• Title/Summary/Keyword: H-bond

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Bond behavior of PP fiber-reinforced cinder concrete after fire exposure

  • Cai, Bin;Wu, Ansheng;Fu, Feng
    • Computers and Concrete
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    • 제26권2호
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    • pp.115-125
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    • 2020
  • To reduce the damage of concrete in fire, a new type of lightweight cinder aggregate concrete was developed due to the excellent fire resistance of cinder. To further enhance its fire resistance, Polypropylene (PP) Fibers which can enhance the fire resistance of concrete were also used in this type of concrete. However, the bond behavior of this new type of concrete after fire exposure is still unknown. To investigate its bond behavior, 185 specimens were heated up to 22, 200, 400, 600 or 800℃ for 2 h duration respectively, which is followed by subsequent compressive and tensile tests at room temperature. The concrete-rebar bond strength of C30 PP fiber-reinforced cinder concrete was subsequently investigated through pull-out tests after fire exposure. The microstructures of the PP fiber-reinforced cinder concrete and the status of the PP fibre at different temperature were inspected using an advanced scanning electron microscopy, aiming to understand the mechanism of the bonding deterioration under high temperature. The effects of rebar diameter and bond length on the bond strength of PP fiber-reinforced cinder concrete were investigated based on the test results. The bond-slip relation of PP fiber-reinforced cinder concrete after exposure at different temperature was derived based on the test results.

와동벽에서 접착제의 두께가 미세인장 결합강도에 미치는 영향 (The effect of adhesive thickness on microtensile bond strength to the cavity wall)

  • 이화언;김현철;허복;박정길
    • Restorative Dentistry and Endodontics
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    • 제32권1호
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    • pp.9-18
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    • 2007
  • 이 연구의 목적은 와동벽에서 다른 위치에서의 상아질 접착제의 두께를 평가하고, 이런 다양한 접착제의 두께와 미세 인장 강도 사이의 관계를 평가하기 위한 것이다. 여섯 개의 인간 대구치에 모든 상아질 면이 노출되도록 I급 와동을 형성하였다 3개의 치아는 filled adhesive ($Clearfil^{TM}$ SE bond)를 와동 내에 도포하였고, 다른 3개의 치아는 unfilled adhesives ($Scotchbond^{TM}$ Multi Purpose)를 도포하였다. 형광 현미경을 이용하여 접착층의 형태와 두께를 관찰하였다. 접착제의 두께는 수직 와동벽을 따라 와동 변연, 와동벽 1/2, 와동 내각의 세 지점에서 측정되었다. $Scotchbond^{TM}$ Multi Purpose와 $Clearfil^{TM}$ SE bond가 와동 변연과 와동벽 1/2, 와동 내각에서의 접착제의 두께를 재현하여 미세 인장 결합 강도를 측정하였다. 이 실험의 결과에서 두 가지 상아질 접착제 모두에서 와동 내각에서의 접착제의 두께가 와동 변연과 와동벽 1/2위치에서의 두께보다 두꺼웠으며, 와동 내각의 두꺼운 접착제의 미세 인장 결합 강도는 와동 변연과 와동벽 1/2에서의 얇은 접착제 두께의 미세 인장 결합 강도보다 유의성 있게 높게 나타났다.

철근 위치에 따른 이형철근과 순환잔골재 콘크리트의 부착거동 (The Bond Behavior between Deformed bars and Recycled Fine Aggregate Concrete according to Bar Position.)

  • 유영찬;장용헌;이민정;윤현도;최기선;이도헌
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2008년도 춘계 학술발표회 제20권1호
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    • pp.1089-1092
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    • 2008
  • 철근과 콘크리트의 부착성능 확보는 철근콘크리트 구조물의 거동에서 중요한 요구사항이다. 구조체에 순환 잔골재 콘크리트를 적용하기 위해 순환 잔골재 콘크리트와 철근의 부착거동에 대한 규명이 매우 중요하다. 이에 따라 본 연구에서는 순환잔골재를 사용한 콘크리트와 철근 상호간의 부착거동을 평가하기 위하여 직접인발 실험을 수행하였다. 연구를 수행함에 있어 실험에 사용된 변수는 0, 100%의 순환잔골재 치환율 및 철근의 위치(상단근, 중간근, 하단근)로 하였다. 실험 결과는 CEB-FIP가 규정한 부착강도와 비교하였다. 본 연구를 통하여 얻어진 실험결과를 종합해 보면, 순환잔골재 콘크리트와 철근의 부착거동은 순환 잔골재 치환율 및 철근 위치에 영향을 받는다. H type 시험체의 경우 블리딩 현상이 일어나 V type 시험체와 HB 시험체만이 CEB-FIP가 규정한 부착강도를 만족하였다.

