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CoCrW와 CoCrMo 합금의 트라이볼로지 특성 평가

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Alternative Title
Assessment of Tribological Characteristics of CoCrW and CoCrMo Alloys
Abstract
Cobalt–chromium (CoCr)-based alloys have been used for wear applications because of their excellent mechanical properties and wear resistance. With growing concern over environmental problems, CoCr alloys are expected to be used for various tribological applications in degraded lubrication states. To expand the applicability of the materials, data should be accumulated across a broad spectrum of experimental parameters. In this work, the friction and wear characteristics of cobalt–chromium–tungsten (CoCrW) and cobalt–chromium–molybdenum (CoCrMo) alloys are investigated experimentally. The tests are conducted using a pin-on-reciprocating-plate tribo-tester in dry lubrication. CoCrW and CoCrMo are used as pin and plate materials to investigate the effect of the counter material. The results show that the friction coefficients between CoCrW and CoCrMo generally range from 0.4 to 0.5. The friction coefficient between the CoCrW pin and plate is found to be slightly small. However, the total wear between the CoCrW pin and plate is found to be the largest. In contrast, the total wear between the CoCrW pin and plate is relatively small. Furthermore, CoCrW may cause a faster wear progression of CoCrMo, especially for the case in which CoCrMo is used as the pin material. The results of this work provide a better understanding of the tribological properties of CoCrW and CoCrMo alloys. In addition, this work provides a practical guideline for the use of CoCrW and CoCrMo from the tribological design viewpoint.
Author(s)
권동균오세진정구현
Issued Date
2022
Type
Article
Keyword
CoCrMo 합금CoCrW 합금마찰마모율CoCrMo alloyCoCrW alloyFrictionWear rate
DOI
10.9725/kts.2022.38.4.162
URI
https://oak.ulsan.ac.kr/handle/2021.oak/15730
Publisher
한국트라이볼로지학회지 (Tribol. Lubr.)
Language
한국어
ISSN
2713-8011
Citation Volume
38
Citation Number
4
Citation Start Page
162
Citation End Page
169
Appears in Collections:
Engineering > Mechanical and Automotive Engineering
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