• 제목/요약/키워드: Multi-material Bonding

검색결과 59건 처리시간 0.023초

VES-LMC로 보수.보강된 구조물의부착강도에 미치는 Hydrodemolition의 영향 (Effect of Hydrodemolition on Bonding Strengthof Structures Repaired or Rehabilitated with VES-LMC)

  • 김성권;심도식;이봉학;윤경구
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 2006년도 추계 학술발표회 논문집
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    • pp.397-400
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    • 2006
  • Most of the civil structures in Korea and abroad have many kinds of damages when they are facing over-loaded traffics, long-term serviceability, and severe environmental conditions. Repair, rehabilitation, and retrofit are important for maintaining the serviceability of structures. In recent year, VES-LMC has been widely used as repair material for bridge deck repair and rehabilitation, because the VES-LMC has a various benefits such as traffic opening after 3 hours of curing, higher durability and bond strength. In case of any structure repaired or rehabilitated with VES-LMC, those were influenced capacity of bond between the base layer of slab and VES-LMC as well as physical properties of each other materials. The capacity of bond depended on purity of interface, micro cracks, curing of VES-LMC and so like. A kind of popular concrete repair technique, High pressure water jetting equipment is extremely efficient at removing damaged concrete. Removing damaged or poor quality concrete from sensitive structures such as bridge, tunnels, multi-story car parking decks and runways, using the high pressure water jetting could remove damaged or poor quality concrete remaining healthy and sound concrete. Accordingly, the purpose of this study is that it was to evaluate effect of hydrodemolition on the bond strength of VES-LMC overlay compared with effects of other method such as breaker, untreated. Also, it was evaluated the effect of surface moisture.

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도로 램프구간에 대한 파손형태 및 원인에 관한 연구 (Study of Deterioration Phenomenon and Causes in Pavement of Ramp Area)

  • 황성도;문성호
    • 한국도로학회논문집
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    • 제18권1호
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    • pp.85-90
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    • 2016
  • PURPOSES : The objective of this paper is to understand the deterioration phenomenon and causes in the pavement of a ramp area. METHODS : Ramp areas need to be sloped because of the centrifugal force, which depends on the vehicle speed and grade of the ramp area. As a result, vertical and horizontal forces are applied on the pavement surface of the ramp area. Furthermore, the horizontal force depends on the vehicle speed and grade of the ramp area. In order to analyze the pavement structure of a ramp area, a multi-layered elastic analysis program was used to evaluate the weakest link of fatigue cracking deterioration, according to the simultaneously applied vertical and horizontal forces. RESULTS : From case studies related to the bonding conditions between the surface and base layer in a ramp area, it was found that the partially bonded cases resulted in a critical potential of fatigue cracking deterioration, in a comparison of 50%, 70%, and fully bonded cases. CONCLUSIONS : According to the results of the case studies, the pavement structure system should be reinforced by upgrading the material or increasing the thickness compared to the general pavement areas, in order to provide a performance life similar to the mainline pavements in the ramp areas.

One-Bottle system 상아질접착제의 전단결합강도 해석 (SHEAR BOND STREGNTHS OF ONE-BOTTLE DENTIN ABHESIVE SYSTEMS)

  • 조병훈;임성삼;권혁춘;엄정문;손호현;배광식
    • Restorative Dentistry and Endodontics
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    • 제24권4호
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    • pp.546-553
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    • 1999
  • In Older to evaluate the effectiveness of 'One-bottle dentin adhesive system', the shear bond strengths of two fourth generation dentin adhesive systems and two One-bottle systems to the occlusal dentin of the freshly extracted third molars were measured by the regulation of the ISO TR 11405. The fourth generation dentin adhesive systems used in this study were Scotchbond Multi-Purpose Plus and All-Bond 2, and the One-bottle systems were Single Bond and One-Step. The effects of the thickness of hybrid layer and adhesive layer, the diameter of resin tag and the ratio between the diameter of resin tag and that of dentinal tubule were analyzed as the contributing factors of the shear bond strength of dentin bonding systems from the Scanning Electron Microscopic images. The results were as follows: 1. The shear bond strengths of Scotchbond Multi-Purpose, All-Bond 2, and Single Bond were 16.98${\pm}$3.40 MPa, 15.10${\pm}$2.77 MPa and 15.05${\pm}$3.18 MPa, respectively. There were no statistical differences(p>0.05). 2. But, the shear bond strength of One-Step were significantly lower than those of the other groups (11.81${\pm}$1.95 MPa, p<0.05). 3. The thicknesses of hybrid layer and adhesive layer of One-Step were significantly thinner than those of the other groups(p<0.05). The differences of the diameter of resin tag(p=0.0685) and the ratio between the diameter of resin tag and that of dentinal tubule(p=0.2401) were not significant among all the material groups. 4. The thickness of hybrid layer and adhesive layer might be considered as contributing factors of the she at bond strengths of dentin bonding systems, but the diameter of resin tag and the ratio between the diameter of resin tag and that of dentinal tubule might not.

