• Title/Summary/Keyword: 표면물성

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Reinforcement of Rubber Properties by Carbon Black and Silica Fillers: A Review

  • Seo, Gon;Kim, Do-Il;Kim, Sun Jung;Ryu, Changseok;Yang, Jae-Kyoung;Kang, Yong-Gu
    • Elastomers and Composites
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    • v.52 no.2
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    • pp.114-130
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    • 2017
  • Enhancing the properties of rubber, such as the tensile strength, modulus, and wear abrasion, by the addition of carbon black and silica as fillers is very important for improving the performance of rubber products. In this review, we summarize the general features of 'the reinforcement of rubber by fillers' and the equations for representing the reinforcement phenomena. The rubber reinforcement was attributed to enhancement of the following: the rubber, bound rubber, formation of networks, and combination between rubber chains and silica followed by entanglement. The reinforcement capability of silica species with different surface and networked states demonstrated the importance of the connection between the silica particles and the rubber chains in achieving high reinforcement. The model involving combination followed by entanglement can provide a plausible explanation of the reinforcement of rubber by carbon black and silica because the combination facilitates the concentration of rubber chains near the filler particles, and entanglement of the rubber chains around the filler particles enforces the resistance against deformation and breakage of rubber compounds, resulting in high reinforcement.

A Study on Mechanical Interfacial Properties of Copper-plated Carbon Fibers/Epoxy Resin Composites (구리도금된 탄소섬유/에폭시 수지 복합재료의 기계적 계면 특성에 관한 연구)

  • Hong, Myung-Sun;Bae, Kyong-Min;Choi, Woong-Ki;Lee, Hae-Seong;Park, Soo-Jin;An, Kay-Hyeok;Kim, Byung-Joo
    • Applied Chemistry for Engineering
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    • v.23 no.3
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    • pp.313-319
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    • 2012
  • In this work, the electroplating of copper was introduced on PAN-based carbon fibers for the enhancement of mechanical interfacial strength of carbon fibers-reinforced composites. The surface properties of carbon fibers were determined by scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), X-ray diffraction (XRD), and contact angle measurements. Its mechanical interfacial properties of the composites were studied by interlaminar shear strength (ILSS) and critical stress intensity factor ($K_{IC}$). From the results, it was found that the mechanical interfacial properties of Cu-plated carbon fibers-reinforced composites (Cu-CFRPs) enhanced with increasing the Cu plating time, Cu content and COOH group up to Cu-CFRP-30. However, the mechanical interfacial properties of the Cu-CFRPs decreased dramatically in the excessively Cu-plated CFRPs sample. In conclusion, the presence of Cu particles on carbon fiber surfaces can be a key factor to determine the mechanical interfacial properties of the Cu-CFRPs, but the excessive Cu content can lead the failure due to the interfacial separation between fibers and matrices in this system.

Evaluation of Interfacial and Mechanical Properties of GF/p-DCPD Composites with Different Sizing Agents (사이징제에 따른 유리섬유/폴리디사이클로펜타디엔 복합재료의 계면물성 및 기계적 물성 평가)

  • Kim, Jong-Hyun;Kwon, Dong-Jun;Shin, Pyeong-Su;Park, Ha-Seung;Baek, Yeong-Min;Park, Joung-Man
    • Composites Research
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    • v.31 no.2
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    • pp.57-62
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    • 2018
  • Interfacial and mechanical properties of neat and two sizing agents coated glass fiber (GF)/polydicyclopentadiene (p-DCPD) composites were evaluated at room and low temperatures, $25^{\circ}C$ and $-20^{\circ}C$. Sizing agents of GFs were extracted using acetone and compared via FT-IR. Surface energy and work of adhesion between GFs and p-DCPD were calculated by dynamic contact angle measurement. Mechanical properties of different GFs were determined using single fiber tensile test and interfacial properties of single GF reinforced DCPD strip were determined using cyclic loading tensile test. Mechanical properties of GFs/p-DCPD composites at room and low temperatures were determined using tensile, compressive, and Izod impact tests. Interfacial and mechanical properties were different with sizing agents of GFs and the optimized condition of sizing agent was found.

