• 제목/요약/키워드: Shear adhesion strength

검색결과 232건 처리시간 0.029초

윤활제 함침 나일론과 금속의 접합특성 (Joint Characteristics of Lubricant-Impregnated Nylon and Metals)

  • 장윤상;강석춘;호광일
    • 한국기계가공학회지
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    • 제2권3호
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    • pp.84-89
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    • 2003
  • The joint method and characteristics of lubricant Impregnated MC nylon and metal are analyzed. Considering the productivity and economics, two materials are Joined with the process of turning, knurling, and induction heating. The Joint strength is determined by adhesion of the melted nylon, the size of knurl, and the interference from the difference of the diameters. The parameters affecting induction heating process are analyzed. The adhesion strength of the melted nylon is measured. Finally the joint strength is analyzed in the environments of low, room, and high temperature. The nylon/metal Joined material is expected to be widely used as the sliding machine elements with good friction and shear strength.

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A Method of Measuring Wood Failure Percentage of Wood Specimens Bonded with Melamine-Urea-Formaldehyde Resins Using I mage Analysis

  • KIM, Minseok;PARK, Byung-Dae
    • Journal of the Korean Wood Science and Technology
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    • 제49권3호
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    • pp.274-282
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    • 2021
  • Transparent and colorless melamine-urea-formaldehyde (MUF) resins make it difficult to identify the area of wood failure percentage (WFP) in the fracture surface of bonded wood specimens. Therefore, in this study, we develop a method of measuring WFP after the adhesion strength measurement of MUF resins under shear stress. The fractured wood surface of b lock shear strength (BSS) specimens bonded with cold-setting MUF resins at three melamine contents (20%, 30%, and 40%) was marked black, and then, WFP was accurately measured via image analysis. WFP values measured using this method consistently increased with BSS as the melamine content increased, showing the reliability of this new method. The results suggested that this new method is useful and reliable for measuring the WFP of the fracture surface of wood specimens bonded with colorless adhesives such as urea-formaldehyde, MUF, and melamine-formaldehyde resins.

플라즈마 에칭과 중합에 의한 탄소섬유의 표면 개질 (Plasma Etching and Polymerization of Carbon Fiber)

  • H. M. Kang;Kim, N. I.;T. H. Yoon
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2002년도 춘계학술발표대회 논문집
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    • pp.143-146
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    • 2002
  • Unsized AS-4 carbon fibers were etched by RF plasma and then coated via plasma polymerization in order to enhance adhesion to vinyl ester resin. The gases utilized for the plasma etching were Ar, $N_2 and O_2$, while the monomers used for the plasma polymerization coating were acetylene, butadiene and acrylonitrile. The conditions for the plasma etching and the plasma polymerization were optimized by measuring interfacial adhesion with vinyl ester resin via micro-droplet tests. Among the treatment conditions, the combination of Ar plasma etching and acetylene plasma polymerization provided greatly improved interfacial shear strength (IFSS) of 69MPa compared to 43MPa with as-received carbon fiber. Based on the SEM analysis of failure surface and load-displacement curve, it was assume that the failure might be occurred at the carbon fiber and plasma polymer coating. The plasma etched and plasma polymer coated carbon fibers were subjected to analysis with SEM, XPS, FT-IR or Alpha-Step, and dynamic contact angles and tensile strengths were also evaluated. Plasma polymer coatings did not change tensile strength and surface roughness of fibers, but decreased water contact angle except butadiene plasma polymer coating, possibly owing to the functional groups introduced, as evidenced by FT-IR and XPS.