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RF 마그네트론 코스퍼터링을 이용한 Si3N4 매트릭스 내부의 실리콘 양자점 제조연구 (Fabrication of Silicon Quantum Dots in Si3N4 Matrix Using RF Magnetron Co-Sputtering)

  • 하린;김신호;이현주;박영빈;이정철;배종성;김양도
    • 한국재료학회지
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    • 제20권11호
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    • pp.606-610
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    • 2010
  • Films consisting of a silicon quantum dot superlattice were fabricated by alternating deposition of silicon rich silicon nitride and $Si_3N_4$ layers using an rf magnetron co-sputtering system. In order to use the silicon quantum dot super lattice structure for third generation multi junction solar cell applications, it is important to control the dot size. Moreover, silicon quantum dots have to be in a regularly spaced array in the dielectric matrix material for in order to allow for effective carrier transport. In this study, therefore, we fabricated silicon quantum dot superlattice films under various conditions and investigated crystallization behavior of the silicon quantum dot super lattice structure. Fourier transform infrared spectroscopy (FTIR) spectra showed an increased intensity of the $840\;cm^{-1}$ peak with increasing annealing temperature due to the increase in the number of Si-N bonds. A more conspicuous characteristic of this process is the increased intensity of the $1100\;cm^{-1}$ peak. This peak was attributed to annealing induced reordering in the films that led to increased Si-$N_4$ bonding. X-ray photoelectron spectroscopy (XPS) analysis showed that peak position was shifted to higher bonding energy as silicon 2p bonding energy changed. This transition is related to the formation of silicon quantum dots. Transmission electron microscopy (TEM) and electron spin resonance (ESR) analysis also confirmed the formation of silicon quantum dots. This study revealed that post annealing at $1100^{\circ}C$ for at least one hour is necessary to precipitate the silicon quantum dots in the $SiN_x$ matrix.

CFRP와 금속 재료의 접합을 위한 epoxy/MWCNT의 특성 분석 (The Analysis on Properties of Epoxy/MWCNT for Bonding CFRP to Steel Plates)

  • 유성훈;권일준;신동우;박성민;염정현
    • Composites Research
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    • 제30권3호
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    • pp.215-222
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    • 2017
  • 에폭시 수지의 열적 특성과 접합 특성에 대해 다중벽 탄소 나노 튜브 (MWCNT)의 효과가 이중 중첩 전단시험에 의해 연구되었다. Epoxy/MWCNT 복합 수지는 에폭시 수지(araldite 2011)에 다양한 질량 분율로 MWCNT를 분산하여 제조되었다. MWCNT의 효과를 확인하기 위해 접합강도 시험이 열특성 변형 만능재료시험기에 의해 진행되었고 충격강도 시험이 ASTM D256에 따라 진행되었다. 금속 판재와 탄소섬유강화복합재료가 실험 재료로써 사용되었으며, 열적 안정성 분석은 열 중량 분석기와 시차 주사 열량기에 의해 진행되었다. 또한 접합강도 시험 후 시편의 형태학적 특성은 주사전자현미경에 의해 관찰되었고 파괴거동을 알아보기 위하여 광학현미경을 사용하였다. 에폭시 수지와 비교하였을 때 epoxy/MWCNT 복합 수지가 물리적 특성이 향상되는 것을 나타내었다.

Bond behavior between steel and Glass Fiber Reinforced Polymer (GFRP) bars and ultra high performance concrete reinforced by Multi-Walled Carbon Nanotube (MWCNT)

  • Ahangarnazhad, Bita Hosseinian;Pourbaba, Masoud;Afkar, Amir
    • Steel and Composite Structures
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    • 제35권4호
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    • pp.463-474
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    • 2020
  • In this paper, the influence of adding multi-walled carbon nanotube (MWCNT) on the pull behavior of steel and GFRP bars in ultra-high-performance concrete (UHPC) was examined experimentally and numerically. For numerical analysis, 3D nonlinear finite element modeling (FEM) with the help of ABAQUS software was used. Mechanical properties of the specimens, including Young's modulus, tensile strength and compressive strength, were extracted from the experimental results of the tests performed on standard cube specimens and for different values of weight percent of MWCNTs. In order to consider more realistic assumptions, the bond between concrete and bar was simulated using adhesive surfaces and Cohesive Zone Model (CZM), whose parameters were obtained by calibrating the results of the finite element model with the experimental results of pullout tests. The accuracy of the results of the finite element model was proved with conducting the pullout experimental test which showed high accuracy of the proposed model. Then, the effect of different parameters such as the material of bar, the diameter of the bar, as well as the weight percent of MWCNT on the bond behavior of bar and UHPC were studied. The results suggest that modifying UHPC with MWCNT improves bond strength between concrete and bar. In MWCNT per 0.01 and 0.3 wt% of MWCNT, the maximum pullout strength of steel bar with a diameter of 16 mm increased by 52.5% and 58.7% compared to the control specimen (UHPC without nanoparticle). Also, this increase in GFRP bars with a diameter of 16 mm was 34.3% and 45%.

