• 제목/요약/키워드: Calcium silicate cement

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High Sulfated Calcium Silicate 시멘트 콘크리트의 염소이온침투저항성 평가 (Evaluation of Chloride Ion Penetration Resistance of High Calcium Silicate Cement Concrete)

  • 정석만;양완희;김현수;이건철
    • 한국건축시공학회지
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    • 제22권1호
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    • pp.35-43
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    • 2022
  • High Sulfated Calcium Silicate cement(HSCSC) 콘크리트의 성능을 보통포틀랜드시멘트(OPC), 고로슬래그시멘트(S/C)와 비교 검토하고자 하였다. 콘크리트 압축강도 실험결과 초기 3일 재령에서의 High Sulfated Calcium Silicate cement 콘크리트 압축강도 발현율이 보통포틀랜드시멘트 콘크리트의 73.6% 수준으로 다소 적게 확인되었으나, 28일 재령에서 High Sulfated Calcium Silicate cement의 강도 발현율이 상승하여 보통포틀랜드시멘트 대비 약 107.0% 수준으로 소폭 상승하는 것을 확인할 수 있었다. 또한, 콘크리트의 염소이온침투저항성 실험결과 재령 28일의 경우 보통포틀랜드시멘트 대비 고로슬래그시멘트, High Sulfated Calcium Silicate cement 순서로 각각 73.4%, 93.0% 감소하였으며, 재령 56일의 경우 79.1%, 98.3% 감소하여, 우수한 염소이온 침투 저항성능을 확인하였다. 특이사항으로는 보통포틀랜드시멘트, 고로슬래그시멘트 보다 High Sulfated Calcium Silicate cement의 재령 경과에 따른 통과 전하량 감소율이 더 높은 것을 확인할 수 있었다.

Calcium silicate cement-based paste의 탄산화 양생 조건에 따른 역학적 특성 및 미세구조 평가 (Evaluation of Mechanical Properties and Microstructure of Calcium Silicate Cement-Based Paste according to Carbonation Curing Conditions)

  • 최창근;류동우
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2023년도 가을학술발표대회논문집
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    • pp.93-94
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    • 2023
  • This study evaluated the mechanical properties and microstructure of calcium silicate cement based paste according to carbonation curing conditions. As a result, both compressive strength and carbonation depth increased with the carbonation curing period.

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이산화탄소 분위기에서 칼슘실리케이트와 칼슘설포알루미네이트 혼합시멘트의 광물 및 압축강도 특성 (Mineral and Compressive Strength Characteristics of Calcium Silicate and Calcium Sulfoaluminate Mixed Cement in Carbon Dioxide Atmosphere)

  • 이대근;이선목;박정준;문기연;조계홍;조진상
    • 자원리싸이클링
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    • 제32권6호
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    • pp.10-17
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    • 2023
  • 칼슘실리케이트 시멘트(Calcium silicate cement, CSC)는 친환경 저탄소 시멘트로써 최근에 많은 연구가 진행되고 있다. 하지만 이산화탄소 반응 활성화와 시료 handling을 위하여 사전경화 단계를 진행하여야하는 어려움이 있다. 본 연구에서는 CSC에 칼슘설포아루미네이트(Calcium sulfoaluminate, CSA) 속경시멘트를 혼합하여 초기강도 발현으로 사전경화 없이 사용할 수 있는 CSC의 확대적용 가능성을 살펴보고자 하였다. 이를 위하여 이산화탄소 분위기에서 CSC 와 CSA 속경성 시멘트 혼합비율 변화에 따른 압축강도와 Q-XRD 광물특성 함량 변화를 측정하였다. 압축강도 측정결과, CSC 50% 조건에서 3일과 7일 압축강도가 각 각 14.18MPa과 22.98MPa로 1종시멘트 KS규격을 만족하였다. 광물특성 분석을 통하여 이산화탄소 반응생성물인 calcite 광물이 증가하여 강도발현에 기여했음을 알 수 있었다. 7일 경과 후에도 수화광물인 dicalcium silicate 및 yeelimite광물뿐 아니라, 이산화탄소와 반응하지 않은 rankiniten 및 pseudowollastonite 광물이 다량 관찰되어 7일이후의 강도발현 가능성을 확인하였다.

