• 제목/요약/키워드: peel strength test

검색결과 119건 처리시간 0.03초

세라믹 박판의 접착 강도 측정 (Measurement of Adhesion Strength for Ceramic Sheet)

  • 허용학;김동일;김동진;이경호;김동진
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2007년도 춘계학술대회A
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    • pp.1798-1802
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    • 2007
  • Adhesion strength of single layer ceramic capacitor sheet was measured using a peel testing system developed in this study. The peel test specimens with various dimensions were prepared from the ceramic sheet cast on the PET film. In peel test, the sheet specimen was adhered on the glass jig floating on the liquid media, which was designed to minimize the friction, and the specimen was then pulled up by micro-actuator. During the separation of the sheet from the PET film, peel force was measured. To normalize the testing condition, 3 different widths of the specimen were selected: 5, 10 and 20 mm. was used Furthermore, testing speed effect was investigated in this study. From the resullts using various testing conditions, the standard method for the peel strength testing may be suggested. Based on the testing condition, effect of peel angle on the strength was experimentally examined. It was found that the adhesive strength for the ceramic sheet is nearly identical, irrespective of the specimen width ranged from 5 to 20 mm, while the adhesive strength was increased with increasing testing speed. Furthermore, the strength was shown to be dependent on the peel angle.

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T형 이음 접합에 의한 경량구조물용 접착이음강도의 평가 (Strength Evaluation of Adhesive Bonded Joint for Light Weight Structure by T-Peel Joint Test)

  • 이강용;공병석;우형표
    • 한국자동차공학회논문집
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    • 제6권4호
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    • pp.56-65
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    • 1998
  • The bonding strength evaluation of the light weight materials for an electrical vehicle has been performed through the T-peel joint test in which the design paramete- rs such as joint style, adherend type, adherend thickness, adhesive thickness, and adhesive type are considered. It is experimentally observed that the peel strength of joint increases with the increase of the adherend thickness. With the increase of the adhesive thickness, however, the peel strength of joint increases a little. Aluminum-FRP adherend combination shows such higher peel strength than that of Aluminum-Aluminum adherend combination. For the adhesive bonded joint, the results of FEM analysis agree with those of experiment. The adhesive bonded joint reinfored with a rivet gives higher peel strength than that of the joint without rivet.

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Cu-Cr 합금박막의 필 접착력과 소성변형 (Peel Adhesion Strength and Plastic Deformation of Cu-Cr Alloy Thin Films)

  • 이태곤;임준홍;김영호
    • 한국표면공학회지
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    • 제28권4호
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    • pp.219-224
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    • 1995
  • The peel adhesion and plastic deformation in Cu-Cr alloy films, sputter-deposited onto polyimide films, have been studied as a function of Cr content in the film. The adhesion strength has been measured by T-peel test and the amount of plastic deformation in the peeled metal strip was determined qualitatively by XRD technique. Peel adhesion strength has a maximum in the film containing 22-33wt.% Cr and the peel strength of pure Cr film is lower than the maximum. The film having the highest peel strength is deformed most heavily. The effect of Cr content on the peel strength is discussed in terms of the interfacial bond strength and mechanical properties of Cu-Cr alloy film.

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알루미늄/CFRP 복합재의 접착강도 향상을 위한 경화방법에 관한 연구 (A Study on the Curing Method to Improve Bonding Strength of Aluminum/CFRP Composites)

  • 이경엽;양준호;최낙삼
    • 한국자동차공학회논문집
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    • 제10권3호
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    • pp.130-135
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    • 2002
  • This study investigates the effect of curing method on the bonding strength of aluminum/CFRP composites. The surface of aluminum panel was treated by DC plasma. Lap shear tests and T-peel tests were performed based on the procedure of ASTM 906-94a and ASTMD1876-95, respectively. Test samples were fabricated by using the co-curing method and the secondary curing method. The results showed that the shear strength of test samples made by the co-curing method was 2.5 times greater than that of test samples made by the secondary curing method. The T-peel strength of the co-curing method case was almost 2 times greater than that of the secondary curing method case.

