首页> 外文会议>International Thermal Spray Conference, May 28-30, 2001, Singapore >Surface modification of plasma sprayed coating by using YAG laser equipped with a kaleidoscope
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Surface modification of plasma sprayed coating by using YAG laser equipped with a kaleidoscope

机译:使用装有万花筒的YAG激光对等离子喷涂涂层进行表面改性

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Thermal spraying technique has been widely applied for the production of ceramic protection layer on metals that used in various hostile environments. However, all sprayed coatings have defects such as connected pores and unmelted particles, which deteriorate coating properties. To improve the properties of sprayed coatings, a lot of approaches have been undertaken such as laser irradiation, seal sintering with liquid alloys and sol-gel infiltration technique. Lasers are promising technological tools due to its speedy treatment and simplicity of process control. Moreover, laser treatment technology enables not only the post-treatment but also the pre and simultaneous treatment by combining with spraying process. Generally, wide beams of as uniform as possible are preferred for use in laser surface treatment to obtain a uniform depth of melting, alloying or cladding and to cover a large area by partially overlapping of tracks. However, it is not easy to produce a uniformly treated coating by conventional laser treatment method as desired. To obtain a near-uniform beam intensity for practical laser irradiation, a kaleidoscope was installed in a conventional YAG laser. In this research, laser beam properties of YAG laser equipped with a kaleidoscope and its effect on surface modification of plasma sprayed zirconia coatings and WC-Co system coatings prepared by HVOF spraying was investigated.
机译:热喷涂技术已广泛应用于在各种恶劣环境中使用的金属上生产陶瓷保护层。但是,所有喷涂的涂层都有诸如连通的孔和未熔化的颗粒之类的缺陷,这会降低涂层性能。为了改善喷涂涂层的性能,已经采取了许多方法,例如激光辐照,用液态合金进行密封烧结以及溶胶-凝胶渗透技术。由于激光的快速处理和过程控制的简单性,激光是有前途的技术工具。此外,激光处理技术结合喷涂工艺,不仅可以进行后处理,还可以进行预处理和同时处理。通常,在激光表面处理中优选使用尽可能均匀的宽光束,以获得均匀的熔化,合金化或熔覆深度,并通过轨道的部分重叠来覆盖大面积。但是,通过所需的常规激光处理方法生产均匀处理的涂层并不容易。为了获得用于实际激光照射的近乎均匀的光束强度,在传统的YAG激光器中安装了万花筒。在这项研究中,研究了配备万花筒的YAG激光器的激光束特性及其对等离子喷涂氧化锆涂层和HVOF喷涂制备的WC-Co系统涂层的表面改性的影响。

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