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Effect of different surface treatments on the shear bond strength of luting cements used with implant-supported prosthesis: An in vitro study

  • Degirmenci, Kubra;Saridag, Serkan
    • The Journal of Advanced Prosthodontics
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    • 제12권2호
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    • pp.75-82
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    • 2020
  • PURPOSE. The aim of this study was to investigate the shear bond strength of luting cements used with implant retained restorations on to titanium specimens after different surface treatments. MATERIALS AND METHODS. One hundred twenty disc shaped specimens were used. They were divided into three groups considering the surface treatments (no treatment, sandblasting, and oxygen plasma treatment). Water contact angle of specimens were determined. The specimens were further divided into four subgroups (n=10) according to applied cement types: polycarboxylate cement (Adhesor Carbofine-AC), temporary zinc oxide free cement (Temporary CementZOC), non eugenol provisional cement for implant retained prosthesis (Premier Implant Cement-PI), and non eugenol acrylic-urethane polymer based provisional cement for implant luting (Cem Implant Cement-CI). Shear bond strength values were evaluated. Two-way ANOVA test and Regression analysis were used to statistical analyze the results. RESULTS. Overall shear bond strength values of luting cements defined in sandblasting groups were considerably higher than other surfaces (P<.05). The cements can be ranked as AC > CI > PI > ZOC according to shear bond strength values for all surface treatment groups (P<.05). Water contact angles of surface treatments (control, sandblasting, and plasma treatment group) were 76.17° ± 3.99, 110.45° ± 1.41, and 73.80° ± 4.79, respectively. Regression analysis revealed that correlation between the contact angle of different surfaces and shear bond strength was not strong (P>.05). CONCLUSION. The retentive strength findings of all luting cements were higher in sandblasting and oxygen plasma groups than in control groups. Oxygen plasma treatment can improve the adhesion ability of titanium surfaces without any mechanical damage to titanium structure.

Effect of Graphitic Nanofibers on Interfacial Adhesion and Fracture Toughness of Carbon Fibers-reinforced Epoxy Composites

  • Kim, Seong-Hwang;Park, Soo-Jin
    • Composites Research
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    • 제34권2호
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    • pp.82-87
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    • 2021
  • The mechanical properties of carbon fiber-reinforced epoxy composites (CFRPs) are greatly dependent on the interfacial adhesion between the carbon fibers and the epoxy matrix. Introducing nanomaterial reinforcements into the interface is an effective approach to enhance the interfacial adhesion of CFRPs. The main purpose of this work was to introduce graphitic nanofiber (GNFs) between an epoxy matrix and carbon fibers to enhance interfacial properties. The composites were reinforced with various concentrations of GNFs. For all of the fabricated composites, the optimum GNF content was found to be 0.6 wt%, which enhanced the interlaminar shear strength (ILSS) and fracture toughness (KIC) by 101.9% and 33.2%, respectively, compared with those of neat composites. In particular, we observed a direct linear relationship between ILSS and KIC through surface free energy. The related reinforcing mechanisms were also analyzed and the enhancements in mechanical properties are mainly attributed to the interfacial interlocking effect. Such an effort could accelerate the conversion of composites into high performance materials and provide fundamental understanding toward realizing the theoretical limits of interfacial adhesion and mechanical properties.

Bracket bonding to polymethylmethacrylate-based materials for computer-aided design/manufacture of temporary restorations: Influence of mechanical treatment and chemical treatment with universal adhesives

  • Goracci, Cecilia;Ozcan, Mutlu;Franchi, Lorenzo;Di Bello, Giuseppe;Louca, Chris;Vichi, Alessandro
    • 대한치과교정학회지
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    • 제49권6호
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    • pp.404-412
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    • 2019
  • Objective: To assess shear bond strength and failure mode (Adhesive Remnant Index, ARI) of orthodontic brackets bonded to polymethylmethacrylate (PMMA) blocks for computer-aided design/manufacture (CAD/CAM) fabrication of temporary restorations, following substrate chemical or mechanical treatment. Methods: Two types of PMMA blocks were tested: $CAD-Temp^{(R)}$ (VITA) and $Telio^{(R)}$ CAD (Ivoclar-Vivadent). The substrate was roughened with 320-grit sandpaper, simulating a fine-grit diamond bur. Two universal adhesives, Scotchbond Universal Adhesive (SU) and Assure Plus (AP), and a conventional adhesive, Transbond XT Primer (XTP; control), were used in combination with Transbond XT Paste to bond the brackets. Six experimental groups were formed: (1) $CAD-Temp^{(R)}/SU$; (2) $CAD-Temp^{(R)}/AP$; (3) $CAD-Temp^{(R)}/XTP$; (4) $Telio^{(R)}$ CAD/SU; (5) $Telio^{(R)}$ CAD/AP; (6) $Telio^{(R)}$ CAD/XTP. Shear bond strength and ARI were assessed. On 1 extra block for each PMMA-based material surfaces were roughened with 180-grit sandpaper, simulating a normal/medium-grit ($100{\mu}m$) diamond bur, and brackets were bonded. Shear bond strengths and ARI scores were compared with those of groups 3, 6. Results: On $CAD-Temp^{(R)}$ significantly higher bracket bond strengths than on $Telio^{(R)}$ CAD were recorded. With XTP significantly lower levels of adhesion were reached than using SU or AP. Roughening with a coarser bur resulted in a significant increase in adhesion. Conclusions: Bracket bonding to CAD/CAM PMMA can be promoted by grinding the substrate with a normal/medium-grit bur or by coating the intact surface with universal adhesives. With appropriate pretreatments, bracket adhesion to CAD/CAM PMMA temporary restorations can be enhanced to clinically satisfactory levels.

