• 제목/요약/키워드: high-strength lightweight concrete

검색결과 173건 처리시간 0.024초

Seismic performance of CFS shear wall systems filled with polystyrene lightweight concrete: Experimental investigation and design methodology

  • Mohammad Rezaeian Pakizeh;Hossein Parastesh;Iman Hajirasouliha;Farhang Farahbod
    • Steel and Composite Structures
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    • 제46권4호
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    • pp.497-512
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    • 2023
  • Using light weight concrete as infill material in conventional cold-formed steel (CFS) shear wall systems can considerably increase their load bearing capacity, ductility, integrity and fire resistance. The compressive strength of the filler concrete is a key factor affecting the structural behaviour of the composite wall systems, and therefore, achieving maximum compressive strength in lightweight concrete while maintaining its lightweight properties is of significant importance. In this study a new type of optimum polystyrene lightweight concrete (OPLC) with high compressive strength is developed for infill material in composite CFS shear wall systems. To study the seismic behaviour of the OPLC-filled CFS shear wall systems, two full scale wall specimens are tested under cyclic loading condition. The effects of OPLC on load-bearing capacity, failure mode, ductility, energy dissipation capacity, and stiffness degradation of the walls are investigated. It is shown that the use of OPLC as infill in CFS shear walls can considerably improve their seismic performance by: (i) preventing the premature buckling of the stud members, and (ii) changing the dominant failure mode from brittle to ductile thanks to the bond-slip behaviour between OPLC and CFS studs. It is also shown that the design equations proposed by EC8 and ACI 318-14 standards overestimate the shear force capacity of OPLC-filled CFS shear wall systems by up to 80%. This shows it is necessary to propose methods with higher efficiency to predict the capacity of these systems for practical applications.

혼화재를 다량 치환한 경량 및 보통중량 콘크리트의 압축피로 특성 평가 (Evaluation on Fatigue Performance in Compression of Normaland Light-weight Concrete Mixtures with High Volume SCM)

  • 문재성;양근혁
    • 한국건설순환자원학회논문집
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    • 제2권4호
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    • pp.354-359
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    • 2014
  • 이 연구의 목적은 혼화재 다량 치환 경량 및 보통중량 콘크리트의 압축 피로 특성 평가이다. 사용된 결합재는 시멘트 30%, 플라이애쉬 20%, 고로슬래그 50%이다. 콘크리트의 설계 압축강도는 40MPa 이다. 반복하중은 최대 응력비가 정적 콘크리트 압축강도의 75%, 80% 및 90%와 최소 응력비가 정적 강도의 10% 범위에서 1Hz의 속도로 가력하였다. 실험결과 혼화재 다량 치환 경량콘크리트의 피로수명은 혼화재 다량치환 보통중량 콘크리트에 비해 다소 낮았다. 최대응력에서의 피로변형률 값은 피로수명의 약 90% 이후부터 정정 응력-변형률 곡선의 하강부와 교차하였다.

방화문 내부 심재용 경량기포콘크리트의 방화성 검토 (Reviewing the fireproofing of lightweight aerataed concrete for fire door interior cores)

  • 홍상훈;김봉주;정의인;김해나;박준서
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2023년도 가을학술발표대회논문집
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    • pp.43-44
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    • 2023
  • Fire doors installed to prevent the spread of fire in buildings are made of paper honeycomb, glass wool, and other materials. Due to their high water absorption rate, they absorb ambient moisture and degrade, and their increased weight causes them to sag internally, creating voids that can warp in the event of a fire and allow flames to pass through. To overcome these issues, research is being conducted on the physical performance of lightweight aerated concrete. However, there is a lack of research on how to ensure fire resistance. Therefore, in this study, the backside temperature of lightweight aerated concrete formulations was measured and compared and analyzied with the physical performance. Since it is difficult to achieve low density by saturation alone, aerated concrete with EPS was produced, which resulted in a density reduction of 24'26%, but the strength increase per unit cement increase was 5'25%, which tended to be lower than the formulation without EPS. The results showed that the lightweight aerated concrete with EPS was 130~140℃ lower than the lightweight aerated concrete with EPS, which is believed to be due to the melting point of EPS delayed the heat diffusion. In the future, wo plan to conduct research to identify the optimal formulation for fire door core materials by varying the amount of EPS added and using industrial by-products to increase long-term strength.

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폐콘크리트 미분말 대체율 변화와 입도 변화에 따른 경량기포콘크리트의 특성에 관한 실험적 연구 (An Experimental Study on the Properties of Lightweight Foamed Concrete According to the Replacement Ratio and Particle Size of Waste Concrete Powder)

  • 이대근;한상일;박효진;강철;강기웅;김진만
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2009년도 추계 학술논문 발표대회
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    • pp.121-125
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    • 2009
  • The recycling of waste concrete is increasing for the environment protection and the shortage of aggregate according to the large scale construction project in Korea. The more manufacturing high quality recycled aggregate is produced, the more waste concrete powder generated from the manufacture process of recycled aggregate, and the consideration about the recycling of waste concrete powder is need. Waste concrete powder was used for the partial replacement of silica powder, which is a main raw material for the manufacture of autoclave foamed concrete. According to the results of research, the slurry density, flow, compressive strength mainly depend on the replacement ratio of particle size and waste concrete powder. At the SEM analysis, the more high-waste concrete powder was the less there are generated tobermorite. But we conclude that it is possible to replace WCP as silica source in the manufacture of the lightweight foamed concrete.