Nanoindentation과 유한요소해석을 통한 표면처리강판의 박막 경도 및 탄성계수 측정

  • 고영호;이정민;김병민;고대철
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2004.05a
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    • pp.142-142
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    • 2004
  • 박막으로 표면처리한 다양한 강판이 자동차 차체와 부품, 가전제품 등의 제조를 위해 여러 가지 판재 성형공정에 적용되고 있으나, 제품 개발기간과 비용 감소, 성형과정에서 표면 코팅층의 특성 변화로 인해 성형성 열화와 성형불량을 줄이면서, 제품의 고정밀화, 고품질화를 실현하기 위해서는 코팅층에 대한 기계적 특성과 마찰거동을 명확히 규명하는 것이 반드시 필요하다 현재 나노 마이크로 수준인 코팅층의 기계적 물성치를 측정하기 위해 가장 널리 사용되는 방법은 나노 인덴테이션이다.(중략)

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Reinforcement, Thermal and Fire Retardant Improvement of Phenolic Composites by Surface Treatment of CFRP Chip (CFRP Chip 표면처리에 따른 페놀복합재료의 강화, 내열성 및 난연성 향상)

  • Kwon, Dong-Jun;Wang, Zuo-Jia;Gu, Ga-Young;Park, Joung-Man
    • Journal of Adhesion and Interface
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    • v.13 no.2
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    • pp.58-63
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    • 2012
  • CFRP chip is the byproduct from carbon fiber reinforced plastic (CFRP) processing. CFRP chip is not simply a waste mainly composed of fine carbon fiber and epoxy resin. CFRP chip keeps matrix to maximize their reinforcing effect. To obtain a uniform length of carbon fiber in CFRP chip, chip was chopped ina mortar. CFRP chip should be purified to get better interface adhesion. Epoxy resin on the carbon fiber was removed by $H_2O_2$ surface etching treatment. Optimal dispersion and fabrication conditions of CFRP chip embedded in phenolic resin were determined by thermal stability for fire retardant applications. CFRP chip-phenolic composite exhibits better mechanical and thermal properties than neat phenolic resin. Surface condition of CFRP chip-phenolic composite was evaluated by static contact angle measurement. Contact angle of CFRP chip-phenolic composite was greater than neat phenolic due to heterogeneous condition of fine carbon fibers. From the evaluation for fire retardant (ASTM D635-06) test, thermal stability of CFRP chip-phenolic composite was found to be improved with higher concentration of CFRP chip.

Nano-Indentation 분석 기법을 활용한 플라즈마 식각 후 박막 표면의 물성 변화를 기반으로 정량적인 damage 제시 연구

  • Kim, Su-In;Lee, Jae-Hun;Kim, Hong-Gi;Kim, Sang-Jin;Seo, Sang-Il;Kim, Nam-Heon;Lee, Chang-U
    • Proceedings of the Korean Vacuum Society Conference
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    • 2015.08a
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    • pp.177.1-177.1
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    • 2015
  • 플라즈마 건식 식각공정은 반도체 공정에 있어 증착 및 세정 공정과 함께 중요한 공정중 하나이다. 기존 연구에서는 높은 식각 속도, 종횡비, 대면적에 대한 균일도 증가를 위하여 플라즈마 이온 밀도의 증가와 전자 온도를 감소시키기 위한 노력을 하고 있으며 플라즈마 식각분석 연구에서는 분광학 분석 기법을 활용하여 플라즈마에 의하여 활성화된 식각 가스와 박막 표면의 반응 메커니즘 연구가 진행 중에 있다. 그러나 지금까지의 플라즈마 식각연구에서는 플라즈마 식각 공정에서 발생되는 박막의 damage에 대한 연구는 전무하다. 본 연구에서는 플라즈마 식각과정에서 발생되는 박막 표면의 damage 연구를 위하여 Nano-indenter에 의한 분석 기법을 제시하였다. Nano-indentation 기법은 박막 표면을 indenter tip으로 직접 인가하여 박막 표면의 기계적 특성을 분석하고 이를 통하여 플라즈마에 의한 박막 표면의 물성 변화를 정량적으로 측정한다. 실험에서 플라즈마 소스는 Adaptively Coupled Plasma (ACP)를 사용하였고 식각 가스로는 HBr 가스를 주로 사용하였으며, 플라즈마 소스 파워는 1000 W로 고정 하였다. 연구 결과에 의하면 식각공정 챔버 내 압력이 5, 10, 15 및 20 mTorr로 증가함에 따라 TEOS SiO2 박막의 강도가 7.76, 8.55, 8.88 및 6.29 GPa로 변화되는 것을 측정하였고 bias power에 따라서도 다르게 측정됨을 확인하였다. 이 결과를 통하여 Nano-indentation 분석 기법을 활용하여 TEOS SiO2 박막의 식각공정의 변화에 따른 강도변화를 측정함으로써 플라즈마에 의한 박막 표면의 damage를 정량적으로 측정 가능함을 확인하였다.

