• Title/Summary/Keyword: 기계적 계면특성

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Surface Characteristics on Semi-conductive Silicone Rubber by Plasma Modification (플라즈마 처리에 따른 반도전성 실리콘 고무의 표면특성 변화)

  • Youn, Bok-Hee;Kim, Dong-Wook;Jeon, Seung-Ik
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2005.07a
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    • pp.219-220
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    • 2005
  • 본 논문은 산소 플라즈마 처리에 따른 반도전성 실리콘 고무의 표면특성 변화를 조사하였다. 실리콘 고무는 각종 초고압 전력기기에서 절연부품으로 많이 사용되어 지고 있다. 하지만, 실리콘 고무가 가지고 있는 고유의 특성 때문에 반도전성 부품과 절연성 부품간의 계면이 접착이 잘 되지 않는 문제점이 나타난다. 이를 위해서 접착제를 사용하거나 표면 거칠기를 변화시키는 개질을 하기도 하지만, 이는 새로운 계면을 형성하거나 약점을 만드는 문제가 있다. 이를 위해 반도전성 실리콘 고무 표면을 산소 플라즈마 개질시켜, 표면을 활성화 시키는 역할과 표면을 균일하게 에칭시켜 기계적 interlocking 메커니즘으로 접착력을 향상시킬 수 있다. 본 실험에서는 산소 플라즈마 처리에 따른 반도전성 실리콘 고무의 표면을 표면에너지. XPS로 기본적인 표면특성을 조사하였다. 실험 결과, 단시간의 산소플라즈마 처리로 표면에 다수의 관능기가 관찰되었다. 이러한 산화층은 실록산 결합쇄가 산화된 실리카 유사층으로 밝혀졌다. 이로써 절연부와 접착 용이성이 기대되었으며, 벌크적인 실리콘 고무의 특성변화 없이 표면개질 만으로 우수한 계면특성을 얻을 수 있다.

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Effect of Surfactants on the Characteristics of Cooked Rice During Storage (계면활성제가 저장 중의 밥의 특성에 미치는 영향)

  • 김수경;이신경;신말식
    • Korean journal of food and cookery science
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    • v.13 no.3
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    • pp.278-285
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    • 1997
  • The effects of three surfactants (SSL, Dimodan, and SE1670) on the properties of cooked nonwaxy and waxy rice during storage were investigated by sensory evaluation, instrumental test, and measurement of retrogradation degree. The results of sensory evaluation revealed that the overall quality of cooked rice was affected by textural characteristics. The addition of surfactant decreased the roughness and hardness of cooked rice, however, increased the stickiness and moistness during the storage in the order of SE, SSL, and Dimodan. In instron test, the hardness of surfactant-added cooked rice was significant lower than that of control. The addition of surfactant decreased the degree of retrogradation both in cooked nonwaxy and waxy rices.

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Fiber Surfaces and Interlaminar Shear Strengths of Electrolytic Ni-plated Carbon Fiber/Epoxy Resin Composites (전해 니켈도금 처리에 따른 탄소섬유/에폭시 수지 복합재료의 섬유표면 및 기계적 계면전단 강도)

  • 박수진;장유신;이재락;김진석
    • Polymer(Korea)
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    • v.24 no.5
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    • pp.721-727
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    • 2000
  • The electrolytic plating of a metallic nickel on carbon fiber surfaces was carried out to improve mechanical interfacial properties of carbon fiber/epoxy resin composites. The surface characteristics of carbon fibers and the mechanical interfacial properties of final composites were characterized by X-ray photoelectron spectroscopy (XPS) and interlaminar shear strength (ILSS), respectively. It was found that the electrolytic Ni-plating conditions significantly affected the degree of adhesion at interfaces between carbon fibers and epoxy resin matrix in a composite system. Especially, the increase of O,$_{1s}$/$C_{1s}$ ratio, production of NiO groups, and formation of metallic nickel on the nickel-plated carbon fiber surfaces led to an increase of the ILSS of the composites. Also, the ILSS of the composites was greatly correlated with the $O_{1s}$/$C_{1s}$ ratio of the carbon fibers treated in this work.is work.

