• 제목/요약/키워드: interface adhesive layer

검색결과 96건 처리시간 0.024초

Flexural performance of wooden beams strengthened by composite plate

  • Tahar, Hassaine Daouadji;Abderezak, Rabahi;Rabia, Benferhat
    • Structural Monitoring and Maintenance
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    • 제7권3호
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    • pp.233-259
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    • 2020
  • Using bonded fiber-reinforced polymer laminates for strengthening wooden structural members has been shown to be an effective and economical method. In this research, properties of suitable composite materials (sika wrap), adhesives and two ways of strengthening beams exposed to bending moment are presented. Passive or slack reinforcement is one way of strengthening. The most effective way of such a strengthening was to place reinforcement laminates in the stretched part of the wooden beam (lower part in our case), in order to investigate the effectiveness of externally bonding FRP to their soffits. The model is based on equilibrium and deformations compatibility requirements in and all parts of the strengthened beam, i.e., the wooden beam, the sika wrap composite plate and the adhesive layer. The theoretical predictions are compared with other existing solutions. This research is helpful for the understanding on mechanical behaviour of the interface and design of the composite-wooden hybrid structures. The results showed that the use of the new strengthening system enhances the performance of the wooden beam when compared with the traditional strengthening system.

Performance of damaged RC continuous beams strengthened by prestressed laminates plate: Impact of mechanical and thermal properties on interfacial stresses

  • Tahar, Hassaine Daouadji;Abderezak, Rabahi;Rabia, Benferhat;Tounsi, Abdelouahed
    • Coupled systems mechanics
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    • 제10권2호
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    • pp.161-184
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    • 2021
  • Strengthening of reinforced concrete beams with externally bonded fiber reinforced polymer plates/sheets technique has become widespread in the last two decades. Although a great deal of research has been conducted on simply supported RC beams, a few studies have been carried out on continuous beams strengthened with FRP composites. This paper presents a simple uniaxial nonlinear analytical model that is able to accurately estimate the load carrying capacity and the behaviour of damaged RC continuous beams flexural strengthened with externally bonded prestressed composite plates on both of the upper and lower fibers, taking into account the thermal load. The model is based on equilibrium and deformations compatibility requirements in and all parts of the strengthened beam, i.e., the damaged concrete beam, the FRP plate and the adhesive layer. The flexural analysis results and analytical predictions for the prestressed composite strengthened damaged RC continuous beams were compared and showed very good agreement in terms of the debonding load, yield load, and ultimate load. The use of composite materials increased the ultimate load capacity compared with the non strengthened beams. The major objective of the current model is to help engineers' model FRP strengthened RC continuous beams in a simple manner. Finally, this research is helpful for the understanding on mechanical behaviour of the interface and design of the FRP-damaged RC hybrid structures.

Predicting and analysis of interfacial stress distribution in RC beams strengthened with composite sheet using artificial neural network

  • Bensattalah Aissa;Benferhat Rabia;Hassaine Daouadji Tahar
    • Structural Engineering and Mechanics
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    • 제87권6호
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    • pp.517-527
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    • 2023
  • The severe deterioration of structures has led to extensive research on the development of structural repair techniques using composite materials. Consequently, previous researchers have devised various analytical methods to predict the interface performance of bonded repairs. However, these analytical solutions are highly complex mathematically and necessitate numerous calculations with a large number of iterations to obtain the output parameters. In this paper, an artificial neural network prediction models is used to calculate the interfacial stress distribution in RC beams strengthened with FRP sheet. The R2value for the training data is evaluated as 0.99, and for the testing data, it is 0.92. Closed-form solutions are derived for RC beams strengthened with composite sheets simply supported at both ends and verified through direct comparisons with existing results. A comparative study of peak interfacial shear and normal stresses with the literature gives the usefulness and effectiveness of ANN proposed. A parametrical study is carried out to show the effects of some design variables, e.g., thickness of adhesive layer and FRP sheet.

