• 제목/요약/키워드: Epoxy Adhesive

검색결과 281건 처리시간 0.026초

섬유의 적층 각도에 따른 섬유 금속 적층판의 압입 손상 거동 (Stacking Sequence Effects on Indentation Damage Behaviors of Fiber Metal Laminate)

  • 남현욱;김용환;정성욱;한경섭
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 추계학술대회논문집A
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    • pp.204-209
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    • 2001
  • In this research, the effects of fiber stacking sequence on damage behaviors of FML(Fiber Metal Laminates) subject to indentation loading. SOP (Singly Oriented Ply) FML and angle ply FML were fabricated to study fiber orientation effects and angle ply effects. FML were fabricated by using 1050 aluminum laminate and carbon/epoxy prepreg. To increase adhesive bonding strength, Al laminate was etched using FPL methods. The static indentation test were conducted by using UTM(5ton, Shimadzu) under the 2side clamped conditions. During the tests, load and displacement curve and crack initiation and propagation behaviors were investigated. As fiber orientation angle increases, the crack initiation load of SOP FML increases because the stiffness induced by fiber orientation is increased. The penetration load of SOP FML is influenced by the deformation tendency and boundary conditions. However, the macro-crack of angle ply FML was initiated by fiber breakage of lower ply because angle plies in Angle ply FML prevents the crack growth and consolidation. The Angle ply FML has a critical cross-angle which prevent crack growth and consolidation. Damage behavior of Angle ply FML is changed around the critical cross-angle.

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보수된 균열을 가진 두꺼운 평판의 피로균열 성장 거동에 관한 실험적 연구 (A Experimental Study on the Fatigue Crack Growth Behavior of Thick Plate with Repaired Crack)

  • 정기현;양원호;김철;성기득
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 추계학술대회논문집A
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    • pp.292-298
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    • 2001
  • An experimental investigation of the effect of composite patching repair was conducted to characterize the fatigue crack growth behavior in thick A16061-T6 (6mm) panels with single bonded patch by fiber reinforced composite patch. Four patch lengths and no patch plate were examined. An analytical procedure, involving three-dimensional finite element method having three layers to model cracked aluminum plate, epoxy by adhesive and composite patch, is calculated the stress intensity factors. From the calculated stress intensity factors, the fatigue crack growth rates are obtained. At the single patching type, different fatigue crack growth ratios through the plate thickness were investigated by using the experimental and analytical results. The results demonstrated that there was a definite variation in fatigue life depending on the size of composite patch. While crack reached the patch end, retardation of crack growth was also revealed in the bonded repair.

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경주 은령총 출토 청동제합의 보존 (Conservation and Restoration of Bronze Bowl with a Lid Excavated From Silver Bell Tomb in Gyeougju)

  • 최희윤;허일권;안주영;박학수;유혜선
    • 박물관보존과학
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    • 제7권
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    • pp.3-10
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    • 2006
  • 경주 은령총에서 출토된 청동제 합은 과거 접합되었다가 파손된 상태로 본체의 경우 전체의 절반 정도만이 남아있어 보존 및 전시를 위해서 보존처리 하였다. 이물질 및 열화된 접착제의 제거 후 재접합 하였는데, 비교적 많은 부분이 남아있는 뚜껑은 복원부위를 쉽게 분리할 수 있는 가역적인 방법으로 처리하였다. 본체의 경우 복원부위가 많기 때문에 유물의 하중을 잘 견딜 수 있도록 에폭시수지를 사용하여 접합하였다. 합을 비파괴 조사한 결과 주조품 이었으며 재질은 Cu-Sn-Pb의 3원계 합금으로 나타났다.

친환경적인 준구조용 Poly(Ethylene/Butylene) 고무수지계 점착제의 개발 (Development of Environmentally Friendly Semi-Structure Poly(Ethylene/Butylene) Rubber-based Pressure Sensitive Adhesive)

  • 홍성택;박영준;김현중
    • 접착 및 계면
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    • 제7권2호
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    • pp.12-18
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    • 2006
  • 산업과 기술이 발전하면서 점점 더 향상된 기능과 성능이 우수한 접착제를 요구하고 있다. 고무수지의 장점, viscoelastic 한 점을 이용하고 단점을 보완하기 위하여 반구조 형태의 점착 접착제를 개발하였다. 또 용매를 이용하지 않아 요즈음에 문제가 되는 환경에도 부담을 줄이는 친환경성 점착제라 할 수 있다. 한편에 epoxy functional group과 다른 한편에 hydroxyl functional group을 함유하고 있는 poly(ethylene/butylene)과 한편에 hydroxyl functional group를 가지고 있는 poly(ethylene/butylene)에 UV 개시제를 이용하여 interpenetrating polymer network (IPN) 구조를 형성하고 여기에 점착 부여 수지로써 hydrocarbon resin을 첨가하여 고온에서 고무 수지가 갖고 있는 단점을 보완하였다.