Mechanical Properties of Hydrated Cement Paste: Development of Structure-property Relationships

  • Ghebrab, Tewodros T.;Soroushian, Parviz
    • International Journal of Concrete Structures and Materials
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    • 제4권1호
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    • pp.37-43
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    • 2010
  • Theoretical models based on modern interpretations of the morphology and interactions of cement hydration products are developed for prediction of the mechanical properties of hydrated cement paste (hcp). The models are based on the emerging nanostructural vision of calcium silicate hydrate (C-S-H) morphology, and account for the intermolecular interactions between nano-scale calcium C-S-H particles. The models also incorporate the effects of capillary porosity and microcracking within hydrated cement paste. The intrinsic modulus of elasticity and tensile strength of hydrated cement paste are determined based on intermolecular interactions between C-S-H nano-particles. Modeling of fracture toughness indicates that frictional pull-out of the micro-scale calcium hydroxide (CH) platelets makes major contributions to the fracture energy of hcp. A tensile strength model was developed for hcp based on the linear elastic fracture mechanics theories. The predicted theoretical models are in reasonable agreements with empirical models developed based on the experimental performance of hcp.

CO2 반응경화 시멘트를 혼입한 페이스트의 탄산화 양생에 관한 실험적 연구 (An Experimental Study on Carbonation Induction in Paste with CO2 Reactive Cement)

  • 김영진;류동우
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2023년도 가을학술발표대회논문집
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    • pp.79-80
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    • 2023
  • After the Second Industrial Revolution, as global warming caused by environmental issues has intensified, the CO2 emissions from the cement industry have become an urgent challenge. Therefore, this study aimed to reduce and utilize CO2 emissions by using CO2-reducing Calcium Silicate Cement.

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건설폐기물을 활용한 이산화탄소 반응경화 시멘트 제조에 관한 연구 (Manufacturing of Calcium Silicate Cement Using Construction Waste)

  • 이향선;손배근;송훈
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2023년도 봄 학술논문 발표대회
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    • pp.47-48
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    • 2023
  • In the domestic industrial sector, greenhouse gases emitted from the cement industry account for about 10%, with most of them generated during the cement clinker calcination process. During the calcination process, 57% of carbon dioxide is emitted from the decarbonation reaction of limestone, 30% from fuel consumption, and 13% from electricity usage. In response to these issues, the cement industry is making efforts to reduce carbon dioxide emissions by developing technologies for raw material substitution and conversion, improving process efficiency by utilizing low-carbon alternative heat sources, developing CO2 capture and utilization technologies, and recycling waste materials. In addition, due to the limitations in purchasing and storing industrial byproducts generated from industrial facilities, many studies are underway regarding the recycling of construction waste. Therefore, this study analyzes the manufacture of calcium silicate cement (CSC), which can store carbon dioxide as carbonate minerals in industrial facilities, and aims to contribute to the development of environmentally friendly regenerated cement using construction waste.

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칼슘실리케이트 시멘트(CSC) 혼입 모르타르의 탄산화 양생 조건에 따른 강도발현 특성에 관한 기초적 연구 (A Basic Study on the Strength Development Characteristics of Calcium Silicate Cement(CSC) Mixed Mortar according to Carbonation Curing Conditions)

  • 김영진;류동우
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2023년도 봄 학술논문 발표대회
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    • pp.141-142
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    • 2023
  • In this study, the strength development characteristics of calcium silicate cement mixed mortar according to carbonation hardening conditions were evaluated. As a result of measuring the compressive strength, the strength increased according to the carbonation hardening time, and the strength increase rate was higher for the specimen with a CO2 concentration of 20%.

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X-선 회절 분석을 통한 고온 피해 시멘트 경화체의 성분 변화 분석 (Analysis of the Changes of composition of Hardened Cement at High Temperature by X-Ray Diffraction)

  • 지우람;박지웅;신기돈;이건철;허영선
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2017년도 추계 학술논문 발표대회
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    • pp.113-114
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    • 2017
  • In this study, the change of composition of cement hardened at high temperature through XRD was observed. The specimen was made of cement paste and the heating rate condition was applied at rapid thermal annealing (10.0℃ / min). The decrease of calcium hydroxide was not confirmed, but the calcium carbonate tended to be impossible or decreased after 800℃. Calcium silicate and larnite were observed to increase with increasing temperature. It is considered that silicic acid, which is a stable structure due to the decomposition of calcium silicate, is changed into a phase such as lime.

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