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Improvements of the surface properties of Ti6Al4V by plasma based ion implantation at high temperatures

机译:高温下基于等离子体的离子注入对Ti6Al4V表面性能的改善

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Ti6Al4V is a titanium alloy that has many applications in aerospace industry due to its good mechanical and corrosion properties, but its poor tribological characteristics can restrict the use of this material. In order to modify its surface properties, nitrogen PBII treatments were performed. Here, an auxiliary heating system was used to reach the required high temperatures, which can improve the nitrogen diffusion in the titanium alloy. As a consequence, the modified thickness could be increased substantially. After nitrogen PBII experiments, the Ti6Al4V alloy surface properties were evaluated by potentiodynamic polarization, electrochemical impedance spectroscopy, nanoindentation and pin-on-disk tests. The morphology of the surface after corrosion tests was obtained by SEM. The surface properties of the Ti6Al4V alloy were improved after PBII, showing better performance in corrosion, mechanical and tribological tests.
机译:Ti6Al4V是一种钛合金,由于其良好的机械和腐蚀性能而在航空航天工业中具有许多应用,但其摩擦学性能较差会限制该材料的使用。为了改变其表面性能,进行了氮PBII处理。在这里,使用辅助加热系统达到所需的高温,这可以改善钛合金中的氮扩散。结果,可以大大增加修改后的厚度。经过氮气PBII实验后,通过电位动力学极化,电化学阻抗谱,纳米压痕和针盘试验评估了Ti6Al4V合金的表面性能。通过SEM获得腐蚀测试后的表面形态。 PBII后改善了Ti6Al4V合金的表面性能,在腐蚀,机械和摩擦学测试中显示出更好的性能。

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