토너 박막의 신뢰성 평가를 위한 Peel-off Test의 주요인자 (Key Parameter of Peel-off Test for Reliability Assessment of Toner Film)

  • 김광일;김대은
    • 대한기계학회논문집A
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    • 제34권11호
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    • pp.1567-1573
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    • 2010
  • 레이저 프린터에 의해 만들어진 인쇄물 및 활자는 토너 박막과 종이 사이의 계면력에 따라 그 품질과 신뢰성이 크게 좌우된다. 현재 토너 박막의 계면력을 측정하기 위한 방법은 peel-off test로써 이는 토너 박막의 표면 특성, 테이프의 점착특성, 그리고 실험을 수행하는 작업자의 성향과 같은 여러 복합인자들에 따라 측정되는 계면력 특성이 변한다는 문제를 가지고 있다. 따라서 본 연구에서는 peel-off test에서 측정된 계면력에 영향을 미치는 주요인자에 따른 토너 박막의 계면력과 박리 정도의 기여도를 다구찌 실험계획법을 사용하여 알아보았다. 그 결과, 토너 박막의 계면력은 주요인자들의 수준이 커질수록 그 영향력이 크게 증가하지만 토너 박막의 박리 정도는 그렇지 않았다. 또한, 본 연구의 주요인자들에 대한 조건에서 가장 큰 기여도를 가지는 인자는 시편의 이송속도로 나타났다.

이온빔의 공정변수에 따른 Cu/Polyimide 박막의 접착력향상에 관한 연구 (A Study on the Improvement of Adhesion according to the Process Variables of Ion Beam in the Cu/Polyimide Thin Film)

  • 신윤학;김명한;최재하
    • 한국재료학회지
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    • 제15권7호
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    • pp.458-464
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    • 2005
  • In microelectronics packaging, the reliability of the metal/polymer interfaces is an important issue because the adhesion strength between dissimilar materials is often inherently poor. The modification of polymer surfaces by ion beam irradiation and rf plasma is commonly used to enhance the adhesion strength of the interface. T-peel strengths were measured using a Cu/polyimide system under varying $N_2^+$ ion beam irradiation conditions for pretreatment. The measured T-peel strength showed reversed camel back shape regarding the fixed metal-layer thickness, which was quite different from the results of the 90° peel test. The elementary analysis suggests that the variation of the T-peel strength is a combined outcome of the plastic bending work of the metal and polymer strips. The results indicate that the peel strength increases with $N_2^+$ ion beam irradiation energy at the fixed metal-layer thickness.

Al/APRP 적층재의 수지혼합비가 인장 및 티-필(T-peel) 강도 특성에 미치는 영향 (The Effect of Resin Mixture Ratio on Characteristics of Tensile and T-peel Strength in Al/AFRP Laminates)

  • 송삼홍;김철웅
    • 대한기계학회논문집A
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    • 제26권11호
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    • pp.2374-2382
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    • 2002
  • Aluminum alloy/aramid fiber reinforced plastic(Al/AFRP) laminates consists of high strength metal(A15052) and laminated aramid fiber with structural adhesive bond. The mixture ratio effect of epoxy resin curing agent accelerator on the tensile strength and T-peel strength characteristic in Al AFRP laminates were investigated in this study. The epoxy. diglycidylether of bisphenol A(DCEBA), It'as cured by methylene dianiline(MDA) with or without an accelerator(K-54). Eight different kinds of resin mixture ratios were selected for the test , five kinds of Al/AFRP laminates were named as Al/AFRP(1) and three others of Al/AFRP laminates were named as Al/AFRP(2). The comparison of tensile strength and T-peel strength with variation of resin mixture ratio were studied. Respectively. Al/AFRP(1) and Al/AFRP(2) indicated approximately 6.0 times and 7.0 times more improved maximum tensile strength in comparison with those of monolithic A15052. Al/AFRP(2) indicated approximately 1.5 times more impoved maximum T-peel strengths in comparison with those of Al/AFRP(1). As results. Al/AFRP(2) turned out to have more effective characteristics on the tensile strength and T-peel strength than those of Al/AFRP(1).

