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Laser-surface alloying of a titanium aluminide alloy for Al2O3/TiAl wear-resistant composite coatings

机译:用于AL2O3 / TiA1耐磨复合涂料的铝化铝合金激光表面合金

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Laser surface alloying using nickel-class Al$-2$/O$-3$/ powder pre-coatings is employed to improve the wear resistance of a $gamma@-TiAl intermetallic alloy Ti-48Al- 2Cr-2Nb. An `in-situ' wear resistant $gamma@-TiAl matrix composite coating reinforced by rapidly solidified Al$- 2$/O$-3$/ particles is fabricated on substrate of the $gamma@-TiAl intermetallic alloy. The distribution of the Al$-2$/O$-3$/ reinforcing phase throughout the laser surface alloyed Al$-2$/O$-3$//TiAl composite coating is uniform except in the transition zone to the substrate where the coating's microstructure exhibits strong gradient characteristics. The bonding of laser surface alloyed coating to the substrate is of high quality metallurgical. Cracking of the laser surface alloyed coatings can be completely eliminated by preheating and post treatment slow- cooling. Both hardness and wear resistance of the $gamma@-TiAl intermetallic alloy are significantly enhanced after laser surface alloying treatment.
机译:使用镍级Al $-2 $ / O $-3 /粉末预涂层激光表面合金化用于提高$伽玛@ -Tial金属间合金TI-48Al-2NB的耐磨性。通过迅速凝固的Al - 2美元$-$-3 $ /颗粒加强的“原位”耐磨$γ@ -Tial矩阵复合涂料在$ Gamma @ -Tial金属间合金的基板上制造。在整个激光表面的Al $ -2 $ / O $-3 $ /增强阶段的分布合金合金Al $-$ -2 $ -3 $ // Tial复合涂层除了过渡区外,均匀涂层的微观结构表现出强烈的梯度特性。激光表面合金涂层与基材的粘合是高品质的冶金。通过预热和后处理缓慢冷却,可以完全消除激光表面合金涂料的开裂。激光表面合金处理后,$ Gamma @ -Tial金属间合金的硬度和耐磨性均显着提高。

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