The Effects of Pin Profile on HDPE Thermomechanical Phenomena during FSW

高密度聚乙烯 截头台 材料科学 搅拌摩擦焊 复合材料 发热 热流密度 焊接 聚乙烯 传热 机械 几何学 热力学 数学 物理
作者
Hassanein I. Khalaf,Raheem Al‐Sabur,Murat Demiral,Jacek Tomków,Jerzy Łabanowski,Mahmoud E. Abdullah,Hamed Aghajani Derazkola
出处
期刊:Polymers [MDPI AG]
卷期号:14 (21): 4632-4632 被引量:18
标识
DOI:10.3390/polym14214632
摘要

Friction stir welding (FSW) of polymeric materials has recently attracted significant attention. Herein, we present the effect of the tool pin profile on the FSW of high-density polyethylene (HDPE) joints through joint experimental analysis and thermomechanical simulations. For analysis of pin profile effects on the thermomechanical properties of HDPE joints, frustum (FPT), cubic (CPT), and triangular (TPT) pin shapes were selected in this study. This research investigated the heat generation of the parts of the different tools as well as heat flux (internal and surface). The results revealed that the heat generation in pins with more edges (cubic (96 °C) and triangular (94 °C)) was greater than in pins with a smooth shape (frustum (91 °C)). The higher heat generation caused the heat flux on the surface of the HDPE from the cubic pin profile to be greater than for other joints. Due to the properties of HDPE, higher heat generation caused higher material velocity in the stirring zone, where the velocity of the materials in TPT, CPT, and FPT pins were 0.41 m/s, 0.42 m/s, and 0.4 m/s, respectively. The simulation results show sharp-edged pins, such as triangular and cubic, lead to over-stirring action and internal voids formed along the joint line. Furthermore, the simulation results indicated that the size of the stirred zones (SZs) of the FPT, TPT, and CPT samples were 17 mm2, 19 mm2, and 21 mm2, respectively, which is around three times the corresponding values in the HAZ.
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