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Iridium(Ⅲ) Insertion into an Aromatic C-H Bond and Si-H Bond

  • Yang Nam Keun;Chung Dae-Eun;Ko Jaejung;Kang Sang Ook
    • Bulletin of the Korean Chemical Society
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    • 제13권6호
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    • pp.627-631
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    • 1992
  • The dihydrido iridium(Ⅲ) complex [$Ir(PPh_3)_2H_2(ac)_2$]$BF_4$ (ac=acetone) reacts with 2-phenylpyridine and 7,8-benzoquinoline to yield the C-H activated complexes [$Ir(PPh_3)_2$H(ac)(L)]$BF_4$ (L= phenylpyridine; 7,8-benzoquioline). The dihydrido iridium(Ⅲ) complex [$Ir(PPh_3)_2H_2(ac)_2$]$BF_4$ also reacts with triaklysilane via an oxidative addition reaction to yield the trihydrido iridium complexes [$Ir(PPh_3)_2H_3SiR_3$]$BF_4$ (R =Et and Ph). The structual configuration was studied by conventional spectroscopy.

Collision-induced Energy Transfer and Bond Dissociation in Toluene by H2/D2

  • Ree, Jongbaik;Kim, Yoo Hang;Shin, Hyung Kyu
    • Bulletin of the Korean Chemical Society
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    • 제34권12호
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    • pp.3641-3648
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    • 2013
  • Energy transfer and bond dissociation of $C-H_{methyl}$ and $C-H_{ring}$ in excited toluene in the collision with $H_2$ and $D_2$ have been studied by use of classical trajectory procedures at 300 K. Energy lost by the vibrationally excited toluene to the ground-state $H_2/D_2$ is not large, but the amount increases with increasing vibrational excitation from 5000 and $40,000cm^{-1}$. The principal energy transfer pathway is vibration to translation (V-T) in both systems. The vibration to vibration (V-V) step is important in toluene + $D_2$, but plays a minor role in toluene + $H_2$. When the incident molecule is also vibrationally excited, toluene loses energy to $D_2$, whereas it gains energy from $H_2$ instead. The overall extent of energy loss is greater in toluene + $D_2$ than that in toluene + $H_2$. The different efficiency of the energy transfer pathways in two collisions is mainly due to the near-resonant condition between $D_2$ and C-H vibrations. Collision-induced dissociation of $C-H_{methyl}$ and $C-H_{ring}$ bonds occurs when highly excited toluene ($55,000-70,400cm^{-1}$) interacts with the ground-state $H_2/D_2$. Dissociation probabilities are low ($10^{-5}{\sim}10^{-2}$) but increase exponentially with rising vibrational excitation. Intramolecular energy flow between the excited C-H bonds occurring on a subpicosecond timescale is responsible for the bond dissociation.

Failure Mechanisms of Thermal Barrier Coatings Deposited on Hot Components in Gas Turbine Engines

  • Lee E. Y.;Kim J. H.;Chung S. I.
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2005년도 제24회 춘계학술대회논문집
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    • pp.106-111
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    • 2005
  • Failure mechanisms were investigated for the two layer thermal barrier coatings consisting of NiCrAlY bond coat and $ZrO_2-8wt.\% Y_{2}O_3$ ceramic coating during cyclic oxidation. $Al_{2}O_3$ developed at the ceramic coating/bond coat interface first, followed by the Cr/Ni rich oxides such as $NiCr_{2}O_4 and Ni(Al,Cr)_{2}O_4$ during cyclic oxidation It was observed that the spalling of ceramic coatings took place primarily within the NiCrAlY bond coat oxidation products or at the interface between the bond coat oxidation products and zirconia based ceramic coating or the bond coat. It was also observed that the fracture within these oxidation products occurred with the formation of $Ni(Cr,Al)_{2}O_4$ spinel or Cr/Ni rich oxides. It was therefore concluded that the formation of these oxides was a life-limiting event for the thermal barrier coatings.