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Monitoring Technology on the Surface Condition after Conservation Treatment of Stone Cultural Heritage (석조문화재의 보존처리 후 표면상태 모니터링 기술 연구)

  • Park, Sung Mi;Chun, Yu Gun;Lee, Myeong Seong
    • 보존과학연구
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    • s.34
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    • pp.32-48
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    • 2013
  • This study examined the applicability of deterioration monitoring techniques to establish efficient conservation and management system for stone cultural heritage which conservation treatment has been done. It was confirmed that deterioration mapping combined with photography and grid work, and adhesive tape test for the surface were very applicable to investigate the surface change due to deterioration, and assess the degree of granular disintegration quantitatively. The portable microscopic survey and ultrasonic measurement were efficient techniques to observe mineral looseness and microcrack, and to track the strength change of the stone before-and-after the conservation treatment. These techniques can be easily used by manage practitioners in the field through simple guidance and technical education. Also, it can contribute to build a long-term and methodical conservation and management system of the stone cultural heritage.

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Interfacial Evaluation of Surface Treated Jute Fiber/Polypropylene Composites Before and After Hydration Using Micromechanical Test (미세역학적 시험법을 이용한 표면처리된 Jute 섬유 강화 폴리프로필렌 복합재료의 수화 전·후 계면물성 평가)

  • Kim, Pyung-Gee;Jang, Jung-Hoon;Park, Joung-Man;Hwang, Byung-Sun
    • Journal of Adhesion and Interface
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    • v.8 no.3
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    • pp.9-15
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    • 2007
  • The interfacial evaluation of surface modified Jute fiber/polypropylene (PP) composites before and after hydration was investigated using micromechanical test and dynamic contact angle measurement. The IFSS of alkaline and silane-treated Jute fiber/PP composites increased, whereas after hydration, the IFSS of the untreated, alkaline- and silane-treated Jute fibers/PP composites decreased due to swelled fibrils by water infiltration. The interfacial adhesion of silane treated fiber/PP composites was higher than alkaline-treated or the untreated cases. The surface energies of Jute fiber treated under various conditions were obtained using dynamic contact angle measurement. Especially after hydration, the thermodynamic work of adhesion was calculated by considering water interlayer, which indicated the stability of IFSS between silane treated Jute fiber and PP matrix showing better than others.

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Surface Treatments of Carbon Nanomaterials using Atmospheric Pressure Plasma (대기압 플라즈마를 이용한 탄소나노소재의 표면처리)

  • Lee, Byeong-Ju;Jeong, Gu-Hwan
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2013.05a
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    • pp.67-67
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    • 2013
  • 그래핀과 탄소나노튜브와 같은 탄소나노재료는 우수한 물성으로 인하여 다양한 분야에 응용이 가능할 것으로 예측되고 있으며, 더욱이 이러한 특성은 구조변형, 화학적 도핑뿐만 아니라 표면처리를 통해서 제어가 가능하다고 알려져 있다. 본 연구에서는 기존의 진공 공정이 아닌 상온 상압 환경에서 그래핀과 탄소나노튜브를 효율적으로 표면 처리하기 위하여 대기압 플라즈마장치를 제작하였고, 질소플라즈마를 이용하여 그래핀과 탄소나노튜브의 표면을 처리하였다. 대표적인 결과로는 소수성이었던 그래핀 및 탄소나노튜브의 표면을 친수성으로 개질하였으며, 플라즈마 처리에 의한 결함을 최소화시킬 수 있는 최적의 표면처리 조건을 도출하였다.

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The Study on Long-Life Surface Treatment(Burnishing) in Bearing (베어링에 적용되는 장수명 표면 처리(Burnishing) 연구)

  • Sim, Hui-Chan;Kim, Tae-Gyeong
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2015.11a
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    • pp.283-283
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    • 2015
  • 현재 LAC 베어링에 적용되는 표면 처리는 일반적으로 하드터닝+슈퍼피니싱 가공이 적용되고 있고, 장수명을 위한 표면 처리 기술이 보다 더 요구되는 추세이다. Burnishing 기술은 매끄럽고 단단한 공구를 베어링 궤도면에 충분한 압력을 가하여 서로 문질러(rubbing) 마찰면을 소성 변형시켜 표면 거칠기 및 압축 잔류 응력 등을 향상 시키는 기술이며, 베어링과 같은 금속의 경우 버니싱 가공 적용 시 광택을 띠는 특성을 가지므로 외관 품질 향상에 기여하므로 슈퍼 피니싱 공정을 대신할 수 있다. 또한 표면 finishing, 표면 경도, 내마모성 및 피로/부식 저항성을 향상시킨다. 이에 본 연구에서는 슈퍼 피니싱 가공을 대신하기 위한 버니싱 가공의 물성을 검토하였고, 다른 공정과의 비교를 통한 버니싱 기술의 효과 확인하였다.

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