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Reflection and Transmission Characteristics of Oblique-Incidence Ultrasonic Waves at Solid-Solid Contact Interfaces (고체-고체 접촉계면에서 경사입사 초음파의 반사·투과 특성 분석)

  • Nam, Tae-Hyung;Kim, Chung-Seok;Lee, Tae-Hun;Jhang, Kyung-Young;Kim, Noh-Yu
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.35 no.9
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    • pp.1113-1118
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    • 2011
  • In order to evaluate the characteristics of solid-solid contact interfaces, reflection or transmission techniques involving normal-incidence longitudinal waves are generally used. However, these normal-incidence techniques are of limited use in field applications such as in the inspection of welded parts. The oblique-incidence ultrasonic technique may be an alternative for overcoming these problems. However, in this technique, the mode conversion at the contact interfaces should be taken into account along with the normal and tangential interface stiffness. In this study, we have suggested a theoretical model for obliqueincidence ultrasonic waves at the contact interfaces and analyzed their reflection and transmission characteristics. Experimental results showed that the measured reflection coefficient and second harmonic wave agreed well with the suggested theoretical model. Consequently, the oblique-incidence technique can be a promising method for evaluating the characteristics of the contact interfaces.

Interfacial and Mechanical Properties of Sn-57Bi-1Ag Solder Joint with Various Conditions of a Laser Bonding Process (다양한 레이저 접합 공정 조건에 따른 Sn-57Bi-1Ag 솔더 접합부의 계면 및 기계적 특성)

  • Ahn, Byeongjin;Cheon, Gyeong-Yeong;Kim, Jahyeon;Kim, Jungsoo;Kim, Min-Su;Yoo, Sehoon;Park, Young-Bae;Ko, Yong-Ho
    • Journal of the Microelectronics and Packaging Society
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    • v.28 no.2
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    • pp.65-70
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    • 2021
  • In this study, interfacial properties and mechanical properties of joints were reported after Cu pads finished with organic solderability preservative (OSP) on flame retardant-4 (FR-4) printed circuit board (PCB) and electronic components were joined with a Sn-57Bi-1Ag solder paste by using a laser bonding process. The laser bonding process was performed under various bonding conditions with changing a laser power and a bonding time and effects of bonding conditions on interfacial and mechanical properties of joints were analyzed. In order to apply for industry, properties of bonding joints using a reflow bonding process which are widely used were compared. When the laser bonding process were performed, we observed that Cu6Sn5 intermetallic compounds (IMCs) were fully formed at the interface although the bonding times were very short about 2 and 3 s. Furthermore, void formations of the joints by using the laser bonding process were suppressed at the joints with comparing to the reflow bonding process and shear strengths of bonding joints were higher than that by using the reflow bonding process. Therefore, in spite of a very short bonding time, it is expected that joints will be stably formed and have a high mechanical strength by using the laser bonding process.

Fabrication of Transparent Conductive Films Using Single-Walled Carbon Nanotubes Dispersed in Aqueous Solutions by Various Surfactants (다양한 계면활성제로 분산된 단일벽 탄소나노튜브 투명 전도성 필름 제조)

