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[국내논문] Evaluation on the Surface Modification of Recycled Fine Aggregates in Aqueous H2SiF6 Solution 원문보기

International journal of concrete structures and materials, v.12 no.1, 2018년, pp.19 -   

Ryu, Hwa-Sung ,  Kim, Deuck-Mo ,  Shin, Sang-Heon ,  Lim, Seung-Min ,  Park, Won-Jun

초록이 없습니다.

참고문헌 (30)

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  2. AS 1996 Particle density and water absorption of aggregates (AS 1141.6.2-1996) AS. (1996). Particle density and water absorption of aggregates (AS 1141.6.2-1996). Sydney: Australian Standard. 

  3. ASTM International 2006 Standard test method for time of setting of hydraulic cement by vicat needle; ASTM C 191 ASTM International. (2006). Standard test method for time of setting of hydraulic cement by vicat needle; ASTM C 191. West Conshohocken: ASTM International. 

  4. ASTM International 2012 Standard test method for density, relative density (specific gravity), and absorption of fine aggregate; ASTM C128-12 ASTM International. (2012). Standard test method for density, relative density (specific gravity), and absorption of fine aggregate; ASTM C128-12. West Conshohocken: ASTM International. 

  5. ASTM International 2013 Standard test method for flow of hydraulic cement mortar; ASTM C1437-13 ASTM International. (2013a). Standard test method for flow of hydraulic cement mortar; ASTM C1437-13. West Conshohocken: ASTM International. 

  6. ASTM International 2013 Standard test method for compressive strength of hydraulic cement mortars (using 2-in. or [50 mm] Cube Specimens); ASTM C109 M-13 ASTM International. (2013b). Standard test method for compressive strength of hydraulic cement mortars (using 2-in. or [50 mm] Cube Specimens); ASTM C109 M-13. West Conshohocken: ASTM International. 

  7. ASTM International 2014 Standard specification for flow table for use in tests of hydraulic cement; ASTM C230/230 M-14 ASTM International. (2014). Standard specification for flow table for use in tests of hydraulic cement; ASTM C230/230 M-14. West Conshohocken: ASTM International. 

  8. Construction and Building Materials M Behera 68 501 2014 10.1016/j.conbuildmat.2014.07.003 Behera, M., Bhattacharyya, S. K., Minocha, A. K., Deoliya, R., & Maiti, S. (2014). Recycled aggregate from C&D waste & its use in concrete-a breakthrough towards sustainability in construction sector: A review. Construction and Building Materials, 68, 501-516. 

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  10. Journal of Cleaner Production P Chen 149 735 2017 10.1016/j.jclepro.2017.02.148 Chen, P., Wang, J., Wang, L., Xu, Y., Qian, X., & Ma, H. (2017). Producing vaterite by CO2 sequestration in the waste solution of chemical treatment of recycled concrete aggregates. Journal of Cleaner Production, 149, 735-742. 

  11. Journal of Advanced Concrete Technology HS Choi 12 34 2014 10.3151/jact.12.34 Choi, H. S., Kitagaki, R., & Noguchi, T. (2014). Effective recycling of surface modification aggregate using microwave heating. Journal of Advanced Concrete Technology, 12, 34-45. 

  12. Construction standard CS3. (2013). Construction standard CS3: 2013-Aggregates for concrete, Civil engineering and development department of Hong Kong. http://www.cedd.gov.hk/eng/publications/standards_handbooks_cost/stan_cs3_2013.html . 

  13. DIN 4226-100 2002 Aggregates for mortar and concrete-Part 100: Recycled aggregates DIN 4226-100. (2002). Aggregates for mortar and concrete-Part 100: Recycled aggregates. Berlin: Deutsches Institut für Normung. 

  14. International Journal of Civil, Environmental, Structural, Construction and Architectural Engineering S Ismail 8 862 2014 Ismail, S., & Ramli, M. (2014). Influence of surface-treated coarse recycled concrete aggregate on compressive strength of concrete. International Journal of Civil, Environmental, Structural, Construction and Architectural Engineering, 8, 862-866. 

  15. JIS A 5021 2005 Recycled aggregate for concrete-class H JIS A 5021. (2005). Recycled aggregate for concrete-class H. Tokyo: Japan Concrete Institute. 

  16. JIS A 5022 2007 Recycled concrete using recycled aggregate class M JIS A 5022. (2007). Recycled concrete using recycled aggregate class M. Tokyo: Japan Concrete Institute. 

  17. JIS A 5023 2007 Recycled concrete using recycled aggregate class L JIS A 5023. (2007). Recycled concrete using recycled aggregate class L. Tokyo: Japan Concrete Institute. 

  18. Journal of the Korean Ceramic Society JO Kim 41 749 2004 10.4191/KCERS.2004.41.10.749 Kim, J. O., Nam, J. H., Kim, D. S., & Lee, B. K. (2004). Changes in hydration and watertightness of cement containing two-component fluosilicate salt based chemical admixture. Journal of the Korean Ceramic Society, 41, 749-755. 

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  29. Construction and Building Materials B Zhan 67 3 2014 10.1016/j.conbuildmat.2013.09.008 Zhan, B., Poon, C. S., Liu, Q., Kou, S., & Shi, C. (2014). Experimental study on CO2 curing for enhancement of recycled aggregate properties. Construction and Building Materials, 67, 3-7. 

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