• 제목/요약/키워드: Foaming Ratio

검색결과 119건 처리시간 0.03초

기포모르터의 제특성에 관한 실험적 연구-제1보 밀도와 흡수율 특성 (Experimental Studies on the Characteristics of Foaming Mortar(I)- Part 1 characteristics of bulk density and absorption rate -)

  • 성찬용
    • 한국농공학회지
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    • 제30권1호
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    • pp.73-80
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    • 1988
  • This study was performed to obtain the basic data which can be applied to use of foaming mortars. The results obtained were Summarized as follows; 1.At the mixing ratio of 1:1, the highest bulk densities were showed by foaming mortars, respectively. But, it gradually was decreased in poorer mixing ratio and more addition of foaming agent. The decreasing rates of bulk densities were increased in richer mixing ratio and more addition of foaming agent. 2.The bulk densities were decreased up to 38.8-55.9% by mix-foaming type and 9.7-23.6% by pre-foamed type than cement mortar. 3.At the mixing ratio of 1:1, the lowest absorption rates were showed by foaming mortars, respectively. But, it gradually was increased in poorer mixing ratio and more addition of foaming agent. The increasing rates of absorption rates were increased in richer mixing ratio and more addition of foaming agent. 4.Absorption rates when immersed in 72hours were showed up tp 3.41-5.85 times by mix-foaming type and 1.05- 1.S5times by pre -foamed type than cement mortar, it was significantly higher at the early stage of immersed time than cement mortar. 5.The correlations between bulk density and absorption rate were highly singnificant, respectively. The multiple regression equations of bulk density and absorption rate were computed depending on a fuction of mixing ratio and addition of foaming agent. it was highly significant respectively.

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기포제가 모르터의 제성질에 미치는 영향에 관한 실험적 연구 (Experimental Studies on Influence of Foaming Agents on the Properties of Mortar)

  • 성찬용;황은
    • 한국농공학회지
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    • 제27권1호
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    • pp.46-61
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    • 1985
  • This study was performed to obtain the basic data which can be applied to the use of foaming mortars. The data was based on the properties of foaming mortars depending upon various mixing ratios and addings to compare those of cement mortar. The foaming agents which was used at this experiment were pre-foamed type and mix-foaming type which is being used as mortar structures. The foaming mortar, mixing ratios of cement to fine aggregate were 1:1, 1: 2, 1 : 3 and 1 : 4. The addings of foaming agents were 0.0%, 0.5%, 1.0%, 1.5%, 2.0%, 2.5% and 3.0% of cement weight. The results obtained were summarized as follows; 1. At the mixing ratio of 1 : 1, the lowest water-cement ratios were showed by foaming mortars, respectively. But it gradually was increased in poorer mixing ratio and decreased in more addition of foaming agent. The water-cement ratios were decreased up to 1. 8~22. 0% by G, 2. 2~24. 1 % by U and 0. 7~53. 1% by J foaming mortar than cement mortar. 2, At the mixing ratio of 1 : 1, the highest bulk densities were showed by foaming mortars, respectively. But, it gradually was decreased in poorer mixing ratio and more addition of foaming agent. The bulk densities were decreased up to 1. 4~20. 7% by G, 2. 3~23. 7% by U and 26. 5~56. 5% by J foaming mortar than cement mortar. Therefore, foaming mortar could be utilized to the constructions which need low strengths. 3. At the mixing ratio of 1:1, the lowest absorption rates were showed by foaming mortars, respectively. But, it gradually was increased in poorer mixing ratio and more addition of foaming agent. Specially, according to the absorption rate when immersed in 72 hours, the absorption rates were showed up to 1. 01~1. 24 times by G, 1. 03~1. 58 times by U and 1. 10~5. 91 times by J foaming mortar than cement mortar. It was significantly higher at the early stage of immersed time than cement mortar. 4. At the mixing ratio of 1:1, the lowest air contents were showed by foaming mortars, respectively. But, it gradually was increased in poorer mixing ratio and more addition of foaming agent. Air contents were contented up to 4. 0~17. 2 times by G, 5. 2~23. 2 times by U and 23. 8~74. 5 times by J foaming mortar than cement mortar. 5. At the mixing ratio of 1 : 1, the lowest decreasing rates of strengths were showed by foaming mortars, respectively. But, it gradually was increased in poorer mixing ratio and more addition of foaming agent. Specially, the strengths of 28 days were decreased 0. 4~2. 2% than those of 7 days by foaming mortar, respectively. Also, the correlations between compressive and tensile strength, compressive and ending strength, tensile and bending strength were highly significant as a straight line shaped, respectively. 6. The correlations between absorption rate, air content, compressive strength and bulk density, absorption rate, compressive strength and air content were highly significant, respectively. The multiple regression equations of water-cement ratio, bulk density, absorption ate, air content, compressive strength, tensile strength and bending strength were computed depending on a function of mixing ratio and addition of foaming agent. It was highly significant, respectively. 7. At the mixing ratio of 1 : 1, the highest strengths were showed by cement mortar and foaming mortars, by chemical reagents. But, it gradually was decreased in poorer mixing ratio. The decreasing rates of strengths were in order of H $_2$S0 $_4$, HNO$_3$ and HCI, J,U,G foaming mortar and cement mortar. Specially, at the each mixing ratio, each chemical reagent and 3.0% of foaming agent, J foaming mortar was collapsed obviously. Therefore, for the structures requiring acid resistence, adding of foaming agent should be lower than 3.0%.