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방사선 경화 비닐에스터 수지의 기계적 특성 연구 (Mechanical Properties of Radiation-Curing Vinyl Ester Resin)

  • 신범식;전준표;김현빈;강필현
    • 방사선산업학회지
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    • 제4권1호
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    • pp.19-23
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    • 2010
  • Vinyl ester (VE) resins, introduced in the late 1960s, have made large strides in reinforced plastics applications as adhesive and matrix materials on their appropriate mechanical performance characteristics in the glassy state. Generally, VE resins are a group of dimethacrylate resins based on bisphenol A type epoxy resin. They exhibit easy handling properties as well as good resistance to most chemical agents due to their mechanical and thermal properties. In this study, the effects of curing methods of vinyl ester resins on gel contents, flexural strength and dynamic mechanical properties were investigated. Thermal curing (room temperature, $80^{\circ}C$) and electron beam curing were used to crosslink a VE resin/styrene complex (65/35 wt%) with methyl ethyl ketone peroxide (MEKPO) as a catalyst and an 8 wt% cobalt naphthenate in styrene solution as a accelerator. For the samples, gel contents as well as flexural strength and dynamic mechanical properties were characterized and compared by soxhlet apparatus, universal testing machine (UTM) and dynamic mechanical analysis (DMA). As a result, the electron-cured VE resin was confirmed as a better condition than those for gel contents, flexural strength and dynamic mechanical properties, respectively.

열충격 시험을 통한 LED Package의 박리재현 및 특성에 관한 연구 (A Research on the reappearance of delamination and the characteristic of LED package by thermal shock test)

  • 장인혁;임홍우
    • 한국신뢰성학회지:신뢰성응용연구
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    • 제13권3호
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    • pp.207-216
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    • 2013
  • This paper, we classified LED failure mechanisms that occur due to the delamination and analyzed each of the mechanism that gives the LED PKGs the effect. Usually, the LED is composed of several materials which are LED chips, gold wire, phosphor, epoxy resin, adhesive, reflector and lead frame. These different materials are usually delaminated in trouble conditions which are huge temperature difference, hot and humid or mechanical shocked. When the components are delaminated, a luminance will be lost and moisture be absorbed easily, a thermal resistance be increased attendantly. In this paper, we experimented to investigate failure mechanism of the thermal resistance and failure mechanism of the decrease of luminance that occur due to the delamination. A thermal shock test was performed to reproduce this phenomena by subjecting samples to a cold-hot cyclling process between $-30^{\circ}C$(15min) and $110^{\circ}C$(15min). The samples were inspected at 200, 600 and 1,000 cycles. We measured feature of LED using the spatial analyzer, optical microscope, thermal resistance, photometer, scanning electron microscope (SEM). As a result, the progression of the crack and the thermal resistance and decrease in luminance are proportional to number of thermal shock.

Analysis on an improved resistance tuning type multi-frequency piezoelectric spherical transducer

  • Qin, Lei;Wang, Jianjun;Liu, Donghuan;Tang, Lihua;Song, Gangbing
    • Smart Structures and Systems
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    • 제24권4호
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    • pp.435-446
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    • 2019
  • The existing piezoelectric spherical transducers with fixed prescribed dynamic characteristics limit their application in scenarios with multi-frequency or frequency variation requirement. To address this issue, this work proposes an improved design of piezoelectric spherical transducers using the resistance tuning method. Two piezoceramic shells are the functional elements with one for actuation and the other for tuning through the variation of load resistance. The theoretical model of the proposed design is given based on our previous work. The effects of the resistance, the middle surface radius and the thickness of the epoxy adhesive layer on the dynamic characteristics of the transducer are explored by numerical analysis. The numerical results show that the multi-frequency characteristics of the transducer can be obtained by tuning the resistance, and its electromechanical coupling coefficient can be optimized by a matching resistance. The proposed design and derived theoretical solution are validated by comparing with the literature given special examples as well as an experimental study. The present study demonstrates the feasibility of using the proposed design to realize the multi-frequency characteristics, which is helpful to improve the performance of piezoelectric spherical transducers used in underwater acoustic detection, hydrophones, and the spherical smart aggregate (SSA) used in civil structural health monitoring, enhancing their operation at the multiple working frequencies to meet different application requirements.

