首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >Microstructural and tribological properties of nanostructured Al6061-CNT produced by mechanical milling and extrusion
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Microstructural and tribological properties of nanostructured Al6061-CNT produced by mechanical milling and extrusion

机译:机械研磨和挤出生产的纳米结构AL6061-CNT的微观结构和摩擦学性质

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Wear properties of Al6061-CNT nanocomposites have been studied using dry sliding method. Nanostructured Al6061 powder has been prepared using 30 h mechanical milling of atomized powder, and mixed with different percent of CNT. The yielded mixture was subjected to mechanical milling for 0.5 and 4 h. Mixtures were cold compacted, homogenized and extruded to achieve 13 mm diameter round cross section bars. Relative density and hardness of specimens were determined for extruded samples. Maximum relative density was achieved for specimen without CNT which was about 99.848%, while maximum hardness of 236.1 HV was for specimen with 1.25 wt% CNT. Pin on disk method wear test results indicated that weight loss and wear mechanism strongly depends on normal load. At lower normal load, minimum weight loss achieved for Al6061-1.25 wt% CNT nanocomposite at abrasive and delamination mechanisms, while by increasing of normal load, minimum weight loss achieved for specimen without CNT that its wear mechanism was adhesive and delamination. (C) 2017 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:使用干式滑动法研究了Al6061-CNT纳米复合材料的磨损性能。使用30小时机械研磨的雾化粉末制备纳米结构AL6061粉末,并与CNT的不同百分比混合。对所得混合物进行机械研磨0.5和4小时。混合物是冷压实的,均化和挤出,以达到直径13毫米圆形横截面条。测定标本的相对密度和硬度用于挤出的样品。对于没有CNT的样品实现了最大相对密度,其约为99.848%,而236.1HV的最大硬度是用于1.25wt%CNT的标本。磁盘法佩戴试验结果表明,体重减轻和磨损机制强烈取决于正常负载。在较低的正常负荷下,在磨料和分层机构的情况下,在Al6061-1.25 Wt%CNT纳米复合材料中实现的最小重量损失,同时通过增加正常载荷,对样品实现的最小体重减轻而没有CNT,其磨损机构是粘合剂和分层。 (c)2017年日本粉末科技学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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