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      KCI등재 SCIE SCOPUS

      Tensile Behavior of High-Strength Stainless Steel Wire Rope (HSSSWR)-Reinforced ECC

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      https://www.riss.kr/link?id=A107932448

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      다국어 초록 (Multilingual Abstract)

      Engineered cementitious composites (ECC) show the distinguished characteristics of high post-cracking resistance and ductility. High-strength stainless steel wire rope (HSSSWR) has been successfully used for restoring or strengthening of existing stru...

      Engineered cementitious composites (ECC) show the distinguished characteristics of high post-cracking resistance and ductility. High-strength stainless steel wire rope (HSSSWR) has been successfully used for restoring or strengthening of existing structures. By combining the advantages of these two materials, a new composite system formed by embedding HSSSWR into ECC was proposed and expected to be a promising engineering material for repair or strengthening of structures. To investigate the tensile failure mechanism and mechanical properties of HSSSWR-reinforced ECC, an experimental study on 27 HSSSWR-reinforced ECC plates was conducted considering the effects of the reinforcement ratio of longitudinal HSSSWRs, formula of ECC and width of the plate. Test results revealed that HSSSWR-reinforced ECC exhibit superior post-cracking resistance, deformation capacity and crack-width control capacity. Increasing the reinforcement ratio of longitudinal HSSSWRs can effectively enhance the tensile strength, crack-width control capacity, deformation capacity and tensile toughness of HSSSWR-reinforced ECC. Adding thickener in ECC can significantly improve the crack-width control capacity and deformation capacity of HSSSWR-reinforced ECC due to enhancing uniform distribution of polyvinyl alcohol fibers, but would slightly reduce the cracking stress and maximum tensile stress by bringing small bubbles in the matrix. The tensile properties of HSSSWR-reinforced ECC plates are almost not affected by varying the plate width. Besides, a tensile constitutive model was developed for charactering the stress-strain relationship of HSSSWR-reinforced ECC in tension. Based on mechanical theories and failure characteristics of HSSSWR-reinforced ECC, the model parameters were determined, and calculation equations of cracking stress and tensile strength were proposed. The accuracy of the developed model and calculation equations was verified by test results.

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      목차 (Table of Contents)

      • Abstract
      • 1. Instruction
      • 2. Experimental Program
      • 3. Experimental Results and Discussion
      • 4. Tensile Stress-Strain Model of HSSSWR-Reinforced ECC
      • Abstract
      • 1. Instruction
      • 2. Experimental Program
      • 3. Experimental Results and Discussion
      • 4. Tensile Stress-Strain Model of HSSSWR-Reinforced ECC
      • 5. Conclusions
      • References
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      참고문헌 (Reference)

      1 Hu, B., "and theoretical investigation on the hybrid CFRP-ECC flexural strengthening of RC beams with corroded longitudinal reinforcement" 200 : 109717-, 2019

      2 Zhu, Z. F., "Uniaxial tensile stress-strain behavior of carbon-fiber grid-reinforced engineered cementitious composites" 22 : 6-, 2018

      3 Saad M. Raoof, "Textile-reinforced mortar (TRM) versus fibre-reinforced polymers (FRP) in flexural strengthening of RC beams" Elsevier BV 151 : 279-291, 2017

      4 Benben Li, "Tensile behavior of basalt textile grid reinforced Engineering Cementitious Composite" Elsevier BV 156 : 185-200, 2019

      5 Liu, W. K., "Study on the compression and tensile properties and the constitutive model of ECC" Zhengzhou university 2018

      6 Shermi, C., "Study on out-of-plane behaviour of unreinforced masonry strengthened with welded wire mesh and mortar" 143 : 104-120, 2017

      7 Wang, X. L., "Study on bond-slip property of high strength stainless steel strand and ECC" 48 : 108-113, 2020

      8 Baoxin Qi, "Study of Impact Damage in PVA-ECC Beam under Low-Velocity Impact Loading Using Piezoceramic Transducers and PVDF Thin-Film Transducers" MDPI AG 18 (18): 671-, 2018

      9 Ghai, R., "Strengthening of RCC beams in shear by using SBR polymer-modified ferrocement jacketing technique" 4028186-, 2018

      10 Xing-yan Shang, "Strengthening of RC Structures by Using Engineered Cementitious Composites: A Review" MDPI AG 11 (11): 3384-, 2019

      1 Hu, B., "and theoretical investigation on the hybrid CFRP-ECC flexural strengthening of RC beams with corroded longitudinal reinforcement" 200 : 109717-, 2019

      2 Zhu, Z. F., "Uniaxial tensile stress-strain behavior of carbon-fiber grid-reinforced engineered cementitious composites" 22 : 6-, 2018

      3 Saad M. Raoof, "Textile-reinforced mortar (TRM) versus fibre-reinforced polymers (FRP) in flexural strengthening of RC beams" Elsevier BV 151 : 279-291, 2017

      4 Benben Li, "Tensile behavior of basalt textile grid reinforced Engineering Cementitious Composite" Elsevier BV 156 : 185-200, 2019

      5 Liu, W. K., "Study on the compression and tensile properties and the constitutive model of ECC" Zhengzhou university 2018

      6 Shermi, C., "Study on out-of-plane behaviour of unreinforced masonry strengthened with welded wire mesh and mortar" 143 : 104-120, 2017

      7 Wang, X. L., "Study on bond-slip property of high strength stainless steel strand and ECC" 48 : 108-113, 2020

      8 Baoxin Qi, "Study of Impact Damage in PVA-ECC Beam under Low-Velocity Impact Loading Using Piezoceramic Transducers and PVDF Thin-Film Transducers" MDPI AG 18 (18): 671-, 2018

