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The Laser Cladding of Hastalloy to Critical Surfaces of Stainless Steel Components

机译:哈氏合金在不锈钢部件关键表面的激光熔覆

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摘要

Laser cladding of the nickel alloy Hastalloy, C276 (Ni 59-Mol6-Cr 15.5- Fe-5-W 3.7) on a stainless steel 316L substrate was investigated. The objective was to establish the feasibility of the deposition of the highly corrosion resistant C-276 alloy on the stainless steel substrate as a means of removing the need for machining parts from solid C-276 alloy in chemical storage and reaction vessel applications. Cladding was carried out with a 2kW carbon dioxide laser using the blown powder method. The process was found to be effective with a high quality clad being deposited on the stainless steel substrate. Microstructural studies indicated that the clad was devoid of cracking, has a low level of porosity and has a microstructure favourable for good corrosion resistance. The quality and nature of the metallurgical bond between the clad layer and the substrate and the degree of dilution were investigated in terms of the laser cladding parameters (powder flow rate, laser power, substrate traverse rate, degree of track overlap). Characterisation was carried out by optical microscopy and SEM.
机译:研究了在316L不锈钢基底上激光熔覆Hastalloy镍合金C276(Ni 59-Mol6-Cr 15.5-Fe-5-W 3.7)的过程。目的是确定在不锈钢基材上沉积高度耐腐蚀的C-276合金的可行性,以消除在化学存储和反应容器应用中从固态C-276合金加工零件的需求。使用吹塑粉末法用2kW二氧化碳激光进行覆层。发现该方法是有效的,并且将高质量的覆层沉积在不锈钢基板上。显微组织研究表明,该覆层无裂纹,孔隙率低,并且具有有利于良好耐蚀性的显微组织。根据激光熔覆参数(粉末流量,激光功率,基板横移率,轨迹重叠度),研究了熔覆层与基体之间冶金结合的质量和性质以及稀释度。通过光学显微镜和SEM进行表征。

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