산부식 전처리에 따른 2단계 자가부식 접착제의 연마 법랑질에 대한 미세인장결합강도 (The micro-tensile bond strength of two-step self-etch adhesive to ground enamel with and without prior acid-etching)

  • 김유리;김지환;심준성;김광만;이근우
    • 대한치과보철학회지
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    • 제46권2호
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    • pp.148-156
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    • 2008
  • 자가부식 접착제는 사용하기 쉽고, 술식 민감성이 적은 장점이 있으나 특히 산도가 약한 자가부식 접착제의 법랑질에 대한 결합력은 논란이 되고 있다. 본 연구에서는 2단계 자가부식 접착제인 Clearfil SE Bond (Kuraray, Okayama, Japan)의 연마 법랑질에 대한 미세인장 결합강도를 측정하여 3단계 산부식수세 접착제인 Scotchbond Multi-Purpose (3M ESPE, St. Paul, MN, USA) 및 1단계 자가부식 접착제인 iBond (Heraeus Kulzer Gmbh, Hanau, Germany)의 결합강도와 비교하고자 하였고, 2단계 자가부식 접착제에 산부식 전처리를 시행하는 것이 법랑질에 대한 결합강도를 높일 수 있는지 알아 보고자 하였다. 실험군은 2단계 자가부식 접착제인 Clearfil SE Bond만 사용한 비산부식 군과 35% 인산 (Scotchbond Etchant, 3M ESPE)으로 산부식 후 Clearfil SE Bond를 사용한 산부식 군, 그리고 1단계 자가부식 접착제인 iBond를 사용한 군으로 나누었다. 대조군은 3단계 산부식수세 접착제인 Scotchbond Multi-Purpose를 사용한 군으로 정하였다. Bovine 전치의 순면을 십자가형으로 4등분하여 각 군으로 무작위로 배분하였다. 각 치아의 순면을 800-grit 실리콘 카바이드 지로 연마한 후 삭제된 법랑질면에 제조사의 설명서에 따라 각 군의 접착제를 적용하고 Light-Core (Bisco)로 적층 충전하였다. 시편은 $37i{\acute{E}}$, 증류수에 일주일 동안 보관한 후 low speed precicion diamond saw (TOPMENT Metsaw-LS, R&B, Daejeon, Korea)를 이용하여 약 $0.8{\times}0.8mm$ 단면이 되도록 시편을 절단하여 미세시편을 제작하였다. 일주일마다 증류수를 교환하면서 한 달, 세 달 동안 $37i{\acute{E}}$, 증류수에 미세시 편을 보관한 후 각각의 미세인장결합강도를 측정하였다. 미세인장결합강도 (MPa)는 파절 시에 가해진 힘 (N)을 접착면적 ($mm^2$)으로 나누어 계산하였다. 접착계면에서의 파절 양상은 실물현미경 (Microscope-B nocular, Nikon)을 이용하여 분류하였다. 미세인장결합강도에 대한 통계분석은 one-way ANOVA를 이용하여 유의수준 5%에서 검정하였고, 사후감정은 Least Significant Difference 방법을 이용하였다. 중합 후 1개월 뒤 측정된 각각의 접착제의 평균 미세인장결합강도는 유의수준 5%에서 모든 접착제 간에 유의한 차이가 없었다. 3개월 뒤 측정된 각각의 접착제의 평균 미세인장결합강도는 유의수준 5%에서 iBond 와 Clearfil SE Bond 비산부식 군과 Scotchbond Multi- Purpose 간에는 각각 유의한 차이가 없었다. 본 연구에서는 2단계 자가부식 접착제인 Clearfil SE Bond의 연마 법랑질에 대한 미세인장결합강도가 3단계 산부식수세 접착제인 Scotchbond Multi-Purpose 와 비교하여 유의한 차이가 없었으며 (P>0.05), 3개월 후의 결과에서 Clearfil SE Bond 비산부식 군의 미세인장결합강도가 Clearfil SE Bond 산부식 군보다 유의하게 낮았다 (P<0.05). 즉 35% 인산으로 산부식 전처리를 시행한결과 Clearfil SE Bond 의 법랑질에 대한 결합강도가 증가하였다.

