• 제목/요약/키워드: Adhesive bonding strength

검색결과 541건 처리시간 0.02초

Results of Delamination Tests of FRP- and Steel-Plate-Reinforced Larix Composite Timber

  • LEE, In-Hwan;SONG, Yo-Jin;SONG, Da-Bin;HONG, Soon-Il
    • Journal of the Korean Wood Science and Technology
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    • 제47권5호
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    • pp.655-662
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    • 2019
  • This study evaluated the multi-bonding performances of timbers as well as those of reinforcement and timber to obtain data for preparing guidelines regarding the use of timbers as large structural members. For the multi-bonding performances of timbers, four types of bonding surfaces were prepared according to the pith position. For the bonding performances of FRP (fiber-reinforced plastic)/steel plate and timber, a total of 11 types of specimens were produced for the selection of the appropriate adhesive. The bonding performances of the produced specimens were evaluated through a water soaking delamination test, a water boiling delamination test, and a block shear strength test. The test results showed that the bonding strength of the bonding surface according to the pith position was highest in the specimen for which the two sections with the pith at the center of the cross-section on timber and between the bonding surfaces (the tangential and radial sections were mixed) were bonded. Furthermore, the specimens for which the section (radial section) with the pith on the bonding surface of the timber was bonded showed a high delamination percentage. The results of the block shear strength test showed that the bonding section did not have a significant effect on the shear strength, and that the measured wood failure percentage was higher than the KS standard value. The PVAc adhesive showed the highest bonding strength between larix timber and GFRP (glass FRP). Furthermore, the epoxy and polyurethane adhesives showed good bonding strength for CFRP (carbon FRP) and structure steel, respectively.

고분자 접착제와 금속 피착재의 접착강도에 미치는 피착재 두께의 영향 (Effects of Adherend Thickness on Adhesive Strength between Organic Adhesive and Metal Adherend)

  • 하윤근;심준형;백주환;김민균;조영래
    • 마이크로전자및패키징학회지
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    • 제27권4호
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    • pp.127-133
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    • 2020
  • 고분자 재료인 접착제와 금속 피착재 사이의 정량적인 접착강도 측정은 중요하다. 고분자 재료인 접착제와 금속 피착재 사이의 접착강도 측정 시, 피착재의 종류와 두께 변화가 접착강도에 미치는 영향에 대해 연구하였다. 금속 피착재의 종류로는 알루미늄과 스텐리스강 2종류가 선택되었으며, 접착강도의 측정에는 돌리테스트와 전단시험이 사용되었다. 인장응력 방식의 돌리테스트로 고분자 접착제와 금속 피착재 사이의 접착강도 측정 시, 금속 피착재의 두께 변화는 접착강도의 크기에 거의 영향을 미치지 않았으나, 피착재의 종류에 따라 접착강도는 다르게 나타났다. 반면, 전단시험으로 고분자 접착제와 금속 피착재 사이의 접착강도 측정 시, 금속 피착재의 상대적 두께 변화는 접착강도의 크기에 영향을 주었다. 이유는 전단시험 시 접착부의 모서리 부분에서 발생하는 피착재의 휘어짐 현상은 접착부에 추가적인 인장응력을 발생시켜 접착강도를 낮추는데 기여하기 때문이다. 이 연구의 결과, 돌리테스트는 피착재의 두께가 변해도 접착강도의 변화가 거의 없기 때문에 고분자 접착제와 금속 피착재의 정량적인 접착강도 측정 시 널리 사용될 것으로 예상된다.