Impact resistance efficiency of bio-inspired sandwich beam with different arched core materials

  • Kueh, Ahmad B.H.;Tan, Chun-Yean;Yahya, Mohd Yazid;Wahit, Mat Uzir
    • Steel and Composite Structures
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    • 제44권1호
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    • pp.105-117
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    • 2022
  • Impact resistance efficiency of the newly designed sandwich beam with a laterally arched core as bio-inspired by the woodpecker is numerically investigated. The principal components of the beam comprise a dual-core system sandwiched by the top and bottom laminated CFRP skins. Different materials, including hot melt adhesive, high-density polyethylene (HDPE), acrylonitrile butadiene styrene (ABS), epoxy resin (EPON862), aluminum (Al6061), and mild carbon steel (AISI1018), are considered for the side-arched core layer of the beam for impact efficiency assessment. The aluminum honeycomb takes the role of the second core. Contact force, stress, damage formation, and impact energy for beams equipped with different materials are examined. A diversity in performance superiority is noticed in each of these indicators for different core materials. Therefore, for overall performance appraisal, the impact resistance efficiency index, which covers several chief impact performance parameters, of each sandwich beam is computed and compared. The impact resistance efficiency index of the structure equipped with the AISI1018 core is found to be the highest, about 3-10 times greater than other specimens, thus demonstrating its efficacy as the optimal material for the bio-inspired dual-core sandwich beam system.

열충격시험을 통한 LED 박리 평가법에 관한 연구 (LED Delamination Evaluating Method by Thermal Shock Test)

  • 장인혁;한지훈;고민지;이영주;임홍우
    • 공학기술논문지
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    • 제6권2호
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    • pp.121-124
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    • 2013
  • This paper proposed a new concept of estimating method for LED(light-emitting diode) delamination with high accuracy. Usually, The LED is composed several materials which are LED chips, gold wire, phosphor, epoxy resin, adhesive, reflector and lead frame. These different materials are usually delaminated in a trouble conditions which are huge temperature difference, hot and humid or mechanical shocked. When the components are delaminated, a luminance will be lost, moisture be absorbed easily and a thermal resistance be increased attendantly. As a conventional method to estimate a delamination of LEDs, a solution immersing method is usually used in a field of LED manufacturing companies or researching institutes. This method has an advantage of simplicity but it is only shown that the existence of delamination or not. In this paper, we have proposed an estimating method for LEDs delamination using the polishing and the electron microscope. New proposed method has shown the result of confirming delamination without destruction and enabled quantitative analysis for LED delamination.

가역성이 우수한 도자기 복원용 Urethane resin의 개발 및 물성에 대한 연구 (Study on the Development and Properties of Ceramics Restoration Purpose Urethane resin with Excellent Reversibility)

  • 오승준;박기정;위광철
    • 보존과학회지
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    • 제31권1호
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    • pp.37-46
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    • 2015
  • 현재 토기 및 도자기를 보존처리 할 때 사용되고 있는 접착 복원제의 경우 크게 Epoxy계, Cellulose계, Cyanoacrylate계 등이 사용되고 있으나 재료에 따라 심한 수축으로 인한 재탈락, 황변 현상으로 인한 색상 변화, 사용시 도구와 손에 묻어나오는 불편한 작업성, 비가역성 등 다양한 문제점을 나타내고 있다. 본 연구에서는 도자기 복원용으로 사용되고 있는 Epoxy resin의 황변 현상과 비가역성의 문제점 해결을 목적으로 저황변, 가역성이 우수한 Urethane계 합성수지를 개발하였다. 개발된 Urethane resin의 접착력은 원액 2.07MPa로 기존 재료인 $EPO-TEK301^{(R)}$ 1.21MPa로 1.5배 이상의 우수한 물성을 지니고 있다. 가공성 측정 결과 Urethane resin(in Talc 50wt%)의 마모율이 1.09%로 기존 재료인 Quick $Wood^{(R)}$(1.02%)의 마모율 보다는 다소 높게 측정되었으며, EPO-$TEK301^{(R)}$(0.41%)와 $L30^{(R)}$ (0.39%)보다 는 2배 이상의 마모율을 보이고 있어 기존의 재료보다 쉽게 성형 과정이 이루어질 수 있는 장점을 지니고 있다. Urethane resin의 장점인 가역성 실험은 Acetone, Ethyl Alcohol 침적 후 12시간 경과 후 Urethane resin과 충전제인 Talc가 분말화 현상을 나타내며 100% 용해되었으며, 기존 Epoxy resin의 가역성이 0%인 것에 비해 매우 우수한 가역성을 지니고 있다. 내구성 평가를 위한 자외선 실험 결과 Urethane resin의 원액 기준 ${\Delta}E^*ab$ 색상 변화 값이 자외선 노출 전 후 2.76로 기존의 Epoxy resin보다 약 7~20배 정도 줄어 황변 현상으로 인한 이질감의 문제점을 최소화하였다.