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수열반응 조건에서 석분 슬러지를 사용한 경량 기포 콘크리트의 밀도와 강도 특성 (The Density and Strength Properties of Lightweight Foamed Concrete Using Stone-Powder Sludge in Hydrothermal Reaction Condition)

  • 김진만;정지용;최세진;김봉주
    • 콘크리트학회논문집
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    • 제18권5호
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    • pp.687-693
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    • 2006
  • 8mm 이하의 석분으로부터 잔골재를 생산하기 위한 공정에서 부산되는 공정부산물인 석분슬러지는 평균 입자 크기 $7{\mu}m$, 함수율 $20{\sim}60%,\;SiO_2$ 함량 60% 이상의 케익상 슬러지이다. 석분슬러지는 수분을 많이 함유하고 있어 취급, 운반을 어렵게 할 뿐만 아니라 건조공정에 투입해야 하는 높은 에너지 비용 때문에 재활용할 때의 경제성이 낮기 때문에 그동안 실용화되지 못하고 있는 산업부산물이다. 본 연구는 건조하지 않고 석분슬러지가 배출되는 상태 그대로 재활용하기 위한 것으로, 적용 대상은 기포 콘크리트이며, 무기 분말 및 기포를 혼합한 슬러리를 제조한 후 CaO와 $SiO_2$의 수열반응을 유도하여 토버모라이트(tobermorite) 수화물을 형성시켜 경화시키는 방법을 사용하였다. 일반적인 기포 콘크리트는 CaO원으로 시멘트, $SiO_2$원으로 실리카 함량 90%의 고순도 규사를 사용하고 있으나 본 연구에서는 고순도 규사의 대체재료로 석분슬러지를 사용하였다. 기포 첨가율과, 석분슬러지 대체율을 실험 요인으로 하여 제조한 기포 콘크리트의 밀도 및 강도 특성을 검토 한 결과 석분슬러지를 사용한 경우에도 기포첨가율의 감소에 따라 기포 콘크리트의 밀도 및 강도가 증대하는 일반적인 경향은 동일하게 나타났으나, 석분슬러지를 사용한 경우는 규사를 사용한 것에 비하여 동일한 조건에서 높은 강도 및 밀도를 발현하며, 그 경향은 석분슬러지의 대체율의 증가에 따라 뚜렷한 것으로 나타났다. 또한 XRD 분석결과 석분슬러지는 수열반응을 통하여 tobermorite를 아주 잘 형성하고 있는 것을 확인할 수 있었다. 석분슬러지의 $SiO_2$ 함량이 낮음에도 불구하고 이와 같은 현상을 보이는 것은 그 입도가 매우 작기 때문에 시멘트계 재료와의 수열반응이 좀 더 원활하게 이루어지기 때문에 나타난 것으로 사료되며, 본 연구 결과 실험 실적으로는 기포 콘크리트의 원료로 규사를 석분슬러지로 대체하여 사용하는 것이 가능할 것으로 나타났다.

고강도콘크리트용 내화피복재로 활용하기 위한 경량모르타르의 역학적 성상 (Study on the Mechanical Properties of Lightweight Mortar for Fire Protection Covering Material in High Strength Concrete)

  • 임서형;유석형;문종욱
    • 한국화재소방학회논문지
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    • 제25권5호
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    • pp.8-13
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    • 2011
  • 고강도 콘크리트는 화재 시 고온에 노출되어 폭렬현상이 발생된다. 폭렬은 철근노출과 함께 구조부재의 단면을 감소시키며, 이로 인하여 구조적 거동에 심각한 문제를 발생시킨다. 본 연구의 목적은 이러한 고강도 콘크리트의 내화피복재로 활용하기 것으로 퍼라이트와 폴리프로필렌 섬유로 경량모르타르를 제조하여 그 역학적 성상을 파악하는데 있다. 이에 따른 실험인자로는 물시멘트비, 골재시멘트비, 폴리프로필렌 섬유 첨가량이다. 연구결과 퍼라이트와 폴리프로필렌 섬유를 첨가함으로서 모르타르의 공극구조를 변화시킬 수 있었으며, 단위중량을 감소시킬 수 있었다. 또한, 고강도 콘크리트의 내화피복재로서 경량모르타르를 사용할 수 있는 가능성을 확인하였다.

