Behavior of Wear Debris and Its Action Mechanism on the Tribological Properties of Medium-Carbon Steel with Magnetic Field

Friction tests were conducted on self-matched pairs of medium-carbon steel using a pin-disk tribometer in an ambient laboratory environment with and without wear-debris removal, in order to clarify the influence of wear debris on the tribological properties of steels that were exposed to magnetic fi...

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Main Authors: Hongxin Shi, Sanming Du, Chao Sun, Chenfei Song, Zhenghai Yang, Yongzhen Zhang
Format: Article
Language:English
Published: MDPI AG 2018-12-01
Series:Materials
Subjects:
Online Access:http://www.mdpi.com/1996-1944/12/1/45
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spelling doaj-88740940ec2c41989619d80354302ede2020-11-24T23:31:41ZengMDPI AGMaterials1996-19442018-12-011214510.3390/ma12010045ma12010045Behavior of Wear Debris and Its Action Mechanism on the Tribological Properties of Medium-Carbon Steel with Magnetic FieldHongxin Shi0Sanming Du1Chao Sun2Chenfei Song3Zhenghai Yang4Yongzhen Zhang5National United Engineering Laboratory for Advanced Bearing Tribology, Henan University of Science and Technology, Henan Province, Luoyang 471000, ChinaNational United Engineering Laboratory for Advanced Bearing Tribology, Henan University of Science and Technology, Henan Province, Luoyang 471000, ChinaNational United Engineering Laboratory for Advanced Bearing Tribology, Henan University of Science and Technology, Henan Province, Luoyang 471000, ChinaNational United Engineering Laboratory for Advanced Bearing Tribology, Henan University of Science and Technology, Henan Province, Luoyang 471000, ChinaNational United Engineering Laboratory for Advanced Bearing Tribology, Henan University of Science and Technology, Henan Province, Luoyang 471000, ChinaNational United Engineering Laboratory for Advanced Bearing Tribology, Henan University of Science and Technology, Henan Province, Luoyang 471000, ChinaFriction tests were conducted on self-matched pairs of medium-carbon steel using a pin-disk tribometer in an ambient laboratory environment with and without wear-debris removal, in order to clarify the influence of wear debris on the tribological properties of steels that were exposed to magnetic fields. The wear debris and worn surface were observed and analyzed. In the case that the wear debris was removed, the vast majority of wear debris was large, scarce oxidation, and no agglomeration, the grooves of various shapes and discontinuities, and no oxide layer were formed on the worn surface, severe wear occurred throughout the friction process. When the wear debris was not removed, the wear debris became fine, agglomeration and oxidation, a debris layer was formed on the worn surface, and the wear mode transitioned from severe to mild occurred during friction process. The results reveal that the re-entering of wear debris into the friction area is essential for the formation of a wear-debris layer and that an anti-wear effect can be achieved via the wear-debris layer formed on the worn surface during the friction process with a magnetic field.http://www.mdpi.com/1996-1944/12/1/45magnetic fieldmedium-carbon steelwear debriswearmechanism
collection DOAJ
language English
format Article
sources DOAJ
author Hongxin Shi
Sanming Du
Chao Sun
Chenfei Song
Zhenghai Yang
Yongzhen Zhang
spellingShingle Hongxin Shi
Sanming Du
Chao Sun
Chenfei Song
Zhenghai Yang
Yongzhen Zhang
Behavior of Wear Debris and Its Action Mechanism on the Tribological Properties of Medium-Carbon Steel with Magnetic Field
Materials
magnetic field
medium-carbon steel
wear debris
wear
mechanism
author_facet Hongxin Shi
Sanming Du
Chao Sun
Chenfei Song
Zhenghai Yang
Yongzhen Zhang
author_sort Hongxin Shi
title Behavior of Wear Debris and Its Action Mechanism on the Tribological Properties of Medium-Carbon Steel with Magnetic Field
title_short Behavior of Wear Debris and Its Action Mechanism on the Tribological Properties of Medium-Carbon Steel with Magnetic Field
title_full Behavior of Wear Debris and Its Action Mechanism on the Tribological Properties of Medium-Carbon Steel with Magnetic Field
title_fullStr Behavior of Wear Debris and Its Action Mechanism on the Tribological Properties of Medium-Carbon Steel with Magnetic Field
title_full_unstemmed Behavior of Wear Debris and Its Action Mechanism on the Tribological Properties of Medium-Carbon Steel with Magnetic Field
title_sort behavior of wear debris and its action mechanism on the tribological properties of medium-carbon steel with magnetic field
publisher MDPI AG
series Materials
issn 1996-1944
publishDate 2018-12-01
description Friction tests were conducted on self-matched pairs of medium-carbon steel using a pin-disk tribometer in an ambient laboratory environment with and without wear-debris removal, in order to clarify the influence of wear debris on the tribological properties of steels that were exposed to magnetic fields. The wear debris and worn surface were observed and analyzed. In the case that the wear debris was removed, the vast majority of wear debris was large, scarce oxidation, and no agglomeration, the grooves of various shapes and discontinuities, and no oxide layer were formed on the worn surface, severe wear occurred throughout the friction process. When the wear debris was not removed, the wear debris became fine, agglomeration and oxidation, a debris layer was formed on the worn surface, and the wear mode transitioned from severe to mild occurred during friction process. The results reveal that the re-entering of wear debris into the friction area is essential for the formation of a wear-debris layer and that an anti-wear effect can be achieved via the wear-debris layer formed on the worn surface during the friction process with a magnetic field.
topic magnetic field
medium-carbon steel
wear debris
wear
mechanism
url http://www.mdpi.com/1996-1944/12/1/45
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