• 제목/요약/키워드: Hydration process

검색결과 273건 처리시간 0.025초

Model for simulating the effects of particle size distribution on the hydration process of cement

  • Chen, Changjiu;An, Xuehui
    • Computers and Concrete
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    • 제9권3호
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    • pp.179-193
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    • 2012
  • The hydration of cement contributes to the performance characteristics of concrete, such as strength and durability. In order to improve the utilization efficiency of cement and its early properties, the particle size distribution (PSD) of cement varies considerably, and the effects of the particle size distribution of cement on the hydration process should be considered. In order to evaluate effects of PSD separately, experiments testing the isothermal heat generated during the hydration of cements with different particle size distributions but the same chemical composition have been carried out. The measurable hydration depth for cement hydration was proposed and deduced based on the experimental results, and a PSD hydration model was developed in this paper for simulating the effects of particle size distribution on the hydration process of cement. First, a reference hydration rate was derived from the isothermal heat generated by the hydration of ordinary Portland cement. Then, the model was extended to take into account the effect of water-to-cement ratio, hereinafter which was referred to as PSD hydration model. Finally, the PSD hydration model was applied to simulate experiments measuring the isothermal heat generated by the hydration of cement with different particle size distributions at different water-to-cement ratios. This showed that the PSD hydration model had simulated the effects of particle size distribution and water-to-cement ratio on the hydration process of cement with satisfactory accuracy.

시멘트 초기 수화과정에 대한 유기혼화제의 영향(I) (Effect of Organic Admixture(Calcium Lignosulfonate) (I) on the Early Hydration Process of Protland Cement)

  • 문정연;최상홀
    • 한국세라믹학회지
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    • 제21권2호
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    • pp.143-148
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    • 1984
  • In this study we mainly dealt with the effects of organic retarder(calcium lignosulfate) on the early hydration process of clinker minerals. From a consideration of the hydration process of tricalcium silicate $(C_3S)$ tricalcium silicate $(C_3S)$-tricalcium aluminate $(C_3A)$ tricalcium silicate $(C_3S)$-tetracalcium aluminof-errite $(C_4AF)$ systems with calcium lignosulfate the following results were obtained. 1. when 0.25wt% of CLS was added to $C_3S$ the hydration process was progressed normally but adding of 0.5wt% its hydration was greatly retarded. 2. The hydration of $C_3S$-$C_3A$ system was progressed normally up to 0.5wt% but by adding gypsum its hydration was retarded slightly. 3. The hydration of $C_3S$-$C_4AF$ system was greatly retarded even with 0.25wt% of CLS but by adding gypsum its hydration process was recovered normally.

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수화과정에서 전처리가 알루미늄 합금의 용출에 미치는 효과 (Effect of Pretreatment on the Dissolution of Aluminum Alloy during Hydration Process)

  • 이병구;이호연;탁용석
    • Corrosion Science and Technology
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    • 제12권5호
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    • pp.215-219
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    • 2013
  • Aluminum alloy(3003) can be dissolved during hydration process with hot tap water. In order to increase the stability of aluminum alloy, it was pretreated with anodization and phosphoric acid before hydration process. The effect of pretreatment on the surface property changes was analyzed with X-ray Photoelectron Spectroscopy (XPS) and Inductively Coupled Plasma-Optical Emission Spectrometer (ICP-OES) and their results supported that the increase of hydroxyl group (-OH) on the surface formed during anodization and phosphorous acid treatment prevented the dissolution of aluminum alloy during hydration process at high temperature.

Thermal cracking analysis of concrete with cement hydration model and equivalent age method

  • Tian, Ye;Jin, Xianyu;Jin, Nanguo
    • Computers and Concrete
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    • 제11권4호
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    • pp.271-289
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    • 2013
  • In this research, a developed microstructural model of cement particles was presented to describe the cement hydration procedure. To simplify the hydration process, the whole hydration was analyzed in a series of sub-steps. In each step, the hydration degree, as well as the microstructural size of the hydration cell, was calculated as a function of the radius of the unreacted cement particles. With the consideration of the water consumption and the reduction of the interfacial area between water and hydration products, the micro-level expressions of the cement hydration kinetics were established. Then the heat released and temperature history of the concrete was carried out with the hydration degree obtained from each sub-steps. The equivalent age method based on the Arrhenius law was introduced in this research. Based on the equivalent age method, a maturity model was applied to describe the evolution of the mechanical properties of the material during the hydration process. The finite element program ANSYS was used to analyze the temperature field in concrete structures. Then thermal stress field was calculated using the elasticity modulus obtained from code formulate. And the risk of thermal cracking was estimated by the comparison of thermal stress and concrete tensile strength.

