• 제목/요약/키워드: Recycled glass

검색결과 123건 처리시간 0.02초

폐유리분말과 재생골재를 사용한 포장용 투수성 폴리머 콘크리트의 공학적 성질 (Engineering Properties of Permeable Polymer Concrete for Pavement using Powdered Waste Glass and Recycled Coarse Aggregate)

  • 성찬용;김태호
    • 한국농공학회논문집
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    • 제53권6호
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    • pp.59-65
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    • 2011
  • This study was performed to evaluate the compressive and flexural strength, void ratio and permeability coefficient used powdered waste glass, $CaCO_3$, recycled coarse aggregate and unsaturated polyester resin to find optimum mix design of permeable polymer concrete for pavement. The compressive and flexural strength of permeable polymer concrete for pavement using powdered waste glass were in the range of 16.8~19.7 MPa and 4.7~6.1 MPa, respectively. it was satisfied the regulation of permeable concrete for pavement (18 MPa and 4.5 MPa). The void ratio and permeability coefficient were decreased with increasing the powdered waste glass, respectively. The void ratio and permeability coefficient were satisfied national regulation of permeable concrete for pavement (8 % and $1{\times}10^{-2}$ cm/s). In addition, this study found out that required amount of binder was decreased with increasing the powdered waste glass. This fact is expected to have economical effects during the use of powdered waste glass in the manufacture of permeable polymer concrete for pavement. Accodingly, the powdered waste glass can be used for permeable concrete material.

재활용 천연광물 연마재의 연마성능 (Ability of the Natural Abrasives Recovered from Sludge)

  • 조성백;서명덕;조건준;이수정
    • 한국광물학회지
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    • 제22권4호
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    • pp.353-358
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    • 2009
  • CRT 브라운관 패널의 연마과정에서 배출되는 폐연마슬러지로부터 석류석 등의 연마재를 회수하고, 연마성능을 평가하였다. 재활용 부석과 석류석으로 연마한 유리의 평균표면거칠기값(Ra = $0.025{\mu}m$, = $0.029{\mu}m$)은 새 연마재로 연마한 유리에서의 값(Ra = $0.039{\mu}m$, $0.031{\mu}m$)보다 작았으며 표면의 선이나 홈도 적었다. 루즈의 경우 유리 파편이 혼입되어 연마재로 재활용하기에는 적합하지 않다. 본 기술을 이용하여 폐연마슬러지에 함유된 천연연마재 광물자원인 부석과 석류석을 회수한다면 CRT 유리 연마공정에서 재활용할 수 있고, 슬러지 매립으로 발생되는 처리비용과 환경오염문제를 줄일 수 있을 것이다.

단면형상에 따른 GF/rPET 열가소성 복합재료의 물리적 특성 연구 (Mechanical Characteristics of GF/recycled PET Thermoplastic Composites with Chopped Fiber According to Cross Section)

  • 김지혜;이은수;김명순;심지현
    • 한국염색가공학회지
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    • 제29권4호
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    • pp.239-246
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    • 2017
  • Recently fiber-reinforced thermoplastic composites have attracted great interest from industry and study because they offer unique properties such as high strength, modulus, impact resistance, corrosion resistance, and damping reduction which are difficult to obtain in single-component materials. The demand for plastics is steadily increasing not only in household goods, packaging materials, but also in high-performance engineering plastic and recycling. As a result, the technology of recycling plastic is also attracting attention. In particular, many paper have studied recycling systems based on recycled thermoplastics. In this paper, properties of Glass Fiber Reinforced Thermoplastic(GFRTP) materials were evaluated using recycled PET for injection molding bicycle frame. The effect on thermal and mechanical properties of recycled PET reinforced glass chop fiber according to fiber cross section and fiber content ratio were studied. And it was compared void volume and torque energy by glass fiber cross section, which is round section and flat section. Mechanical characteristics of resulting in GF/rPET has been increased by increasing fiber contents, than above a certain level did not longer increased. And mechanical properties of flat glass fiber reinforced rPET with low void volume were most excellent.

발포유리소재를 잔골재로 부분 치환한 경량콘크리트의 특성 (Properties of Light-weight Concrete containing Foamed Glass as a part of Fine Aggregate)

  • 이진우;박희곤;배연기;이재삼;이근행;문성환
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2008년도 추계 학술논문 발표대회
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    • pp.113-116
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    • 2008
  • In these days, properties of concrete has been demanded to be high performance because concrete structure was bigger and higher. So studies on high strength concrete and lightweight concrete has been frequently done. But lightweight concrete has been used to limited non-structural elements in th country. Lightweight aggregate mixed with lightweight concrete was only coarse aggregate in case of the structural lightweight concrete. In the country studies on the lightweight concrete was poor and unvaried. Also it is difficult to be practical use of lightweight concrete was that it has been expensive. It was study on the using fine lightweight aggregate with lightweight concrete to crushed by-products and wastes to get to make foamed glass with recycled glass. So it was tested by fine aggregate standard and mixed with.