이온빔에 의한 Cu/Polyimide 표면개질에 따른 접착력향상에 관한 연구 (A Study on the Improvement of Adhesion according to the Surface Modification of Cu/Polyimide Films by ion Beam Irradiation)

  • 신윤학;추준식;이승우;정찬회;김명한
    • 한국재료학회지
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    • 제15권1호
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    • pp.42-46
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    • 2005
  • In microelectronics packaging, the reliability of the metal/polymer interfaces is an important issue because the adhesion strength between dissimilar materials is often inherently poor. The modification of polymer sufaces by ion beam irradiation and rf plasma are commonly used to enhance the adhesion strength of the interface. T-peel strengths were measured using a Cu/polyimide system under varying $Ar^+$ ion beam irradiation pretreatment conditions. The measured T-peel strength showed reversed camel back shape regarding the fixed metal-layer thickness, which was quite different from the results of the $90^{\circ}$ peel test. The elementary analysis suggests that the variation of the T-peel strength is a combined outcome of the plastic bending work of the metal and polymer strips. The results indicate that the peel strength increases with $Ar^+$ ion beam irradiation energy at the fixed metal-layer thickness.

벗김강도 측정법에 의한 파워 모듈의 솔더접합 특성 평가 (Characterization of the Soldering Interface in Power Modules by Peel Strength Measurement)

  • 김남균;이희흥;방욱;서길수;김은동
    • 한국전기전자재료학회논문지
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    • 제16권12호
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    • pp.1142-1149
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    • 2003
  • The strength and characteristics of the soldering interface of the power semiconductor chip in a power module has been firstly surveyed by the peel strength measurement method. A power module is combined with several power chips which generally has 30∼400$\textrm{mm}^2$ chip area to allow several tens or bigger amps in current rating, so that the traditional methods for interface characterization like shear test could not be applied to high power module. In this study power diode modules were fabricated by using lead-tin solder with 10${\times}$10$\textrm{mm}^2$ or 7${\times}$7$\textrm{mm}^2$ soldering interface. The peel strengths of soldered interfaces were measured and then the microscopic investigation on the fractured surfaces were followed. The peel test indicated that the crack propagated either through the bulk of the soft lead-tin solder which has 55-60 kgf/cm peel strength or along the interface between the solder and the plated nickel layer which has much lower 22 kgf/cm strength. This study showed that the peel test would be a useful method to quantify the solderability as well as to recognize which is the worst interface or the softest material in a power module with a large soldering area.

악안면 보철용 폴리우레탄과 실리콘의 접착도에 관한 실험적 연구 (A STUDY ON THE ADHESIVENESS OF SILICONE AND POLYURETHANE SHEET IN MAXILLOFACIAL PROSTHESES)

  • 조상준;임주환;조인호
    • 대한치과보철학회지
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    • 제34권4호
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    • pp.833-849
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    • 1996
  • The material of choice for functional and esthetic reconstruction of maxillofacial defects is silicone. Silicone has appropriate physical properties for maxillofacial prosthesis but it has weak edge strength. Therefore, a proper combination of silicone and polyurethane sheet is recommended to improve this weakness. Various primers are also used to enhance the adhesive strength between silicone and polyurethane sheet. The purpose of this study was to determine the adhesive strength of silicone and polyurethane sheet. Silicone elastomer mixture was made by admixing MDX4-4210 elastomer (40%) and Silastic Medical Adhesive Type A(60%). This silicone elastomer mixture was attached to polyurethane sheet, using one of three different primers(1205, S-2260, or A-304), treated for 1, 2, 4, 6, and 8 hours. These were then polymerized in room temperature, dry-heat oven or microwave oven. Six specimens per each group, a total of 270 specimens were prepared for final test. The differences of T-peel bonding strengths were then determined by a test. The differences of T-peel bonding strengths were then determined by a test method that was recommended by American Society for Testing and Materials C794-80. The results were statistically analyzed using the ANOVA and Mutiple Range Tests(Tukey' HSD). The reults were as follow. 1. Type of primer, primer reaction time, and methods of polymerization showed significant correlation on the T-peel bonding strengths in adhesiveness between silicone and polyurethane sheet. 2. A-304 primer showed statistically higher in T-peel bonding strength than otehr type of primers except for the polymerization in microwave oven with reaction times of 2, 6 hours(p<0.05). 3. No significant differences in T-peel bonding strength were observed among the polymerization methods. 4. The effect of reaction time by the primer type and polymerization method showed statistically significant differences in bonding strength among different reaction times. And in most cases, reaction time of 1 or 2 hours showed higher T-peel bonding strength.

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