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Numerical Simulation of the Effect of Shoulder Rotation on the Tensile Strength of FSW Dissimilar Joints of Aluminum Alloy

机译:肩旋转效果对铝合金FSW不同关节抗拉强度的数值模拟

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Dissimilar weld metal joints such as aluminum alloys 5083 and 6061-T6 are mostly found in the application of aircraft, railroad structures, ships, bridges, and oil platforms and building structures. However, dissimilar welding metal is relatively more difficult due to metallurgical differences and the thermophysical properties of two different materials. The purpose of this study is to study the effect of shoulder rotation variations on the Friction Stir Welding (FSW) process through numerical simulations on the mechanical properties of dissimilar weld joints between two series of aluminum alloys, and there are 5083 and 6061-T6. The FSW welding simulation process is conducted by butt joints type on 300 x 100 x 3 mm of both aluminum plates with weld distance is 300 mm. Shoulder rotation variations are carried out for this process include 1,200, 1,400 and 1,600 rpm. Results show maximum temperature distributions are 467 °C for 1,200 rpm, 499 °C for 1,400 rpm and 527 °C for 1,600 rpm, respectively. Maximum temperatures appear close to the liquid temperature of A1-6061-T6 and Al 5083 base metals, which is about 600 °C. Physical and mechanical analysis at 1,200 rpm (the rotation parameter) can be seen as the coarse weld beads on the microstructure, and the weld joint is still weak. The physical properties observed that coarse weld beads on microstructures, the tensile strength obtained 138 MPa at 1,200 rpm (the rotation parameter). The maximum hardness test occurred 47.98 (Kg/mm~2 in averages) at 1,400 rpm. The tensile strength of the dissimilar FSW process is 151 MPa occurred at 1,600 rpm of shoulder rotation speed. While the fracture position occurs in the nugget weld area for all parameters and corresponds with the result of hardness tests, it shows that low hardness value for the whole weld area for all parameters.
机译:异种焊接金属关节如铝合金5083和6061-T6在飞机,铁路建筑物,船舶,桥梁和石油平台和建筑结构的应用大多发现。然而,由于冶金差异和两种不同材料的热物理性质,不同的焊接金属相对较困难。本研究的目的是研究肩旋转变化对摩擦搅拌焊接(FSW)工艺的影响,通过数值模拟在两种铝合金之间不同焊接接头的机械性能,并且有5083和6061-T6。 FSW焊接仿真工艺由对接接头型在300×100×3mm,焊接距离的铝板均为300毫米。对该方法进行肩部旋转变化包括1,200,1,400和1,600rpm。结果显示最大的温度分布是467℃下进行1200转,499℃下进行1400转和527℃下进行1600转,分别。最大温度近于A1-6061-T6和Al 5083碱基金属的液体温度近约600℃。 1,200 RPM(旋转参数)的物理和机械分析可以看作微结构上的粗焊珠,并且焊接接头仍然弱。物理性质观察显微组织粗大焊缝,拉伸强度得到138兆帕以1,200rpm(旋转参数)。最大硬度测试发生在1,400rpm的47.98(平均值)47.98(kg / mm〜2)。不同的FSW工艺的拉伸强度为151MPa,肩转速为1,600rpm。虽然骨折位置发生在块焊接区域的所有参数中,并且对应于硬度测试的结果,但它表明所有参数的整个焊接区域的低硬度值。

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