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HVOF sprayed nylon-11anodiamond composite coatings: production & characterization

机译:HVOF喷涂尼龙11 /纳米金刚石复合涂料:生产与表征

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摘要

High velocity oxy-fuel (HVOF) combustion spraying has previously been shown to be a viable method for depositing polymer and polymer/ceramic composite coatings. The addition of hard particulate reinforcing phases to soft polymeric matrices should improve their durability and wear performance. Nano-sized diamond is an ideal reinforcing phase, owing to its high hardness and desirable thermal properties. Composite coatings comprising a Nylon-11 matrix reinforced with nanodiamonds have been successfully produced by HVOF. An important challenge is preserving the structure of the nanoparticles after thermal spray deposition and achieving a uniform dispersion of them within the polymeric matrix. Raman spectroscopy and X-ray diffraction confirmed the presence and retention of nanodiamonds after HVOF deposition. Understanding of the role of variables including the % loading of reinforcing phase in the matrix and powder preparation route are necessary. The coatings exhibited improved sliding wear resistance in macromechanical tests. Nanoindentation studies demonstrated an improvement in deformation behavior and recovery of the HVOF nanodiamond Nylon-11anodiamond composites subjected to deformation.
机译:先前已经证明,高速氧燃料(HVOF)燃烧喷涂是沉积聚合物和聚合物/陶瓷/陶瓷复合涂层的可行方法。将硬质颗粒增强相添加到软质聚合物基体中应改善其耐久性和耐磨性。纳米级金刚石由于其高硬度和理想的热性能而成为理想的增强相。 HVOF已成功生产出包含用纳米金刚石增强的Nylon-11基质的复合涂料。一个重要的挑战是在热喷涂沉积后保留纳米颗粒的结构,并使它们在聚合物基质中均匀分散。拉曼光谱和X射线衍射证实了HVOF沉积后纳米金刚石的存在和保留。必须了解变量的作用,包括基质中增强相的%负载和粉末制备路线。在宏观力学测试中,涂层表现出改善的耐滑动磨损性。纳米压痕研究表明,变形后的HVOF纳米金刚石Nylon-11 /纳米金刚石复合材料的变形行为和恢复能力得到改善。

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