Development of Multi-Components Model of Cement Hydration

  • ;이한승;경제운;박기봉
    • 한국세라믹학회:학술대회논문집
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    • 한국세라믹학회 2007년도 제34회 시멘트 심포지엄
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    • pp.129-137
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    • 2007
  • This paper presents a numerical model which can predict degree of hydration of cement mineral component, such as $C_{3}S$, $C_{2}S$, $C_{3}A$, $C_{4}AF$ and microstructure of hydrating cement as a function of water to cement ratio, cement particle size distribution, cement mineral components and temperature. In this model cement particles are parked randomly in cell space and hydration process is described using a multi-component integrated kinetic model. The simulation result of degree of hydration of cement mineral component agrees well with experiment result. The content of cement hydration product, such as CSH and CH can be obtained as an accompanied result during hydration process. By introducing of equal-area projection method, water withdrawl mechanism and contact area among cement particles can be considered in detail. By using proposed method, pore size distribution of hydrating cement is predicted.

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졸겔법에 의한 $CaO-P_2O_5-SiO_2$계 미세분말의 수화 및 강도특성 (Properties of Hydration and Strength of Sol-gol Derived Fine Particle in the System $CaO-P_2O_5-SiO_2$)

  • 이형우;김정환
    • 한국세라믹학회지
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    • 제31권10호
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    • pp.1231-1239
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    • 1994
  • In this study, gel powder which had relatively high hydration reactivity in CaO and P2O5 rich composition of CaO-P2O5-SiO2-H2O system was prepared by sol-gel process and its hydrated specimen was manufactured. The it was investigated to appropriate calcination temperature in sol-gel process which hydrated specimen of gel powder have proven to strength and the effect of factors influenced strength in hydration process. The major product of before and after hydration reaction was hydroxyapatite, and crystalline phase of C-S-H was already formed during gelation process. After hydration reaction of pressed specimen, crystalline phase of C-S-P-H was formed. It was hydrated product of silicocarnotite (5CaO.P2O5.SiO2). Gel phases of C-S-H and C-S-P-H occured as a result of partial substitution of amorphous silica by P2O5 was formed. The strength of hydrated hardened body is developed by strong bonding and bridging between the gel phases of C-S-H or C-S-P-H and the crystalline products such as hydroxyapatite, Ca(OH)2 C-S-H and C-S-P-H. In addition, the ultrafine gel powder have an great effect on increase of hydration reaction.

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담배 주맥 바이오매스의 압착추출특성 연구 (Study on the Mechanical Extraction Properties of Tobacco Stem Biomass)

  • 성용주;한영림;이문수
    • 펄프종이기술
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    • 제40권2호
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    • pp.65-72
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    • 2008
  • This work evaluated the extractability of tobacco stem biomass for the papermaking type Reconstituted Tobacco Sheet(RTS). The effects of the soaking conditions on the hydration of stem biomass and the effects of the hydrated state on the mechanical extraction were investigated. In order to simulate the mechanical expression process of a papermaking type RTS mill, for example, the screw press process, the novel mechanical pressing analyzer was developed for this study. The hydration of stem biomass by soaking process was greatly affected by the soaking time and the soaking temperature. The longer soaking time and the higher soaking temperature resulted in the higher hydrated stem biomass. Since the higher hydrated stem had more combined water in the inner structure and resulted in the more flexible structure, the higher hydrated stem leaded to the more compressed filter cake and the higher water contents in the filter cake after the mechanical pressing. The pilot pulping experiments showed the difference in hydration and extractability between burley and bright tobacco stem. The bulkier structure of the burley stem resulted in the faster hydration by pilot pulping and leaded to the larger reduction in water soluble components. And the hydration process showed the major influence on the separation efficiency of water soluble components.