탄소복합재 접착공정을 위한 CFRP의 레이저 표면처리 기법의 적용 (Application of Laser Surface Treatment Technique for Adhesive Bonding of Carbon Fiber Reinforced Composites)

  • 황문영;강래형;허몽영
    • Composites Research
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    • 제33권6호
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    • pp.371-376
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    • 2020
  • 접착강도는 표면처리 기술을 통해 향상시킬 수 있다. 가장 일반적인 방법은 기계적인 결합력을 향상시킬 수 있는 접착 표면의 변화이다. 본 연구는 접착면의 레이저 표면 처리가 기계적 결합력에 미치는 영향과 탄소섬유 강화 복합재료(CFRP)의 접착 결합에 대해 설명한다. 1064 nm의 레이저를 활용하여 표면 조도를 패턴화했다. 레이저 샷의 수, 패턴의 방향, 길이가 CFRP/CFRP 단일 조인트의 접착력에 미치는 영향을 인장 시험을 통해 조사했다. ASTM D5868에 따른 시험을 수행하였으며, 파단 후 손상된 표면을 분석하여 결합 메커니즘을 결정했다. 접착 강도의 증가를 위해서는 CFRP 표면에 최적화된 레이저 샷의 수와 조도 깊이가 구성되어야 한다. 인장방향에서의 전단응력을 고려할 때, 접착층의 파단 경로를 길어지게 하는 45°의 방향의 조도가 접착강도의 증가를 야기했다. 그러나 레이저에 의한 조도의 길이는 접착 강도에 크게 영향을 주지 못했다. 레이저를 이용한 접착면의 표면처리는 기계적 결합 메커니즘을 확보하고 CFRP 접착 조인트의 접착 강도를 향상시키는 적합한 방법이라는 결론을 도출할 수 있다. 레이저 처리를 이용한 이점을 완전히 이용하기 위해서는 최적화된 레이저 공정 변수에 대한 연구가 반드시 필요하다.

Glass ionomer cement의 상아질 결합력에 관한 연구 (BONDING STRENGTH OF GLASS-IOMOMER CEMENT AND COMPOSITE RESIN COMBINATION)

  • 엄정문
    • Restorative Dentistry and Endodontics
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    • 제19권2호
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    • pp.633-640
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    • 1994
  • The tensile bond strength to dentin was measured for three glass-ionomer cement and composite resin combinations: two light-curing glass-ionomer cements(Vitrebond and XR - Ionomer) and one traditional glass - ionomer cement(Ketac - Bond), two adhesive systems(Scotchbond, and XR - Bonding System), and a corresponding composite resin. The bond strength of this "sandwich" was also compared with that of the same cements used in bulk. Vitredbond showed a significantly higher bond strength in bulk than did the other two cements. Of the sandwiches, the XR - Iomomer and XR - Bond combination showed a bond strength significantly higher than that of the Vitrebond and Scotchbond or Ketac- bond and Scotchbond combination. The fracture of the bond was mainly adhesive for Vitrebond, cohesive for XR - Ionomer when used in bulk and adhesive - cohesive when used in a sandwich, and cohesive for Ketac-Bond.

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Shear Strength of an Aluminum Alloy Bonded with a DP-460 Adhesive: Single Lap-shear Joints

  • Kim, Hyun-Bum;Nishida, Tomohisa;Oguma, Hiroyuki;Naito, Kimiyoshi
    • 접착 및 계면
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    • 제21권1호
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    • pp.20-26
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    • 2020
  • Single lap-shear joints (SLJ) specimens with and without partial round fillets were fabricated to measure the average shear strength of adhesives. The effects of the length of the adherend on the SLJ specimens were also investigated. An epoxy adhesive was used to bond aluminum alloy. Tensile tests were performed on the adhesive bulk specimens to measure the mechanical properties. The finite element analysis (FEA) method was used to measure the adhesive stress distributions, i.e., the peel and shear stresses, on the bonded part. The experimental results revealed that the specimen consisting short length of adherend and without the partial round fillets exhibited the smallest average shear strength of adhesive among the investigated specimens. FEA revealed that the low average shear strength for the specimen with a short adherend length was caused by high stress concentrations on the adhesive at the edge of the bonded part.