Analysis and modeling of hyperstatic RC beam bonded by composite plate symmetrically loaded and supported

  • Abderezak, Rabahi;Daouadji, Tahar Hassaine;Rabia, Benferhat
    • Steel and Composite Structures
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    • 제45권4호
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    • pp.591-603
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    • 2022
  • The flexural strengthening of reinforced concrete beams by external bonding of composite materials has proved to be an efficient and practical technique. This paper presents a study on the flexural performance of reinforced concrete continuous beams with three spans (one span and two cantilevered) strengthened by bonding carbon fiber fabric (CFRP). The model is based on equilibrium and deformations compatibility requirements in and all parts of the strengthened continuous beam, i.e., the continuous concrete beam, the FRP plate and the adhesive layer. The adherend shear deformations have been included in the present theoretical analyses by assuming a linear shear stress through the thickness of the adherends. Remarkable effect of shear deformations of adherends has been noted in the results. The theoretical predictions are compared with other existing solutions that shows good agreement, and It shows the effectiveness of CFRP strips in enhancing shear capacity of continuous beam. It is shown that both the normal and shear stresses at the interface are influenced by the material and geometry parameters of the composite beam.

공초점레이저주사현미경을 이용한 심미수복재와 상아질의 접착계면에 관한 연구 (A CONFOCAL LASER SCANNING MICROSCOPIC STUDY ON THE INTERFACE BETWEEN TOOTH COLORED RESTORATIVE MATERIALS AND DENTIN)

  • 박병철;조영곤;문주훈
    • Restorative Dentistry and Endodontics
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    • 제25권3호
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    • pp.313-320
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    • 2000
  • The purpose of this study was to evaluate on the interfacial morphology between dentin and restorative materials. In this in vitro study, the cavity wall restorated with 3 different kinds of tooth colored restorative materials [resin-modified Glass Ionomer cement (Fuji II LC), composite resin (Z-100), compomer (Dyract)]. The thirty extracted human molar teeth without caries and/or restorations are used. The experimental teeth were randomly divided into three groups of ten teeth each. In each group, Wedge shaped cavities (width: 3mm, length: 2mm, depth: 1.5mm) were prepared at the cementoenamel junction on buccal and lingual surfaces. The adhesive of composite resin were mixed with rhodamine B. Primer of composite resin, Prime & Bond 2.1 of Dyract and liquid of Fuji II LC were mixed with fluorescein. In group 1, the cavity wall was treatment with dentin conditioner, and then restorated with Fuji II LC. In group 2, the cavity wall was treatment with Prime & Bond 2.1 and then restorated with Dyract. In group 3, the cavity wall was etching with 10% maleic acid, applied with primer and bonding agent and then restorated with Z-100. The interface between dentin and restorative materials was observed by fluoresence imaging with a confocal laser scanning microscope. The results were as follows : 1. In Glass ionomer group, adaptation of resin modified Glass-ionomer restoration against cavity wall is tight, but the crack formed inside of restoration were observed. 2. In Dyract group, the penetration of resin tag is shorter and the width of hybrid layer is narrower than composite resin group. 3. In Z-100 group, primer penetrated deeply through dentinal tubule. Also bonding agent was penetrated along the primer, but the penetration length is shorter than primer part, and in 3-D image, the resin tag is conical shape and lateral branch is observed.

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Analytic adherend deformation correction in the new ISO 11003-2 standard: Should it really be applied?

  • Ochsner, A.;Gegner, J.;Gracio, J.
    • 접착 및 계면
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    • 제5권2호
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    • pp.14-26
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    • 2004
  • For reliable determination of mechanical characteristics of adhesively bonded joints used e.g. as input data for computer-aided design of complex components, the thick-adherend tensile-shear test according to ISO 11003-2 is the most important material testing method. Although the total displacement of the joint is measured across the polymer layer directly in the overlap zone in order to minimize the influence of the stepped adherends, the substrate deformation must be taken into account within the framework of the evaluation of the shear modulus and the maximum shear strain, at least when high-strength adhesives are applied. In the standard ISO 11003-2 version of 1993, it was prescribed to perform the substrate deformation correction by means of testing a one-piece reference specimen. The authors, however, pointed to the excessive demands on the measuring accuracy of the extensometers connected with this technique in industrial practice and alternatively proposed a numerical deformation analysis of a dummy specimen. This idea of a mathematical correction was included in the revised ISO 11003-2 version of 2001 but in the simplified form of an analytical method based on Hooke's law of elasticity for small strains. In the present work, it is shown that both calculation techniques yield considerably discordant results. As experimental assessment would require high-precision distance determination (e.g. laser extensometer), finite element analyses of the deformation behavior of the bonded joint are performed in order to estimate the accuracy of the obtained substrate deformation corrections. These simulations reveal that the numerical correction technique based on the finite element deformation modeling of the reference specimen leads to considerably more realistic results.

