• 제목/요약/키워드: Dry construction method

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콘크리트용 골재활용을 위한 셰일 골재의 성능개선에 관한 연구 (A Study on Improving the Performance of Shale for Application of Aggregate for Concrete)

  • 이승한;정용욱;장석수;여인동;최종오
    • 한국산학기술학회논문지
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    • 제14권11호
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    • pp.5915-5922
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    • 2013
  • 본 연구에서는 셰일 골재의 콘크리트용 굵은골재로의 활용을 위한 성능개선 방안으로 발수제와 폴리머를 사용하여 셰일 골재를 코팅하였으며, 코팅방법에 따른 밀도, 흡수율, 마모율, 안정성 등 물리적 특성을 평가하였다. 또한, 성능개선 효과를 검토하기 위하여 셰일 골재의 치환율을 변화시켜 제조한 콘크리트의 굳지 않은 콘크리트의 특성과 재령별 압축강도, 휨강도 및 동결융해 저항성을 평가하였다. 실험결과, 골재의 절대건조밀도는 모든 골재에서 콘크리트용 굵은 골재의 밀도 사용기준인 $2.50g/cm^3$이상을 만족하는 것으로 나타났으며, 발수제 코팅에 의한 셰일 골재는 성능개선 전 셰일 골재와 비교하여 약 50%의 흡수율을 감소시키는 것으로 나타났다. 마모율은 폴리머 코팅에 의한 경우 성능개선 전과 비교하여 최대 13.0%의 마모율 감소를 나타내었으며, 안정성은 모든 골재에서 콘크리트용 굵은 골재 사용기준인 12% 이하를 만족하였다. 발수제에 의한 성능개선 셰일 골재의 슬럼프는 성능개선 전의 셰일 골재보다 약 20~30mm 높게 나타났으며, 공기량은 발수제를 코팅한 셰일 골재의 경우 코팅하지 않은 셰일 골재보다 약 1.0%의 공기량 증가를 나타내었다. 폴리머 코팅 셰일 골재의 재령 28일 압축강도는 Plain 골재를 사용하여 제조한 콘크리트와 비교하여 압축강도는 RS(F) 95.7%, BS(F) 90.0%로 나타났으며, 휨강도는 RS(F) 98.0%, BS(F) 92.0%의 수준으로 나타났다. 또한, 폴리머로 코팅된 셰일 골재를 사용한 콘크리트의 300 cycle 동결융해 후 상대동탄성계수는 RS(F)와 BS(F)에서 91%와 88%로 나타나 코팅에 의한 셰일골재의 성능개선은 동결융해 반복에 따른 내구성능 증진에도 효과가 있는 것으로 나타났다.

교사환경기준에 관한 연구 (A Study on Environmental Standards of School Building)

  • 홍석표;박영수
    • 한국학교ㆍ지역보건교육학회지
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    • 제1권1호
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    • pp.11-43
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    • 2000
  • The purpose of this study was, through analyzing the previous researches, to grasp the present status of environment of school building(ESB), research the sundry records of each element and, through comparative analysis of the standard of ESB in Korea, the United States, and Japan, select the normative standard of ESB, to clarify the point at issue presented in Regulation of Construction & facility Management for Elementary and and Secondary School in Korea, and to suggest an alternative preliminary standard of ESB. To carry out a research for this purpose, these were required: 1. to investigate the existing present status of ESB, 2. to make a comparative analysis of the standard of ESB in each country, 3. to suggest the normative standard of preliminary standard of ESB, 4. to analyze the controversial points of the standard of ESB in Korea, 5. to suggest an alternative preliminary standard of ESB. The conclusions were as follows: 1. Putting, through analyzing the previous researches, the existing present status of ESB together, it seemed that lighting environment, indoor air environment and noise environment were all in poor conditions. 2. In the result of a comparative analysis of the standard of ESB in Korea, Japan and the United States, in Korea the factors of each lighting and indoor air environment were not presented properly, in Japan, in lighting environment aspect, the standard on natural lighting and the factors on brightness were not presented., and in the USA the essential factors of each environment were throughly presented. In the comparison of the standards on each factor, Korea showed that the standard level presented was less properly prescribed than those of the USA and Japan but it also showed that the standard levels prescribed in the USA and in Japan were mostly similar to the standard levels in records investigated. 3. With the result of the normative standard selection on School Builiding environment factor of prescribed in this study, the controversial points of the standard of ESB in Korea were analyzed and the result was utilized to suggest new preliminary standard of ESB. 4. As the result of the analysis of the controversial points of the standard of ESB in Korea, it was found that the standard of ESB in Korea should be established on a basis of School Health Act and be concretely presented in School Health Regulation and School Health Rule. The factors of each environment was improperly presented in the existing standard of ESB in Korea. Moreover the standard of them was inferior to that of the records investigated and those of in the USA and in Japan and it also showed that the standard of it in Korea was improper to maintain Comfortable Learning Environment. 5. A suggested preliminary standard of ESB acquired through above study as follows: 1) In this study a new kind of preliminary standard of ESB is divided into lighting environment, indoor air environment, noise environment, odor environment and for above classification, reasonable factor and standard should be established and the controling way on each standard and countermeasures against it should be considered. 2) In lighting environment, the factors of natural lighting are divided into daylight rate, brightness, glare. In the standard on each factor, daylight rate should secure 5% of a mean daylight rate and 2% of a minimum daylight rate, brightness ratio of maximum illumination to minimum illumination should be under 10:1, and in glare there should not be an occurrence factor from a reflector outside of the classroom. And the factors of unnatural lighting are illumination, brightness, and glare. In the standard on each factor, illumination should be 750 lux or more, brightness ratio should be under 3 to 1, and glare should not occur. And Optimal reflection rate(%) of Colors and Facilities of Classroom which influences lighting environment should be considered. 3) In indoor air environment factors, thermal factors are divided into (1) room temperature, (2) relative humidity, (3) room air movement, (4) radiation heat, and harmful gases (5) CO, (6) $CO_2$ that are proceeded from using the heating fuel such as oval briquettes, firewood, charcoal being used in most of the classroom, and finally (7) dust. In the standard on each factor, the next are necessary; room temperature: $16^{\circ}C{\sim}26^{\circ}C$(summer : $E.T18.9{\sim}23.8^{\circ}C$, winter: $E.T16.7{\sim}21.7^{\circ}C$), relative humidity: $30{\sim}80%$, room air movement: under 0.5m/sec, radiation heat: under $5^{\circ}C$ gap between dry-bulb temperature and wet-bulb temperature, below 1000 ppm of ca and below 10ppm of $CO_2$, dust: below 0.10 $mg/m^3$ of Volume of dust in indoor air, and ventilation standard($CO_2$) for purification of indoor air : once/6 min.(about 7 times/40 min.) in an airtight classroom. 4) In the standard on noise environment, noise level should be under 40 dB(A) and the noise measuring way and the countermeasures against it should be considered. 5) In the standard on odor environment, odor level under Physical Method should be under 2 degrees, and the inspecting way and the countermeasures against it should be considered.

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