• Title/Summary/Keyword: expanded polystyrene

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Effect of Compaction Method on Induced Earth Pressure Using Dynamic Compaction Roller (진동롤러에 의한 다짐방법이 인접구조물의 다짐토압에 미치는 영향)

  • Roh, Han-Sung
    • International Journal of Highway Engineering
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    • v.3 no.4 s.10
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    • pp.127-136
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    • 2001
  • To increase the structural integrity of concrete box culvert good compaction by the dynamic compaction roller with bi9 capacity is as effective as good backfill materials. It is needed for effective compaction that a compaction roller closes to concrete structure with high frequency. However structural distress of the culvert could be occur due to the excessive earth pressure by great dynamic compaction load. To investigate the characteristics of Induced stress by compaction, a box culvert was constructed with changing cushion materials and compaction methods. Two types of cushion material such as tire rubber chip and EPS(Expanded Polystyrene) were used as cushion panels and they are set on the culverts before backfill construction. Laboratory test result of cushion material says that the value of dynamic elastic modulus of rubber is lesser than that of EPS. On the other hand, material damping of rubber material is greater than that of EPS. In most case, dynamic compaction rollers with 10.5 ton weights were used and vibration frequency was applied 30Hz for the great compaction energy. This paper presents the main results on the characteristics of dynamic earth pressures during compaction. The amounts of induced dynamic pressures$(\Delta\sigma\;h)$ by compaction are affected with construction condition such as compaction frequency, depth of pressure cell, distance between roller and the wall of culvert and roller direction. Based on the measured values dynamic lateral pressure on the culverts, it could be said that orthogonal direction of roller to the length of culvert is more effective to compaction efficiency than parallel direction.

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A Study on the Cone Calorimeter Evaluation Method of Sandwich Panels (복합자재 콘칼로리미터평가방법에 대한 연구)

  • Park, Jung-Woo;Cho, Nam-Wook
    • Fire Science and Engineering
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    • v.31 no.6
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    • pp.74-82
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    • 2017
  • Fires in buildings built using sandwich panels are difficult to extinguish, and the damage caused by the fire spreading through the inner core material is extensive. Sandwich panels consist of a nonflammable material on both sides of an insulation material. The types of insulation material include organic and inorganic insulation materials, but the former are used in more than 80% of the case. Organic insulation is economically advantageous compared to inorganic insulation, but it is vulnerable to fire. Therefore, the damage caused by sandwich panel fires is higher than that for general fires. In the case of the noxious gas analyzer test, the panel is tested with three round holes having a diameter of 25 mm, in order to determine the risk of the core material, but the cone calorimeter test is carried out using a sandwich panel. In this study, the cone calorimeter test was conducted to examine the fire risk of the composite material when heated on a nonflammable surface, exposed to the core material through a hole, and heated directly the core material. The type of organic insulation employed was flame retardant EPS (Expanded Polystyrene), and the test specimens were tested in three types of sandwich panel, a perforated sandwich panel and single core material. The purpose of this study is to propose a method of measuring the fire risk of the core materials of composite materials using the cone calorimeter test.

Mushroom(Agaricus bisporus) Pre-packaging by the Rice Straw Pulp Tray (볏짚 트레이를 이용한 양송이 버섯의 포장에 관한 연구)

  • Ahn, Byoung-Kuk;Park, Noh-Hyun
    • Korean Journal of Food Science and Technology
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    • v.27 no.3
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    • pp.353-357
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    • 1995
  • The purpose of this study was to evaluate the possibility of the laboratory-made rice straw pulp tray(RSPT) for mushroom(Agaricus bisporus) pre-packaging. The quality changes of mushrooms packaged respectively in the RSPT and 'commercial' expanded polystyrene tray(EPST) were observed during storage. The weight losses of mushrooms in the two types of trays were maintained below 5% and the Hunter L values were showed above 76 at $4^{\circ}C$, while mushrooms in RSPTs had better lightness than those in EPSTs during storage at $25^{\circ}C$. There were no significant differences in the hardness values and cap openings between mushrooms in the two types of trays at $4^{\circ}C$. The cap openings of mushrooms were more proceeded in RSPTs than in EPSTs at $25^{\circ}C$ and the weight increases of RSPTs were greater than those of EPSTs during storage at $4^{\circ}C,\;25^{\circ}C$. As a result, it may be favorable to apply the environmentally-friendly RSPT to mushroom pre-packaging under the condition of low storage temperature.

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Development of the Waxed Rice Straw Pulp Tray Reduced in Moisture Absorption (흡습억제기능을 보유한 왁스처리 볏짚 트레이의 개발)

  • Ahn, Byoung-Kuk;Park, Sung-Min;Park, Noh-Hyun
    • KOREAN JOURNAL OF PACKAGING SCIENCE & TECHNOLOGY
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    • v.1 no.1
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    • pp.29-37
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    • 1995
  • The purpose of this study was to development the waxed rice straw pulp tray(WRSPT) which had low water sensitivity. The quality changes of mushrooms(Agaricus bisporus) packaged respectively in the WRSPT, non-treated rice straw pulp tray(NRSPT) and expanded polystyrene tray(EPST) were observed during storage. The weight losses of mushrooms in the WRSPTs were less than in the NRSPTs by maintaining below 3% at $0^{\circ}C$ and the applications of WRSPTs were more effective at $20^{\circ}C$. The weight increases of WRSPTs were more lowered than those of NRSPTs by marking below 15% during storage at $0^{\circ}C$. There were no significant differences in the Hunter L values and hardness values of mushrooms in the three types of trays at $0^{\circ}C$. The cap openings of mushrooms were more proceeded in NRSPTs than in WRSPTs and EPSTs at $20^{\circ}C$. As a result, it may be favorable to control excessive moisture absorption of the NRSPT mainly composed of cellulose pulp by introducing such chemical treatments as wax treatment.

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Properties of quasi-noncombustible ultra-lightweight geopolymer (준불연 초경량 지오폴리머의 물성)

  • Kim, Yootaek
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.29 no.3
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    • pp.132-139
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    • 2019
  • EPS (expanded polystyrene) is one of the most used building materials for insulation that is favored by its excellent heat insulation, economical efficiency and lightweight characteristics. However, EPS is vulnerable to the fire and producing large amount of toxic gases in case of fire. Therefore, ultra-lightweight geopolymer which can replace EPS is fabricated by using IGCC (integrated gasification combined cycle) fused slag and Si sludge as raw materials and the possibility of replacement on ultra-lightweight geopolymer for EPS as an insulation building material was evaluated in this study. Ultra-lightweight geopolymer can be fabricated with the pulverized IGCC fused slag having low carbon content and density, compressive strength, thermal conductivity were $0.064g/cm^3$, 0.04 MPa, and 0.072 W/mK, respectively. The thermal conductivity of ultra-lightweight geopolymer is 1.5~2.0 times higher than that of EPS suggested in the KS M 3808; however, the thermal conductivity value of geopolymer is meaningful and competitive to that of EPS in the market. Therefore, ultralightweight geopolymer can be applicable to the building material for thermal insulation purpose and have an enough possibility to replace EPS in the future because it is not only much safer than EPS in case of fire but also it can be fabricate by using waste materials from the industry.