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Microstructure and high temperature oxidation resistance of Ti-Ni gradient coating on TA2 titanium alloy fabricated by laser cladding

机译:激光熔覆TA2钛合金上Ti-Ni梯度涂层的组织和高温抗氧化性能

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摘要

To improve the high temperature oxidation resistance of TA2 titanium alloy, a gradient Ni-Ti coating was laser cladded on the surface of the TA2 titanium alloy substrate, and the microstructure and oxidation behavior of the laser cladded coating were investigated experimentally. The gradient coating with a thickness of about 420-490 mu m contains two different layers, e.g. a bright layer with coarse equiaxed grain and a dark layer with fine and columnar dendrites, and a transition layer with a thickness of about 10 gm exists between the substrate and the cladded coating. NiTi, NiTi2 and Ni3Ti intermetallic compounds are the main constructive phases of the laser cladded coating. The appearance of these phases enhances the microhardness, and the dense structure of the coating improves its oxidation resistance. The solidification procedure of the gradient coating is analyzed and different kinds of solidification processes occur due to the heat dissipation during the laser cladding process. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了提高TA2钛合金的高温抗氧化性能,在TA2钛合金基体表面上激光熔覆梯度Ni-Ti涂层,并通过实验研究了该激光熔覆涂层的微观结构和氧化行为。厚度为约420-490μm的梯度涂层包含两个不同的层,例如1μm。在基材和覆层之间存在一层具有粗等轴晶粒的亮层和一层具有细且呈柱状树枝状的暗层,以及厚度约为10 gm的过渡层。 NiTi,NiTi2和Ni3Ti金属间化合物是激光熔覆涂层的主要构造相。这些相的出现增强了显微硬度,并且涂层的致密结构改善了其抗氧化性。对梯度涂层的固化过程进行了分析,由于激光熔覆过程中的散热,会发生不同类型的固化过程。 (C)2016 Elsevier Ltd.保留所有权利。

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