A New Plasma Surface Alloying to Improve the Wear Resistance of the Metallic Card Clothing

A new surface strengthening process: Plasma surface chromizing was implemented on the metallic card clothing to improve its wear resistance based on double glow plasma surface metallurgy technology. A chromizing coating was prepared in the process, which consisted of a deposited layer and diffusion...

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Main Authors: Dongbo Wei, Fengkun Li, Shuqin Li, Xiaohu Chen, Feng Ding, Pingze Zhang, Zhangzhong Wang
Format: Article
Language:English
Published: MDPI AG 2019-05-01
Series:Applied Sciences
Subjects:
Online Access:https://www.mdpi.com/2076-3417/9/9/1849
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spelling doaj-31ea8c55688243f98b4723e648808e822020-11-25T00:53:39ZengMDPI AGApplied Sciences2076-34172019-05-0199184910.3390/app9091849app9091849A New Plasma Surface Alloying to Improve the Wear Resistance of the Metallic Card ClothingDongbo Wei0Fengkun Li1Shuqin Li2Xiaohu Chen3Feng Ding4Pingze Zhang5Zhangzhong Wang6College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 211106, ChinaCollege of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 211106, ChinaCollege of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 211106, ChinaCollege of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 211106, ChinaCollege of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 211106, ChinaCollege of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 211106, ChinaJiangsu Key Laboratory of Advanced Structural Materials and Application Technology, Nanjing 211167, ChinaA new surface strengthening process: Plasma surface chromizing was implemented on the metallic card clothing to improve its wear resistance based on double glow plasma surface metallurgy technology. A chromizing coating was prepared in the process, which consisted of a deposited layer and diffusion layer. The surface morphologies, microstructure, phase composition, and hardness were analyzed in detail. The friction behaviors of the metallic card clothing before and after plasma surface alloying were comparatively analyzed under various sliding speeds at room temperature. The results showed that: 1. The chromizing coating on the surface of metallic card clothing was dense and homogeneous without defects, and the metallic card clothing still maintained its integrity and sharpness. 2. The chromizing coating consist of [Fe,Cr], Cr, Cr<sub>23</sub>C<sub>6</sub>, and Cr<sub>7</sub>C<sub>3</sub>, which contribute to the high hardness. 3. The average microhardness of metallic card clothing increased from 365.4 HV<sub>0.05</sub> to 564.9 HV<sub>0.05</sub> after plasma surface chromizing. Nano hardness of the chromizing coating was approximately 1.87 times than the metallic card clothing. 4. At various sliding velocities of 2 m/min, 4 m/min, and 6 m/min, the specific wear rates of metallic card clothing were 16.38, 9.06 and 6.26 &#215; 10<sup>&#8722;4</sup>&#183;mm<sup>3</sup>&#183;N<sup>&#8722;1</sup>&#183;m<sup>&#8722;1</sup>, and the specific wear rates of metallic card clothing after plasma surface chromizing were 2.91, 3.30, and 2.95 &#215; 10<sup>&#8722;4</sup>&#183;mm<sup>3</sup>&#183;N<sup>&#8722;1</sup>&#183;m<sup>&#8722;1</sup>. Furthermore, the wear mechanism of the chromizing coating gradually changed from adhesive wear to abrasive wear as the sliding velocity increased. The results indicate that the wear resistance of metallic card clothing was improved obviously after plasma surface chromizing.https://www.mdpi.com/2076-3417/9/9/1849the metallic card clothingdouble glow plasma surface metallurgy technologychromizing coatingwear resistance
collection DOAJ
language English
format Article
sources DOAJ
author Dongbo Wei
Fengkun Li
Shuqin Li
Xiaohu Chen
Feng Ding
Pingze Zhang
Zhangzhong Wang
spellingShingle Dongbo Wei
Fengkun Li
Shuqin Li
Xiaohu Chen
Feng Ding
Pingze Zhang
Zhangzhong Wang
A New Plasma Surface Alloying to Improve the Wear Resistance of the Metallic Card Clothing
Applied Sciences
the metallic card clothing
double glow plasma surface metallurgy technology
chromizing coating
wear resistance
author_facet Dongbo Wei
Fengkun Li
Shuqin Li
Xiaohu Chen
Feng Ding
Pingze Zhang
Zhangzhong Wang
author_sort Dongbo Wei
title A New Plasma Surface Alloying to Improve the Wear Resistance of the Metallic Card Clothing
title_short A New Plasma Surface Alloying to Improve the Wear Resistance of the Metallic Card Clothing
title_full A New Plasma Surface Alloying to Improve the Wear Resistance of the Metallic Card Clothing
title_fullStr A New Plasma Surface Alloying to Improve the Wear Resistance of the Metallic Card Clothing
title_full_unstemmed A New Plasma Surface Alloying to Improve the Wear Resistance of the Metallic Card Clothing
title_sort new plasma surface alloying to improve the wear resistance of the metallic card clothing
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2019-05-01
description A new surface strengthening process: Plasma surface chromizing was implemented on the metallic card clothing to improve its wear resistance based on double glow plasma surface metallurgy technology. A chromizing coating was prepared in the process, which consisted of a deposited layer and diffusion layer. The surface morphologies, microstructure, phase composition, and hardness were analyzed in detail. The friction behaviors of the metallic card clothing before and after plasma surface alloying were comparatively analyzed under various sliding speeds at room temperature. The results showed that: 1. The chromizing coating on the surface of metallic card clothing was dense and homogeneous without defects, and the metallic card clothing still maintained its integrity and sharpness. 2. The chromizing coating consist of [Fe,Cr], Cr, Cr<sub>23</sub>C<sub>6</sub>, and Cr<sub>7</sub>C<sub>3</sub>, which contribute to the high hardness. 3. The average microhardness of metallic card clothing increased from 365.4 HV<sub>0.05</sub> to 564.9 HV<sub>0.05</sub> after plasma surface chromizing. Nano hardness of the chromizing coating was approximately 1.87 times than the metallic card clothing. 4. At various sliding velocities of 2 m/min, 4 m/min, and 6 m/min, the specific wear rates of metallic card clothing were 16.38, 9.06 and 6.26 &#215; 10<sup>&#8722;4</sup>&#183;mm<sup>3</sup>&#183;N<sup>&#8722;1</sup>&#183;m<sup>&#8722;1</sup>, and the specific wear rates of metallic card clothing after plasma surface chromizing were 2.91, 3.30, and 2.95 &#215; 10<sup>&#8722;4</sup>&#183;mm<sup>3</sup>&#183;N<sup>&#8722;1</sup>&#183;m<sup>&#8722;1</sup>. Furthermore, the wear mechanism of the chromizing coating gradually changed from adhesive wear to abrasive wear as the sliding velocity increased. The results indicate that the wear resistance of metallic card clothing was improved obviously after plasma surface chromizing.
topic the metallic card clothing
double glow plasma surface metallurgy technology
chromizing coating
wear resistance
url https://www.mdpi.com/2076-3417/9/9/1849
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