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기포모르터의 제특성에 관한 실험적 연구 (II) -제2보 강도와 공기량 특성- (Experimental Studies on the Characteristics of Foaming Mortar(II) -Part 2 Characteristics of Strength and Air Content-)

  • 성찬용
    • 한국농공학회지
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    • 제30권3호
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    • pp.106-113
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    • 1988
  • This study was performed to obtain the basic data which can be applied to use of foamihg mortars. 1. At the mixing ratio 1:1, the highest strengths were showed by foaming mortam, respec - tively. But, it. gradually was decreased in poorer mixing ratio and more addition of foam- ing agent. The decreasing rates of strengths were incresed in poorer mixing ratio and more addition of foaming agent. 2. The strengths were decreased up to 77.0-92.8% by mix-foaming type and 36.7-74.4% by pre-foamed type than cement mortar. 3. At the mixing ratio of 1:1, the lowest air contents were showed by foaming mortars, respectively. But, it gradually was increased in poorer mixing ratio and more addition of foaming agent. The increasing rates of air contents were increased in richer mixing ratio and more addition of foaming agent. 4. Air contents were showed up to 26.0-63.8 times by mix-foaming type and 5.8-17.7 times by pre-foamed type than cement mortar, respectively. 5. The correlations between compressive strength and air content were highly significant, respectively. The multiple regression equations of strengths and air content were computed depending on a fuction of mixing ratio and addition of foarning agent. It was highly significant, respectively.

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식물성 및 혼합 기포제의 농도에 따른 기포 특성과 혼입량에 따른 기포 콘크리트의 물성에 관한 실험적 연구 (An Experimental Study on Properties of Foam According to Concentration of Vegetable and Mixed Foaming Agent and Properties of Foamed Concrete According to Replacing Ratio of Foaming Agent)

  • 정성민;이한승
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2016년도 추계 학술논문 발표대회
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    • pp.22-23
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    • 2016
  • This study analyzes the properties of foam according to the concentration of vegetable foaming agent that is used in traditional and mixed foaming agent of developing stage, and confirms how the foams influence foamed concrete by searching for properties of foamed concrete according to replacing ratio of vegetable foaming agent and mixed foaming agent. This is for the purpose of providing basic data for the use of foamed concrete through improvement on the problem such as unstability, falling in fluidity and the strength of existed foaming agent.

