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Modification of Ceramic Thermal Spray Deposit Microstructure Implementing Laser Treatment

机译:激光处理对陶瓷热喷涂沉积微结构的改性

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Microstructural features such as cracks, pores and delaminations are known to significantly affect the properties of thermal spray ceramic coatings. As an example, tensile properties depend mostly on the size, the shape and on the degree of clustering of pores since highly clustered porosity generates regions of poor mechanical properties from where cracks easily propagate through the entire volume. Another example concerns the corrosion resistance of coated components which is significantly degraded when pores are connected. To circumvent such disadvantages, several post-treatments may be implemented. The most commonly used is sealing of pores by impregnation using either low melting temperature metallic alloys or organic materials. In addition to be a costly additional step to the deposit manufacturing process, the coating working temperature limit is significantly reduced. Therefore, numerous works along the twenty past years have been devoted to find ways to densify ceramic coatings. Among these treatments, the use of high energy laser beams was very often considered. This paper aims to bring a contribution to those efforts by presenting results concerning the laser treatment of zirconia thermal spray coatings.
机译:已知诸如裂纹,孔洞和分层之类的微观结构特征会显着影响热喷涂陶瓷涂层的性能。例如,拉伸性能主要取决于孔的尺寸,形状和聚集程度,因为高度聚集的孔隙度会产生机械性能较差的区域,从那里,裂纹很容易在整个体积中扩散。另一个例子涉及涂覆的部件的耐腐蚀性,当连接孔时,该部件的耐腐蚀性显着降低。为了避免这些缺点,可以实施几种后处理。最常用的是使用低熔点金属合金或有机材料通过浸渍来密封孔。除了作为沉积物制造过程的昂贵的附加步骤之外,还大大降低了涂层的工作温度极限。因此,过去二十年来的大量工作致力于寻找使陶瓷涂层致密化的方法。在这些治疗方法中,经常考虑使用高能激光束。本文旨在通过提出有关氧化锆热喷涂涂层激光处理的结果来为这些努力做出贡献。

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