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우치에 대한 All-in-one 상아질 결합제의 전단결합강도 비교 연구 (STUDY ON THE SHEAR BOND STRENGTH OF ALL-IN-ONE DENTIN BONDING SYSTEM)

  • 박형주;유승훈;김종수
    • 대한소아치과학회지
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    • 제33권4호
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    • pp.661-672
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    • 2006
  • 우치 60개를 준비하여 법랑질과 상아질에 대하여 각각 1군 AQ Bond, 2군 AQ Bond $Plus^{TM}$, 3군 Single $Bond^{TM}$로 설정하고, 군당 10개씩 배정하였고, 군당 혼화층 관찰에 5개와 resin tag 관찰을 위해 5개씩 배정하였다. 준비된 우치의 법랑질과 상아질을 노출시킨 후 제조사의 지시에 따라 표면을 처리하고, 내경 3mm의 폴리에틸렌 튜브를 이용하여 $Z-250^{TM}$ 복합레진 접착을 시행하였다. 100% 습윤 상태에서 24시간동안 보관 후 $5^{\circ}C$$55^{\circ}C$ 조건하에서 500회 열순환을 시행하였다. 만능시험기를 분당 cross head speed 5mm 속도로 설정하고 100kg F load cell을 사용하여 전단결합강도를 측정하고 파절된 시편들을 수거하여 주사전자현미경으로 파절면을 관찰하였다. 혼화층과 resin tag 관찰을 위하여 상아질 접착면에 대해 수직으로 절단하고 인산과 질산으로 처리한 후 주사전자현미경으로 관찰하였다. 이상의 결과를 토대로 행동 조절에 어려움이 많은 소아 환자의 복합레진 수복시 적용 과정 및 시간 단축이 장점으로 부각되고 있는 all-in-one system의 임상 적용 가능성을 평가하고 다음과 같은 결론을 얻었다. 1. 전단 결합 강도 측정결과 1군, 2군 간에는 유의차가 없었으나, 3군이 1군과 2군에 비해 높은 전단 결합 강도를 보였으며 통계학적 유의차를 보였다 (p<0.05). 2. 파절 양상 관찰 결과 1군과 2군의 법랑질과 상아질 모두에서 그리고 3군의 상아질에서 주로 adhesive fracture 양상을 보였으며, 3군 법랑질에서 각각 cohesive와 adhesive fracture가 균등한 분포를 보였다. 3. 주사 전자 현미경 소견에서 1군과 2군은 resin tag형성이 매우 미약하고 불규칙한 양상을 보인 반면, 3군에서는 비교적 긴밀하게 형성된 resin tag이 관찰되었으며 resin tag의 표면에 형성된 뚜렷한 측부 가지들도 발견되었다.

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Steel Mesh Cement Mortar의 보수⋅보강 성능 평가 (Experimental Performance Evaluation of Steel Mesh as Maintenance and Reinforcement Materials)

  • 김연상;최승재;김장호
    • 한국구조물진단유지관리공학회 논문집
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    • 제18권4호
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    • pp.50-58
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    • 2014
  • 신축공사의 비용에 대한 부담과 건설된 지 오래되어 노후화가 진행된 철근콘크리트 구조물의 증가로 유지관리의 필요성이 크게 증가하여 점차적으로 보수 보강 분야가 확대되고 있다. 이러한 필요성의 증가로 인해 새로운 보수 보강 기술이 국내 외에서 지속적으로 연구되고 있다. 국내에서는 철근콘크리트 구조물의 보수 보강공법으로 강판접착공법, 섬유보강 (Fiber reinforced plastic, 이하 FRP) 표면부착공법, 외부 프리스트레싱공법 등이 사용되고 있다. 이러한 방법 외 Steel mesh로 보강한 시멘트 모르타르 (Steel Mesh Cement Mortar; SMCM)을 이용한 보수방법을 고려하고자, Steel mesh 의 보강 면적, 그리고 보강 층 수 (number of layer)를 달리하여, 3점 휨 부재 실험을 수행하였다. $1400{\times}500{\times}200$ (mm)의 기본 철근 콘크리트 (RC)를 포함하여 총 5종류의 시편을 제작하였으며, 처짐량을 측정하기 위해, 시편 상부에 LVDT를 설치하였으며, 시편 중앙부에 철근 변형률 게이지와 콘크리트 변형률 게이지, 전단 철근에 철근 변형률 게이지를 부착하였다. 3점 휨 실험 결과, 모든 하중-변위 곡선에서 공통적으로 SMCM으로 보강한 시편이 기본 RC에 비해 최대하중이 더 높은 것을 확인할 수 있었다. SMCM을 두 층, 그리고 기본 RC 하부 전체에 보강을 할 경우, 기본 RC에 비해 최대 하중은 1.18배, 처짐은 최대 1.37배 더 높은 것을 확인할 수 있었다. 시편의 종류마다 조금씩 다른 양상을 보였는데, 이는 SMCM과 RC의 부착 정도의 차이로 인해 결과의 차이가 발생한 것으로 보인다. 특히, 지점부 안쪽으로 부분 보강하고, Steel Mesh를 한 겹으로 보강한 네 번째 경우 (SM-B1)에는, SMCM이 실험 도중 박락되는 현상이 발생하였다. SMCM을 보수 보강 재료로서 활용하기 위해선 RC와의 부착 성능 향상이 필요하다고 판단된다.

