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首页> 外文期刊>Letters on Materials >Wear-resistant nickel-based laser clad coatings for high-temperature applications
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Wear-resistant nickel-based laser clad coatings for high-temperature applications

机译:高温应用的耐磨镍基激光熔覆涂层

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摘要

The effect of high-temperature processing on laser clad Ni-based coatings is studied. Annealing at 1025°C forms thermally stable framework structures with large chromium carbides and borides. As a result, improved hardness and wear resistance of the coating are maintained when heated to 1000°C. Stabilizing annealing also increases the frictional thermal resistance of the NiCrBSi coating. Under high-speed (3.1–?9.3?m?/?s) sliding friction, when the surface layer temperature reaches about 500?–1000°С and higher, the wear resistance of the coating increases by 1.7?–?3.0?times. The proposed approach to the formation of heat-resistant coatings is promising, in particular, for a hot deformation tool and other components of metallurgical equipment operating under high thermal and mechanical loads. Such products include crystallizer walls of continuous casting machines. For the walls, the development of laser cladding technology for wear-resistant composite coatings on copper alloys is relevant as an alternative to thermal spraying. The cladding of composite NiBSi-WC coatings of 0.6 and 1.6?mm thickness on a Cu-Cr-Zr bronze substrate heated to 200?–?250°C with a diode laser is considered. The presence of boron causes the formation of the W(C,?B) carboboride phase, whose hardness is higher than that of WC in the initial powder. Depending on the thickness of coatings and, accordingly, on the duration of heating and the subsequent cooling, the process of secondary carboborides precipitation from the solid solution can be suppressed (in the “thin” coating) or activated (in the “thick” coating). This leads to a higher wear resistance under friction sliding 1.6?mm thickness coating.
机译:研究了高温处理对激光熔覆镍基涂层的影响。在1025°C退火形成具有大碳化铬和硼化物的热稳定框架结构。结果,当加热到1000℃时,涂层的硬度和耐磨性得以保持。稳定退火还会增加NiCrBSi涂层的摩擦热阻。在高速(3.1-?9.3?m?/?s)的滑动摩擦下,当表面层温度达到约500?-1000°С或更高时,涂层的耐磨性提高了1.7?-?3.0?倍。 。所提出的形成耐热涂层的方法是有希望的,特别是对于热变形工具和在高热和机械载荷下运行的冶金设备的其他部件。这样的产品包括连续铸造机的结晶器壁。对于墙壁,作为热喷涂的替代方法,开发用于铜合金上的耐磨复合涂层的激光熔覆技术非常重要。考虑了用二极管激光器在厚度为200?–?250°C的Cu-Cr-Zr青铜基板上覆层厚度为0.6和1.6?mm的复合NiBSi-WC涂层的覆层。硼的存在会导致W(C,?B)碳硼化物相的形成,其硬度高于初始粉末中的WC。根据涂层的厚度以及相应的加热时间和随后的冷却时间,可以抑制(固溶)次级碳硼化物从固溶体沉淀的过程(在“薄”涂层中)或被激活(在“厚”涂层中) )。在摩擦滑动厚度为1.6?mm的涂层下,这会导致更高的耐磨性。

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