• 제목/요약/키워드: alkali-activated concrete

검색결과 116건 처리시간 0.029초

플라이 애쉬를 활용한 알칼리 활성시멘트 콘크리트의 압축강도와 최적혼합비 (Compressive Strength and Optimal Mixing Ratio of Alkali Activated Cement Concrete Containing Fly Ash)

  • 한상호;박상숙;강화영
    • 한국구조물진단유지관리공학회 논문집
    • /
    • 제11권4호
    • /
    • pp.152-158
    • /
    • 2007
  • 본 연구는 알칼리 활성시멘트(Alkali Activated Cement)를 콘크리트에 활용하기 위한 기초적인 연구로서 잔골재 및 굵은골재의 혼합비는 일정하게 하고, 활성화제/플라이 애쉬의 혼합비, 그리고 활성화제 중 물유리, 수산화나트륨, 물의 혼합비를 변화시킨 AAC 콘크리트에 대한 압축강도를 측정하였다. 또한 각 변수에 따른 압축강도의 특성을 분석하고, AAC 콘크리트의 최적 혼합비를 구하였다. 그 결과 최대 압축강도 발현을 위한 활성화제 중 물유리, 수산화나트륨, 물의 최적 혼합비는 4.0:1.0:2.5 이었으며, 활성화제/플라이 애쉬의 최적 혼합비는 0.7 이었다.

알칼리 활성 슬래그 콘크리트의 내구성: 콘크리트의 염소이온 확산 (Durability of Alkali-Activated Blast Furnace Slag Concrete: Chloride Ions Diffusion)

  • 홍기남;박재규;정규산;한상훈;김재현
    • 한국안전학회지
    • /
    • 제30권4호
    • /
    • pp.120-127
    • /
    • 2015
  • The aim of the present study is to investigate some characteristics of concrete according to addition of blast furnace slag and alkali-activator dosages. Blast furnace slag was used at 30%, 50% replacement by weight of cement, and liquid sulfur having NaOH additives was chosen as the alkaline activator. In order to evaluate characteristics of blast furnace slag concrete with sulfur alkali activators, compressive strength test, total porosity, chloride ions diffusion coefficient test were performed. The early-compressive strength characteristics of blast furnace slag concrete using a sulufr-alkali activators was compared with those of reference concrete and added 30, 50% blast furnace slag concrete. Also, Blast furnace slag concrete using sulfur-alkali activators enhanced the total porosity, chloride ions diffusion coefficient than two standard concrete. Alkali-activated blast furnace slag concrete was related to total porosity, compressive strength and chloride ions diffusion coefficient each others. As a result, it should be noted that the sulfur-alkali activators can not only solve the demerit of blast furnace slag concrete but also offer the chloride resistance of blast furnace slag concrete using sulfur alkali activators to normal concrete.

개질 슬래그 기반 알칼리 활성 콘크리트의 기본 물성 연구 (Fundamental Study of Alkali-Activated Concrete Properties based on Modified Slag)

  • 안지환;전성일;권수안
    • 한국도로학회논문집
    • /
    • 제17권2호
    • /
    • pp.1-11
    • /
    • 2015
  • PURPOSES : This study set out to investigate the fundamental properties of alkali-activated concrete (AAC) using modified slag as the pavement maintenance material. METHODS: The material properties of modified slag based alkali-activated concrete (MSAAC) were analyzed and evaluated against those of alkali-activated slag concrete (AASC). Several mix formulations were considered, including one MSACC and four AASCs. The main variables considered in the study were slump, air content, compressive strength, rapid chloride permeability test, scaling resistance, freeze-thaw test, XRD, SEM, and EDS. RESULTS: MSAAC exhibits a compressive strength in excess of 21 MPa six hours after curing. Also, the charge passed of the MSACC was found to be less than 2000 coulombs after seven days and about 1000 coulombs after 28 days. The weight loss determined from a scaling test did not exceed $1kg/cm^2$ in the case of the MSACC, but that of the AASCs had already exceeded $1kg/cm^2$ at the 10th cycle. Based on the results of the freeze-thaw test, the relative dynamic modulus of every mix was found to be in excess of 90%. An energy dispersive spectroscopy(EDS) analysis found that the weight rate percentage of the calcium and aluminum in the MSAAC mix is twice that of the AASC mixes. CONCLUSIONS : It was found that the MSAAC mix exhibits significantly better performance than AASC mixes, based on various fundamental properties.

