• 제목/요약/키워드: Conductive fabric

검색결과 75건 처리시간 0.026초

전자기파 흡수용 복합재료의 기계적 강도평가 (Mechanical Properties Evaluation of Composites for Electromagnetic Waves Absorption)

  • 오정훈;김천곤;홍창선
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2002년도 춘계학술발표대회 논문집
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    • pp.105-108
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    • 2002
  • Materials, matrices mixed with various kinds of conductive or magnetic powder, such as ferrite, have been used as the electromagnetic wave absorbing ones, so called RAM(radar absorbing material). The structure that does not only have electromagnetic waves absorbing property like RAM but also supports loads is called RAS(radar absorbing structure). One of the existing manufacturing process of RAS is to compound with conductive powders the glass fiber-reinforced composite with good permeability and the ability to support loads. The process, however, causes a number of problems, such as the degradation in the mechanical properties of the composite, especially, interlamina shear strength. In this study, mechanical properties of glass fabric/epoxy composite containing 7wt% carbon black powders were measured and compared with pure glass fabric/epoxy composites.

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입체 자수 기법을 적용한 마찰 에너지 수확 증대형 직물 구조의 탐색 (An Exploratory Study on the Structure of Fabric of Increasing Triboelectric Energy Harvesting by Applying Three-dimensional Embroidery Technique)

  • 양진희;조현승;김민욱;김종백;김신혜;이주현
    • 감성과학
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    • 제21권3호
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    • pp.141-150
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    • 2018
  • 본 연구의 목적은 첫째 마찰 시 직물의 면적을 증가시켜 에너지 수확의 효율을 높일 수 있는 입체 자수 기법 및 전도성 직물 재료를 탐색하고, 둘째 높은 효율을 보이는 입체 자수 기법을 토대로 브러싱 가공을 실시하여 가공 후의 발생 전압을 분석하며, 셋째 이를 근거로 마찰 에너지 수확 증대형 직물의 구조를 탐색하는 것이다. 이를 위해 다음의 두 가지 실험을 실시하였다. "실험 I"에서는 인체로부터 마찰 에너지를 수확하는 효율에 영향을 미치는 직물 내 주요 변인으로, 1) 입체 자수 기법(사틴 기법, 파일 기법), 2) 전도성 직물 재료(구리 기반 MPF, 니켈 기반 MPF)를 선정하고, 이 두 변인들의 조합에 따른 4개의 시료를 제작하여 마찰 시 발생 전압의 차이를 비교 분석하였다. "실험 II"에서는 높은 효율을 보이는 입체 자수 방식의 시료를 대상으로 브러싱 가공을 실시하여 가공 후의 발생 전압을 분석하였다. 그 결과, 두 전도성 직물 재료 모두에 있어서 파일 자수 직물 구조가 사틴 자수 직물 구조에 비해 높은 마찰 에너지 수확 효율을 보였고, 이러한 결과는 마찰 면적에 따른 전하 밀도와 발생 전압이 비례하는 마찰 에너지 수확의 원리와 일치하였다. 이를 통해 마찰 면적이 큰 파일 자수 직물 구조가 마찰 면적이 상대적으로 작은 사틴 자수 직물 구조에 비해 에너지 수확 효율을 증대시키는데 유리한 방식임을 알 수 있었다. 또한 브러싱 가공 후의 에너지 수확 효율도 마찰 면적 증대로 인해 가공 전에 비해 높게 나타나, 브러싱 가공 방식이 마찰 에너지 수확 증대에 있어서 유리한 가공 방식임을 알 수 있었다.

구리박막의 넓이와 간격에 따른 melt-blown 부직포의 전자파 차폐 효과 (Electromagnetic Shielding Effectiveness of Melt-blown Nonwoven Fabric with Width and Interval of Thin Copper Film)

  • 신현세;손준식;김영상;정진수
    • 한국염색가공학회지
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    • 제16권5호
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    • pp.42-47
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    • 2004
  • The main objective of this work is to develop melt-blown nonwoven fabric composite materials have electromagnetic shielding characteristics using thin copper film. Melt-blown nonwoven fabric is the matrix phase and thin copper films are the reinforcement of the composite materials. Thin copper films are incorporated as conductive fillers to provide the electromagnetic shielding property of the melt-blown nonwoven fabric. The width and interval of thin copper films in the nonwoven fabric are varied by changing 1, 3, 5 mm for thin copper film's width and 1, 3, 5 mm for thin copper film's interval. The shielding effectiveness(SE) of various melt-blown nonwoven fabrics is measured in the frequency range of 50 MHz to 1.8 GHz. The variations of SE of melt-blown nonwoven fabric with width and interval of thin copper films are described. Suitability of melt-blown nonwoven fabric for electromagnetic shielding applications is discussed. The results indicate that the melt-blown nonwoven fabric composite material using thin copper film can be used for the purpose of electromagnetic shielding.

