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      KCI우수등재

      콘크리트 수리구조물의 수중마모저항성 평가기술에 관한 실험적 연구 = Experimental Study on Evaluation of Abrasion Resistance of Concrete Irrigation Facilities

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      https://www.riss.kr/link?id=A105397604

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      다국어 초록 (Multilingual Abstract)

      The purpose of this paper is to propose an experimental method to evaluate the resistance of abrasion about 24 MPa, 27 MPa, and 30 MPa compressive strength. These strength are used in the design and construction of concrete hydraulic structures in Korea. The mixing ratios of the ready mixed concrete strengths were investigated countrywide and set the representative mixture proportion ratios of the nine mixed types of OPC, FA and BFS. After making and curing the test specimens, the underwater abrasion test was performed. ASTM C 1138 International Standard was used to fabricate the test equipment, and the surface abrasion resistance of the specimen was tested using the test equipment. In the case of OPC, the 30% abrasion resistance improvement effect was observed at 72 hours as the water-binder ratio decreased. That was reason the coated cement bond strength of the specimen was strong. In the case of BFS and FA, it was improved by 9.9% and 3.8%, respectively, at 72 hours as the water-binder ratio decreased. It was due to the characteristics of the latent hydraulic and pozzolanic reactions. Generally, the relative abrasion resistance of concrete can be evaluated at 24 hours. However, in case of low strength (under 24 MPa), the surface mortar layer wears much faster at the first 12 hours, so it can be considered to evaluate the relative abrasion loss rate at this point.
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      The purpose of this paper is to propose an experimental method to evaluate the resistance of abrasion about 24 MPa, 27 MPa, and 30 MPa compressive strength. These strength are used in the design and construction of concrete hydraulic structures in Kor...

      The purpose of this paper is to propose an experimental method to evaluate the resistance of abrasion about 24 MPa, 27 MPa, and 30 MPa compressive strength. These strength are used in the design and construction of concrete hydraulic structures in Korea. The mixing ratios of the ready mixed concrete strengths were investigated countrywide and set the representative mixture proportion ratios of the nine mixed types of OPC, FA and BFS. After making and curing the test specimens, the underwater abrasion test was performed. ASTM C 1138 International Standard was used to fabricate the test equipment, and the surface abrasion resistance of the specimen was tested using the test equipment. In the case of OPC, the 30% abrasion resistance improvement effect was observed at 72 hours as the water-binder ratio decreased. That was reason the coated cement bond strength of the specimen was strong. In the case of BFS and FA, it was improved by 9.9% and 3.8%, respectively, at 72 hours as the water-binder ratio decreased. It was due to the characteristics of the latent hydraulic and pozzolanic reactions. Generally, the relative abrasion resistance of concrete can be evaluated at 24 hours. However, in case of low strength (under 24 MPa), the surface mortar layer wears much faster at the first 12 hours, so it can be considered to evaluate the relative abrasion loss rate at this point.

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      참고문헌 (Reference)

      1 M. G. Alexander, "Towards standard tests for abrasion resistance of concrete report on a limited number of tests studied, with a critical evaluation" Springer Nature 18 (18): 297-307, 1985

      2 M. R. Mitchell, "The Effect of Curing Regime on Pervious Concrete Abrasion Resistance" ASTM International 37 (37): 101761-, 2009

      3 M. Sadegzadeh, "Surface microstructure and abrasion resistance of concrete" Elsevier BV 17 (17): 581-590, 1987

      4 Kumar, G. B. R, "Standard test methods for determination of abrasion resistance of concrete" 5 (5): 155-162, 2014

      5 American Society for Testing and Matrials (ASTM), "Standard test method for abrasion resistance of concrete (Underwater Method)"

      6 R. K. Dhir, "Near-surface characteristics of concrete: abrasion resistance" Springer Nature 24 (24): 122-128, 1991

      7 Cengiz Duran Atiş, "High Volume Fly Ash Abrasion Resistant Concrete" American Society of Civil Engineers (ASCE) 14 (14): 274-277, 2002

      8 American Concrete Institute (ACI), "Guide to durable concrete"

      9 Moon, J. H, "Evaluation technique of abrasion resistance of marine concrete" 13 (13): 154-155, 2013

      10 Bureau of Reclamation, "Design of small dam" 1987

      1 M. G. Alexander, "Towards standard tests for abrasion resistance of concrete report on a limited number of tests studied, with a critical evaluation" Springer Nature 18 (18): 297-307, 1985

      2 M. R. Mitchell, "The Effect of Curing Regime on Pervious Concrete Abrasion Resistance" ASTM International 37 (37): 101761-, 2009

      3 M. Sadegzadeh, "Surface microstructure and abrasion resistance of concrete" Elsevier BV 17 (17): 581-590, 1987

      4 Kumar, G. B. R, "Standard test methods for determination of abrasion resistance of concrete" 5 (5): 155-162, 2014

      5 American Society for Testing and Matrials (ASTM), "Standard test method for abrasion resistance of concrete (Underwater Method)"

      6 R. K. Dhir, "Near-surface characteristics of concrete: abrasion resistance" Springer Nature 24 (24): 122-128, 1991

      7 Cengiz Duran Atiş, "High Volume Fly Ash Abrasion Resistant Concrete" American Society of Civil Engineers (ASCE) 14 (14): 274-277, 2002

      8 American Concrete Institute (ACI), "Guide to durable concrete"

      9 Moon, J. H, "Evaluation technique of abrasion resistance of marine concrete" 13 (13): 154-155, 2013

      10 Bureau of Reclamation, "Design of small dam" 1987

      11 Ministry of Land, Infrastructure and Transport (MLIT), "Concrete standard specification"

      12 Benjamin, D. S, "Abrasion resistance of concrete - Design, construction and case study" 6 (6): 136-148, 2015

      13 Liu, T. C., "Abrasion resistance of concrete" 78 (78): 341-350, 1981

      14 Yu-Wen Liu, "Abrasion erosion of concrete by water-borne sand" Elsevier BV 36 (36): 1814-1820, 2006

      15 Kryzanowski, A, "Abrasion Resistance of Concrete in Hydraulic Structures" American Concrete Institute 106 (106): 349-356, 2009

      16 P. Laplante, "Abrasion Resistance of Concrete" American Society of Civil Engineers (ASCE) 3 (3): 19-28, 1991

      17 Park, K. S, "A study on improving quality of hydraulic structures" Korea Agricultural and Rural Infrastructure Corporation 62-64, 2003

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2022 평가예정 계속평가 신청대상 (등재유지)
      2017-01-01 평가 우수등재학술지 선정 (계속평가)
      2015-12-02 학술지명변경 외국어명 : 미등록 -> Journal of the Korean Society of Agricultural Engineers KCI등재
      2013-01-01 평가 등재 1차 FAIL (등재유지) KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2005-06-07 학술지명변경 한글명 : 한국농공학회지 -> 한국농공학회논문집 KCI등재
      2004-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2001-07-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      1999-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.53 0.53 0.45
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.41 0.41 0.525 0.08
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