• 제목/요약/키워드: Interfacial Shear Strength

검색결과 260건 처리시간 0.02초

다양한 사이징제가 반응중합에 의해 제조된 나일론 6/탄소섬유 복합체의 물성에 미치는 영향 (Effect of Various Sizing Agents on the Properties of Nylon6/Carbon Fiber Composites Prepared by Reactive Process)

  • 박하늘;이학성;허몽영
    • Composites Research
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    • 제31권6호
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    • pp.299-303
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    • 2018
  • 탄소섬유 강화 PA6 복합재료의 탄소섬유-메트릭스간 계면결합력과 반응중합도 향상을 위해서 기존 탄소섬유의 에폭시 사이징제를 디사이징처리하여 에폭시를 제거한 후 우레탄계, 나일론계, 페녹시계 사이징제로 재처리해주었으며, 리사이징처리된탄소섬유의표면을관찰하였다. 리사이징처리된탄소섬유의계면결합력은 IFSS(Interfacial shear strength)를 통해서 확인하였으며, 계면 결합 강도 측정 후 파단면은 주사전자현미경을 통해서 관찰하였다. 나일론계와 페녹시계 사이징제로 처리된 탄소섬유가 우레탄계 사이징에 비해 계면 결합력이 상승한 것을 확인하였다. 우레탄계 리사이징 처리된 탄소섬유는 기존 에폭시 사이징 탄소섬유보다 계면 결합력이 감소한 것으로 확인되었다. 이 결과는 기존 탄소섬유의 저활성과 평활성을 제거하여 탄소섬유와 나일론6 사이의 계면 결합력이 향상된 것으로 판단된다.

전해 도금된 주석 솔더 범프의 계면 반응과 전단 강도에 미치는 UBM의 효과 (Effect of Under Bump Metallization (UBM) on Interfacial Reaction and Shear Strength of Electroplated Pure Tin Solder Bump)

  • 김유나;구자명;박선규;정승부
    • 대한금속재료학회지
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    • 제46권1호
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    • pp.33-38
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    • 2008
  • The interfacial reactions and shear strength of pure Sn solder bump were investigated with different under bump metallizations (UBMs) and reflow numbers. Two different UBMs were employed in this study: Cu and Ni. Cu6Sn5 and Cu3Sn intermetallic compounds (IMCs) were formed at the bump/Cu UBM interface, whereas only a Ni3Sn4 IMC was formed at the bump/Ni UBM interface. These IMCs grew with increasing reflow number. The growth of the Cu-Sn IMCs was faster than that of the Ni-Sn IMC. These interfacial reactions greatly affected the shear properties of the bumps.

미소접합시험과 유한요소법을 통한 섬유/에폭시 복합재의 계면 전단강도 해석 (Analysis of Interfacial Shear Strength of Fiber/Epoxy Composites by Microbond Test and Finite Element Method)

  • 강수근;이덕보;최낙삼
    • Composites Research
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    • 제19권4호
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    • pp.7-14
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    • 2006
  • 미소 드랍릿 시편을 이용한 탄소섬유와 에폭시 수지 사이의 계면전단강도에 대해 시험분석하였다. 또한 드랍릿 모델, 원형 단면 모델, 인발모델의 3종류의 유한요소해석을 통해 섬유/수지간의 응력분포를 계산하였다. 본 연구결과는 다음과 같다. (1) 미소드랍릿 시험의 경우는 인발시험보다 섬유/수지의 계면에서 큰 응력집중이 나타났으며 계면박리가 낮은 하중수준에서도 발생하기 용이함을 알수 있었다. (2) 미소드랍릿시험에서 높은 계면강도를 보였는데, 이는 미소드랍릿의 형상과 사이즈, 바이스팁과 접촉하는 부위의 응력집중효과를 함께 받았기 때문으로 해석되었다.

Investigation of the effects of connectors to enhance bond strength of externally bonded steel plates and CFRP laminates with concrete

  • Jabbar, Ali Sami Abdul;Alam, Md Ashraful;Mustapha, Kamal Nasharuddin
    • Steel and Composite Structures
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    • 제20권6호
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    • pp.1275-1303
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    • 2016
  • Steel plates and carbon-fiber-reinforced polymer (CFRP) laminates or plates bonded to concrete substrates have been widely used for concrete strengthening. However, this technique cause plate debonding, which makes the strengthening system inefficient. The main objective of this study is to enhance the bond strength of externally bonded steel plates and CFRP laminates to the concrete surface by proposing new embedded adhesive and steel connectors. The effects of these new embedded connectors were investigated through the tests on 36 prism specimens. Parameters such as interfacial shear stress, fracture energy and the maximum strains in plates were also determined in this study and compared with the maximum value of debonding stresses using a relevant failure criterion by means of pullout test. The study indicates that the interfacial bond strength between the externally bonded plates and concrete can be increased remarkably by using these connectors. The investigation verifies that steel connectors increase the shear bond strength by 48% compared to 38% for the adhesive connectors. Thus, steel connectors are more effective than adhesive connectors in increasing shear bond strength. Results also show that the use of double connectors significantly increases interfacial shear stress and decrease debonding failure. Finally, a new proposed formula is modified to predict the maximum bond strength of steel plates and CFRP laminates adhesively glued to concrete in the presence of the embedded connectors.

