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The Relationship between Coating Property and Solid Particle Erosion Resistance of AIP-Deposited TiAlN Coatings with Different Al Contents

机译:不同Al含量的AIP沉积的TiAln涂层涂层性能与固体颗粒腐蚀性的关系

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TiAlN coatings with different Al ratios were deposited by the cathodic arc ion plating (AIP) method, and the relationship between solid particle erosion resistance and structural, mechanical properties was investigated by a micro slurry-jet erosion (MSE) test. The crystal structure of TiAlN coating changes depending on the Al ratio. The coating shows a B1 single cubic phase between the Al ratio of 0 and 0.58; above this ratio, formation of a B4 hexagonal phase is observed. The mechanical properties such as hardness and Young’s modulus of the TiAlN coating also depend on the Al ratio and the crystal structure. The erosion rate decreases by increasing the Al ratio up to 0.58, as the coating is a cubic single phase. The TiAlN coating shows the lowest erosion rate at an Al ratio of 0.58. The erosion rate increases drastically as the crystalline phase changes from the B1 cubic to B4 hexagonal phase at the Al ratio of more than 0.58. The change in erosion rate is also discussed in connection with mechanical properties such as erodent particle hardness to coating hardness ratio and coating hardness to Young’s modulus ratio.
机译:通过阴极电弧离子电镀(AIP)方法沉积具有不同Al比的TiAlN涂层,并通过微浆射流腐蚀(MSE)试验研究了固体颗粒腐蚀性抗性和结构,机械性能之间的关系。 TiAln涂层的晶体结构根据Al比而变化。涂层显示在Al比为0和0.58之间的B1单立方相;以上比率,观察到B4六方相的形成。诸如TiAlN涂层的硬度和杨氏模量的机械性能也取决于Al比和晶体结构。由于涂层是立方单相,侵蚀速率通过增加最高0.58的侵蚀率降低。 TiAlN涂层以Al比为0.58的侵蚀速率显示出最低的腐蚀速率。随着晶相的从B1立方体到B4六方相变为大于0.58的比例,侵蚀速率随着晶体相的变化而增加。还与诸如蚀刻颗粒硬度的机械性能以及涂覆硬度比和涂层硬度与杨氏模量比的涂覆硬度等机械性能有关的侵蚀率的变化。

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