Rocatec system이 Zir-ceram과 간접복합수지간의 전단결합강도에 미치는 영향 (Effect of Rocatec system on Shear Bond Strength between Zir-Ceram and Sinfony Indirect Composite Resin)

  • 김동일;김부섭;정인성
    • 대한치과기공학회지
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    • 제30권2호
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    • pp.23-29
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    • 2008
  • The purpose of this study is to evaluate possibility of using indirect composite resin instead of porcelain through the measurement of shear bond strength between zirconia core and indirect composite resin under treatment of $Rocatec^{TM}$ system for improving the adhesion of indirect composite resin. 20 cylindrical zirconia core specimens were divided into 2 groups, according to zirconia surface treatment and attached materials: 1) treated with sandblast and attached with indirect composite resin, 2) treated with sandblast + $Rocatec^{TM}$ system and attached with indirect composite resin. The shear bond strength of each experimental group was measured by MTS and the changes of zirconia core surface according to surface treatments were obtained by SEM observation and measurements of surface roughness. The mean shear bond strength values are $0.55\;{\pm}\;0.11MPa$(Group SC) and $1.16\;{\pm}\;0.46MPa$(Group SRC). The mean Ra values for the surface treatments were follows: $0.39\;{\pm}\;0.13$($100{\beta}_{{\mu}m}$ sandblast) and $0.50\;{\pm}\;0.03$($100{\beta}_{{\mu}m}$ sandblast + $Rocatec^{TM}$ system). In the analysis of EDS, Si element was detected in the Group SC. The shear bond strength between zirconia core and indirect composite resin was improved significantly by using $Rocatec^{TM}$ system.

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미세역학적 실험법에 의한 금속섬유의 플라즈마 처리효과에 관한 연구 (A Study on the Plasma Treatment Effect of Metal Fibersusing Micromechanical Technique)

  • 권미연;이승구
    • 접착 및 계면
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    • 제23권4호
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    • pp.122-129
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    • 2022
  • 본 연구에서는 산소 플라즈마 처리시간을 실험 변수로 하여 금속섬유를 처리한 후 섬유표면에 산소함유 기능성 관능기를 도입하여 금속섬유의 친수성을 향상시키기 위한 연구로 플라즈마 처리 전, 후의 표면 특성 변화를 scanning electron microscope (SEM)과 x-ray photoelectron spectroscopy (XPS)를 사용하여 관찰하였다. 또한 플라즈마 처리시간이 금속섬유의 표면에 미치는 영향을 관찰하기 위해 극성 용매와 비극성 용매에 대한 금속섬유의 접촉각 변화를 측정하였다. 측정된 접촉각을 이용해 표면 자유에너지 변화를 계산한 후 산소 플라즈마 처리 전, 후의 금속섬유에 대한 접촉각과 표면 자유에너지를 비교하였으며 접착일과의 상관관계도 고찰하였다. 이런 금속섬유의 표면 변화가 다른 소재와의 복합 시 계면에서의 전단강도 향상에 미치는 영향을 알아보기 위해 microdroplet 시편을 제조하여 계면 전단강도를 측정하였으며 접착일과의 상관관계도 함께 파악하였다. 따라서, 금속섬유의 산소플라즈마 처리는 섬유표면에 물리적인 표면적 증가로 인한 수지와의 접촉면의 증가와 표면의 산소함유 기능성 관능기의 도입에 따른 접촉각, 표면 에너지의 변화에 따른 표면 친수화로 고분자 수지와의 계면 전단강도를 향상시켜주는 결과를 얻었다.

