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      KCI등재 SCIE SCOPUS

      Utilization of Completely Recycled Fine Aggregate for Preparation of Lightweight Concrete Partition Panels

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      https://www.riss.kr/link?id=A107871546

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      다국어 초록 (Multilingual Abstract)

      To reduce the cost of lightweight concrete (LWC) partition panels and to address recycling concrete waste, this work utilized completely recycled fine aggregate (CRFA) to replace the natural fine aggregate and ceramsite in the preparation of LWC and L...

      To reduce the cost of lightweight concrete (LWC) partition panels and to address recycling concrete waste, this work utilized completely recycled fine aggregate (CRFA) to replace the natural fine aggregate and ceramsite in the preparation of LWC and LWC partition panels. To this end, an autoclave-free curing process and an air-entraining agent were used to prepare the CRFA-LWC. The workability, compressive strength, drying shrinkage, and pore structure of the CRFA-LWC and the performance of the CRFA-LWC partition panels were then investigated. The results show that the optimal ratio of the CRFA to the cement is 2.2 for the lightweight concrete, and the optimal panel cross section is a rounded rectangular one. All the pores in the CRFA-LWC have a diameter of smaller than 0.17 mm, and the diameter of 89% of them is less than 0.05 mm. In order to satisfy the drying shrinkage requirements stipulated by Chinese code JC/T 169-2016, the CRFA-LWC should be cured for at least 10 days. The economic analysis concludes that the material cost of CRFA-LWC is 40% lower than that of the autoclaved ceramsite concrete. In addition, utilizing CRFA in lightweight concrete can ease the shortage of natural aggregate.

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      목차 (Table of Contents)

      • Abstract
      • 1. Introduction
      • 2. Materials and Methods
      • 3. Results and Discussion
      • 4. Conclusions
      • Abstract
      • 1. Introduction
      • 2. Materials and Methods
      • 3. Results and Discussion
      • 4. Conclusions
      • References
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      참고문헌 (Reference)

      1 Chan, D., "Using recycled construction waste as aggregates for paving blocks" 159 (159): 83-91, 2006

      2 Xiao, Z., "Use of wastes derived from earthquakes for the production of concrete masonry partition wall blocks" 31 (31): 1859-1866, 2011

      3 Poon, C. S., "Use of recycled aggregates in molded concrete bricks and blocks" 16 (16): 281-289, 2002

      4 Polat, R., "The influence of lightweight aggregate on the physico-mechanical properties of concrete exposed to freeze–thaw cycles" 60 (60): 51-56, 2010

      5 Standardization-Administration-of-China, "Test methods for building wallboard (GB/T 30100-2013)" Standards Press of China 2013

      6 Venkrbec, V., "Suitability of recycled concrete aggregates from precast panel buildings deconstructed at expired lifespan for structural use" 247 : 119593-, 2020

      7 Ministry-of-Housing-and-Urban-Rural-Development-of-PRC, "Standard for test method of performance on ordinary fresh concrete (GB/T 50080-2016)" Standards Press of China 2016

      8 Zhang, S., "Rheological and mechanical properties of cemented foam backfill: Effect of mineral admixture type and dosage" 112 : 103689-, 2020

      9 Yang, Y., "Research on production of recycled total-fine aggregate and its influence on concrete performance" 47 (47): 04157-04163, 2016

      10 Iffat, S., "Relation between density and compressive strength of hardened concrete" 6 (6): 182-189, 2015

      1 Chan, D., "Using recycled construction waste as aggregates for paving blocks" 159 (159): 83-91, 2006

      2 Xiao, Z., "Use of wastes derived from earthquakes for the production of concrete masonry partition wall blocks" 31 (31): 1859-1866, 2011

      3 Poon, C. S., "Use of recycled aggregates in molded concrete bricks and blocks" 16 (16): 281-289, 2002

      4 Polat, R., "The influence of lightweight aggregate on the physico-mechanical properties of concrete exposed to freeze–thaw cycles" 60 (60): 51-56, 2010

      5 Standardization-Administration-of-China, "Test methods for building wallboard (GB/T 30100-2013)" Standards Press of China 2013

