采用HVOF热喷涂工艺生产FGM涂层的半自动双进料装置的开发

K. Mamun, J. Stokes
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引用次数: 3

摘要

功能梯度材料(fgm)的应用是相当困难的,但是热喷涂工艺,如等离子喷涂,已经证明了它们在生产梯度沉积方面的独特潜力,研究人员已经使用双粉末进料系统混合不同比例的粉末。从一个边界(衬底)到另一个边界(顶部服务表面),fgm的成分和/或微观结构各不相同,从金属到陶瓷或从非金属到金属的梯度产生了创新特性。本研究研究了高速氧燃料(HVOF)热喷涂工艺的创新改进,以生产功能梯度厚涂层。为了沉积厚涂层,必须克服某些问题。分级涂层可以使涂层成分和/或微观结构逐渐变化,从而可以减少涂层中残余应力的积累。为了喷涂这种涂层,需要对商用粉末给料斗进行改造,使其能够同时沉积两种粉末,从而允许沉积不同层的涂层,改变化学成分,而不会中断喷涂过程。确定了这种修改的各种概念,并选择了一种设计,并通过使用ANSYS Flotran有限元分析开发的过程模型进行了验证。在目前的研究中,不同比例粉末的混合由计算机使用LabVIEW软件和硬件控制,从而在生产功能分级涂层时实现微观结构的控制和可重复性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of a semi automated dual feed unit to produce FGM coatings using the HVOF thermal spray process
The application of functionally g raded materials (FGMs) is quite difficult, but thermal spray processes like Plasma spray have demonstrated their unique potential in producing graded deposits, where researchers have used twin powder feed systems to mix different proportions of powders. FGMs vary in composition and/or microstructure from one boundary (substrate) to another (top service surface), and innovative characteristics result from the gradient from metals to ceramics or non-metallic to metals. The present study investigates an innovative modification of a high velocity oxy-fuel (HVOF) thermal spray process to produce functionally graded thick coatings. In order to deposit thick coatings, certain problems have to be overcome. Graded coatings enable gradual variation of the coating composition and/or microstructure, which offers the possibility of reducing residual stress build-up with in coatings. In order to spray such a coating, modification to a commercial powder feed hopper was required to enable it to deposit two powders simultaneously which allows deposition of different layers of coating with changing chemical compositions, without interruption to the spraying process. Various concepts for this modification were identified and one design was selected, having been validated through use of a process model, developed using ANSYS Flotran finite element analysis. In the current research the mixing of different proportions of powders were controlled by a computer using LabVIEW software and hardware, which allowed the control and repeatability of the microstructure when producing functionally graded coatings.
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