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고온이 순환유리미분말을 혼입한 고강도 시멘트 복합체의 역학적 특성에 미치는 영향 (The Effect of High Temperature on the Mechanical Properties of High Strength Cement Composites Mixed with Recycled Glass Powder)

  • 박준영;김규용;유하민;최윤성;지성준;남정수
    • 한국건축시공학회:학술대회논문집
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    • 한국건축시공학회 2023년도 봄 학술논문 발표대회
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    • pp.109-110
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    • 2023
  • In this study, mechanical properties of high strength cement composites (HSC) containing recycled glass powder (GP) after heating were investigated. As a result, at 100Mpa, as the heating temperature increased, the compressive strength increased while the elastic modulus decreased . At 140Mpa, after heating at 300℃, the spalling occurred excluding GP0, and it is believed to be due to the high density of HSC.

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폐유리 및 레드머드를 활용한 순환 상온 아스팔트 혼합물의 공학적 특성 (Engineering Characteristics of Recycled Cold Asphalt Mixtures Using Waste Glass and Red Mud)

  • 박경수;강석표
    • 한국건설순환자원학회논문집
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    • 제9권1호
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    • pp.50-57
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    • 2021
  • 본 연구에서는 폐기물을 대량 활용한 저탄소 도로포장재 개발의 일환으로 폐유리 및 레드머드를 활용한 상온 아스팔트 혼합물의 물성 및 역학적 특성을 검토하고, 해당 표준에서 규정하고 있는 성능기준에 대한 충족여부를 검토하였다. 연구결과 폐유리 혼입 시 혼합물의 변형저항성을 저하시켜 GR의 품질기준치를 충족시키지 못하는 것으로 나타나 이에 대한 배합상 개선이 필요한 것으로 나타났다. 또한 레드머드 첨가로 폐유리 활용 혼합물의 성능을 크게 개선시키는 것으로 나타났으며, 폐유리 혼입에 따른 변형저항성 저하를 개선시켜 현재 GR에서 규정하고 있는 안정도, 흐름값, 간접인장강도 및 인장강도비 등에 대한 품질기준치를 모두 충족시키는 것으로 나타났다. 따라서 폐유리 및 레드머드의 순환 상온 아스팔트 혼합물용 적용 소재로의 가능성을 확인할 수 있었다.

Properties of recycled green building materials applied in lightweight aggregate concrete

  • Wang, Her-Yung;Hsiao, Darn-Horng;Wang, Shi-Yang
    • Computers and Concrete
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    • 제10권2호
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    • pp.95-104
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    • 2012
  • This study uses recycled green building materials based on a Taiwan-made recycled mineral admixture (including fly ash, slag, glass sand and rubber powder) as replacements for fine aggregates in concrete and tests the properties of the resulting mixtures. Fine aggregate contents of 5% and 10% were replaced by waste LCD glass sand and waste tire rubber powder, respectively. According to ACI concrete-mixture design, the above materials were mixed into lightweight aggregate concrete at a constant water-to-binder ratio (W/B = 0.4). Hardening (mechanical), non-destructive and durability tests were then performed at curing ages of 7, 28, 56 and 91 days and the engineering properties were studied. The results of these experiments showed that, although they vary with the type of recycling green building material added, the slumps of these admixtures meet design requirements. Lightweight aggregate yields better hardened properties than normal-weight concrete, indicating that green building materials can be successfully applied in lightweight aggregate concrete, enabling an increase in the use of green building materials, the improved utilization of waste resources, and environmental protection. In addition to representing an important part of a "sustainable cycle of development", green building materials represent a beneficial reutilization of waste resources.

Estimation of splitting tensile strength of modified recycled aggregate concrete using hybrid algorithms

  • Zhu, Yirong;Huang, Lihua;Zhang, Zhijun;Bayrami, Behzad
    • Steel and Composite Structures
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    • 제44권3호
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    • pp.389-406
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    • 2022
  • Recycling concrete construction waste is an encouraging step toward green and sustainable building. A lot of research has been done on recycled aggregate concretes (RACs), but not nearly as much has been done on concrete made with recycled aggregate. Recycled aggregate concrete, on the other hand, has been found to have a lower mechanical productivity compared to conventional one. Accurately estimating the mechanical behavior of the concrete samples is a most important scientific topic in civil, structural, and construction engineering. This may prevent the need for excess time and effort and lead to economic considerations because experimental studies are often time-consuming, costly, and troublous. This study presents a comprehensive data-mining-based model for predicting the splitting tensile strength of recycled aggregate concrete modified with glass fiber and silica fume. For this purpose, first, 168 splitting tensile strength tests under different conditions have been performed in the laboratory, then based on the different conditions of each experiment, some variables are considered as input parameters to predict the splitting tensile strength. Then, three hybrid models as GWO-RF, GWO-MLP, and GWO-SVR, were utilized for this purpose. The results showed that all developed GWO-based hybrid predicting models have good agreement with measured experimental results. Significantly, the GWO-RF model has the best accuracy based on the model performance assessment criteria for training and testing data.