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      JIS-SUJ2 베어링강의 열처리 이후 표면 및 심부에서 나타나는 구조적, 화학적 물성 변화 = Investigation of Changes in Structural Characteristics and Chemical Composition after Heat Treatment Process of JIS-SUJ2 Bearing Steel

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      https://www.riss.kr/link?id=A108905691

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      다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

      In this study, we designed and manufactured a large angular contact ball bearing (LACBB) with low deformation using JIS-SUJ2 steel and analyzed changes in its structural characteristics and chemical composition upon heat treatment. The bearing was produced by hot forging and heat treatment including a quenching and tempering (Q/T) process, and its properties were analyzed using 4 mm thick specimens. A difference in the size distribution of the carbide in the outer and inner parts of the bearing was observed and it was confirmed that large and non-uniform carbide was distributed in the inner part of the bearing.
      After heat treatment, the hardness value of the outer part increased from 13.4 HRC to 61 HRC and the inner part increased from 8.0 HRC to 59.7 HRC. As a result of X-ray diffraction (XRD) measurements, the volume fraction of the retained austenite contained in the outer part was calculated to be 3.5~4.8 % and the inner part was calculated to be 3.6~5.0 %. The surface chemical composition and the content of chemical bonds were quantified through X-ray photoelectron spectroscopy (XPS), and a decrease in C=C bonds and an increase in Fe-C bonds were confirmed.
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      In this study, we designed and manufactured a large angular contact ball bearing (LACBB) with low deformation using JIS-SUJ2 steel and analyzed changes in its structural characteristics and chemical composition upon heat treatment. The bearing was pro...

      In this study, we designed and manufactured a large angular contact ball bearing (LACBB) with low deformation using JIS-SUJ2 steel and analyzed changes in its structural characteristics and chemical composition upon heat treatment. The bearing was produced by hot forging and heat treatment including a quenching and tempering (Q/T) process, and its properties were analyzed using 4 mm thick specimens. A difference in the size distribution of the carbide in the outer and inner parts of the bearing was observed and it was confirmed that large and non-uniform carbide was distributed in the inner part of the bearing.
      After heat treatment, the hardness value of the outer part increased from 13.4 HRC to 61 HRC and the inner part increased from 8.0 HRC to 59.7 HRC. As a result of X-ray diffraction (XRD) measurements, the volume fraction of the retained austenite contained in the outer part was calculated to be 3.5~4.8 % and the inner part was calculated to be 3.6~5.0 %. The surface chemical composition and the content of chemical bonds were quantified through X-ray photoelectron spectroscopy (XPS), and a decrease in C=C bonds and an increase in Fe-C bonds were confirmed.

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      참고문헌 (Reference)

      1 M. Hakim, 14 : 101945-, 2023

      2 F. Mas, 51 : 4864-, 2016

      3 T. Sawamoto, 36 : 527-, 1991

      4 J. T. Grant, 14 : 271-, 1989

      5 D. D. Sarma, 25 : 1222-, 2013

      6 M. Repka, 109 : 519-, 2017

      7 M. Marian, 25 : 101202-, 2021

      8 F. Du, 12 : 67-, 2022

      9 M. Tauviqirrahman, 18 : 101112-, 2023

      10 R. A. Grange, 8 : 1775-, 1977

      1 M. Hakim, 14 : 101945-, 2023

      2 F. Mas, 51 : 4864-, 2016

      3 T. Sawamoto, 36 : 527-, 1991

      4 J. T. Grant, 14 : 271-, 1989

      5 D. D. Sarma, 25 : 1222-, 2013

      6 M. Repka, 109 : 519-, 2017

      7 M. Marian, 25 : 101202-, 2021

      8 F. Du, 12 : 67-, 2022

      9 M. Tauviqirrahman, 18 : 101112-, 2023

      10 R. A. Grange, 8 : 1775-, 1977

      11 Y. Yu, 2194 : 012050-, 2022

      12 G. Thomas, 9 : 439-, 1978

      13 C. S. Fadleys, 601 : 8-, 2009

      14 강경모 ; 신동갑 ; 박영훈 ; 김세웅 ; 김대은, "고탄소크롬 베어링강 2종(SUJ2) 베어링강에 증착된 저마찰 코팅의 트라이볼로지적 특성 연구" 한국트라이볼로지학회 34 (34): 254-261, 2018

      15 D. A. Porter, "Phase Transformations in Metals and Alloys" CRC Press 348-, 2009

      16 B. D. Cullity, "Elements of X-Ray Diffraction" Prentice Hall 351-, 2001

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