采用线性离子束镀膜技术在YG6硬质合金上沉积氢化类金刚石(α-C∶H)薄膜,通过原子力显微镜、Raman光谱仪、球磨仪和洛氏压力仪等研究了基体温度对α-C∶H薄膜微观结构、表面形貌、耐磨性以及膜基结合性能的影响.结果表明:随着基体温度升高,薄膜中sp3键含量和耐磨性能先降低后提高,表面粗糙度先减小后增大;基体温度在80 ℃时,制备的薄膜最为光滑,而sp3键含量最低,薄膜耐磨性最差;基体温度对膜基结合性能没有明显的影响.
参考文献
[1] | BAIL C;ZHANG G A;WANG L P et al.Tribological mechanism of hydrogenated amorphous carbon film against pairs:a physical description[J].Journal of Applied Physics,2011,110:33521-33526. |
[2] | Robertson J. .Diamond-like amorphous carbon [Review][J].Materials Science & Engineering, R. Reports: A Review Journal,2002(4/6):129-281. |
[3] | 代伟,吴国松,孙丽丽,汪爱英.衬底负偏压对线性离子束DLC膜微结构和物性的影响[J].材料研究学报,2009(06):598-603. |
[4] | 姜辉,邹宇.沉积温度对中频磁控溅射制备含氢非晶碳膜表面形貌和力学性能的影响[J].长春理工大学学报(自然科学版),2009(04):588-591. |
[5] | CAO Ning;FEI Zhen yi;QI Yong-xi.Characterization and tribological application of diamond-like carbon(DLC) films prepared by radio-frequency plasma-enhanced chemical vapor deposition(PF-PECVD) technique[J].Frontiers of Materials Science in China,2009(04):409-414. |
[6] | 代伟;吴国松;汪爱英.偏压对Cr-DLC纳米复合薄膜表面形貌和结构的影响[J].材料工程,2009(z1):172-179. |
[7] | 于斌斌,袁军堂,汪振华,胡小秋,王飞.阳极离子束在SKD11和YG6基体上沉积DLC膜及其机理[J].新型炭材料,2013(06):467-474. |
[8] | 纪锡旺;郝俊文;许振华 等.沉积温度对类金刚石涂层表面形貌和性能的影响[J].机械工程材料,2014,38(11):40-45. |
[9] | HEINKE W;LEYLAND A;MATTHEWS A et al.Evaluation of PVD nitride coatings,using impact,scratch and Rockwell-C adhesion tests[J].THIN SOLID FILMS,1995,270(1-2):432-438. |
[10] | Gert Irmer;Annett Dorner-Reisel .Micro-Raman Studies on DLC Coatings[J].Advanced Engineering Materials,2005(8):694-705. |
[11] | Qi Jun;Luo Jianbin;Wen Shizhu;Wang Jing;Li Wenzhi .Mechanical and tribological properties of non-hydrogenated DLC films synthesized by IBAD[J].Surface & Coatings Technology,2000(0):324-328. |
[12] | SHEEJA D;TAY B K;LAU S P et al.Structural and tribological characterization of multilayer ta-C films prepared by filtered cathodic vacuum are with substrate pulse biasing[J].Surface and Coatings Technology,2000,132:228-232. |
[13] | 张馨,肖晓玲,洪瑞江,罗承萍,林松盛.掺杂钨类金刚石膜的显微结构与性能[J].机械工程材料,2009(09):79-84. |
[14] | 赵海龙,刘正堂,田浩,李阳平,闫锋.射频磁控溅射法制备类金刚石薄膜的研究[J].机械科学与技术,2007(10):1277-1280. |
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