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      KCI등재 SCIE SCOPUS

      Predictive models of hardened mechanical properties of waste LCD glass concrete

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      https://www.riss.kr/link?id=A104356314

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      다국어 초록 (Multilingual Abstract)

      This paper aims to develop a prediction model for the hardened properties of waste LCD glass that is used in concrete by analyzing a series of laboratory test results, which were obtained in our previous study. We also summarized the testing results o...

      This paper aims to develop a prediction model for the hardened properties of waste LCD glass that is used in concrete by analyzing a series of laboratory test results, which were obtained in our previous study. We also summarized the testing results of the hardened properties of a variety of waste LCD glass concretes and discussed the effect of factors such as the water-binder ratio (w/b), waste glass content (G) and age (t) on the concrete compressive strength, flexural strength and ultrasonic pulse velocity. This study also applied a hyperbolic function, an exponential function and a power function in a non-linear regression analysis of multiple variables and established the prediction model that could consider the effect of the water-binder ratio (w/b), waste glass content (G) and age (t) on the concrete compressive strength, flexural strength and ultrasonic pulse velocity.

      Compared with the testing results, the statistical analysis shows that the coefficient of determination R2 and the mean absolute percentage error (MAPE) were 0.930.96 and 5.48.4% for the compressive strength, 0.830.89 and 8.912.2% for the flexural strength and 0.870.89 and 1.82.2% for the ultrasonic pulse velocity, respectively. The proposed models are highly accurate in predicting the compressive strength, flexural strength and ultrasonic pulse velocity of waste LCD glass concrete. However, with other ranges of mixture parameters, the predicted models must be further studied.

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      참고문헌 (Reference)

      1 Barbuta, M., "Using Neural Networks for Prediction of Properties of Polymer Concrete with Fly Ash" 24 (24): 523-528, 2012

      2 Wang, C. C., "Time-dependent hyperbolic model for clayey soil" 2001

      3 Lin, K. L., "The utilization of thin film transistor liquid crystal display waste glass as a pozzolanic material" 163 : 916-921, 2009

      4 Wang, H. Y., "The effect of the proportion of thin film transistor–liquid crystal display(TFT–LCD)optical waste glass as a partial substitute for cement in cement mortar" 25 : 791-797, 2011

      5 Lin, K. L., "The effect of heating temperature of thin film transistor-liquid crystal display (TFT-LCD) electric-optical waste glass substitute partial clay as eco-brick" 15 : 1755-1759, 2007

      6 Her-Yung Wang, "Study of thin film transition liquid crystal display (TFT-LCD) optical waste glass applied in early-high-strength controlled low strength materials" 국제구조공학회 5 (5): 491-501, 2008

      7 Park, S. B., "Studies on mechanical properties of concrete containing waste glass aggregate" 34 : 2181-2189, 2004

      8 Atis, C. D., "Relation between Strength Properties (Flexuraland Compressive) and Abrasion Resistance of Fiber (Steel and Polypropylene)-Reinforced Fly Ash Concrete" 21 (21): 402-408, 2009

      9 Ismail, Z.Z., "Recycling of waste glass as a partial replacement for fine aggregate in concrete" 29 : 655-659, 2009

      10 Kou, S.C., "Properties of self-compacting concrete prepared with recycled glass aggregate" 31 : 107-113, 2009

      1 Barbuta, M., "Using Neural Networks for Prediction of Properties of Polymer Concrete with Fly Ash" 24 (24): 523-528, 2012

      2 Wang, C. C., "Time-dependent hyperbolic model for clayey soil" 2001

      3 Lin, K. L., "The utilization of thin film transistor liquid crystal display waste glass as a pozzolanic material" 163 : 916-921, 2009

      4 Wang, H. Y., "The effect of the proportion of thin film transistor–liquid crystal display(TFT–LCD)optical waste glass as a partial substitute for cement in cement mortar" 25 : 791-797, 2011

      5 Lin, K. L., "The effect of heating temperature of thin film transistor-liquid crystal display (TFT-LCD) electric-optical waste glass substitute partial clay as eco-brick" 15 : 1755-1759, 2007

      6 Her-Yung Wang, "Study of thin film transition liquid crystal display (TFT-LCD) optical waste glass applied in early-high-strength controlled low strength materials" 국제구조공학회 5 (5): 491-501, 2008