LiF/Al/LiF 구조를 적용한 OLED 소자의 발광 특성 (Emission Characteristics of OLEDs Using LiF/Al/LiF Structure)

  • 박연석;양재웅;주성후
    • 한국전기전자재료학회논문지
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    • 제23권9호
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    • pp.696-700
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    • 2010
  • We fabricated red and blue organic light emitting display (OLEDs) which had the two kinds of multi-structure of ITO/HIL/HTL/EML/ETL/LiF/Al and ITO/HIL/HTL/EML/ETL/LiF/Al/LiF. In the case of red OLED that had LiF/Al/LiF structure compared to LiF/Al structure, the current density increased from 4.3 mA/$cm^2$ to 7.3 mA/$cm^2$, and the brightness increased from 488 cd/$m^2$ to 1,023 cd/$m^2$ at 7.0 V, and as a result the current efficiency was improved from 11.28 cd/A to 13.95 cd/A. Also in the case of blue OLED that had LiF on Al cathode layer, the current density increased from 1.2 mA/$cm^2$ to 1.8 mA/$cm^2$, and the brightness increased from 45 cd/$m^2$ to 85 cd/$m^2$ at 7.0 V, and as a result the current efficiency was improved from 3.69 cd/A to 4.82 cd/A. Through these experimental results it could be suggested that the LiF layer formed on Al prevents the oxidation of Al surface, and the electrode resistance become low with increase of supplied electrons, therefore the brightness and the efficiency are improved from the influence to the well-balanced bonding of electron and hole at emitting layer.

언더컷 형상의 판재 성형품에 보강용 CFRP 패치의 접합을 위한 공정기술 개발 (Development of a process to apply uniform pressure to bond CFRP patches to the inner surface of undercut-shaped sheet metal parts)

  • 이환주;전용준;조훈;김동언
    • Design & Manufacturing
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    • 제14권4호
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    • pp.65-70
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    • 2020
  • Partial reinforcement of sheet metal parts with CFRP patch is a technology that can realize ultra-lightweight body parts while overcoming the high material cost of carbon fiber. Performing these patchworks with highly productive press equipment solves another issue of CFRP: high process costs. The A-pillar is the main body part and has an undercut shape for fastening with other parts such as roof panels and doors. Therefore, it is difficult to bond CFRP patches to the A-pillar with a general press forming tool. In this paper, a flexible system that applies uniform pressure to complex shapes using ceramic particles and silicone rubber is proposed. By benchmarking various A-pillars, a reference model with an undercut shape was designed, and the system was configured to realize a uniform pressure distribution in the model. The ceramic spherical particles failed to realize the uniform distribution of high pressure due to their high hardness and point contact characteristics, which caused damage to the CFRP patch. Compression equipment made of silicone rubber was able to achieve the required pressure level for curing the epoxy. Non-adhesion defects between the metal and the CFRP patch were confirmed in the area where the bending deformation occurred. This defect could be eliminated by optimizing the process conditions suitable for the newly developed flexible system.

갈륨과 Cu/Au 금속층과의 계면반응 연구 (Study on the Interfacial Reactions between Gallium and Cu/Au Multi-layer Metallization)

  • 배준혁;손윤철
    • 마이크로전자및패키징학회지
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    • 제29권2호
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    • pp.73-79
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    • 2022
  • 본 연구에서는 최근 저온접합 소재로 각광받고 있는 Ga과 대표적인 전극 물질인 Cu와의 반응연구를 실시하여 저온 솔더링 적용시 필요한 정보들을 확인하고자 하였다. 80-200℃ 온도범위에서 Ga과 Cu/Au 기판을 반응시켜 계면반응 및 금속간화합물(IMC) 성장을 관찰하고 분석하였다. 반응계면에서 성장하는 주요한 IMC는 CuGa2 상이었으며 그 상부에는 작은 입자크기를 가지는 AuGa2 IMC 그리고 하부에는 얇은 띠 형상의 Cu9Ga4 IMC가 형성되었다. CuGa2 입자들은 scallop 형상을 보이며 Cu6Sn5 성장의 경우와 비슷하게 반응시간이 증가함에 따라서 큰 형상변화없이 입자 크기가 증가하였다. CuGa2 성장기구를 분석한 결과 120-200℃ 온도범위에서 시간지수는 약 3.0으로 산출되었고, 활성화에너지는 17.7 kJ/mol로 측정되었다.