백운석의 소성 조건에 따른 제조 Mg crown의 특성에 관한 연구 (A Study on the Characteristics of Manufactured Mg Crown on the Calcining Conditions of Dolomite)

  • 황대주;유영환;이종대
    • Korean Chemical Engineering Research
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    • 제59권4호
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    • pp.611-625
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    • 2021
  • 국내에서 채광한 백운석(Ca·Mg(CO3)2) (20~30 mm)을 활용하여 Mg crown을 제조하였다. 백운석을 사용하여 경소 백운석(CaO·MgO)을 제조하기 위하여, (a) 전기로(950 ℃, 480분)와 (b) 마이크로웨이브 가열로(950 ℃, 60분)를 사용하는 공정을 적용한 결과를 서로 비교하였다. 전기로 공정의 경우에는 CaO 56.9 wt%, MgO 43.1 wt%, 마이크로웨이브 가열로 공정의 경우에는 CaO 55 wt%, MgO 45 wt%가 얻어졌다. 마이크로웨이브 가열로를 사용한 공정에서는 백운석의 탈탄산 반응 시간을 1/8로 단축하여도 경소백운석을 제조할 수 있었다. 수화 시험(hydration reaction, ASTM C110)은 경소백운석의 수화 반응성의 기준이 되는데, 전기로 공정의 경우에는 고 반응성(최고 온도 79.8 ℃/1.5 분)을 나타내었다. 이러한 수화 반응은 CaO의 수화 반응에 의해 일어나는 것을 XRD 분석 결과에서 확인할 수 있었으며, 마이크로 가열로 공정의 경우에는 저 반응성(최고 온도 81.7 ℃/19.5 분)을 나타내었다. 이러한 낮은 수화 반응성은 CaO의 수화 반응이 일어난 후에 MgO의 수화 반응이 일어나서 CaO와 MgO가 모두 수화물 형태로 되는 것을 XRD 분석 결과에서 확인하였다. 전기로와 마이크로웨이브 가열로를 사용하여 1,230 ℃, 60분, 5 × 10-2 torr의 조건에서 규소열환원 공정으로 제조한 Mg crown은 전기로 공정의 경우에 58.8 g 그리고 마이크로웨이브 가열로 공정의 경우에 74.6 g을 얻을 수 있었다.

Development of Multi-Components Model of Cement Hydration

  • ;이한승;경제운;박기봉
    • 시멘트 심포지엄
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    • 통권34호
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    • pp.129-137
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    • 2007
  • This paper presents a numerical model which can predict degree of cement mineral component, such as $C_3S$, $C_2S$, $C_3A$, $C_4AF$ and microstructure of hydrating cement as a function of water to cement ratio, cement particle size distribution, cement mineral components and temperature. In this model cement particles are parked randomly in cell space and hydration process is described using a multi-component intergrated kinetic model. The simulation result of degree of hydration of cement mineral component agrees well with experiment result. The content of cement hydration product, such as CSH and CH can be obtained as an accompanied result during hydration process. By introducing of equal-area projection method, water withdrawl mechanism and contact area among cement particles can be considered in detail. By using proposed method, pore size distribution of hydrating cement is predicted.

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콘크리트의 수화도 및 단열온도상승량 예측모델 개발 (Mathematical Modelling of Degree of Hydration and Adiabatic Temperature Rise)

  • 오병환;차수원;신경준;하재담;김기수
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1998년도 가을 학술발표대회 논문집(III)
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    • pp.883-887
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    • 1998
  • Hydration is the main reason for the growth of the material properties. A exact parameter to control the chemical and physical process is not the time, but the degree of hydration. Therefore, it is reasonable that development all material properties should be formulated in terms of degree of hydration. Mathematical formulation of degree of hydration is based on combination of reaction rate functions. The effect of moisture conditions as well as temperature on the rate of reaction is considered in the degree of hydration model. This effect is subdivided into two contributions: water shortage and water distribution. The former is associated with the effect of on the progress of hydration. The water needed for progress of hydration do not exist and there is not enough space for the reaction products to form. The latter is associated with the effect of free capillary water distribution in the pore system. Physically absorption layer does not contribute to progress of hydration and only free water is available for further hydration.

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