Tests on Cementless Alkali-Activated Slag Concrete Using Lightweight Aggregates

  • Yang, Keun-Hyeok;Mun, Ju-Hyun;Lee, Kang-Seok;Song, Jin-Kyu
    • International Journal of Concrete Structures and Materials
    • /
    • 제5권2호
    • /
    • pp.125-131
    • /
    • 2011
  • Five all-lightweight alkali-activated (AA) slag concrete mixes were tested according to the variation of water content to examine the significance and limitation on the development of cementless structural concrete using lightweight aggregates. The compressive strength development rate and shrinkage strain measured from the concrete specimens were compared with empirical models proposed by ACI 209 and EC 2 for portland cement normal weight concrete. Splitting tensile strength, and moduli of elasticity and rupture were recorded and compared with design equations specified in ACI 318-08 or EC 2, and a database compiled from the present study for ordinary portland cement (OPC) lightweight concrete, wherever possible. Test results showed that the slump loss of lightweight AA slag concrete decreased with the increase of water content. In addition, the compressive strength development and different mechanical properties of lightweight AA slag concrete were comparable with those of OPC lightweight concrete and conservative comparing with predictions obtained from code provisions. Therefore, it can be proposed that the lightweight AA slag concrete is practically applicable as an environmental-friendly structural concrete.

Microstructural, Mechanical, and Durability Related Similarities in Concretes Based on OPC and Alkali-Activated Slag Binders

  • Vance, Kirk;Aguayo, Matthew;Dakhane, Akash;Ravikumar, Deepak;Jain, Jitendra;Neithalath, Narayanan
    • International Journal of Concrete Structures and Materials
    • /
    • 제8권4호
    • /
    • pp.289-299
    • /
    • 2014
  • Alkali-activated slag concretes are being extensively researched because of its potential sustainability-related benefits. For such concretes to be implemented in large scale concrete applications such as infrastructural and building elements, it is essential to understand its early and long-term performance characteristics vis-a'-vis conventional ordinary portland cement (OPC) based concretes. This paper presents a comprehensive study of the property and performance features including early-age isothermal calorimetric response, compressive strength development with time, microstructural features such as the pore volume and representative pore size, and accelerated chloride transport resistance of OPC and alkali-activated binder systems. Slag mixtures activated using sodium silicate solution ($SiO_2$-to-$Na_2O$ ratio or $M_s$ of 1-2) to provide a total alkalinity of 0.05 ($Na_2O$-to-binder ratio) are compared with OPC mixtures with and without partial cement replacement with Class F fly ash (20 % by mass) or silica fume (6 % by mass). Major similarities are noted between these binder systems for: (1) calorimetric response with respect to the presence of features even though the locations and peaks vary based on $M_s$, (2) compressive strength and its development, (3) total porosity and pore size, and (4) rapid chloride permeability and non-steady state migration coefficients. Moreover, electrical impedance based circuit models are used to bring out the microstructural features (resistance of the connected pores, and capacitances of the solid phase and pore-solid interface) that are similar in conventional OPC and alkali-activated slag concretes. This study thus demonstrates that performance-equivalent alkali-activated slag systems that are more sustainable from energy and environmental standpoints can be proportioned.

무시멘트 알칼리 활성 고로슬래그 콘크리트의 배합에 따른 재료 역학적 특성 (Synthesis and Mechanical Properties of Alkali-Activated Slag Concretes)

  • 송진규;이강석;한선애;김용인
    • 한국콘크리트학회:학술대회논문집
    • /
    • 한국콘크리트학회 2008년도 춘계 학술발표회 제20권1호
    • /
    • pp.1005-1008
    • /
    • 2008
  • 본 연구에서는 시멘트의 대체재로써 고로슬래그를 사용한 무시멘트 알칼리 활성화 고로슬래그 콘크리트의 배합에 따른 기본적인 역학적 특성에 대해 파악하였다. 압축강도에 영향을 줄 수 있는 변수를 기존의 모르터 연구 및 예비 실험을 통해 설정한 후 배합하여 1, 3, 7, 28, 56, 91일의 압축강도를 측정하였다. 압축강도 실험에서 알칼리 활성 고로슬래그 콘크리트는 OPC(보통 포틀랜드 시멘트) 콘크리트에 비해 초기 강도가 빠르게 발현되었으며, 특히 1, 3일 강도는 OPC 콘크리트보다 약 $1.5{\sim}3$배 정도 높게 나타났다. 응력-변형률 관계에서는 알칼리 활성 고로슬래그 콘크리트는 최대 응력 이후에 변형률이 $0.0020{\sim}0.0025$에서 콘크리트의 파괴가 급격히 발생하였으며, 규산나트륨을 많이 첨가한 경우 고강도 콘크리트처럼 취성적 파괴를 보였다.

