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Fabrication of TiAl intermetallic phases by heat treatment of warm sprayed metal precursors

机译:通过热喷涂金属前体的热处理制备TiAl金属间相

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摘要

Warm Spraying is an atmospheric coating process based on high-velocity impact bonding of powder particles. By decreasing the temperature of combustion gas via mixing with nitrogen the oxidation of feedstock powder can be effectively controlled. This is particularly important for Ti-based coating materials, which rapidly oxidize at elevated temperatures. In this study, Ti-Al composite coatings were fabricated by the Warm Spray process using a mixture of titanium and aluminum powders as a feedstock and applying a two-stage heat treatment at 600 and 1000 °C to obtain intefmetallic phases. The microstructure, chemical and phase composition of the deposited and heat-treated coatings were investigated using SEM, EDS and XRD. The experimental results show that TiAl_3 was the first intermetallic phase formed during the first-stage heat treatment. The growth of TiAl_3 layer occurred mainly by diffusion of Al into Ti particles. Significant porosity that developed during the heat treatment was caused mainly by Kirkendall effect. After the second-stage heat treatment, a coating layer with TiAl as the dominant phase was obtained with about 20 vol % porosity.
机译:暖喷涂是一种基于粉末颗粒高速冲击粘合的常压涂层工艺。通过与氮气混合降低燃烧气体的温度,可以有效地控制原料粉末的氧化。这对于在高温下迅速氧化的Ti基涂层材料尤其重要。在这项研究中,通过使用钛和铝粉的混合物作为原料并在600和1000°C进行两阶段热处理以获得金属相,通过热喷涂工艺制备了Ti-Al复合涂层。使用SEM,EDS和XRD研究了沉积和热处理涂层的微观结构,化学和相组成。实验结果表明,TiAl_3是第一阶段热处理过程中形成的第一金属间相。 TiAl_3层的生长主要是由于Al扩散到Ti颗粒中。热处理过程中产生的大量孔隙主要是由柯肯德尔效应引起的。在第二阶段热处理之后,获得具有约20体积%孔隙率的以TiAl为主相的涂层。

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