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Structure and tribological properties of modified layer on 2024 aluminum alloy by plasma-based ion implantation with nitrogen/titanium/carbon

机译:氮/钛/碳等离子体离子注入对2024铝合金改性层的结构和摩擦学性能

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摘要

2024 aluminum alloy was implanted with nitrogen then titanium finally carbon by plasma-baaed ion implantatio to form a gradient layer. The Structure and tribological properties of the layer were investigated. Its composition profiles and chemical states were analyzed with X-ray photoelectron spectroscopy(XPS). The surface carbon layer was analyzed by Raman spectrum. The appearances were observed by atomic force microscope (AFM). The surface hardness was measured with the mechanical property microprobe. The dry wear tests against GCr15 steel bail at various sliding loads were performed with a ball-on-disk wear tester in ambient environment. The results show that the thickness of the modified layer is 1200 nm, the carbon layer is a smooth and compact diamond-like carbon(DLC) films, and the carbon-titanium interface is broadened due to carbon ions implantation, resulting in a good composition and structure transition between DLC films and titanium layer. Surface hardness is improved markedly, with a slow and uniform change. Tribological properties are improved greatly although they reduce with the increase of sliding loads because the modified layer becomes thin rapidly.
机译:向2024铝合金中注入氮,然后通过等离子体离子注入将钛最终注入碳,以形成梯度层。研究了该层的结构和摩擦学性能。用X射线光电子能谱(XPS)分析了它的组成特征和化学状态。通过拉曼光谱分析表面碳层。通过原子力显微镜(AFM)观察外观。用机械性能的微探针测量表面硬度。使用圆盘式球磨机在周围环境中对GCr15钢吊环进行了各种滑动载荷下的干磨损测试。结果表明,改性层的厚度为1200 nm,碳层为光滑致密的类金刚石碳(DLC)膜,并且由于碳离子注入,碳-钛界面变宽,组成良好DLC膜与钛层之间的结构转变。表面硬度显着提高,变化缓慢且均匀。尽管随着滑动载荷的增加,摩擦性能会降低,但摩擦性能却得到了极大的改善,因为改性层会迅速变薄。

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