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기포제(起泡劑)가 모르터의 특성(特性)에 미치는 영향(影響) (Effects of Foaming Agent on the Characteristic of Mortar)

  • 김성완;강신업;조성섭;성찬용
    • 농업과학연구
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    • 제11권1호
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    • pp.133-145
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    • 1984
  • 본(本) 연구(硏究)는 기포제(起泡劑)가 모르터의 특성(特性)에 미치는 영향(影響)을 연구(硏究)하기 위(爲)하여 기포(氣泡) 모르터의 물-시멘트 비(比)시험(試驗)과 밀도시험(密度試驗)을 배합별(配合別), 기포제별(起泡劑別)로 실시(實施)하였으며, 그 결과(結果)를 요약(要約)하면 다음과 같다. 1. 물-시멘트비(比)는 배합비(配合比) 1 : 4, G, U 및 J 기포제(起泡劑) 첨가량(添加量) 0.5%에서 90.0%, 88.3% 및 70.0%로 가장 크게 나타났으나, 보통(普通)모르터의 물-시멘트비(比) 91.6%보다는 작게 나타났다. 2. 물-시멘트비(比)의 감소율(減少率)은 보통(普通)모르터에 비(比)하여 G 및 U 기포(氣包)모르터에서 배합비(配合比) 1 : 3, 기포제(起包劑) 첨가량(添加量) 3.0%일 때 22.0%와 24.1%로 가장 크게 나타났고, 이 보다 부배합(富配合)이나 빈배합(貧配合)일수록 작게 나타났다. 또한 J 기포제(起包劑)에서는 배합비(配合比) 1 : 4, 기포제(起包劑) 첨가량(添加量) 3.0%에서 물-시멘트 비감소율(比減少率)이 53.1%로 가장 크게 나타났고 이보다 부배합(富配合) 일수록 작게 나타났다. 3. 밀도(密度)는 배합비(配合比) 1 : 1, G, U 및 J 기포제(起包劑) 첨가량(添加量) 0.5%에서 $1.981g/cm^3$, $1.863g/cm^3$$1.149g/cm^3$로 가장 크게 나타났으나, 보통(普通)모르터의 밀도(密度) $2.048g/cm^3$보다는 작게 나타났다. 4. 밀도(密度)의 감소율(減少率)은 보통(普通)모르터에 비(比)하여 G, U 및 J 기포(氣泡)모르터에서 배합비(配合比) 1 : 2, 기포제(起包劑) 첨가량(添加量) 3.0%일 때 20.7%, 23.7% 및 56.5%로 가장 크게 나타났으나, 이보다 부배합(富配合)이거나 빈배합(貧配合)일수록 밀도(密度)의 감소율(減少率)은 작게 나타났다. 5. 물-시멘트비(比)와 밀도(密度)는 기포제(起泡劑)의 첨가량(添加量)이 증가(增加)할수록 감소(減少)되었으며, 또한 배합비(配合比)와 기포제(起包劑) 첨가량(添加量)에 따라 물-시멘트비(比)와 밀도(密度)를 추정(推定)할 수 있는 다중회귀방정식(多重回歸方程式)도 유도(誘導)되었다.

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C/S 몰비 및 알루미늄 분말 첨가율 변화에 따른 고온·고압 기포 콘크리트의 발포특성 (Foaming Characteristics of Autoclaved Aerated Concrete with Different C/S Molar Ratios and Aluminum Powder Contents)

  • 윤현섭;박종범;이광일;양근혁
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2018년도 춘계 학술논문 발표대회
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    • pp.220-221
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    • 2018
  • Test results showed that foaming ratio of autoclaved aerated concrete significantly affected by the CaO/Si2O (C/S) molar ratio of the component materials, indicating the greatest foaming ratio of 202% when the C/S ratio was 0.9.

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기포제(起泡劑)를 사용(使用)한 모르터의 제특성(諸特性)에 관(關)한 연구(硏究) (A Study on the Characteristics of Mortar Using Foaming Agents)

