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首页> 外文期刊>Surface & Coatings Technology >Improvement in mechanical properties of nano-structured HA/TiO2 multilayer coatings deposited by high velocity suspension flame spraying (HVSFS)
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Improvement in mechanical properties of nano-structured HA/TiO2 multilayer coatings deposited by high velocity suspension flame spraying (HVSFS)

机译:高速悬浮火焰喷涂沉积的纳米结构HA / TiO2多层涂层的力学性能改善(HVSF)

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摘要

In order to improve mechanical properties of HA coatings, nano-structured HA/TiO2 multilayer coatings composed of TiO2 bond layer, HA/TiO2 intermediate layer with different TiO2 contents and HA top layer were prepared by a high velocity suspension flame spraying (HVSFS) method using nano-sized HA and TiO2 powders. Phase constitution, compositions and microstructures were characterized by XRD, XPS, FTIR and SEM. Mechanical properties of multilayer coatings were investigated in comparison with the pure HA coating. Results show that multilayer coatings were mainly composed of HA and TiO2 phases, and presented well-bonded coating/substrate interfaces and porous surfaces as well as graded chemical compositions in coating thickness. Microhardness and Young's modulus of HA/TiO2 intermediate layers were increased with the TiO2 contents due to its reinforcement, and HA/TiO2 multilayer coatings revealed gradual mechanical properties from the TiO2 bond layer to HA top layer. Tensile strengths of HA/TiO2 double-layer coatings were improved due to TiO2 reinforcement in comparison with the pure HA coating. Wear properties of HA/TiO2 multilayer coatings were tested by a pin-on-disc method and were improved due to the presence of intermediate layers resulting in lower wear rates than that of the pure HA coating.
机译:为了改善HA涂层的机械性能,通过高速悬浮火焰喷涂(HVSF)方法制备由TiO 2粘合层组成的HA涂层的纳米结构HA / TiO 2多层涂层,具有不同TiO2内容物和HA顶层的HA / TiO 2中间层使用纳米大小的HA和TiO2粉末。通过XRD,XPS,FTIR和SEM表征相体结构,组合物和微观结构。研究了与纯HA涂层相比,研究了多层涂层的机械性能。结果表明,多层涂层主要由HA和TiO 2相组成,并呈现粘合粘合的涂层/底物界面以及多孔表面,以及涂层厚度的分级化学组合物。由于其增强件,通过TiO 2含量增加了HA / TiO 2中间层的显微硬度和杨氏模量,HA / TiO2多层涂层透露了从TiO 2键层到HA顶层的逐渐力的力学性能。与纯HA涂层相比,由于TiO 2加固,提高了HA / TiO2双层涂层的拉伸强度。通过引脚盘式方法测试HA / TiO2多层涂层的磨损性能,并且由于中间层的存在而得到的改善,导致较低的磨损率比纯HA涂层的较低。

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