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      KCI등재 SCIE SCOPUS

      Study on the engineering and electricity properties of cement mortar added with waste LCD glass and piezoelectric powders

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      https://www.riss.kr/link?id=A105236275

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      다국어 초록 (Multilingual Abstract)

      This study used a volumetric method for design. The control group used waste Liquid Crystal Displayplay (LCD) glass powder to replace cement (0%, 10%, 20%, 30%), and the PZT group used Pd-Zr-Ti piezoelectric (PZT) powder to replace 5% of the fine aggr...

      This study used a volumetric method for design. The control group used waste Liquid Crystal Displayplay (LCD) glass powder to replace cement (0%, 10%, 20%, 30%), and the PZT group used Pd-Zr-Ti piezoelectric (PZT) powder to replace 5% of the fine aggregate to make cement mortar. The engineering and the mechanical and electricity properties were tested; flow, compressive strength, ultrasonic pulse velocity (UPV), water absorption and resistivity (SSD and OD electricity at 50 V and 100 V) were determined; and the correlations were determined by linear regression. The compressive strength of the control group (29.5-31.8 MPa) was higher than that of the PZT group (25.1-29 MPa) by 2.8-4.4 MPa at the curing age of 28 days. A 20% waste LCD glass powder replacement (31.8 MPa) can fill up finer pores and accelerate hydration. The control group had a higher 50 V-SSD resistivity (1870-3244 Ω.cm), and the PZT group had a lower resistivity (1419-3013 Ω.cm), meaning that the resistivity increases with the replacement of waste LCD glass powder. This is because the waste LCD glass powder contains 62% SiO2, which is a low dielectric material that is an insulator. Therefore, the resistivity increases with the SiO2 content.

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      참고문헌 (Reference)

      1 Du, H., "Use of waste glass as sand in mortar: Part II-Alkali-silica reaction and mitigation methods" 35 (35): 118-126, 2013

      2 Tan, K.H., "Use of waste glass as sand in mortar: Part I-Fresh, mechanical and durability properties" 35 (35): 109-117, 2013

      3 Xing, F., "The study of pore structure and its influence on material properties of cementbased piezoelectric ceramic composites" 23 (23): 1374-1377, 2009

      4 Wang, H.Y., "The study for engineering properties of cement mortar added with fly ash and piezoelectric materials" 30 (30): 107-120, 2015

      5 Dong, B., "Study on the microstructure of cement-based piezoelectric ceramic composites" 72 : 133-138, 2014

      6 Vijayakumar, G., "Studies on glass powder as partial replacement of cement in concrete production" 3 (3): 153-157, 2013

      7 Sun, M.Z., "Simulation of cement-based piezoelectric composite material on piezoelectric strain constants" 2007

      8 Li, G.J., "Research progress in cement based piezoelectric composites" 23 (23): 52-55, 2009

      9 Li, X., "Properties of 0-3 cement-based piezoelectric composites modified by carbon black" 11 (11): 2008

      10 Jaitanong, N., "Properties 0-3 PZT-Portland cement composites" 34 (34): 793-795, 2008

      1 Du, H., "Use of waste glass as sand in mortar: Part II-Alkali-silica reaction and mitigation methods" 35 (35): 118-126, 2013

      2 Tan, K.H., "Use of waste glass as sand in mortar: Part I-Fresh, mechanical and durability properties" 35 (35): 109-117, 2013

      3 Xing, F., "The study of pore structure and its influence on material properties of cementbased piezoelectric ceramic composites" 23 (23): 1374-1377, 2009

      4 Wang, H.Y., "The study for engineering properties of cement mortar added with fly ash and piezoelectric materials" 30 (30): 107-120, 2015

      5 Dong, B., "Study on the microstructure of cement-based piezoelectric ceramic composites" 72 : 133-138, 2014

      6 Vijayakumar, G., "Studies on glass powder as partial replacement of cement in concrete production" 3 (3): 153-157, 2013