Modeling of nonlinear cyclic response of shear-deficient RC T-beams strengthened with side bonded CFRP fabric strips

  • Hawileh, Rami A.;Abdalla, Jamal A.;Tanarslan, Murat H.;Naser, Mohannad Z.
    • Computers and Concrete
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    • 제8권2호
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    • pp.193-206
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    • 2011
  • The use of Carbon Fiber Reinforced Polymers (CFRP) to strengthen reinforced concrete beams under bending and shear has gained rapid growth in recent years. The performance of shear strengthened beams with externally bonded CFRP laminate or fabric strips is raising many concerns when the beam is loaded under cyclic loading. Such concerns warrant experimental, analytical and numerical investigation of such beams under cyclic loading. To date, limited investigations have been carried out to address this concern. This paper presents a numerical investigation by developing a nonlinear finite element (FE) model to study the response of a cantilever reinforced concrete T-beam strengthened in shear with side bonded CFRP fabric strips and subjected to cyclic loading. A detailed 3D nonlinear finite element model that takes into account the orthotropic nature of the polymer's fibers is developed. In order to simulate the bond between the CFRP sheets and concrete, a layer having the material properties of the adhesive epoxy resin is introduced in the model as an interface between the CFRP sheets and concrete surface. Appropriate numerical modeling strategies were used and the response envelope and the load-displacement hysteresis loops of the FE model were compared with the experimental response at all stages of the cyclic loading. It is observed that the responses of the FE beam model are in good agreement with those of the experimental test. A parametric study was conducted using the validated FE model to investigate the effect of spacing between CFRP sheets, number of CFRP layers, and fiber orientation on the overall performance of the T-beam. It is concluded that successful FE modeling provides a practical and economical tool to investigate the behavior of such strengthened beams when subjected to cyclic loading.

Numerical modeling and prediction of adhesion failure of adhesively bonded composite T-Joint structure

  • Panda, Subhransu K;Mishra, Pradeep K;Panda, Subrata K
    • Structural Engineering and Mechanics
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    • 제74권6호
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    • pp.723-735
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    • 2020
  • This study is reported the adhesion failure in adhesive bonded composite and specifically for the T-joint structure. Three-dimensional finite element analysis has been performed using a commercial tool and the necessary outcomes are obtained via an eight noded solid element (Solid 185-element) from the library of ANSYS. The structural analysis input has been incurred through ANSYS parametric design language (APDL) code. The normal and shear stress distributions along different layers of the joint structure have been evaluated as the final outcomes. Based on the stress distributions, failure location in the composite joint structure has been identified by using the Tsai-Wu stress failure criterion. It has been found that the failure index is maximum at the interface between flange and web part of the joint (top layer) which indicates the probable location of failure initiation. This kind of failures are considered as adhesion failure and the failure propagation is governed by strain energy release rate (SERR) of fracture mechanics. The different adhesion failure lengths are also considered at the failure location to calculate the SERR values i.e. mode I fracture (opening), mode II fracture (sliding) and mode III fracture (tearing) along the failure front. Also, virtual crack closure technique (VCCT) principle of fracture mechanics steps is used to calculate the above said SERRs. It is found that the mode I SERR is more dominating compared to other two modes of failure for the joint considered. Finally, the influences of various parametric (geometrical and material) effect on SERR of the joint structure are evaluated and discussed in details.