Experimental Investigation on the DLC Film Coating Technology in Scroll Compressors of Automobile Air Conditioning

The friction of the orbiting scroll leads to large power consumption and low energy efficiency of the scroll compressor. The common methods to solve this problem are high cost and a complex process. Considering special structures and operating principles to apply the coating technology on the scroll...

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Main Authors: Zhilong He, Lantian Ji, Ziwen Xing
Format: Article
Language:English
Published: MDPI AG 2020-10-01
Series:Energies
Subjects:
Online Access:https://www.mdpi.com/1996-1073/13/19/5103
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spelling doaj-313386fcaf0341b3a31f3aaf43f0fdb92020-11-25T03:58:23ZengMDPI AGEnergies1996-10732020-10-01135103510310.3390/en13195103Experimental Investigation on the DLC Film Coating Technology in Scroll Compressors of Automobile Air ConditioningZhilong He0Lantian Ji1Ziwen Xing2School of Energy and Power Engineering, Xi’an Jiaotong University, Xi’an 710049, ChinaSchool of Energy and Power Engineering, Xi’an Jiaotong University, Xi’an 710049, ChinaSchool of Energy and Power Engineering, Xi’an Jiaotong University, Xi’an 710049, ChinaThe friction of the orbiting scroll leads to large power consumption and low energy efficiency of the scroll compressor. The common methods to solve this problem are high cost and a complex process. Considering special structures and operating principles to apply the coating technology on the scroll compressor is a new subject. Given the material of the orbiting scroll being aluminum alloy, the unbalanced magnetron sputtering technology for the orbiting scroll of the scroll compressor was chosen and the Cr transition layer was coated to enhance the bonding strength. Moreover, we innovatively performed an experiment to verify the feasibility of unbalanced magnetron sputtering film coating technology for the diamond-like carbon film coated in the scroll compressor. This article elaborates the parameter test methods of the film properties before and after experiments and the experimental system components. The results showed that the diamond-like carbon film has low coefficient and high bonding strength, which renders it a good wear-reducing effect and an excellent self-lubricating property. Due to the thin film layer and high operating temperature, the thickness should be increased to raise the abrasion resistance. The refrigeration system with the scroll compressor coated with the diamond-like carbon film can satisfy the national standard conditions with low Vickers hardness. Its performance was improved at low speed. Therefore, the unbalanced magnetron sputtering with increased Cr bond layer is a feasible and appropriate technology for coating diamond-like carbon film.https://www.mdpi.com/1996-1073/13/19/5103diamond-like carbon filmCr transition layerunbalanced magnetron sputteringscroll compressor
collection DOAJ
language English
format Article
sources DOAJ
author Zhilong He
Lantian Ji
Ziwen Xing
spellingShingle Zhilong He
Lantian Ji
Ziwen Xing
Experimental Investigation on the DLC Film Coating Technology in Scroll Compressors of Automobile Air Conditioning
Energies
diamond-like carbon film
Cr transition layer
unbalanced magnetron sputtering
scroll compressor
author_facet Zhilong He
Lantian Ji
Ziwen Xing
author_sort Zhilong He
title Experimental Investigation on the DLC Film Coating Technology in Scroll Compressors of Automobile Air Conditioning
title_short Experimental Investigation on the DLC Film Coating Technology in Scroll Compressors of Automobile Air Conditioning
title_full Experimental Investigation on the DLC Film Coating Technology in Scroll Compressors of Automobile Air Conditioning
title_fullStr Experimental Investigation on the DLC Film Coating Technology in Scroll Compressors of Automobile Air Conditioning
title_full_unstemmed Experimental Investigation on the DLC Film Coating Technology in Scroll Compressors of Automobile Air Conditioning
title_sort experimental investigation on the dlc film coating technology in scroll compressors of automobile air conditioning
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2020-10-01
description The friction of the orbiting scroll leads to large power consumption and low energy efficiency of the scroll compressor. The common methods to solve this problem are high cost and a complex process. Considering special structures and operating principles to apply the coating technology on the scroll compressor is a new subject. Given the material of the orbiting scroll being aluminum alloy, the unbalanced magnetron sputtering technology for the orbiting scroll of the scroll compressor was chosen and the Cr transition layer was coated to enhance the bonding strength. Moreover, we innovatively performed an experiment to verify the feasibility of unbalanced magnetron sputtering film coating technology for the diamond-like carbon film coated in the scroll compressor. This article elaborates the parameter test methods of the film properties before and after experiments and the experimental system components. The results showed that the diamond-like carbon film has low coefficient and high bonding strength, which renders it a good wear-reducing effect and an excellent self-lubricating property. Due to the thin film layer and high operating temperature, the thickness should be increased to raise the abrasion resistance. The refrigeration system with the scroll compressor coated with the diamond-like carbon film can satisfy the national standard conditions with low Vickers hardness. Its performance was improved at low speed. Therefore, the unbalanced magnetron sputtering with increased Cr bond layer is a feasible and appropriate technology for coating diamond-like carbon film.
topic diamond-like carbon film
Cr transition layer
unbalanced magnetron sputtering
scroll compressor
url https://www.mdpi.com/1996-1073/13/19/5103
work_keys_str_mv AT zhilonghe experimentalinvestigationonthedlcfilmcoatingtechnologyinscrollcompressorsofautomobileairconditioning
AT lantianji experimentalinvestigationonthedlcfilmcoatingtechnologyinscrollcompressorsofautomobileairconditioning
AT ziwenxing experimentalinvestigationonthedlcfilmcoatingtechnologyinscrollcompressorsofautomobileairconditioning
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