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Layer formation of cold-sprayed ceramic titanium dioxide layers on metal surfaces

机译:金属表面上冷喷涂陶瓷钛二氧化钛层的层形成

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In cold spraying, the required heat for bonding is provided by plastic deformation of the impacting ductile particles. Therefore, cold spraying is a well-established method for metal on metal coatings. However, few authors have investigated the impact phenomena and layer formation process for impacting brittle ceramic particles on ductile metal surfaces. For this study, titanium dioxide (TiO_2) on metal surfaces was chosen as a model system, and layer formation on aluminum, copper, titanium and steel substrates was investigated by SEM, TEM, XRD and Raman spectroscopy The results show that the deposition efficiency depends on spray temperature, powder properties, and in particular on substrate ductility, even for an impact of ceramic particles during a second pass over already coated areas. High-resolution TEM images revealed no crystal growth or phase transitions at the ceramic/metal interfaces. Nevertheless, a clear dependence of the photocatalytic activity on spray parameters and substrate material could be observed. Cold-sprayed TiO_2-coatings have potential applications in biomedical implants or as photo-catalytic functional systems.
机译:在冷喷涂中,通过抗冲击性颗粒的塑性变形提供所需的粘合热。因此,冷喷涂是金属涂料上金属的良好方法。然而,很少有作者研究了用于在延性金属表面上施加脆性陶瓷颗粒的影响现象和层形成过程。对于该研究,选择金属表面上的二氧化钛(TiO_2)作为模型系统,通过SEM,TEM,XRD和拉曼光谱研究了铝,铜,钛和钢基底上的层形成结果表明沉积效率取决于在喷雾温度,粉末性能,特别是衬底延展性上,即使在第二次通过已经涂覆的区域的第二次通过过程中均匀地施加陶瓷颗粒。高分辨率TEM图像显示陶瓷/金属界面的晶体生长或相位过渡。然而,可以观察到光催化活性对喷雾参数和衬底材料的清晰依赖性。冷喷涂的TiO_2涂层具有生物医学植入物的潜在应用或作为光催化功能体系。

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