      7 Park, S. B., "Studies on mechanical properties of concrete containing waste glass aggregate" 34 : 2181-2189, 2004

      8 Atis, C. D., "Relation between Strength Properties (Flexuraland Compressive) and Abrasion Resistance of Fiber (Steel and Polypropylene)-Reinforced Fly Ash Concrete" 21 (21): 402-408, 2009

      9 Ismail, Z.Z., "Recycling of waste glass as a partial replacement for fine aggregate in concrete" 29 : 655-659, 2009

      10 Kou, S.C., "Properties of self-compacting concrete prepared with recycled glass aggregate" 31 : 107-113, 2009

      11 Terro, M. J., "Properties of concrete made with recycled crushed glass at elevated temperatures" 41 : 633-639, 2006

      12 Topcu, I.B., "Properties of concrete containing waste glass" 34 : 267-274, 2004

      13 Ahmed, S. F. U., "Properties of concrete containing construction and demolition wastes and fly ash" 25 (25): 1864-1870, 2013

      14 Chao-Wei Tang, "Producing synthetic lightweight aggregates by treating waste TFT-LCD glass powder and reservoir sediments" 사단법인 한국계산역학회 13 (13): 325-342, 2014

      15 Vahid, K.A, "Prediction of 28-day compressive strength of concrete on the third day using artificial neural networks" 3 (3): 565-576, 2010

      16 Shah, A. A., "Predicting residual strength of non-linear ultrasonically evaluated damaged concrete using artificial neural network" 29 : 42-50, 2012

      17 Hwang, K., "Numerical prediction model for compressive strength development of concrete containing fly ash" 519 : 1-6, 1999

      18 Duncan, J.M., "Nonlinear analysis of stress and strain in soil" 96 (96): 1629-1653, 1970

      19 Mousavi, S. M., "New predictive model for compressive strength of HPC using gene expression programming" 45 : 105-114, 2012

      20 Gao, Y. Y., "LCD panel manufacturing waste resource status of Comment. Green Foundation newsletters" 2008

      21 Lewis, C. D., "Industrial and Business Forecasting Method" Butterworth Scientific Publishers 1982

      22 Konder, R. L., "Hyperbolic stress–strain response : cohesive soils" 89 (89): 115-143, 1963

      23 Stark, T. D., "Hyperbolic stress–strain parameters for silts" 120 (120): 420-441, 1994

      24 Sridharan, A., "Hyperbolic representation of strength, pore pressures and volume changes with axial strain in triaxial tests" 33-42, 1972

      25 Boscardin, M. C., "Hyperbolic parameters for compacted soils" 116 (116): 88-104, 1990

      26 Cheng, A., "Experimental Study on Properties of Pervious Concrete Made with Recycled Aggregate" 4 (4): 104-110, 2011

      27 Kumar, B., "Evaluation of Properties of High-Volume Fly-Ash Concrete for Pavements" 19 (19): 906-911, 2007

      28 Lin, K. L., "Effect of composition on characteristics of thin film transistor liquid crystal display (TFT-LCD) waste glass-metakaolin -based geopolymers" 36 : 501-507, 2012

      29 Dapena, E., "Effect of Recycled Sand Content on Characteristics of Mortars and Concretes" 23 (23): 414-422, 2011

      30 Wang, H.Y., "Durability of self-consolidating concrete is using waste LCD glass" 24 : 1008-1013, 2010

      31 Murat, P., "Appraisal of long-term effects of fly ash and silica fume on compressive strength of concrete by neural networks" 21 : 384-394, 2007

      32 Al-Shamrani, M. A., "Applying the hyperbolic method and Ca/Cc concept for settlement prediction of complex organic-rich soil formations" 77 : 17-34, 2005

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

      34 Wang, H.Y., "A study on the properties of fresh self-consolidating glass concrete(SCGC)" 24 : 619-624, 2010

      35 Wang, H. Y., "A study on the mix proportion and properties of wasted LCD glass applied to controlled low strength materials concrete (CLSM)" 2007

      36 Ciou, S. S., "A study on the high temperature properties of cement mortar with waste liquid crystal glass powder" National Kaohsiung University of Applied Sciences 2009

      37 Wang, H. Y., "A study of the engineering properties of waste LCD glass applied to controlled low strength materials concrete" 23 : 2127-2131, 2009

      38 C.C. Wang, "A predictive model for compressive strength of waste LCD glass concrete by nonlinear-multivariate regression" 사단법인 한국계산역학회 13 (13): 531-545, 2014

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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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