소르빅산 변성 수소첨가 DCPD계 석유수지의 합성 및 응용 (Synthesis and Application of Sorbic Acid Grafted Hydrogenated Dicyclopentadiene Hydrocarbon Resin)

  • 공원석;박준효;윤호규;이재욱
    • 접착 및 계면
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    • 제16권1호
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    • pp.29-34
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    • 2015
  • 석유수지는 분자량이 작고 무정형인 열가소성 수지로써 다양한 접착제 및 고무의 가공조제, 필름의 첨가제 등으로 사용되고 있다. 석유수지의 단점은 비극성이기 때문에 비극성의 폴리머와의 상용성은 우수하나 아크릴 및 우레탄, 폴리아마이드와 같은 극성기를 포함하는 폴리머와의 상용성은 좋지 않다. 그뿐만 아니라, 최근 석유수지의 원료로 사용되는 나프타 크래킹 공정에서 나오는 부산물의 양이 가스 크래킹의 확대 적용으로 인해 줄어들고 있는 상황이다. 이러한 문제를 해결하기 위해 본 연구에서는 석유수지 원료로 극성기를 포함하면서 지속 가능한 신규 원료인 소르빅산으로 일부 대체하고자 하였다. 기존 석유수지 원료인 DCPD 모노머와 블루베리로부터 생성되는 소르빅산은 열중합에 의해 Diels-Alder 반응으로 성공적으로 공중합하였다. 소르빅산 변성 수소첨가 DCDPD계 석유수지는 아크릴계 접착제 배합에 적용되어 다양한 점 접착 물성이 측정되었으며, Polarity에 따른 상용성 및 연화점에 따라 최적 물성이 결정되었다.

플라즈마 용사법에 의한 금속면에 세라믹 코팅된 표면과 범용고분자와의 접착특성 (Adhesion Characteristics of Polymers and Ceramic Surface Coated on Metal by Plasma Spray)

  • 이경희;권순훈;조원제;하창식
    • 한국재료학회지
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    • 제9권7호
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    • pp.724-734
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    • 1999
  • 본 연구는 플라즈마 용사법에 의해 일반구조용 강재 (SS41, 30$\times$40$\times$60mm$^{t}$ )와 연마제로 블래스팅을 실시한 강재 (SS41P) 및 SS41P에 세라믹 분말을 코팅한 강재 (SS41PC)에 대한 SEM, 표면경도. 표면거칠기. 접촉각을 측정하였으며 이들의 표면형태에 대한 기계적 .물리적 특성을 고찰하였다 사용한 세라믹 용사분말은 \circled1 $Al_2$O$_3$ : alumina \circled2 $Al_2$O$_3$ 95%, TiO$_2$ 5% : alumina titania \circled3 ZrO$_2$: 95%, $Y_2$O$_3$5% : zirconia yttria이었다. 또한 SS41, SS41P. SS41PC에 대해 범용 고분자인 PE, PVC, PP PET, PS를 접착시킨 후 이들의 표면접착특성을 조사하였다. 그 결과 인장전단강도와 박리강도의 특성에서 SS41보다는 SS41P와 SS41PC의 표면상태가 고분자들을 접착시켰을 때 더 우수한 접착강도특성을 나타내었다. 범용 고분자들의 접착강도는 PE > PET > PP > PS > PVC 순이었다. 그리고 세라믹 표면과 고분자의 접착특성은 세라믹 표면의 표면거칠기 정도와 고분자의 세라믹 표면에 대한 anchor 효과의 크기 순으로 증가하였으며, SS41PC와 PE의 접착강도는 분자표면의 규칙성에 기인된 Synergy효과에 의해서 PVC보다 우수하게 나타난 것으로 판정된다

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