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首页> 外文期刊>Surface & Coatings Technology >Influence of powder properties on residual stresses formed in high-pressure liquid fuel HVOF sprayed WC-CoCr coatings
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Influence of powder properties on residual stresses formed in high-pressure liquid fuel HVOF sprayed WC-CoCr coatings

机译:粉末性能对高压液体燃料HVOF中形成的残余应力的影响

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This paper presents a systematic study of the effect of various WC-CoCr powders on the residual stresses of the high pressure HVOF sprayed coating. As the residual stresses are recognized to play a significant role in the mechanical and fatigue resistance of the coating, it is understandable that their management is important for damage tolerant coating design. Several studies have recently shown that processes, which produce high particle kinetic energy and lower particle temperature, such as Warm spray, HVAF and high-pressure HVOF processes, generate higher peening stresses and therefore final residual stresses is more compressive compared to lower kinetic energy HVOF systems. In addition to the spraying process, powder properties are known to be one of the most important variables in thermal spraying. Nevertheless, only few studies can be found on the effect of powder properties on residual stresses. The aim of this study was to understand the effect of different powder properties on the formation of residual stress. In situ monitoring was utilized to record curvature and temperature during spraying and to calculate coating residual stresses. This approach is a useful tool for understanding of residual stresses during the thermal spraying process enabling their manipulation. It was found that the powders, with only minor differences in density and particle size, produced a significant difference of about 350 MPa in the stress states of the coatings. The combined effect of spray powder properties and spray parameters on residual stress was almost 560 MPa.
机译:本文介绍了各种WC-COCR粉末对高压HVOF喷涂涂层的残留应力的系统研究。随着残留的应力被认识到在涂层的机械和疲劳性中发挥重要作用,可以理解它们的管理对于损坏耐受性涂层设计是重要的。最近有几项研究表明,产生高粒子动能和低粒子温度的方法,例如温热喷雾,HVAF和高压HVOF工艺,产生更高的喷丸应力,因此与较低的动能HVOF相比,最终残余应力更加压迫系统。除了喷涂过程之外,已知粉末性能是热喷涂中最重要的变量之一。然而,只有很少的研究可以在粉末性质对残余应力的影响中找到。本研究的目的是了解不同粉末特性对残留应力形成的影响。原位监测用于在喷涂期间记录曲率和温度并计算涂层残余应力。这种方法是用于理解热喷涂过程中的残余应力的有用工具,从而实现其操纵。发现粉末仅具有微小差异和粒度的微小差异,在涂料的应力状态下产生了约350MPa的显着差异。喷雾粉末性能和喷雾参数对残余应力的综合作用几乎是560MPa。

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