• 제목/요약/키워드: waste concrete

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폐주물사를 혼입한 콘크리트의 동결-융해 저항성에 관한 실험적 연구 (An Experimental Study on the Freeze-Thaw Resistance of Concrete Incorporating Waste Foundry Sand)

  • 윤경구;이주형;홍창우;박제선
    • 콘크리트학회지
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    • 제10권4호
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    • pp.153-161
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    • 1998
  • 콘크리트 구조물은 자연적인 혹은 인위적인 온도의 승, 강하로 인하여 동결-융해 작용을 받게 되어 구조물의 성능저하를 야기시킨다. 현대에 들어서면서 콘크리트의 내구특성을 파악하기 위한 연구적 요구가 증가되고 있다. 따라서 폐주물사 콘크리트를 실제 구조물에 적용하기 위해서는 내구특성에 대한 연구가 반드시 이루어져야 한다. 폐주물사를 혼입한 콘크리트의 내구특성을 파악하기 위한 동결-융해 실험은 폐주물사의 잔골재 치환율, 물-시멘트비, AE제 사용 여부를 주요 변수로 하여 실시하였다. 원형공시체를 제작하여, 동결-융해 시험기에 넣어 -18~4$^{\circ}C$로 급속 동결-융해를 진행시키면서 매 23싸이클마다 동탄성계수를 측정하였다. 실험결과 AE제를 첨가했을 때 물-시멘트비가 적을수록, 폐주물사의 치환율이 클수록 전반적으로 강도가 증가하는 것으로 나타났으며, 물-시멘트비가 증가함에 따라, AE제를 사용한 콘크리트가 동결-융해 저항성이 증가하는 것으로 나타났다. 특히 폐주물사 치환율이 50%일때가 동결-융해 저항성이 가장 좋은 것으로 나타났으며 그 다음으로 25, 0% 순으로 저항성이 좋은 것으로 나타났다. 따라서 폐주물사 콘크리트가 내구성이 우수한 것으로 나타나 폐주물사를 콘크리트에 재활용할 수 있는것으로나타났다.

Experimental evaluation of the performance of self-compacting concrete contains nano clay and nano egg shell

  • Hilal, Nahla N.;Hadzima-Nyarko, Marijana
    • Advances in concrete construction
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    • 제13권5호
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    • pp.349-360
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    • 2022
  • The rising prices of landfills and the lack of cement production are motivating researchers to be more interested in using wastes to produce concrete mixtures materials. The use of waste materials such as eggshell and matakoline waste not only reduces landfill costs and space, but also reduces the cost of cement production for the concrete mixture. However, recycling waste materials has become critical in order to effectively manage environmental sustainability. The purpose of this paper is to investigate the appropriate properties of self-compacting concrete (SCC) by incorporating waste materials such as crushed ceramics as coarse aggregate and nano egg shell (NES) and nanoclay (NC) as cement replacements. Fresh properties of SCC, such as segregation, flow time and diameter, V-funnel, H2/H1 ratio, and fresh unit weight of concrete mixtures, as well as hardened properties, such as 7, 14, and 28 days compressive strength and 28 and 90 days flexural strength, were measured for this purpose. The presence of NC in the SCC mixture enhanced the compressive strength of the concrete when 5% of NES was added or in the case without the addition of NES compared to the control mixture. The flexural strength enhanced with the incorporation of NC in the SCC increased the flexural strength of the concrete compared to the control mixture, but the incorporation of 5% of NES decreased the flexural strength compared to the mixtures with NC. These results prove the possibility of using crushed ceramics as the coarse aggregate, and NES and NC as substitutes for 5, 7, and 10% of the cement in SCC, because the properties of such SCC in hardened and fresh states are satisfactory.

잔골재로 폐유리를 혼입한 콘크리트의 물리.역학적 특성에 관한 실험적 연구 (Experimental Study on Physical and Mechanical Properties of Concrete with fine Waste Glass)