      6 Venkrbec, V., "Suitability of recycled concrete aggregates from precast panel buildings deconstructed at expired lifespan for structural use" 247 : 119593-, 2020

      7 Ministry-of-Housing-and-Urban-Rural-Development-of-PRC, "Standard for test method of performance on ordinary fresh concrete (GB/T 50080-2016)" Standards Press of China 2016

      8 Zhang, S., "Rheological and mechanical properties of cemented foam backfill: Effect of mineral admixture type and dosage" 112 : 103689-, 2020

      9 Yang, Y., "Research on production of recycled total-fine aggregate and its influence on concrete performance" 47 (47): 04157-04163, 2016

      10 Iffat, S., "Relation between density and compressive strength of hardened concrete" 6 (6): 182-189, 2015

      11 Abdel-Gawwad, H. A., "Recycling of concrete waste to produce ready-mix alkali activated cement" 44 (44): 7300-7304, 2018

      12 Xiao, Z., "Properties of partition wall blocks prepared with high percentages of recycled clay brick after exposure to elevated temperatures" 49 : 56-61, 2013

      13 Kou, S. -C., "Properties of partition wall blocks prepared with fresh concrete wastes" 36 : 566-571, 2012

      14 Kou, S. -C., "Properties of concrete prepared with crushed fine stone, furnace bottom ash and fine recycled aggregate as fine aggregates" 23 (23): 2877-2886, 2009

      15 Poon, C. -S., "Properties of concrete blocks prepared with low grade recycled aggregates" 29 (29): 2369-2377, 2009

      16 Aslam, M., "Oil-palm by-products as lightweight aggregate in concrete mixture : A review" 126 : 56-73, 2016

      17 Just, A., "Microstructure of high-strength foam concrete" 60 (60): 741-748, 2009

      18 Standardization-Administration-of-China, "Methods for testing uniformity of concrete admixture (GB/T 8077-2012)" Standards Press of China 2012

      19 주민관, "Mechanical Behavior of Recycled Fine Aggregate Concrete with High Slump Property in Normal‑ and High‑Strength" 한국콘크리트학회 14 (14): 109-121, 2020

      20 Etxeberria, M., "Influence of amount of recycled coarse aggregates and production process on properties of recycled aggregate concrete" 37 (37): 735-742, 2007

      21 Ministry-of-Housing-and-Urban-Rural-Development-of-PRC, "General technical requirements of light weight panel used for building partition (JG/T169-2016)" Standards Press of China 2016

      22 Chen, B., "Gaussian process regression-based material model for stochastic structural analysis" 7 (7): 04021025-, 2021

      23 Ting-Jin Liu, "Failure mechanism and strengthening effect of shield tunnel lining reinforced by steel plates with corbels" Informa UK Limited 1-19, 2020

      24 서태석, "Experimental Study on Tensile Creep of Coarse Recycled Aggregate Concrete" 한국콘크리트학회 9 (9): 337-343, 2015

      25 Shafigh, P., "Effect of replacement of normal weight coarse aggregate with oil palm shell on properties of concrete" 37 (37): 955-964, 2012

      26 You, J., "Effect of curing age on material properties of autoclaved light-weight concrete wallboard" 440 : 022025-, 2020

      27 Kumar Mehta, P., "Concrete: Microstructure, properties, and materials" McGraw-Hill Professional 2014

      28 Yang, Y., "Concrete mix design for completely recycled fine aggregate by modified packing density method" 13 (13): 3535-, 2020

      29 Zega, C., "Comportamiento de hormigones elaborados con agregado fino reciclado" 4 : 47-54, 2006

      30 He, Z., "Comparison of CO2 emissions from OPC and recycled cement production" 211 : 965-973, 2019

      31 Yan, R., "Comparative evaluation of fire resistance of partition wall blocks prepared with waste materials" 182 : 156-165, 2018

      32 Colangelo, F., "Comparative LCA of concrete with recycled aggregates : A circular economy mindset in Europe" 25 (25): 1790-1804, 2020

      33 Standardization-Administration-of-China, "Common Portland cement (GB 175-2007)" Standards Press of China 2007

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      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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