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Abrasive Wear, Scuffing and Rolling Contact Fatigue of DLC-Coated 18CrNiMo7-6 Steel Lubricated by a Pure and Contaminated Gear Oil

Due to extreme working conditions of mining conveyors, which contaminate gear oil with solid particles, their transmissions are exposed to intensive abrasion, scuffing, and even rolling contact fatigue (pitting). These effects shorten gear life. To prevent their occurrence, a wear-resistant coating...

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Autores principales: Tuszyński, Waldemar, Michalczewski, Remigiusz, Osuch-Słomka, Edyta, Snarski-Adamski, Andrzej, Kalbarczyk, Marek, Wieczorek, Andrzej N., Nędza, Jakub
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8620565/
https://www.ncbi.nlm.nih.gov/pubmed/34832485
http://dx.doi.org/10.3390/ma14227086
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author Tuszyński, Waldemar
Michalczewski, Remigiusz
Osuch-Słomka, Edyta
Snarski-Adamski, Andrzej
Kalbarczyk, Marek
Wieczorek, Andrzej N.
Nędza, Jakub
author_facet Tuszyński, Waldemar
Michalczewski, Remigiusz
Osuch-Słomka, Edyta
Snarski-Adamski, Andrzej
Kalbarczyk, Marek
Wieczorek, Andrzej N.
Nędza, Jakub
author_sort Tuszyński, Waldemar
collection PubMed
description Due to extreme working conditions of mining conveyors, which contaminate gear oil with solid particles, their transmissions are exposed to intensive abrasion, scuffing, and even rolling contact fatigue (pitting). These effects shorten gear life. To prevent their occurrence, a wear-resistant coating can be deposited on gear teeth. The resistance to abrasive wear, scuffing, and pitting was investigated and reported in the article. Simple, model specimens were used. Abrasive wear and scuffing were tested using a pin-and-vee-block tribosystem in sliding contact. A cone–three-ball rolling tribosystem was employed to test pitting. The material of the test specimens (pins, vee blocks, cones) was 18CrNiMo7-6 case-hardened steel. Two types of DLC (Diamond-like Coatings) coatings were tested, W-DLC and W-DLC/CrN. The vee blocks and cones were coated. Two industrial gear oils were selected to lubricate the specimens: one with a mineral and one with a synthetic PAO (polyalphaolephine) base, as pure oil or contaminated with solid particles from a coal mine. The results show that, to minimize the tendency to abrasion, scuffing, and pitting of specimens made of 18CrNiMo7-6 steel, the W-DLC/CrN coating should be deposited. This coating also gives very good protection when the lubricating oil is contaminated.
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spelling pubmed-86205652021-11-27 Abrasive Wear, Scuffing and Rolling Contact Fatigue of DLC-Coated 18CrNiMo7-6 Steel Lubricated by a Pure and Contaminated Gear Oil Tuszyński, Waldemar Michalczewski, Remigiusz Osuch-Słomka, Edyta Snarski-Adamski, Andrzej Kalbarczyk, Marek Wieczorek, Andrzej N. Nędza, Jakub Materials (Basel) Article Due to extreme working conditions of mining conveyors, which contaminate gear oil with solid particles, their transmissions are exposed to intensive abrasion, scuffing, and even rolling contact fatigue (pitting). These effects shorten gear life. To prevent their occurrence, a wear-resistant coating can be deposited on gear teeth. The resistance to abrasive wear, scuffing, and pitting was investigated and reported in the article. Simple, model specimens were used. Abrasive wear and scuffing were tested using a pin-and-vee-block tribosystem in sliding contact. A cone–three-ball rolling tribosystem was employed to test pitting. The material of the test specimens (pins, vee blocks, cones) was 18CrNiMo7-6 case-hardened steel. Two types of DLC (Diamond-like Coatings) coatings were tested, W-DLC and W-DLC/CrN. The vee blocks and cones were coated. Two industrial gear oils were selected to lubricate the specimens: one with a mineral and one with a synthetic PAO (polyalphaolephine) base, as pure oil or contaminated with solid particles from a coal mine. The results show that, to minimize the tendency to abrasion, scuffing, and pitting of specimens made of 18CrNiMo7-6 steel, the W-DLC/CrN coating should be deposited. This coating also gives very good protection when the lubricating oil is contaminated. MDPI 2021-11-22 /pmc/articles/PMC8620565/ /pubmed/34832485 http://dx.doi.org/10.3390/ma14227086 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tuszyński, Waldemar
Michalczewski, Remigiusz
Osuch-Słomka, Edyta
Snarski-Adamski, Andrzej
Kalbarczyk, Marek
Wieczorek, Andrzej N.
Nędza, Jakub
Abrasive Wear, Scuffing and Rolling Contact Fatigue of DLC-Coated 18CrNiMo7-6 Steel Lubricated by a Pure and Contaminated Gear Oil
title Abrasive Wear, Scuffing and Rolling Contact Fatigue of DLC-Coated 18CrNiMo7-6 Steel Lubricated by a Pure and Contaminated Gear Oil
title_full Abrasive Wear, Scuffing and Rolling Contact Fatigue of DLC-Coated 18CrNiMo7-6 Steel Lubricated by a Pure and Contaminated Gear Oil
title_fullStr Abrasive Wear, Scuffing and Rolling Contact Fatigue of DLC-Coated 18CrNiMo7-6 Steel Lubricated by a Pure and Contaminated Gear Oil
title_full_unstemmed Abrasive Wear, Scuffing and Rolling Contact Fatigue of DLC-Coated 18CrNiMo7-6 Steel Lubricated by a Pure and Contaminated Gear Oil
title_short Abrasive Wear, Scuffing and Rolling Contact Fatigue of DLC-Coated 18CrNiMo7-6 Steel Lubricated by a Pure and Contaminated Gear Oil
title_sort abrasive wear, scuffing and rolling contact fatigue of dlc-coated 18crnimo7-6 steel lubricated by a pure and contaminated gear oil
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8620565/
https://www.ncbi.nlm.nih.gov/pubmed/34832485
http://dx.doi.org/10.3390/ma14227086
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