Study on Coating Mechanism and Properties of Die CrN+DLC Layer

2022 ◽  
Vol 905 ◽  
pp. 22-29
Author(s):  
Li Jun Han ◽  
Qing Wen Wu ◽  
Xue Song Wu ◽  
Ze Zhang ◽  
Hai Sheng Ma

This paper introduces the principle of PACVD coating technology, technical characteristics, equipment composition and material characteristics of CrN+DLC. Taking H13 steel as the research object, its surface was treated with CrN+DLC. The microstructure, bonding state and hardness of the interface were studied by means of metallography, SEM, hardness and component distribution of the surface layer. The anti-crack ability and grade of DLC layer were analyzed by studying the shape of crack distribution with Rockwell hardness indentation, and the high quality layer with crack grade of HF1 was obtained. With the dual properties of diamond and graphite of DLC, it can make the die surface have lower friction coefficient, higher hardness, higher impact toughness, better solid lubrication performance and higher corrosion resistance. Surface DLC coating technology provides a new solution to improve the performance of the die.

Author(s):  
Y. Tsuji ◽  
S. Yoshihara ◽  
S. Tsuda ◽  
Y. Iriyama ◽  
Y. Nakano

Magnesium alloys have several advantages that make them attractive for use in structural applications such as a superlight weight, high specific strength, ease of recycling and electromagnetic shielding capability. On the other hand, several disadvantages are associated with manufacturing using magnesium alloys such as the fact that it is practically impossible to apply conventional metal-forming techniques at room temperature without producing defects. Much effort, therefore, has recently been applied to improving the formability of magnesium-based alloys in order that they may realize their full potential. In this study, the methodology of coating the surface of a magnesium alloy with a diamond-like carbon (DLC) coating to increase the surface lubrication performance and for achieve deep drawability is discussed. The DLC acts as a lubricant during the forming process, thus reducing the deformation of the workpieces. Friction tests and deep-drawing tests were carried out to estimate the effect of the DLC coating by the formability of the magnesium alloy. We have compared the properties of non-lubricated blanks with those lubricated a DLC coating and the lubricants and MoS2. The coefficient of friction of the DLC-coated blank was approximately 0.16. Those of the non-lubricated blank and the blanks coated with GM100 and MoS2 were 0.41, 0.26, and 0.17 respectively. Thus, the DLC coating provides a similar or superior level of lubrication when compared with a conventional lubricant. The deep-drawing test was performed to obtain the limiting drawing ratio (LDR). For the DLC-coated blank, deep-drawing was possible at drawing ratio (DR) 2.2. On the other hand, the non-lubricated blank fractured at DR2.0. In the case of GM100 and MoS2, deep-drawing was successful at DR2.2 and DR2.3, respectively. In both friction and deep-drawing tests, the performance of DLC-coated workpieces was compared with that of workpieces coated with the conventional lubricants. The deep-drawing tests were carried out at 200 °C, and the formability of each blank was measured. It was concluded that the use of DLC-coated blanks produces an improvement in the formability of magnesium alloys compared with the use of conventional lubrication techniques.


2012 ◽  
Vol 198-199 ◽  
pp. 36-39
Author(s):  
Qing Hua Zou ◽  
Bing Yang

with DLC coating spinning rings as the subject, focuses on the mechanism of damage on spinning ring track caused by textile fiber fabrics adhering to spinning ring surface and relevant adhesive wear and fatigue wear. Aiming at its failure, single DLC coating is substituted by Ti-DLC coating spinning rings. The process after improvement adopts unbalanced closed magnetron sputtering ion plating and Ti-doping multi-layer composite coating technology to prepare Ti-DLC composite film on the surface of spinning rings under the condition of basic temperature below 100°C. As indicated by the study on the impact of different Ti contents on friction and were performance of the film, improved Ti-DLC coating spinning rings are superior to DLC coating spinning rings in terms of deposition rate, adhesion, hardness, wear resistance, friction coefficient and wear rate, ensuring better adhesion resistance and fatigue resistance.


2009 ◽  
Vol 63 (9) ◽  
pp. 1060-1063
Author(s):  
Kunio Osaki
Keyword(s):  

2007 ◽  
Vol 61 (2) ◽  
pp. 127-131
Author(s):  
Katsumi Ishizuka

Author(s):  
Eric Espíndola ◽  
Mateus José Araújo de Souza ◽  
BEATRIZ SEABRA MELO ◽  
Vinicius Silva dos Reis ◽  
Clóvis Santana ◽  
...  

Sign in / Sign up

Export Citation Format

Share Document