Enhancement of metallic machine parts mechanical properties by the use of vibratory processing for oxide coated films formation and MoS2 solid lubricant coating deposit

Dieudonné Essola1,2,3, Jean Chills Amba2, Claude Valery Ngayihi Abbe2, Joseph Nkongho Anyi2, Vladimir Vitalevich Ivanov1
1Laboratory of vibro-technology, Department of Mechanical Engineering, Don State Technical University, Rostov-on-Don, Russia
2Laboratory E3M, Faculty of Industrial Engineering, University of Douala, Douala, Cameroon
3Department of Construction Material Technology, Moscow Automobile and Road Construction State Technical University (MADI), Moscow, Russia

Tóm tắt

Experimental studies have been carried out to establish the possibility of using vibratory machining technology through shock-wave transmission for oxide coating preparation on aluminum-alloyed machine components and also to discuss the technological possibilities of applying vibration mechanochemical solid lubricant coatings based on MoS2 to improve the surface quality and performance properties of machine component parts. The coating characteristics are determined by measuring and comparing certain tribological properties of the samples before processing, after normal coating, and after vibratory coating process. A deeper study with a scanning microscope was made by comparing result of normal and vibratory coating. The vibratory coating shows a reduction of grain sizes, a regular orientation of the grain, and a dense grain structure leading to the formation of a thin layer covered by a film orientated parallel to the surface of friction giving an imparted surface finish. The reduction of microroughness is also accompanied with good performances in terms of increasing in wear resistance and decreasing in coefficient of friction. This reflects the presence of complex influence of mechanical and chemical components in the formation of coating on superficial layers during lower shock-wave vibration giving at the end structured ameliorated state of surface that leads to an increase in the part lifespan and equally shows technological opportunities that can be used to improve surface quality and performance properties of machine component parts.

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