상아질 결합제가 컴포머의 불소유리에 미치는 영향에 관한 연구 (A STUDY ON THE EFFECT OF DENTIN ADHESIVE TO FLUORIDE RELEASE OF COMPOMER)

  • 윤여상;김종수;권순원;김용기
    • 대한소아치과학회지
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    • 제28권2호
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    • pp.228-237
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    • 2001
  • 본 연구의 목적은 와동 충전시 충전재와 치질 사이에 개재되는 상아질 결합제가, 수복물에서 유리되는 불소가 와동 벽으로 침투하는 과정에 어떠한 영향을 주는지를 조사함이었고, 부가적으로 레진 강화형-글라스 아이오노머 시멘트의 접착에도 상아질 결합제를 도포 하는것이 치질과의 결합력을 강화시킬 수 있는지에 대해 평가하고자 하였다. Fuji II $LC^{(R)}$와 Dyract $AP^{(R)}$를 선정하여 상아질 결합제의 도포 여부에 따른 불소 유리량 측정과 전단 결합 강도를 비교분석하였으며, 치질 내로의 불소 침투 양상은 교환 시기에 있는 제2유구치에 Fuji II $LC^{(R)}$와 Dyract $AP^{(R)}$를 충전하고 3주내에 발거하여 EPMA로 분석하였다. 상아질 결합제는 불소 유리량을 현저하게 감소시키는 것으로 나타났으며(p<0.05) Fuji II $LC^{(R)}$의 경우 상아질 결합제의 도포가 결합강도를 증가시키지 못하였다. EPMA 분석결과 상아질 결합제는 충전재로부터 유리되어 나오는 불소가 치질 내로 확산되는 것을 방해하는 것으로 확인되었다.

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Evaluation of Shear Bond Strength and Microleakage of Self-adhesive Giomer

  • Gwangsuk Kim;Juhyun Lee;Haeni Kim;Howon Park
    • 대한소아치과학회지
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    • 제50권4호
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    • pp.434-442
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    • 2023
  • This study was aimed to evaluate the bonding performance of a self-adhesive giomer and compare it to a conventional flowable composite resin with regard to shear bond strength and microleakage in enamel and dentin. Healthy human premolars extracted for orthodontic treatments were used in the study. For shear bond strength tests, enamel and dentin specimens were prepared for the study group with self-adhesive giomer and for the control group with conventional flowable composite resin with a 5th-generation adhesive system. A universal testing machine was used to measure the shear bond strength. For the microleakage tests, specimens were immersed in a 2% methylene blue solution for 24 hours, cut into sections, and evaluated with a stereomicroscope for the extent of dye penetration. The results of the study showed no statistically significant difference in shear bond strength between the self-adhesive giomer and the conventional flowable composite resin in enamel (p = 0.091). On the contrary, in dentin, the self-adhesive giomer showed significantly lower shear bond strength (p < 0.0001). The microleakage of the self-adhesive giomer was significantly higher than that of the conventional flowable composite resin (p = 0.002). Self-adhesive giomer is considered useful for restoring small cavities at the enamel level of pediatric patients by reducing chair time with the advantage of a simple bonding process. However, as the study was conducted in a laboratory setting, further research in a clinical environment is deemed necessary.

Effects of different primers on indirect orthodontic bonding: Shear bond strength, color change, and enamel roughness

  • Tavares, Mirella Lemos Queiroz;Elias, Carlos Nelson;Nojima, Lincoln Issamu
    • 대한치과교정학회지
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    • 제48권4호
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    • pp.245-252
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    • 2018
  • Objective: We aimed to perform in-vitro evaluation to compare 1) shear bond strength (SBS), adhesive remnant index (ARI), and color change between self-etched and acid-etched primers; 2) the SBS, ARI and color change between direct and indirect bonding; and 3) the enamel roughness (ER) between 12-blade bur and aluminum oxide polisher debonding methods. Methods: Seventy bovine incisors were distributed in seven groups: control (no bonding), direct (DTBX), and 5 indirect bonding (ITBX, IZ350, ISONDHI, ISEP, and ITBXp). Transbond XT Primer was used in the DTBX, ITBX, and ITBXp groups, flow resin Z350 in the IZ350 group, Sondhi in the ISONDHI group, and SEP primer in the ISEP group. SBS, ARI, and ER were evaluated. The adhesive remnant was removed using a low-speed tungsten bur in all groups except the ITBXp, in which an aluminum oxide polisher was used. After coffee staining, color evaluations were performed using a spectrophotometer immediately after staining and prior to bonding. Results: ISONDHI and ISEP showed significantly lower SBS (p < 0.01). DTBX had a greater number of teeth with all the adhesive on the enamel (70%), compared with the indirect bonding groups (0-30%). The ER in the ITBX and ITBXp groups was found to be greater because of both clean-up techniques used. Conclusions: Direct and indirect bonding have similar results and all the primers used show satisfactory adhesion strength. Use of burs and polishers increases the ER, but polishers ensure greater integrity of the initial roughness. Resin tags do not change the color of the teeth.

