Improved Adhesion of the DLC Coating Using HiPIMS with Positive Pulses and Plasma Immersion Pretreatment

被引:9
|
作者
Gomez, Inigo [1 ,2 ]
Claver, Adrian [1 ,2 ]
Santiago, Jose Antonio [3 ]
Fernandez, Ivan [3 ]
Palacio, Jose Fernandez [4 ]
Diaz, Cristina [4 ]
Maendl, Stephan [5 ]
Garcia, Jose Antonio [1 ,2 ]
机构
[1] Publ Univ Navarre UPNA, Engn Dept, Campus Arrosadia, Pamplona 31006, Spain
[2] Publ Univ Navarre UPNA, Inst Adv Mat & Math INAMAT2, Campus Arrosadia, Pamplona 31006, Spain
[3] Nano4Energy SL, Jose Gutierrez Abascal 2, Madrid 28006, Spain
[4] AIN, Ctr Adv Surface Engn, Cordovilla 31191, Spain
[5] Leibniz Inst Surface Engn IOM, D-04318 Leipzig, Germany
关键词
HiPIMS; positive pulse; DLC coatings; PIII; pulse immersion plasma nitriding; tribology; adhesion; wear resistance; MECHANICAL-PROPERTIES; CARBON-FILMS; TRIBOLOGICAL BEHAVIOR; STAINLESS-STEEL; HARD COATINGS; SURFACE; PVD; MICROSTRUCTURE; TEMPERATURE; PERFORMANCE;
D O I
10.3390/coatings11091070
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Diamond-like carbon (DLC) coatings are used due to their extraordinary tribomechanical properties, great hardness, high elastic modulus, high wear resistance, low friction coefficient and chemical inertness, which provide them with biocompatibility. Compared to other physical vapor deposition (PVD) coatings of transition nitrides and carbonitrides, DLC has limited adhesion, so it is necessary to develop new techniques to overcome this limitation. This work reports the results of scratch testing for the measurement of adhesion and of tests for wear resistance and nanoindentation in AISI 316L stainless steel coated with a WC:C coating, produced using novel high-power impulse magnetron sputtering (HiPIMS) technology with positive pulses. In addition, the use of a preceding surface modification technique, specifically plasma immersion ion implantation (PIII), was studied with the aim of optimizing the adhesion of the coating. The results show how the coating improved the tribomechanical properties through the use of positive pulse HiPIMS compared to conventional HiPIMS, with an adhesion result that reached critical load values of 48.5 N and a wear coefficient of 3.96 x 10(-7) mm(3)/nm.
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页数:20
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