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首页> 外文期刊>Materials Science and Technology: MST: A publication of the Institute of Metals >Aluminium composite coatings produced by plasma transferred arc surfacing technique
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Aluminium composite coatings produced by plasma transferred arc surfacing technique

机译:等离子转移弧堆焊技术生产的铝复合涂料

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摘要

Plasma transferred arc surfacing (PTA) is a hard facing technique by which a coating is deposited on to a substrate by the injection of metal powder and/or ceramic particles into a weld pool. Establishment of a plasma column initiates this weld pool formation. Few studies have been published on the use of PTA in the surface modification of low density substrates such as aluminium or titanium alloys. In the present work, the deposition of metal matrix composite (MMC) coatings on to aluminium 5083 alloy substrates has been achieved. The experimental process involved the codeposition of an aluminium-nickel (Al-2 wt-%Ni) powder containing various ceramics (Al2O3, SiC, and TiC) with discontinuous particulate morphology. Composite coatings of varying reinforcement volume functions V-f(0-40%) and particulate sizes (70-140 mu m) have been fabricated. The first part of the research involved optimisation of the PTA parameters. The second part concentrated on characterising the features of the coatings. Two main aspects were assessed in this endeavour, namely bulk coating properties and microstructural features. Parameters such as dilution content, hardness, surface roughness, and coating adhesion were classified as bulk properties. Microstructural features were represented by porosity, aluminium cell size, matrix structure, and attributes associated with the reinforcement phase, such as V-f, particle length, and aspect ratio. For the optimum values of PTA parameters used, ceramic particle attributes, such as thermal properties, wettability, and V;, directly influenced the coating structure, With this information a fabrication strategy has been presented for the production of coatings which may offer superior tribological properties. (C) 1997 The Institute of Materials.
机译:等离子转移弧堆焊(PTA)是一种硬面技术,通过将金属粉末和/或陶瓷颗粒注入焊缝,可将涂层沉积到基底上。等离子柱的建立启动了该熔池的形成。关于PTA在低密度基材(例如铝或钛合金)的表面改性中的用途的研究很少发表。在目前的工作中,已经实现了将金属基复合材料(MMC)涂层沉积到铝5083合金基底上。实验过程涉及共沉积铝镍(Al-2 wt%Ni)粉末,其中包含各种具有不连续颗粒形态的陶瓷(Al2O3,SiC和TiC)。已经制造出具有不同的增强体积函数V-f(0-40%)和颗粒尺寸(70-140微米)的复合涂层。研究的第一部分涉及PTA参数的优化。第二部分集中于表征涂层的特征。为此,评估了两个主要方面,即整体涂层性能和微观结构特征。诸如稀释含量,硬度,表面粗糙度和涂层附着力之类的参数被分类为整体性质。微观结构特征由孔隙率,铝孔尺寸,基体结构以及与增强相相关的属性(例如V-f,颗粒长度和长宽比)表示。对于所使用的PTA参数的最佳值,陶瓷颗粒属性(如热性能,润湿性和V)直接影响涂层结构,利用这些信息,提出了一种制备涂层的制造策略,该涂层可以提供优异的摩擦学性能。 (C)1997材料研究所。

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