초고성능 섬유보강 콘크리트로 보강된 콘크리트의 계면 전단강도 결정을 위한 경사전단 실험 (Slant Shear Test for Determining the Interfacial Shear Strength of Concrete Strengthened with Ultra-High Performance Fiber Reinforced Concrete)

  • 임우영;홍성걸
    • 콘크리트학회논문집
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    • 제28권6호
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    • pp.637-646
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    • 2016
  • 이 연구에서는 강섬유 보강 초고성능 콘크리트(Ultra-high performance fiber reinforced concrete, 이하 UHPFRC)로 보강된 콘크리트 계면에서의 전단강도 평가를 위한 경사전단실험을 수행하였다. 실험변수는 면처리 유무와 콘크리트 강도, 그리고 UHPFRC의 강섬유 혼입률이다. 콘크리트의 계면은 숏블라스팅으로 면처리되었다. 실험결과, 숏블라스팅으로 면처리된 실험체의 계면 전단강도는 매끄러운 표면을 가진 실험체의 부착강도에 비해 매우 크게 나타났으며, 거친면을 만들기 위한 숏블라스팅 방법은 매우 효과적인 방법인 것으로 나타났다. 숏블라스팅으로 표면처리를 할 경우, 전단마찰 철근이 없더라도 콘크리트 계면에서 저항하는 전단강도는 현행 기준에서 제시하고 전단강도 상한값을 초과하는 것으로 나타났다. 기존의 콘크리트와 UHPFRC 사이의 전단마찰 설계는 전단마찰 철근의 유무와 상관없이 현행 콘크리트 구조기준을 사용해도 무방할 것으로 판단된다. 다만, 면처리를 하지 않은 경우에는 적절한 전단 보강재가 추가 설치하여야 할 것이다.

Effect of ages and season temperatures on bi-surface shear behavior of HESUHPC-NSC composite

  • Yang Zhang;Yanping Zhu;Pengfei Ma;Shuilong He;Xudong Shao
    • Advances in concrete construction
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    • 제15권6호
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    • pp.359-376
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    • 2023
  • Ultra-high-performance concrete (UHPC) has become an attractive cast-in-place repairing material for existing engineering structures. The present study aims to investigate age-dependent high-early-strength UHPC (HESUHPC) material properties (i.e., compressive strength, elastic modulus, flexural strength, and tensile strength) as well as interfacial shear properties of HESUHPC-normal strength concrete (NSC) composites cured at different season temperatures (i.e., summer, autumn, and winter). The typical temperatures were kept for at least seven days in different seasons from weather forecasting to guarantee an approximately consistent curing and testing condition (i.e., temperature and relative humidity) for specimens at different ages. The HESUHPC material properties are tested through standardized testing methods, and the interfacial bond performance is tested through a bi-surface shear testing method. The test results quantify the positive development of HESUHPC material properties at the early age, and the increasing amplitude decreases from summer to winter. Three-day mechanical properties in winter (with the lowest curing temperature) still gain more than 60% of the 28-day mechanical properties, and the impact of season temperatures becomes small at the later age. The HESUHPC shrinkage mainly occurs at the early age, and the final shrinkage value is not significant. The HESUHPC-NSC interface exhibits sound shear performance, the interface in most specimens does not fail, and most interfacial shear strengths are higher than the NSC-NSC composite. The HESUHPC-NSC composites at the shear failure do not exhibit a large relative slip and present a significant brittleness at the failure. The typical failures are characterized by thin-layer NSC debonding near the interface, and NSC pure shear failure. Two load-slip development patterns, and two types of main crack location are identified for the HESUHPC-NSC composites tested in different ages and seasons. In addition, shear capacity of the HESUHPC-NSC composite develops rapidly at the early age, and the increasing amplitude decreases as the season temperature decreases. This study will promote the HESUHPC application in practical engineering as a cast-in-place repairing material subjected to different natural environments.