  • Kim, Myoung-Su;Goak, Jeung-Choon;Han, Jong-Hun;Lee, Nae-Sung
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2008.06a
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    • pp.152-152
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    • 2008
  • 탄소나노튜브(carbon nanotube) 필름은 낮은 전기저항, 높은 투명도, 우수한 기계적 강도 및 유연성, 열적 안정성 등의 뛰어난 특성을 가지고 있다. 본 연구에서는 다양한 계면활성제로 분산시킨 수용액으로부터 제조된 단일벽 탄소나노튜브(single-walled CNT) 필름의 면저항(sheet resistance) 특성을 비교하였다. 먼저 나노튜브의 분산을 위해 널리 사용되는 계면활성제인 sodium dodecyl sulfate(SDS)를 기준으로 탄소나노튜브의 양, 원심분리 시간, 초음파 세기 및 시간 등의 최적 공정조건을 정한 후 각 계면활성제에 대해 분산을 위한 최적 첨가량을 알아내어 계면활성제 별로 탄소나노튜브 수용액을 제조하였다. 다양한 계면활성제로 분산된 단일벽 탄소나노튜브 수용액을 알루미나 재질의 필터에 정량적으로 vacuum-filtration하여 필름을 만들었다. 이 필름들의 면저항을 측정함으로써 계면 활성제에 따른 전기적 특성의 차이를 관찰하였다. 본 연구에서 사용한 여러 가지 계면활성제 중 sodium dodecylbenze nesulfonate (NaDDBS)를 사용하여 만든 필름이 가장 낮은 면저항을 나타내었으며, 이는 NaDDBS가 단일벽 탄소나노 튜브 다발들을 개개의 튜브로 잘 분산시키기 때문인 것으로 생각된다.

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Influence of Acid and Base Surface Treatment of Multi-Walled Carbon Nanotubes on Mechanical Interfacial Properties of Carbon Fibers-Reinforced Composites (산-염기 표면처리된 MWNTs의 첨가가 탄소섬유 강화 복합재료의 기계적 계면특성에 미치는 영향)

  • Jung, Gun;Nah, Chang-Woon;Seo, Min-Kang;Byun, Joon-Hyung;Lee, Kyu-Hwan;Park, Soo-Jin
    • Polymer(Korea)
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    • v.36 no.5
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    • pp.612-616
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    • 2012
  • In this work, the effect of chemical treatments of multi-walled carbon nanotubes (MWNTs) on the mechanical interfacial properties of carbon fiber fabric-reinforced composites was investigated. The surface properties of the MWNTs were determined by acid and base values, Fourier transform infrared spectroscopy (FTIR), and X-ray photoelectron spectroscopy (XPS) analyses. The mechanical interfacial properties of the composites were assessed by interlaminar shear stress (ILSS) and critical stress intensity factor ($K_{IC}$). The chemical treatments based on acid and base reactions led to a significant change of surface characteristics of the MWNTs, especially A-MWNTs/carbon fibers/epoxy composites had higher mechanical properties than those of B-MWNTs and non-treated MWNTs/carbon fibers/epoxy composites. These results were probably due to the improvement of interfacial bonding strength, resulting from the acid-base interaction and hydrogen bonding between the epoxy resins and the MWNT fillers.

Interfacial Properties of Gradient Specimen of CNT-Epoxy Nanocomposites using Micromechanical Technique and Wettability (미세역학적 실험법과 젖음성을 이용한 CNT-에폭시 나노복합재료 경사형 시편의 계면특성)

  • Wang, Zuo-Jia;GnidaKouong, Joel;Park, Joung-Man;Lee, Woo-Il;Park, Jong-Gyu
    • Composites Research
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    • v.22 no.5
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    • pp.8-14
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    • 2009
  • Interfacial evaluation of glass fiber reinforced carbon nanotube (CNT)-epoxy nanocomposite was investigated by micromechanical technique in combination with wettability test. The contact resistance of the CNT-epoxy nanocomposite was measured using a gradient specimen, containing electrical contacts with gradually-increasing spacing. The contact resistance of CNT-epoxy nanocomposites was evaluated by using the two-point method rather than the four-point method. Due to the presence of hydrophobic domains on the heterogeneous surface, the static contact angle of CNT-epoxy nanocomposite was about $120^{\circ}$, which was rather lower than that for super-hydrophobicity. For surface treated-glass fibers, the tensile strength decreased dramatically, whereas the tensile modulus exhibited little change despite the presence of flaws on the etched fiber surface. The interfacial shear strength (IFSS) between the etched glass fiber and the CNT-epoxy nanocomposites increased due to the enhanced surface energy and roughness. As the thermodynamic work of adhesion, $W_a$ increased, both the mechanical IFSS and the apparent modulus increased, which indicated the consistency with each other.

