• 제목/요약/키워드: Non-conducting metal coating

검색결과 4건 처리시간 0.023초

무전도 금속 증착을 위한 하전 입자빔 전처리 공정의 타당성 연구 (On Feasibility Study of the Charged Particle Beam Pretreatment Process for Non-conducting Metal Coating)

  • 나명환;박영식;심하몽;전영호
    • 품질경영학회지
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    • 제42권2호
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    • pp.179-187
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    • 2014
  • Purpose: Since several problems were found when present non-conducting metal coating process was applied to mass production, we study and develop to improve those problems. Methods: In this paper, a couple of analysis methods such as surface hardness, XPS spectrum analysis, morphology, and reflection ratio were used. Results: This paper suggest a new possibility of Non-conducting thin metal coating method that has quality of mass production phase without UV coating process. Conclusion: By the result of analysis, we can set optimized process conditions of the electro deposition coating using electron beam.

수지의 하전 입자빔 전처리 공정의 최적화 (Optimization for Electro Deposition Process of PC/ABS Resin Surface Treatment)

  • 박영식;심하몽;나명환;송호천;윤상후;장근삼
    • 응용통계연구
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    • 제27권4호
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    • pp.543-552
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    • 2014
  • 최근 휴대단말기 시장에서는 블루투스, GPRS, EDGE, 3GSM, HSDPA 등과 같은 높은 대역폭의 RF를 사용하고 있다. 높은 대역폭의 RF 영역에서는 높은 면저항(Sheet resistance)을 갖는 무전도 금속박막 코팅 방법이 사용되고 있는데, 기존의 무전도 금속증착은 사출물 세정, UV 하도 코팅, 금속증착, UV 중도 코팅, 상도 코팅 등 다수의 복합 공정으로 이루어져 있다. 특히 하도공정은 금속 증착(Sputtering)과 일괄 처리가 어려워 생산성이 낮고 생산원가 상승의 원인이기도 하다. 따라서 이를 극복하기 위하여 최근 Na 등 (2014)은 무전도 금속코팅에서 Primer 대체를 위한 전자빔의 표면처리의 가능성을 가능함을 보였다. In this paper, 플라즈마 생성 전자빔 소스(Plasma generated electron beam source)를 활용하여 PC/ABS 수지 사출물의 공정을 실험계획법에 의한 전자빔 조사 조건을 탐색하여, 즉, 수지 표면처리공정 조건을 탐색하여, 그 실험 결과를 분석하여, 진공전처리공정 개발 및 양산공정라인의 처리의 최적 조건을 찾고자 한다.

Frequency-Distance Responses in SECM-EQCM: A Novel Method for Calibration of the Tip-Sample Distance$\S$

  • 신명선;전일철
    • Bulletin of the Korean Chemical Society
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    • 제19권11호
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    • pp.1227-1232
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    • 1998
  • The frequency response on the tip-sample distance in scanning electrochemical microscopy (SECM) that is combined with an electrochemical quartz crystal microbalance (EQCM) is described. The oscillation frequency of the EQCM increases rapidly when the SECM tip is very close to the substrate electrode surface. This frequency increase is reproducible regardless of the current feedback in SECM, which is attributed to the stress caused by the tip pressing the quartz crystal. It is useful to calibrate the tip-sample distance with respect to the frequency change when a combined system of SECM and EQCM (SECM-EQCM) is used. This method could be applied to several cases such as rigid metal electrode and non-conducting or partially conducting polymer coating prepared on the quartz crystal regardless of the feedback current.

PU 나노웹 기반 전기전도성 텍스타일의 개발 및 스마트의류용 신호전달선으로의 적용 가능성 탐색 (Development of PU Nanoweb Based Electroconductive Textiles and Exploration of Applicability as a Transmission Line for Smart Clothing)

  • 장은지;조길수
    • 한국의류산업학회지
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    • 제20권1호
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    • pp.101-107
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    • 2018
  • The purpose of this study is to develop the electroconductive textiles based on polyurethane(PU) nanoweb and to explore that it is applicable to smart clothing. The electroconductive textiles developed by coating 2.0 wt% aqueous dispersed non-oxidized graphene paste on the surface of PU nanoweb. The fabricated electroconductive nanoweb was applied as a transmission line to connect the LED lamp, and the brightness of the LED lamp was measured to confirm its performance. The nanoweb transmission line was fixed by two methods(seam sealing tape, embroidering) to connect the LED lamp and AA batteries. The results as follows, the brightness of the LED lamp fixed with seam sealing tape was about 82 lux, and which fixed with embroidering was about 57 lux. It represents that the nanoweb transmission line which fixed with the seam sealing tape has better electrical signal transmitting because the lux value higher than the one fixed by embroidering. In order to compare the performance of the nanoweb transmission line and the metal wire, we connected the LED lamp with copper wire. The brightness of copper wire connected LED lamp was about 193 lux. Although the electrical signal strength of the nanoweb transmission line was weaker than the copper wire, it was reachable to operate LED lamp. The results of this study will provide a basic data to develop the textile based electronic devices, and conducting wire for smart clothing.