      7 Sun, M.Z., "Simulation of cement-based piezoelectric composite material on piezoelectric strain constants" 2007

      8 Li, G.J., "Research progress in cement based piezoelectric composites" 23 (23): 52-55, 2009

      9 Li, X., "Properties of 0-3 cement-based piezoelectric composites modified by carbon black" 11 (11): 2008

      10 Jaitanong, N., "Properties 0-3 PZT-Portland cement composites" 34 (34): 793-795, 2008

      11 Xu, L.F., "Preparation and properties of fine scale 1-3 piezoelectric ceramic polymer composites" 28 (28): 2006

      12 Jou, J.M., "Piezoelectricity Mechanics" Chuan Hwa Science and Technology Book Co 2003

      13 Shayan, A., "Performance of glass powder as a pozzolanic material in concrete: A field trial on concrete slabs" 36 (36): 457-468, 2006

      14 Zhao, P., "Investigation of cement-sand-based piezoelectric composites" 27 (27): 1666-1672, 2015

      15 Schwarz, N., "Influence of a fine glass powder on the durability characteristics of concrete and its comparison to fly ash" 30 (30): 486-496, 2008

      16 Schwarz, N., "Influence of a fine glass powder on cement hydration: comparison to fly ash and modeling the degree of hydration" 38 (38): 429-436, 2008

      17 Zongjin Li, "Fabrication and piezoelectricity of 0–3 cement based composite with nano-PZT powder" 한국물리학회 9 (9): 588-591, 2009

      18 Hou, T.C., "Electrical resistivity measurement of cement-based binders using embedded four-terminal probe method" 2010

      19 Chiou, Y.H., "Electrical resistivity determination of cement-based binder using embedded four-terminal probe method" National Kaohsiung University of Applied Sciences 2010

      20 Hwang, H.H., "Effects of waste glass for aggregate Substitution on the engineering properties of concrete" National Yunlin University of Science and Technology 2001

      21 Matos, A.M., "Durability of mortar using waste glass powder as cement replacement" 36 : 205-215, 2012

      22 Cheng, C.H., "Discussion TFT-LCD manufacturing waste status" 11 (11): 03-05, 2004

      23 A. Chaipanich, "Dielectric and piezoelectric properties of PZT-silica fume cement composites" 한국물리학회 7 (7): 532-536, 2007

      24 Dong, B., "Cement-based piezoelectric ceramic smart composites" 65 (65): 1363-1371, 2005

      25 Dong, B., "Cement-based piezoelectric ceramic composite and its sensor applications in civil engineering" 108 (108): 543-549, 2011

      26 Hu, T.L., "An electromechanical approach for assessing the unconfined uniaxial compressive strength of cement mortars" National Kaohsiung University of Applied Sciences 2011

      27 "ASTM C94, Standard Specification for Ready-Mixed Concrete"

      28 "ASTM C642-90, Standard Test Method for Density, Absorption, and Voids in Hardened Concrete"

      29 "ASTM C597, Standard Test Method for Pulse Velocity Through Concrete"

      30 "ASTM C33, Standard Specification for Concrete Aggregates"

      31 "ASTM C150, Standard Specification for Portland Cement"

      32 "ASTM C109, Standard Test Method for Compressive Strength of Hydraulic Cement Mortars"

      33 Huang, W.L., "A study on waste LCD glass applied in selfcompacting concrete" National Kaohsiung University of Applied Sciences 2009

      34 Kuo, W.T., "A study on the mechanical and electricity properties of cement mortar added with GGBFS and piezoelectric powder" 49 : 251-256, 2013

      35 Wang, H.Y., "A study of the effects of LCD glass sand on the properties of concrete" 29 (29): 335-341, 2009

      36 Wang, H.Y., "A study of engineering and electricity properties of cement mortar added with recycled materials and piezoelectric powders" 113 : 297-305, 2016

      37 Wang, H.Y., "A study of application of recycling green building materials in the South of Taiwan" (07) : 6-, 2009

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      2021 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-12-01 평가 등재 탈락 (해외등재 학술지 평가)
      2016-12-26 학회명변경 한글명 : 한국국제계산역학회 -> 사단법인 한국계산역학회 KCI등재
      2013-10-01 평가 SCOPUS 등재 (등재유지) KCI등재
      2011-11-01 학술지명변경 한글명 : 컴퓨터와 콘크리트 국제학술지 -> Computers and Concrete, An International Journal KCI등재후보
      2011-01-01 평가 등재후보학술지 유지 (기타) KCI등재후보
      2005-01-01 평가 SCIE 등재 (신규평가) KCI등재후보
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.72 0.07 0.53
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.44 0.4 0.173 0.02
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