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Effect of Taper Pin Ratio on Microstructure and Mechanical Property of Friction Stir Welded AZ31 Magnesium Alloy

机译:锥销比对搅拌摩擦焊接AZ31镁合金组织和力学性能的影响

摘要

This study focuses on the effect of pin taper tool ratio on friction stir welding of magnesium alloy AZ31. Two pieces of AZ31 alloy with thickness of 6 mm were friction stir welded by using conventional milling machine. The shoulder diameter used in this experiment is fixed at 18mm. The taper pin ratio used are varied at 6:6, 6:5, 6:4, 6:3, 6:2 and 6:1. The rotational speeds that were used in this study were 500 rpm, 1000 rpm and 1500 rpm, respectively. The welding speeds used are 150 mm/min, 200 mm/min and 250 mm/min. Microstructure observation of welded area was studied by using optical microscope. Equiaxed grains were observed at the TMAZ and stir zone indicating fully plastic deformation. Tool pin diameter ratio 6/1 causes low heat input to the material because of small contact surface between tool surface and stirred materials compared to other tool pin diameter ratio. The grain size of stir zone increased with increasing of ratio of rotational speed to transverse speed due to higher heat input. It is observed that, worm hole is produced when excessive heat input is applied. To evaluate the mechanical properties of this specimen, tensile test was used in this study. Welded specimens using taper pin ratio 6:1 shows higher tensile strength compared to other taper pin ratio up to 204 MPa. Moreover, specimens using taper pin ratio 6:1 showed better tensile strength with 500 rpm of rotational speed and 150mm/min welding speed.udud
机译:本研究着重研究销钉锥度比对镁合金AZ31搅拌摩擦焊接的影响。使用常规铣床将两片厚度为6 mm的AZ31合金摩擦搅拌焊接。本实验中使用的肩部直径固定为18mm。所用的锥销比率在6:6、6:5、6:4、6:3、6:2和6:1之间变化。本研究中使用的转速分别为500 rpm,1000 rpm和1500 rpm。所用的焊接速度为150mm / min,200mm / min和250mm / min。用光学显微镜研究了焊接区域的显微组织。在TMAZ和搅拌区观察到等轴晶,表明完全塑性变形。相比于其他工具销直径比,工具销直径比6/1导致材料的热量输入较低,因为工具表面与搅拌的材料之间的接触面较小。由于较高的热输入,搅拌区的晶粒尺寸随转速与横向速度之比的增加而增加。观察到,当施加过多的热输入时会产生蜗杆孔。为了评估该样品的机械性能,在这项研究中使用了拉伸试验。使用锥销比为6:1的焊接样品,与其他高达204 MPa的锥销比相比,具有更高的拉伸强度。此外,使用锥销比为6:1的样品在500 rpm的转速和150mm / min的焊接速度下表现出更好的拉伸强度。

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