  • 성찬용
    • 농업과학연구
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    • 제15권1호
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    • pp.82-94
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    • 1988
  • 이 논문(論文)은 기포(起泡)모르터의 제특성(諸特性)에 관(關)한 기초자료(基礎資料)를 제공(提供)하고져 수행(遂行)되었는 바, 이 연구(硏究)를 통(通)하여 얻어진 결과(結果)를 요약(要約)하면 다음과 같다. 1. 각(各) 기포(氣泡)모르터에서 물-시멘트비는 당배합비(富配合比)일수록, 기포제(起泡劑) 및 기포(氣泡)의 첨가량(添加量)이 증가(增加)할수록 감소(減少)하였으며, 보통(普通)시멘트 모르터에 비(比)하여 혼합기포주입형(混合氣泡注入型)은 1.6~53.1%, 사전기포주입형(事前氣泡注入型)은 4.4~24.1%의 물-시멘트비(比)가 감소(減少)되었다. 2. 각(各) 기포(氣泡)모르터의 밀도(密度)는 빈배합(貧配合)일수록, 기포제(起泡劑) 및 기포(氣泡)의 첨가량(添加量)이 증가(增加)할수록 작게 나타났으며, 밀도(密度)의 감소율(減少率)은 당배합(富配合)일수록, 기포제(起泡劑) 및 기포(氣泡)의 첨가량(添加量)이 증가(增加)할수록 크게 나타났다. 3. 기포(起泡)모르터는 보통(普通)시멘트 모르터에 비(比)하여 혼합기포주입형(混合氣泡注入型)은 38.8~55.9%, 사전기포주입형(事前氣泡注入型)은 9.7~23.6%의 자중감소(自重減少)를 보였다. 4. 각(各) 기포(起泡)모르터의 급수율(吸水率)은 빈배합(貧配合)일수록, 기포제(起泡劑) 및 기포(氣泡)의 첨가량(添加量)이 증가(增加)할수록 높게 나타났으며, 흡수율(吸水率)의 증가율(增加率)은 당배합(富配合)일수록, 기포제(起泡劑) 및 기포(氣泡)의 첨가량(添加量)이 증가(增加)할수록 크게 나타났다. 5. 72시간(時間) 수침(水浸)에서 각(各) 기포(氣泡)모르터의 흡수율(吸水率)은 보통(普遇)시멘트 모르터에 비(比)하여 혼합기포주입형(混合氣泡注入型)은 3.41~5.85배(倍)로 나타났으며, 사전기포주입형(事前氣泡注入型)은 1.05~1.55배(倍)로 나타났으며, 흡수율(吸水率)의 변화율(變化率)은 모두 수침초기(水浸初期)에 높게 나타나는 경향(傾向)을 보였다. 6. 각(各) 기포(氣泡)모르터의 각(各) 강도(强度)는 빈배합(貧配合)일수록, 기포제(起泡劑) 및 기포(氣泡)의 첨가량(添加量)이 증가(增加)할수록 작게 나타났으며, 각(各) 강도(强度)의 감소율(減少率)은 빈배합(貧配合)일수록, 기포제(起泡劑)나 기포(氣泡)의 첨가량(添加量)이 증가(增加)할수록 크게 나타났다. 7. 기포(氣泡)모르터는 보통(普通)시멘트 모르터에 비(比)하여 재령(材齡) 28일(日)에서 혼합기포주입형(混合氣泡注入型)은 77.0~92.8%, 사전기포주입형(事前氣泡注入型)은 36.7~74.4%의 강도감소(强度減少)를 보였고, 각(各) 기포(氣泡)모르터의 각(各) 강도간(强度間)의 상관관계(相關關係)는 직선형(直線形)으로 나타났으며 고도(高度)의 유의성(有意性)이 인정(認定)되었다. 8. 각(各) 기포(氣泡)모르터의 공기량(空氣量)은 빈배합(貧配合)일수록, 기포제(起泡劑)나 기포(氣泡)의 첨가량(添加量)이 증가(增加)할수록 크게 나타났으며, 공기량(空氣量)이 증가율(增加率)은 당배합(富配合)일수록, 기포제(起泡劑)나 기포(氣泡)의 첨가량(添加量)이 증가(增加)할수록 높게 나타났다. 9. 기포(氣泡)모르터의 공기량(空氣量)은 보통(普通)시멘트 모르터에 비(比)하여 혼합기포주입형(混合氣泡注入型)은 26.0~63.8배(倍), 사전기포주입형(事前氣泡注入型)은 5.8~17.7배(倍)를 보였다. 10. 각(各) 기포(氣泡)모르터에서 밀도(密度)와 흡수율(吸水率), 압축강도(壓縮强度) 및 공기량(空氣量)과의 상관관계(相關關係)는 매우 높은 유의성(有意性)을 보였고, 배합비(配合比)와 기포제(起泡劑) 및 기포(氣泡)의 첨가량(添加量)에 따라 밀도(密度), 흡수율(吸水率), 제강도(諸强度) 및 공기량(空氣量)을 추정(推定)할 수 있는 다중회귀방정식(多重回歸方程式)을 유도(誘導)하였으며 각(各) 방정식(方程式)은 고도(高度)의 유의성(有意性)이 인정(認定)되었다.