Fast transport with wall slippage

  • Tang, Zhipeng;Zhang, Yongbin
    • Membrane and Water Treatment
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    • 제12권1호
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    • pp.37-41
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    • 2021
  • This paper presents the multiscale calculation results of the very fast volume transport in micro/nano cylindrical tubes with the wall slippage. There simultaneously occurs the adsorbed layer flow and the intermediate continuum fluid flow which are respectively on different scales. The modeled fluid is water and the tube wall is somewhat hydrophobic. The calculation shows that the power loss on the tube no more than 1.0 Watt/m can generate the wall slippage even if the fluid-tube wall interfacial shear strength is 1 MPa; The power loss on the scale 104 Watt/m produces the volume flow rate through the tube more than one hundred times higher than the classical hydrodynamic theory calculation even if the fluid-tube wall interfacial shear strength is 1 MPa. When the wall slippage occurs, the volume flow rate through the tube is in direct proportion to the power loss on the tube but in inverse proportion to the fluid-tube wall interfacial shear strength. For low interfacial shear strengths such as no more than 1 kPa, the transport in the tube appears very fast with the magnitude more than 4 orders higher than the classical calculation if the power loss on the tube is on the scale 104 Watt/m.

A study on the Interfacial Properties of Electrodeposited Single Carbon Fiber/Epoxy Composites Using Tensile and Compressive Fragmentation Tests

  • Park, Joung-Man;Kim, Jin-Won
    • Macromolecular Research
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    • 제10권1호
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    • pp.24-33
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    • 2002
  • Interfacial and microfailure properties of carbon fiber/epoxy composites were evaluated using both tensile fragmentation and compressive Broutman tests. A monomeric and two polymeric coupling agents were applied via the electrodeposition (ED) and the dipping applications. A monomeric and a polymeric coupling agent showed significant and comparable improvements in interfacial shear strength (IFSS) compared to the untreated case under both tensile and compressive tests. Typical microfailure modes including cone-shaped fiber break, matrix cracking, and partial interlayer failure were observed under tension, whereas the diagonal slipped failure at both ends of the fractured fiber appeared under compression. Adsorption and shear displacement mechanisms at the interface were described in terms of electrical attraction and primary and secondary bonding forces.

Interfacial Shear Strength and Thermal Properties of Electron Beam-Treated Henequen Fibers Reinforced Unsaturated Polyester Composites

  • Pang Yansong;Cho Donghwan;Han Seong Ok;Park Won Ho
    • Macromolecular Research
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    • 제13권5호
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    • pp.453-459
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    • 2005
  • Natural fiber henequen/unsaturated polyester (UPE) composites were fabricated by means of a compression molding technique using chopped henequen fibers treated at various electron beam (EB) dosages. The interfacial shear strength (IFSS), dynamic mechanical properties, and thermal expansion behavior were investigated through a single fiber microbonding test, fractographic observation, dynamic mechanical analysis, and thermomechanical analysis, respectively. The results indicated that the interfacial and dynamic mechanical properties significantly depended on the level of the EB treatment irradiated onto the henequen fiber surfaces. The effect of EB treatment on the IFSS, storage modulus and fracture surface of the henequen/UPE composites agreed with each other. The results of this study also suggested that the modification of henequen fiber surfaces at 10 kGy EB is the most effective for improving the interfacial properties of the henequen/UPE composites.

유리섬유/나일론 6 복합재료의 계면특성에 미치는 Chloropropyl 말단기를 가진 실란결합체 농도의 영향 (Concentration Effect of Silane Coupling Agents with Chloropropyl End Group on the Interfacial Characteristics of Glass/Nylon 6 Composites)

  • 조동환;윤숙향;방대석;김준경;임순호;박민
    • 접착 및 계면
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    • 제5권1호
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    • pp.21-28
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    • 2004
  • 본 연구에서는 사슬말단에 chloropropyl 유기관능그룹을 가지고 있는 실란결합체인 3-chloropropyltrimethoxysilane(CTMS)을 사용하여 여러 농도에서 유리섬유 표면에 사이징 처리하여 유리섬유/나일론 6 및 유리직물/나이론 6 복합재료를 제조하였다. 단섬유 microbonding 시험에 의한 유리섬유/나일론 6 복합재료의 계면전단강도와 short-beam 전단시험과 동역학적 열특성 분석 방법을 통하여 유리직물/나일론 6 복합재료의 층간전단강도 및 저장탄성률에 미치는 결합체 농도의 영향을 각각 조사하였다. CTMS 결합제의 농도가 증가할수록 복합재료의 계면특성이 향상되었다. 결합제의 농도 변화에 대한 유리섬유강화 나일론 6 복합재료의 계면전단강도, 층간전단강도, 층간파단양상 그리고 저장탄성률 등 각 특성 변화의 경향이 서로 일치하였다.

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