폐콘크리트슬러지 대체율과 기포혼입률 변화에 따른 경량기포콘크리트의 특성 (Properties of Lightweight Foamed Concrete According to the Replacement Ratio of Waste Concrete Sludge and Variation of Foam Ratio)

  • 이정구;김재원;최훈국;강철;이도헌;김진만
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2007년도 추계 학술논문 발표대회
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    • pp.53-56
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    • 2007
  • Recently, waste concrete emission has been increased by acceleration of urban development and the rapid growth of redevelopment projects, so recycling of waste concrete is actively progressed, But the usage is limited to a lower value added such as the roadbed material etc. To produce the high quality recycled aggregate, breaking and washing process is added to the existing process and inevitably increases the occurrence of particle, because old mortal is included in the recycled aggregate. Therefore, this study purpose is analysis the properties of lightweight foamed concrete made by waste concrete sludge which is the by-product from produce the recycled aggregate. In result, possibility of manufacture of lightweight foamed concrete which gives equal performance compared with ALC was detect(scope of density : $0.5{\sim}0.6$, scope of compressive strength : $3.5{\sim}4.0MPa$). And scope of porosity is as follow ; total porosity : $27{\sim}30%$, open porosity : $1{\sim}5%$

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고강도 경량 자기충전콘크리트의 성능평가 (Properties of High Strength Lightweight Self-Compacting Concrete)

  • 최연왕;문대중;안성일;최욱;조선규
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2003년도 가을 학술발표회 논문집
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    • pp.413-416
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    • 2003
  • Experimental tests on the high strength self-compacting concrete with light-weight fine aggregate and light-weight coarse aggregate(LHSSC) were performed with slump-flow, reaching time to the slump-flow of 500mm, V-funnel dropping time and U-box difference level and compressive strength. LHSCC with light-weight fine aggregate of 75% and light-weight coarse aggregate of 100% was only satisfied with the property conditions of second self-compacting concrete(SCC), like as flowability, resistance to segregation and filling ability. The 28-day compressive strength of LHSCC indicated above 300kgf/$\textrm{cm}^2$ in all concrete mixtures, and it was increased to increase the replacement ratio of light-weight fine aggregate or to decrease the replacement ratio of light-weight coarse aggregate. Therefore, for satisfying the properties of fresh SCC and hardened concrete with above 350kgf/$\textrm{cm}^2$, it would expected that the replacement ratio of light-weight fine aggregate and light-weight coarse aggregate will be determined with 50~75% and 25~50%, respectively.

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산업부산물을 활용한 고강도경량 콘크리트 건조수축 특성연구 (A Study on shrinkage of High Strength Lightweight Concrete using by-products)

  • 장주영;윤요현;이승조;박정민;김태곤;김화중
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2003년도 가을 학술발표회 논문집
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    • pp.36-39
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    • 2003
  • In this study, we made the high strength light weight concrete which was composed of the garnet minute powder to be the industry by-product in the YoungJoo region and the artificial light weight aggregate which the high temperature(1100℃) plastic process. The characteristic of the autogenous shrinkage had been considered about strength characteristic and the age passage In the following addition: The concrete's each unit quantity was determined 145,160,175㎏f/㎥.w/b and s/a was determined 30%, 43%, 45%. the each garnet's substitution ratio was determined 0, 10%. In this results, the compressive strength appeared greatly as the unit joining discretion grew bigger. The autogenous shrinkage ratio was increased rapidly until 7th day but it was reduced after 7th day regardless of the mixed factor. The autogenous shrinkage ratio which follows the change of the unit quantity and s/a increased together as the unit quantity and the s/a increases.

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Experimental study on creep and shrinkage of high-performance ultra lightweight cement composite of 60MPa

  • Chia, Kok-Seng;Liu, Xuemei;Liew, Jat-Yuen Richard;Zhang, Min-Hong
    • Structural Engineering and Mechanics
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    • 제50권5호
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    • pp.635-652
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    • 2014
  • Creep and shrinkage behaviour of an ultra lightweight cement composite (ULCC) up to 450 days was evaluated in comparison with those of a normal weight aggregate concrete (NWAC) and a lightweight aggregate concrete (LWAC) with similar 28-day compressive strength. The ULCC is characterized by low density < 1500 $kg/m^3$ and high compressive strength about 60 MPa. Autogenous shrinkage increased rapidly in the ULCC at early-age and almost 95% occurred prior to the start of creep test at 28 days. Hence, majority of shrinkage of the ULCC during creep test was drying shrinkage. Total shrinkage of the ULCC during the 450-day creep test was the lowest compared to the NWAC and LWAC. However, corresponding total creep in the ULCC was the highest with high proportion attributed to basic creep (${\geq}$ ~90%) and limited drying creep. The high creep of the ULCC is likely due to its low elastic modulus. Specific creep of the ULCC was similar to that of the NWAC, but more than 80% higher than the LWAC. Creep coefficient of the ULCC was about 47% lower than that of the NWAC but about 18% higher than that of the LWAC. Among five creep models evaluated which tend to over-estimate the creep coefficient of the ULCC, EC2 model gives acceptable prediction within +25% deviations. The EC2 model may be used as a first approximate for the creep of ULCC in the designs of steel-concrete composites or sandwich structures in the absence of other relevant creep data.