  • PDF

바텀애쉬를 이용한 알칼리 활성화 모르타르의 제조 및 특성 (Manufacture of alkali activated mortar using bottom ash and its properties)

  • 강수태;강현진;류금성;고경택;이장화
    • 한국콘크리트학회:학술대회논문집
    • /
    • 한국콘크리트학회 2010년도 춘계 학술대회 제22권1호
    • /
    • pp.267-268
    • /
    • 2010
  • 본 연구에서는 알칼리 활성화 모르타르의 제조에 있어서 바텀애쉬의 결합재로서의 활용가능성을 파악하기 위해 각 구성재료가 미치는 영향을 강도 및 유동성 측면에서 파악하였다.

  • PDF

가성알칼리와 탄산나트륨을 혼합한 활성화제를 사용한 알칼리 활성화 고로슬래그 모르타르의 강도 특성 (The Strength Properties of Alkali-Activated Slag Mortars by Combined Caustic Alkali with Sodium Carbonate as Activator)

  • 김태완
    • 콘크리트학회논문집
    • /
    • 제24권6호
    • /
    • pp.745-752
    • /
    • 2012
  • 이 연구는 혼합 알칼리 활성화 슬래그 모르타르의 압축강도에 미치는 영향에 관한 것이다. 활성화제의 효과는 활성화제의 종류, 농도 등이 강도에 영향을 미치는 것으로 알려져있다. 혼합 활성화제는 5가지 가소성 알칼리(수산화나트륨, 수산화칼슘, 수산화마그네슘, 수산화알루미늄, 수산화칼륨)와 탄산나트륨($Na_2CO_3$)를 혼합하였다. 배함은 각 활성화제를 1M, 2M, 그리고 3M의 서로 다른 농도로 하였다. 압축강도 결과는 혼합 알칼리 활성화 슬래그 모르타르는 탄산나트륨의 농도가 증가하면 증가하는 것으로 나타났다. 혼합 활성화제를 사용한 알칼리 활성화 슬래그 모르타르는 모든 재령과 시험체가 탄산나트륨을 혼합하지 않은 컨트롤 케이스보다 향상된 강도를 나타내었다. 전자주사현미경(SEM) 관찰 결과 활성화 반응으로 C-S-H와 aluminusilicate gel이 생성된 것을 볼 수 있었다.

고로슬래그 분말도에 따른 알칼리 활성 모르타르의 역학적 특성 (The Mechanics Characteristics of Alkali-Activated Mortar by Brain of Blast Furnace Slag)

  • 강현진;고경택;류금성;강수태;안기홍;이장화
    • 한국콘크리트학회:학술대회논문집
    • /
    • 한국콘크리트학회 2009년도 춘계 학술대회 제21권1호
    • /
    • pp.393-394
    • /
    • 2009
  • 최근 결합재로 시멘트를 사용하지 않은 알칼리 활성 콘크리트에 대한 연구가 활발히 진행되고 있다. 본 연구에서는 시멘트를 전혀 사용하지 않고 결합재로서 고로슬래그의 분말도가 알칼리 활성 모르타르에 미치는 영향을 유동성 및 압축강도를 통하여 분석하였다.

  • PDF

액상 레드머드 첨가방식에 따른 ASRC 콘크리트의 특성 (Characteristic of Alkali-Activated Slag Red Mud Cement Concrete according to Liquefaction Red mud Input Method)

  • 황병일;강혜주;박경수;강석표
    • 한국건축시공학회:학술대회논문집
    • /
    • 한국건축시공학회 2018년도 춘계 학술논문 발표대회
    • /
    • pp.134-135
    • /
    • 2018
  • In this paper, we investigate the characteristic of ASRC concrete with the addition of liquefaction red mud using red ud which can be used as an alkali activator of alkali-activated slag cement. as a result, the compressive strength and the efflorescence area increased, and as the amount of liquid red mud increased, the compressive strength decreased and the efflorescence area increased.

  • PDF