• 제목/요약/키워드: Steel-fiber Reinforced Concrete

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Development of Insulation Sheet Materials and Their Sound Characterization

  • Ni, Qing-Qing;Lu, Enjie;Kurahashi, Naoya;Kurashiki, Ken;Kimura, Teruo
    • Advanced Composite Materials
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    • 제17권1호
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    • pp.25-40
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    • 2008
  • The research and development in soundproof materials for preventing noise have attracted great attention due to their social impact. Noise insulation materials are especially important in the field of soundproofing. Since the insulation ability of most materials follows a mass rule, the heavy weight materials like concrete, lead and steel board are mainly used in the current noise insulation materials. To overcome some weak points in these materials, fiber reinforced composite materials with lightweight and other high performance characteristics are now being used. In this paper, innovative insulation sheet materials with carbon and/or glass fabrics and nano-silica hybrid PU resin are developed. The parameters related to sound performance, such as materials and fabric texture in base fabric, hybrid method of resin, size of silica particle and so on, are investigated. At the same time, the wave analysis code (PZFlex) is used to simulate some of experimental results. As a result, it is found that both bundle density and fabric texture in the base fabrics play an important role on the soundproof performance. Compared with the effect of base fabrics, the transmission loss in sheet materials increased more than 10 dB even though the thickness of the sample was only about 0.7 mm. The results show different values of transmission loss factor when the diameters of silica particles in coating materials changed. It is understood that the effect of the soundproof performance is different due to the change of hybrid method and the size of silica particles. Fillers occupying appropriate positions and with optimum size may achieve a better effect in soundproof performance. The effect of the particle content on the soundproof performance is confirmed, but there is a limit for the addition of the fillers. The optimization of silica content for the improvement of the sound insulation effect is important. It is observed that nano-particles will have better effect on the high soundproof performance. The sound insulation effect has been understood through a comparison between the experimental and analytical results. It is confirmed that the time-domain finite wave analysis (PZFlex) is effective for the prediction and design of soundproof performance materials. Both experimental and analytical results indicate that the developed materials have advantages in lightweight, flexibility, other mechanical properties and excellent soundproof performance.

고강도 확대머리 인장철근을 가지는 SFRC 깊은 보의 전단강도 (Shear Strength of SFRC Deep Beam with High Strength Headed Reinforcing Tensile Bars)

  • 김영록;이창용;김승훈
    • 한국구조물진단유지관리공학회 논문집
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    • 제23권5호
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    • pp.111-117
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    • 2019
  • 확대머리 SD600 고강도 인장철근으로 단부 정착된 SFRC 깊은보의 전단성능을 평가하기 위해 전단 실험을 수행하였다. 실험 변수는 주인장 철근의 단부 정착방법(확대머리 철근, 일자형 철근), 단부 정착길이, 전단보강근 유무 등이다. 전단경간비는 1을 가지는 실험체에 대한 전단실험결과, 모든 실험체는 초기 휨 균열이 발생한 후 경사균열이 진행되면서 최종적으로 압축전단파괴되었다. 확대머리 철근으로 기계적 정착된 실험체들이 일자형 철근 정착에 비하여 5.6~22.4% 더 큰 전단강도를 나타내었다. 확대머리 철근으로 기계적 정착된 실험체들에 대하여 최대하중의 75%까지는 지압응력이 전체 정착응력의 0.9~17.2%에 도달하였으나, 최대하중 시점에서 지압응력이 전체 정착응력의 22.4%~46%에 도달하여 큰 응력 부담률을 나타내었다. 이를 통하여 확대머리 지압응력에 의한 정착응력 증가가 전단강도에 큰 영향을 미침을 알 수 있다. 실험 전단강도가 실용식에 의한 전단강도의 2.68~4.65 배로 평가되어, 실용식이 전단내력을 안전측으로 평가하였다.