Surface Preparation and Activation Only by Abrasion and Its Effect on Adhesion Strength

  • Ali Gursel;Salih Yildiz
    • 접착 및 계면
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    • 제23권4호
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    • pp.101-107
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    • 2022
  • Adhesive joints have many advantages such as weight savings, corrosion and fatigue resistance and now developed even withstand of high impact and dynamic loads. However, an adhesion has cumbersome and complicated surface preparation processes. The surface preparation step is critical in adhesive joint manufacturing in order to obtain the prescribed strength for adhesive joints. In this study, it was attempted to simplify and reduce the number of surface preparation steps, and abrasion and rapid adhesive application (ARAA) process is developed for an alternative solution. The abrasion processes are performed only for creating surface roughness in standard procedures (SP), although the abrasion processes cause surface activation itself. The results showed that there is no need the long procedures in laboratory or chemical agents for adhesion. After the abrasion process, the attracted and highly reactive fresh surface layer obtained, and its effect on bonding success is observed and analyzed in this research, in light of the essential physic and adhesion theories. Al 6061 aluminum adherends and epoxy-based adhesives were chosen for bonding processes, which is mostly used in light vehicle parts. The adherends were cleaned, treated and activated only with abrasion, and after the adhesive application the specimens were tested under quasi-static loading. The satisfied ARAA results were compared with that of the specimens fabricated by the standard procedure (SP) of adhesion processes of high impact loads.

Effect of modifying the thickness of the plate at the level of the overlap length in the presence of bonding defects on the strength of an adhesive joint

  • Attout Boualem;Sidi Mohamed Medjdoub;Madani Kouider;Kaddouri Nadia;Elajrami Mohamed;Belhouari Mohamed;Amin Houari;Salah Amroune;R.D.S.G. Campilho
    • Advances in aircraft and spacecraft science
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    • 제11권1호
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    • pp.83-103
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    • 2024
  • Adhesive bonding is currently widely used in many industrial fields, particularly in the aeronautics sector. Despite its advantages over mechanical joints such as riveting and welding, adhesive bonding is mostly used for secondary structures due to its low peel strength; especially if it is simultaneously exposed to temperature and humidity; and often presence of bonding defects. In fact, during joint preparation, several types of defects can be introduced into the adhesive layer such as air bubbles, cavities, or cracks, which induce stress concentrations potentially leading to premature failure. Indeed, the presence of defects in the adhesive joint has a significant effect on adhesive stresses, which emphasizes the need for a good surface treatment. The research in this field is aimed at minimizing the stresses in the adhesive joint at its free edges by geometric modifications of the ovelapping part and/or by changing the nature of the substrates. In this study, the finite element method is used to describe the mechanical behavior of bonded joints. Thus, a three-dimensional model is made to analyze the effect of defects in the adhesive joint at areas of high stress concentrations. The analysis consists of estimating the different stresses in an adhesive joint between two 2024-T3 aluminum plates. Two types of single lap joints(SLJ) were analyzed: a standard SLJ and another modified by removing 0.2 mm of material from the thickness of one plate along the overlap length, taking into account several factors such as the applied load, shape, size and position of the defect. The obtained results clearly show that the presence of a bonding defect significantly affects stresses in the adhesive joint, which become important if the joint is subjected to a higher applied load. On the other hand, the geometric modification made to the plate considerably reduces the various stresses in the adhesive joint even in the presence of a bonding defect.