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Improved numerical approach for the bond-slip behavior under cyclic loads

  • Kwak, H.G.
    • Structural Engineering and Mechanics
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    • 제5권5호
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    • pp.663-677
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    • 1997
  • Bond-slip behavior between reinforcement and concrete under push-pull cyclic loadings is numerically investigated based on a reinforcement model proposed in this paper. The equivalent reinforcing steel model considering the bond-slip effect without taking double nodes is derived through the equilibrium at each node of steel and the compatibility condition between steel and concrete. Besides a specific transformation algorithm is composed to transfer the forces and displacements from the nodes of the steel element to the nodes of the concrete element. This model first results in an effective use in the case of complex steel arrangements where the steel elements cross the sides of the concrete elements and second turns the impossibility into a possibility in consideration of the bond-slip effect in three dimensional finite element analysis. Finally, the correlation studies between numerical and experimental results under the continuously repeated large deformation stages demonstrate the validity of developed reinforcing steel model and adopted algorithms.

Failure Mechanisms for Zirconia Based Thermal Barrier Coatings

  • Lee, Eui Y.;Kim, Jong H.
    • The Korean Journal of Ceramics
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    • 제4권4호
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    • pp.340-344
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    • 1998
  • Failure mechanisms were investigated for the two layer thermal barrier coatings consisting of NiCrAlY bond coat and $ZrO_2$-8wt.% $Y_2O_3$ ceramic coating during cyclic oxidation. $Al_2O_3$ developed at the ceramic coating/bond coat interface first, followed by the Cr/Ni rich oxides such as $NiCr_2O_4$ and $Ni(Al, Cr)_2O_4$ during cyclic oxidation. It was observed that the spalling of ceramic coatings took place primarily within the NiCrAlY bond coat oxidation products or at the interface between the bond coat oxidation products and zirconia based ceramic coating or the bond coat. It was also observed that the fracture within these oxidation products occurred with the formation of $Ni(Cr, Al)_2O_4$ spinel or Cr/Ni rich oxides. It was therefore concluded that the formation of these oxides was a life-limiting event for the thermal barrier coatings.

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TiO2(110) 표면에 흡착된 물분자의 결합 활성화에 관한 MO 연구 (Molecular Orbital Anaysis of Water Activation on TiO2(110) Surface)

  • 강대복
    • 대한화학회지
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    • 제46권3호
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    • pp.179-186
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    • 2002
  • $TiO_2$(110) 표면에서 물의 OH 결합 활성화가 어떤지 전자적 메카니즘에 의해 이루어지는 extended Hiickel 방법을 통해 알아보았다. 물분자는 $3a_1$오비탈의 시그마 상호작용 겨로가로 5배위 $Ti^{4+}$원자바로위에 수직으로 흡착한다. 이 결합구조에서는 물분자의 H원자가 $TiO_2$의 2배위 bridging $O^{2-}(O_b)$원자와 너무 멀리 떨어져 있으므로 OH 결합 해리를 촉진시키는 수소결합 상호 작용을 할 수 없으므로 물분자를 $O_b$ 원자쪽으로 기울여 수소결합이 형성되도록 한다. 이 경우 $O_b$ P 오비탈로부터 흡착 물분자의 LUMO $2b_1$반 결합성 오비탈로 전자밀도의 이동이 일어나고 또 물의 $3a_1$오비탈(약한 결합성)로부터 $Ti^{4+} 3d_{z2}$오비탈로 전자밀도의 이동이 일어남으로써 물의 OH 결합이 상당히 약화됨을 확인할 수 있었고 그 결과 OH와 H로 해리할 것이라는 해석이 가능하다.