      9 Ghai, R., "Strengthening of RCC beams in shear by using SBR polymer-modified ferrocement jacketing technique" 4028186-, 2018

      10 Xing-yan Shang, "Strengthening of RC Structures by Using Engineered Cementitious Composites: A Review" MDPI AG 11 (11): 3384-, 2019

      11 Esmaeel Esmaeeli, "Strain hardening fibre reinforced cement composites for the flexural strengthening of masonry elements of ancient structures" Elsevier BV 38 : 1010-1021, 2013

      12 Li, V. C., "Steady-state and multiple cracking of short random fiber composite" 118 (118): 2246-2264, 1992

      13 김성훈, "Seismic Retrofit of Rectangular RC Bridge Columns Using Wire Mesh Wrap Casing" 대한토목학회 15 (15): 1227-1236, 2011

      14 Ismail M.I. Qeshta, "Research progress on the flexural behaviour of externally bonded RC beams" Springer Science and Business Media LLC 16 (16): 982-1003, 2016

      15 A. E. Naaman, "Proposed classification of HPFRC composites based on their tensile response" Springer Science and Business Media LLC 39 (39): 547-555, 2007

      16 Lepech, M., "Preliminary findings on size effect in ECC structural members in flexure" 7 : 57-66, 2003

      17 Yuan, F., "Numerical study on flexural behaviors of steel reinforced engineered cementitious composite (ECC) and ECC/concrete composite beams" 57 (57): 637-645, 2014

      18 Li, V. C., "Micromechanics-based durability study of polyvinyl alcohol-engineered cementitious composite" 101 (101): 242-248, 2004

      19 V. C. Li, "Micromechanics of crack bridging in fibre-reinforced concrete" Springer Science and Business Media LLC 26 (26): 486-494, 1993

      20 Zhou, J. J., "Mechanical behavior of fiberreinforced engineered cementitious composites in uniaxial compression" 27 (27): 04014111-, 2015

      21 Victor C. Li, "Matrix design for pseudo-strain-hardening fibre reinforced cementitious composites" Springer Science and Business Media LLC 28 (28): 586-595, 1995

      22 Chung-Chan Hung, "Innovative ECC jacketing for retrofitting shear-deficient RC members" Elsevier BV 111 : 408-418, 2016

      23 Fischer, G., "Influence of matrix ductility on tension-stiffening behavior of steel reinforced engineered cementitious composites(ECC)" 99 (99): 104-114, 2002

      24 Yang Pan, "Impact fatigue behaviour of GFRP mesh reinforced engineered cementitious composites for runway pavement" Elsevier BV 230 : 116898-, 2020

      25 Victor C. Li, "High-Performance and Multifunctional Cement-Based Composite Material" Elsevier BV 5 (5): 250-260, 2019

      26 Sufen Dong, "Flexural toughness and calculation model of super-fine stainless wire reinforced reactive powder concrete" Elsevier BV 104 : 103367-, 2019

      27 Yuan, F., "Flexural strengthening of reinforced concrete beams with high-strength steel wire and engineered cementitious composites" 254 : 119284-, 2020

      28 Guan, Y., "Flexural properties of ECC-concrete composite beam" 2018 : 3138759-, 2018

      29 Zheng, Y. Z., "Flexural behaviour of reinforced concrete beams strengthened with a composite reinforcement layer: BFRP grid and ECC" 115 : 424-437, 2016

      30 Ismail M.I. Qeshta, "Flexural behaviour of RC beams strengthened with wire mesh-epoxy composite" Elsevier BV 79 : 104-114, 2015

      31 Ali N. Al-Gemeel, "Experimental Investigation of Basalt Textile Reinforced Engineered Cementitious Composite under Apparent Hoop Tensile Loading" Elsevier BV 23 : 270-279, 2019

      32 Kunieda, M., "Enhancement of crack distribution of UHP-SHCC under axial tension using steel reinforcement" 8 (8): 49-57, 2010

      33 Fischer, G., "Effect of matrix ductility on deformation behavior of steel reinforced ECC flexural members under reversed cyclic loading conditions" 99 : 781-790, 2002

      34 Xiaobin Li, "Eccentric Compressive Behavior of Reinforced Concrete Columns Strengthened Using Steel Mesh Reinforced Resin Concrete" MDPI AG 8 (8): 1827-, 2018

      35 Rokugo, K., "Direct tensile behavior and size effect of strain-hardening fiber-reinforced cement-based composites (SHCC)" 1429-1434, 2007

      36 ACI Committee, "Control of cracking in concrete structures" American Concrete Institute 2001

      37 Ministry of Housing and Urban-Rural Development of the People’s Republic of China, "Code for Design of Concrete Structures (GB50010–2010)"

      38 Zhu, J. T., "Bond-slip relational model between high-strength stainless steel wire mesh and ECC" 53 : 83-92, 2020

      39 Khandaker Muhammed Anwar Hossain, "Bond Strength of GFRP Bars Embedded in Engineered Cementitious Composite using RILEM Beam Testing" 한국콘크리트학회 12 (12): 101-115, 2018

      40 Huang, H., "Analysis of stiffness and cracks of shear strengthened beam with stainless steel wire mesh and PPM China" 44 : 32-38, 2011

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      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2012-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2011-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2009-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 1.81 0.92 1.47
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      1.25 1.17 0.488 0.24
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