  • 박승범;조청휘;김정환
    • 콘크리트학회논문집
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    • 제13권2호
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    • pp.184-191
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    • 2001
  • 최근 급속한 산업화 및 생활수준의 향상에 따라 폐유리의 발생량이 급격히 증대하고 있으며 이중 대부분은 재활용되지 못하고 최종처분 되고 있어 심각한 자원낭비 및 환경오염문제를 야기하고 있다. 따라서 본 연구에서는 국내에서 발생되고 있는 폐유리중 대표적인 갈색, 녹색, 무색 폐유리 및 이들을 혼합한 폐유리를 파쇄하여 콘크리트용 잔골재로서의 재활용 가능성을 분석하기 위한 기초적 실험연구를 수행하였다. 시험결과 슬럼프 및 다짐계수는 폐유리 잔골재의 입형이 모가나고 각이져 있고 상대적으로 유리입도가 잔골재보다 크기때문에 감소하였으며, 공기량은 폐유리 잔골재가 0.6mm이상의 입자를 많이 함유하고 있어 증가하는 것으로 나타났다. 또한 압축강도, 인장강도, 휨강도는 폐유리 잔골재의 혼입량이 많아질수록 감소하였으며, 적정 혼입률은 30% 이하가 바람직하고 유동성 확보를 위해서는 적정한 혼화제를 사용해야 한다는 결론을 얻을 수 있었다.

폐콘크리트 분말을 활용한 모르타르의 기초물성에 관한 연구 (Fundamental Properties of Mortar Utilizing Waste Concrete Power)

  • 최연왕;문대중;김성주;김기형;문한영
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 춘계 학술발표회 제16권1호
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    • pp.620-623
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    • 2004
  • Waste concrete powder(WCP) has been estimated with a great value-added material as by-product of waste concrete manufactured to fine and coarse aggregate for concrete, because it is able to utilized for cement clinker and concrete admixture. In the experimental results for this study, chemical composition of WCP was similar to that of cement, and specific gravity of WCPs were 2.46 and 2.48 due to internal micro-void of WCP. Final setting of paste with WCP was delayed, and flow value of mortar with WCP was tendency to reduced in comparison with that of paste and mortar with only ordinary portland cement as replacement ratio of WCP increased. Furthermore, sorptivity of mortar with WCP was increased as replacement ratio of WCP increased. Compressive strength of mortar with $15\%$ WCP was developed about 27MPa at 28days.

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재생골재콘크리트의 길이변화 및 동결융해 저항성에 대한 실험적 특성 고찰 (Characterization of Length change and Free-Thaw Resistance of Recycled Aggregate Concrete)

  • 심종성;박철우;박성재;김길중;김태광
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 춘계 학술발표회 논문집(II)
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    • pp.109-112
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    • 2006
  • Social and environmental pressures draw greater significance on the recycling of the waste. Particularly, waste concrete is particularly crucial among the construction wastes in terms of conservation of natural construction resources as well as disposal crisis. The technology to recycle the waste concrete has been improved. This study has various replacement levels of natural fine aggregate with recycled fine aggregate while coarse aggregate is completely replaced with the recycled coarse aggregate and herein fundamental properties investigated include compressive strength, shrinkage and dynamic modulus of elasticity. As a result, it is anticipated that the recycled aggregate concrete can be successfully applied to structural concrete members provided a proper recycling process, mix design and curing method are practiced.

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폐콘크리트 분말의 분말도가 모르타르의 품질특성에 미치는 영향 (The Effect on the Quality Properties of Mortar by Surface Area of Waste Concrete Powder)

  • 최연왕;문대중;김성수;정재권;김용직
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2005년도 봄학술 발표회 논문집(II)
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    • pp.365-368
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    • 2005
  • Waste concrete powder(WCP) has been estimated with a great value-added material as by-product of waste concrete manufactured to fine and coarse aggregate for concrete, because it is able to utilized for cement clinker and concrete admixture. Experimental tests were performed as such plastic viscosity of paste, flow and compressive strength of mortar by surface area of WCP. As a result, flow and 28days compressive strength of mortar was decreased according to increased replacement ratio of WCP as compared to control mortar. Also, plastic viscosity of paste used WCP1 and WCP2 was decreased with increasing replacement ratio, but WCP3 was increased with increasing replacement ratio.

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폐주물사 미분말을 시멘트 대체재료로 사용한 콘크리트의 특성 (Properties of the Concrete using the Waste Foundry Sand Powder by Cement Replacement)

  • 우종권;반주환;류현기
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2006년도 춘계학술논문 발표대회 제6권1호
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    • pp.57-61
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    • 2006
  • Waste foundry sand of industrial waste which is happening by vast quantity according to fast development of industry has much the occurrence amount and processing method is depended on reclamation, and is using by fine aggregate for construction by recycling method among others. In this research Waste foundry sand powder into cement replace fare use possibility availability judge wish to Slump and air content decreased the replacement ratio increases by concrete special quality that do not harden according to experiment result, and unit capacity mass and bleeding increased the replacement ratio increases. Hardening concrete intensity special quality displayed strength improvement to replacement ratio 20%, and tendency that watertightness increases most in replacement ratio loft in watertight property appear. Considering the strength and watertight properties, the adequate usage of waste foundry sand powder is the 10% of replacement ratio.

