment method, combined effect of process parameters namely tool rotation speed, welding speed (or traverse speed of tool), tool pin profile and tool shoulder diameter have been investigated for the ultimate tensile strength and percentage elongation of friction stir welded joints of AA6082 alloy. Two similar sets of experiments were performed to prepare the friction stir welded joints; first samples of AA 6082-T6 (solution heat treated and artificially aged) were friction stir welded and second cryogenic treated AA6082 alloy were friction stir welded . A comparison in the optimal conditions of two sets of experiments has also been presented. In tempered aluminium alloy, three process parameters namely tool rotation, weld speed and tool shoulder diameter are significantly affecting ultimate tensile strength, while all four parameters are significant for percentage elongation. The influence of cryogenic treatment has also been noticed on two response characteristics. An integrated approach of Taguchi method, grey relational analysis and entropy measurement method have been utilized to obtain an optimal single setting of process parameters for two response characteristics. For the friction stir welded joint of AA6082-T6 (without cryogenic treatment), a single optimal setting of process parameters was obtained corresponding to tool rotation: 1200r/min, weld speed: 35mm/min, tool pin profile, threaded cylindrical and tool shoulder diameter: 16mm. Similarly, the single optimal setting for cryogenic treated aluminium alloy (AA6082) was obtained corresponding to tool rotation: 1200r/.min, weld speed: 35mm/min, tool pin profile, cylindrical and tool shoulder diameter: 14mm.
机译:搅拌摩擦焊是一种固态焊接,其中两个金属零件在工作材料和非消耗性工具之间产生的摩擦热的帮助下连接在一起而不会熔化。由于飞机铝合金的熔焊中不良的微观结构,裂纹,孔隙率和残余应力,搅拌摩擦焊对于飞机结构中的接头非常有吸引力。在当前工作中,使用田口设计的实验方法,研究了工艺参数(即刀具转速,焊接速度(或刀具的行进速度),刀具销轮廓和刀肩直径)的综合影响,以得出极限抗拉强度和伸长率百分比AA6082合金的搅拌摩擦焊接头的制造。进行了两组相似的实验,以准备搅拌摩擦焊接接头;将第一批AA 6082-T6样品(固溶热处理和人工时效)进行摩擦搅拌焊接,然后将第二台低温处理的AA6082合金进行摩擦搅拌焊接。还提出了两组实验的最佳条件的比较。在回火铝合金中,三个工艺参数,即刀具旋转,焊接速度和刀肩直径,会显着影响极限抗拉强度,而所有四个参数对于百分比伸长率都非常重要。低温处理的影响还注意到了两个响应特征。 Taguchi方法,灰色关联分析和熵测量方法的综合方法已被用于获得针对两个响应特性的最佳工艺参数的单一设置。对于AA6082-T6的搅拌摩擦焊接接头(未经低温处理),获得了一个最佳的工艺参数设置,对应于工具旋转:1200r / min,焊接速度:35mm / min,工具销轮廓,螺纹圆柱和工具肩直径:16mm类似地,对应于工具旋转:1200r / .min,焊接速度:35mm / min,工具销轮廓,圆柱和工具肩直径:14mm,获得了低温处理的铝合金(AA6082)的单个最佳设置。

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