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기포 콘크리트용 기포의 특성에 관한 기초 연구 (The Fundamental Study on the Properties of Foam for Foamed Concrete)

  • 곽은구;강기웅;강철;권기주;김진만
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2004년도 춘계 학술발표회 제16권1호
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    • pp.680-683
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    • 2004
  • This study is to obtain basic data concerned with properties of foam for foamed concrete and foaming method. Main factors of this study are types of foaming agents, temperature of solution with foaming agents, and types of foam generator. Testing items are size distribution of foam, foaming ratio to solution, and stability of foam. The results of this study were shown as follow. It is optimum condition of foam generator that length/diameter of foaming tube is 2.0, bead size within foaming tube is $4\~6mm$, and nozzle size of foaming tube is 10mm. AES and AOS are good results to produce high quality foam, and stability of foam is good in foaming temperature of $20^{\circ}C$.

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목질폐재를 이용한 식물식재용 우레탄폼의 개발 (Development of Urethane Foams for Planting Media from Woodwastes)

  • 조남석;서원성;한규성
    • Journal of the Korean Wood Science and Technology
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    • 제26권4호
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    • pp.43-49
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    • 1998
  • The availability of large quantities of waste woods provides an impetus for investigating woody biomass potential uses. Polyurethane (PU) foams are prepared with reacting isocyanates and polyols, and are used. in various industry fields. Thus, lignocellulosic waste raw-materials are proposed as replacement for synthetic polyol to PU foam formulation. In this study PU foams were manufactured from liquefied woods, methanediisocyanate(MDI), catalyst, foaming stabilizer, and viscosity aids. The polyol content, isocyanate.hydroxyl group (NCO/OH) ratio, and water content were varied to evaluate their effects on the foaming and water absorption of the PU foams. Less than 400 Molecular weight. of polyethylene glycol(PEG) and 1 to 3 solvent to woody raw-material ratio were desirable for liquefying woody materials. Liquefying rate was increased with more than 3 % addition of inorganic and organic catalysts and raising reaction temperature more than $150^{\circ}C$. Addition of starch enhanced liquefying of woody materials. Fourty percents of starch resulted in about 90% liquefying rates. Foaming rates were increased with increasing moisture contents of liquefied wood. Moisture contents of 0.6% resulted in 5 time-foaming rates, and seven percents of moisture contents more than 30 time-foaming rates. But, an increase in water content may result in a decrease in cross-links between wood polyol and isocyanate, because the NCO/OH ratio is constant. Increasing moisture contents have significantly decreased density of PU foams. The optimum water content should be about 2.5% or less in this adopted condition.

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기포제 희석비율에 따른 기포콘크리트의 흡음특성에 관한 연구 (A Study on the Sound Absorption Properties of Foamed Concrete According to Dilution Ratio of Foaming Agent)

  • 강기웅;강철;김하석;곽은구;권기주;김진만
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2005년도 춘계 학술기술논문발표대회 논문집
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    • pp.5-8
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    • 2005
  • Sound absorbing performance is affected by porosity and continuity of void, therefore it is important to maintain stabilization of foam and to analyze properties of void pore in hardened state. The purpose of this study is to analyze the sound absorption properties and void characteristic of foamed concrete according to dilution ratio of foaming agent. The results of this experiment were as follows. It is determined that an increase in total and continuous void ratio is achieved by increasing of dilution ratio, and a shorter absorbing time was exhibited at a higher continuous void ratio. When the average void size of foamed concrete was below 1.5mm, the tendency of sound absorption coefficient compared with general sound absorber was appeared similarly.

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