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Behavior of hybrid concrete beams with waste rubber

  • Al-Azzawi, Adel A.;Saad, Noora;Shakir, Dalia
    • Computers and Concrete
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    • 제23권4호
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    • pp.245-253
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    • 2019
  • The studies on the applications of waste materials in concrete have been increased in Iraq since 2003. In this research, rubber wastes that resulting from scrapped tires was added to concrete mix with presence of superplasticizer. The mechanical properties of concrete and workability of concrete mixes were studied. The used rubber were ranging in size from (2-4) mm with addition percentages of (0.1% and 0.2%) by volume of concrete. The results of mechanical properties of concrete show that rubber enhance the ductility, and compressive and tensile strength compared to concrete without it. Also, the flexural behavior of hybrid strength concrete beams (due to using rubber at the bottom or top layer of section) was investigated. The rubber concrete located at bottom layer gives higher values of ultimate loads and deflections compared to the beam with top layer. A similar response to fiber concrete beam (all section contains 0.1% rubber) was recognized. Finite element modeling in three dimensions was carried for the tested beams using ABAQUS software. The ultimate loads and deflection obtained from experimental and finite elements are in good agreements with average difference of 8% in ultimate load and 20% in ultimate deflection.

중성화가 진행된 폐콘크리트계 미분말을 재활용한 재생시멘트의 물성 (The Properties of Recycle Cement to Reuse Cementitious Powder from Neutralized Concrete Waste)

  • 강태훈;김성수;정민수;강병희
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2003년도 학술.기술논문 발표회
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    • pp.77-82
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    • 2003
  • The purpose of this study is development of technique to use cementitious powder as recycle cement produced from deteriorated Concrete waste which has a large quantity of calcium carbonate. Therefore, after having theoretical consideration based on the properties of high-heated concrete and concerning about neutralization of Concrete, we analysis chemical properties of ingredients of cementitious powder. After making origin cement paste, then processing the accelarated carbonation, we consider the properties of hydration and chemical properties of cementitious powder under various temperature conditions. As a result of the thermal analysis, the CaCo3 content of cementitious powder would affect decision of heat temperature to recover its hydrated ability because CaCo3 content is increased when neutralization is progressed. And as a result of XRD analysis, in case of origin powder of non-neutralized paste, CaO peak is found at 700℃. but, heat temperature to generate CaO would increase when the content of neutralized ingredients is increased. Finally, recycle cement heated at 700℃ shows the best compressive strength when the content of neutralized ingredients in recycle cement is less then 50%. However, it would be quite difficult to manage quality of recycle cement according to recycling points of various concrete waste.

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중성화가 진행된 폐콘크리트계 미분말을 재활용한 재생시멘트의 물성 (The Properties of Recycle Cement to Reuse Cementitious Powder from Neutralized Concrete Waste)

  • 강태훈;김성수;정민수;강병희
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2003년도 학술.기술논문발표회
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    • pp.77-82
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    • 2003
  • The purpose of this study is development of technique to use cementitious powder as recycle cement produced from deteriorated Concrete waste which has a large quantity of calcium carbonate. Therefore, after having theoretical consideration based on the properties of hish-heated concrete and concerning about neutralization of Concrete, we analysis chemical properties of ingredients of cementitious powder After making origin cement paste, then processing the accelerated carbonation, we consider the properties of hydration and chemical properties of cementitious powder under various temperature conditions As a result of the thermal analysis, the CacO3 content of cementitious powder would affect decision of heat temperature to recover its hydrated ability because CacO3 content is increased when neutraliTation is preBlessed. And as a result of XRD analysis. in case of origin powder of non-neutralized paste, CaO peak is found at $700^{\circ}C$. but, heat temperature to generate CaO would increase when the content of neutralized ingredients is increased. Finally, recycle cement heated at $700^{\circ}C$ shows the best compressive strength when the content of neutralized ingredients in recycle cement is less then 50%. However, it would be quite difficult to manage quality of recycle cement according to recycling points of various concrete waste.

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