Charge Doping Revealing Molecular Diffusion of Sulfuric Acid and Water through a Graphene-Silica Interface

  • An, Gwang-Hyeon;Lee, Dae-Eung;Ryu, Sun-Min
    • Proceedings of the Korean Vacuum Society Conference
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    • 2014.02a
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    • pp.197.2-197.2
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    • 2014
  • 그래핀(graphene)의 라만 스펙트럼은 전하밀도(charge density)와 기계적 변형(strain)에 민감하여 연구에 널리 활용되고 있다. 본 연구에서는 기계적 박리법으로 만든 그래핀에 황산 수용액으로 p-형 화학도핑(chemical doping)을 유발시키고 전하밀도의 변이에 따른 라만 스펙트럼의 변화를 조사하였다. 이러한 변화를 통해 황산과 물 분자의 계면 확산을 이해하고, $SiO_2/Si$ 기판의 화학적 특성이 미치는 영향을 파악하고자 하였다. 분자의 효율적인 계면 확산을 위해 고온 산화반응을 이용하여 그래핀의 기저면에 나노공(nanopore)을 만든 후, 액상에서 라만 스펙트럼을 측정하였다. 증류수 속에 담궜을 때 물 분자가 그래핀-기판 계면 사이로 확산되면서 열처리에 의해 유발된 정공이 사라짐을 확인하고, D-봉우리의 가역적인 변화로부터 그래핀의 구조적 변화를 유추하였다. 황산 농도를 증가시켰을 때 G와 2D-봉우리의 진동수가 상호간에 일정한 비율로 증가하여 정공의 밀도가 증가함 알 수 있었다. 동일한 시료에 대해 황산의 농도를 감소시킴으로써 p-형 도핑을 제거하고 동일한 반응을 가역적으로 반복할 수 있었다. 상기한 분자의 2차원 확산 현상은 나노공의 유무와 기판의 전처리 조건에 따라 크게 달라진다는 사실을 확인 할 수 있었다. 또한 여러 파장에서 측정된 전하밀도와 기계적 변형에 의한 G와 2D-봉우리의 진동수 변화로부터 다른 연구자들이 활용할 수 있는 검정곡선을 제시하였다.

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Filler-Elastomer Interactions 5. Effect of Silane Surface Treatment on Interfacial Adhesion of Silica/Rubber Composites (충전재-탄성체 상호작용 5. 실란 표면처리가 실리카/고무 복합재료의 계면 특성에 미치는 영향)

  • 박수진;조기숙
    • Polymer(Korea)
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    • v.26 no.4
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    • pp.445-451
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    • 2002
  • In this work, the adsorption characteristics and mechanical interfacial properties of treated silicas by silane coupling agents, such as, ${\gamma}$-methacryloxy propyl trimethoxy silane (MPS), ${\gamma}$-glycidoxy propyl trimethoxy silane (GPS), and ${\gamma}$-mercapto propyl trimethoxy silane (MCPS), were investigated. The equilibrium spreading pressure ($pi_e$), surface free energy ($gamma_s$ s/), and specific surface area ($S_{BET}$) were studied by the BET method with $N_2$/77 K adsorption. The developments of nonpolar functional groups of the silica surfaces treated by silane coupling agents led to the increase in the $S_{BET}$, $pi_e$, and $gamma_s$, resulting in the improved tearing energy ($G_{mc}$)of the silica/rubber composites. The composites treated by MPS showed the superior mechanical interfacial properties in these systems. These results explained by changing of crystalline size, dispersion, agglomerate, and surface functional group of silica/rubber composites.