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Anisotropy of the Wear and Mechanical Properties of Extruded Aluminum Alloy Rods (AA2024-T4)

机译:挤出铝合金棒的磨损和力学性能的各向异性(AA2024-T4)

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摘要

The anisotropy of the wear and mechanical properties of extruded aluminum alloy rods (AA2024-T4) were investigated by ball-on-disk wear testing, hardness and tensile testing, optical microscopy and field-emission scanning electron microscopy, and electron backscatter diffraction. The microstructure, particularly the grain size, grain morphology, and distribution of intermetallic compounds, differed according to the extrusion direction. The results show that the extruded aluminum alloy rod exhibits anisotropic wear and mechanical properties because of this microstructural anisotropy effect. The tensile tests showed that the yield strength, ultimate tensile strength, and elongation differed according to the extrusion direction. It was confirmed that the yield strength and ultimate tensile strength were the highest in the longitudinal of the specimens. In the hardness and thermal property testing, the transverse specimens showed the highest hardness, thermal conductivity, and specific heat capacity. In wear testing, the wear rate and friction temperature in each direction under equal wear conditions differed because of the microstructural anisotropy effect. As the vertical load and linear velocity were increased in all directions, the wear behaviors of abrasion wear and small delamination, adhesion wear and delamination, galling, and seizure occurred in sequential order. However, the point at which the wear behavior changed differed for each direction. The transition of wear behavior occurred more slowly for transverse specimens than those of the other two directions (LD, 45 degrees).
机译:通过球盘磨损试验,硬度和拉伸检测,光学显微镜和现场 - 发射扫描电子显微镜研究了挤出铝合金棒(AA2024-T4)的耐磨和力学性能的各向异性,以及电子反向散射衍射。金属间化合物的微观结构,特别是粒度,晶粒形态和分布,根据挤出方向不同。结果表明,由于这种微观结构各向异性效应,挤出的铝合金杆表现出各向异性磨损和机械性能。拉伸试验表明,屈服强度,极限拉伸强度和伸长率根据挤出方向而不同。证实,屈服强度和最终拉伸强度在标本的纵向中最高。在硬度和热性能测试中,横向标本显示出最高的硬度,导热性和比热容。在磨损测试中,由于微观结构各向异性效应,在等于磨损条件下的每个方向上的磨损率和摩擦温度不同。随着垂直载荷和线性速度的所有方向增加,磨损磨损和小分层,粘附磨损和分层,胶合和癫痫发作的磨损行为以顺序排列。然而,每个方向的磨损行为改变的点。横向标本比其他两个方向(LD,45度)的横向标本更慢地发生磨损行为的转变。

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