Process Temperatures and Material Flow in Friction Stir Welding of High Density Polyethylene (HDPE)

J. Sheikh-Ahmad, R. U. Rehman, S. Deveci, F. Almaskari
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Abstract

In this study we investigate the effect of material temperatures on material flow and weld quality in the friction stir welding of bi-modal high density polyethylene (HDPE). The heat input to the process was controlled by varying the tool rotational speed, welding speed and the material initial temperature. Preheating of the HDPE blanks on the bottom surface of the weld was incorporated in order to increase the material flow in this relatively colder region. Temperatures on the boundary surfaces of the HDPE blanks were measured using an infrared camera and thermocouples. Material flow patterns were observed by welding two different colors of the polymer blanks, white on the advancing side and black on the retreating side. Joint quality was assessed using optical microscopy and joint strength was measured by tensile testing. It was found that material temperatures greatly affect the material flow in the weld zone, which in turn affects the tendency to form defects and the overall joint quality. High joint efficiencies and large elongations in excess of 100% were obtained when the material temperatures across the thickness were in excess of 100 °C.
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高密度聚乙烯(HDPE)搅拌摩擦焊接的工艺温度和物料流动
本文研究了材料温度对双模态高密度聚乙烯(HDPE)搅拌摩擦焊接中材料流动和焊缝质量的影响。通过改变刀具转速、焊接速度和材料初始温度来控制该工艺的热输入。在焊缝底表面对HDPE毛坯进行预热,以增加这个相对较冷区域的材料流动。利用红外摄像机和热电偶对HDPE坯料边界表面的温度进行了测量。通过焊接两种不同颜色的聚合物毛坯,前进侧为白色,后退侧为黑色,观察了材料流动模式。使用光学显微镜评估关节质量,通过拉伸试验测量关节强度。结果表明,材料温度对焊缝区域的材料流动有较大影响,进而影响缺陷的形成趋势和接头的整体质量。当材料温度超过100°C时,接头效率高,伸长率超过100%。
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