사용자 경험 중심의 섬유일체형 온도조절 스마트재킷 개발과 착용성 평가 (Development and Wearability Evaluation of All-Fabric Integrated Smart Jacket for a Temperature-regulating System Based on User Experience Design)

  • 김사름;노정심;이은영
    • 한국의류산업학회지
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    • 제18권3호
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    • pp.363-373
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    • 2016
  • This study aims to develop an all-fabric integrated smart jacket in order to create a temperature-regulating system based on a user experience design. For this research, previous research technologies of a textile switch interface and a temperature-regulating system were utilized and a unifying technology for the all-fabric integrated smart jacket was developed which can provide the appropriate temperature environments to the human body. A self-heating textile was applied at the areas of the back and hood in the final tested jacket, and an embroidery circuit was developed in the form of a rectangle in the back and in both ears of the hood, taking into account the pattern of the jacket part where it was be applied and the embroidery production method. The textile switch interface was designed in a three-layer structure: an embroidery circuit line in a conductive yarn, an interval material, and a conductive sensing material, and it was made to work with the input and output sensors through the multiple input method. After the all-fabric integrated smart jacket was produced according to the pattern, all of the textile band lines for transmission were gathered and connected with a miniature module for controlling temperature and then integrated into the inside of the left chest pocket of the jacket. After the users put on this jacket, they were asked to assess the wearing satisfaction. Most of them reported a very low level of irritation and discomfort and said that the jacket was as comfortable as everyday clothing.

RF Conductivity Measurement of Conductive Zell Fabric

  • Nguyen, Tien Manh;Chung, Jae-Young
    • Journal of electromagnetic engineering and science
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    • 제16권1호
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    • pp.24-28
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    • 2016
  • This study presents a conductivity measurement technique that is applicable at radio frequencies (RF). Of particular interest is the measurement of the RF conductivity of a flexible Zell fabric, which is often used to implement wearable antennas on clothes. First, the transmission coefficient is measured using a planar microstrip ring resonator, where the ring is made of a Zell fabric. Then, the fabric's conductivity is determined by comparing the measured transmission coefficient to a set of simulation data. Specifically, a MATLAB-based root-searching algorithm is used to find the minimum of an error function composed of measured and simulation data. Several error functions have been tested, and the results showed that an error function employing only the magnitude of the transmission coefficient was the best for determining the conductivity. The effectiveness of this technique is verified by the measurement of a known copper foil before characterizing the Zell fabric. The conductivity of the Zell fabric at 2 GHz appears to be within the order of $10^4S/m$, which is lower than the DC conductivity of $5{\times}10^5S/m$.

폴리아닐린/나일론 6 복합직물의 전기 전도도 향상 연구 (Conductivity Improvement of Polyaniline/Nylon 6 Fabrics)

  • 오경화;성재환;김성훈
    • 폴리머
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    • 제24권5호
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    • pp.673-681
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    • 2000
  • 플라즈마 처리가 나일론 6 직물의 표면 특성과 폴리아닐린/나일론 6 복합직물의 전도도에 미치는 영향을 연구하였다. 산소 플라즈마로 처리한 나일론 6 직물의 표면을 XPS 분석을 통해 확인한 결과 C-O, C-OH 등의 관능기가 도입되었으며, 이는 직물과 폴리아닐린의 결합력을 향상시켜 전기 전도도와 폴리아닐린 부착량을 증가시켰다. 또한 산소 플라즈마로 처리된 폴리아닐린/나일론 6 복합직물은 세탁과 마모에서도 우수한 안정성을 나타내었다. 초음파 처리는 매질에 발생된 cavitation과 진동에 의해 직물 내부로 아닐린을 확산시키는데 효과적이었으며, 이는 폴리아닐린/나일론 6 복합직물의 전기 전도도를 크게 향상시켰다. 아닐린의 농도와 중합욕에 침지 휫수가 증가함에 따라 전기 전도도와 복합직물의 형태안정성에 대한 영향을 살펴보았는데, 단량체 농도는 0.5M 까지는 증가함에 따라 전도도가 향상되었으며, 침지 횟수가 증가함에 따라서도 전도도가 향상되었다.

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광섬유와 LED를 활용한 마카쥬(marquage) 기법의 스마트 토트백 개발 (Development of Smart Tote Bags with Marquage Techniques Using Optical Fiber and LEDs)

  • 박진희;김상진;김주용
    • 패션비즈니스
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    • 제25권1호
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    • pp.51-64
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    • 2021
  • The purpose of this study was to develop smart bags that combining fashion-specific trends and smart information technologies such as light-emitting diodes(LED) and optic fibers by grafting marquage techniques that have recently become popular as part of eco-fashion. We applied e-textiles by designing leather tote bags that could show off LED luminescence. A total of two tote bags, a white-colored peacock design and a black-colored paisley design, divided the LED's light-emitting method into two types, incremental lighting and random light-emission to suit each design, and the locations of the optical fibers were also reversed depending upon the design. The production of circuits for the LEDs and optical fibers was based on the design, and a flexible conductive fabric was laser-cut instead of wire line and attached to the circuit-line location. A separate connector was underwent three-dimensional(3D)-modeling and was connected to high-luminosity LEDs and optic fiber bundles. The optical fiber logo part expressed a subtle image using a white-colored LED, which did not offset the LED's sharp luminous effects, suggesting that using LEDs with fiber optics allowed for the expression of each in harmony without being heterogeneous. Overall, the LEDs and fiber optic fabric were well-harmonized in the fashion bag using marquage techniques, and there was no sense of it being a mechanical device. Also, the circuit part was made of conductive fabric, which is an e-textile product that feels the same as a thin, flexible fabric. The study confirmed that the bag was developed as a smart wearable product that could be used in everyday life.

물리화학적 조건에 따른 은코팅 전도사의 전기적 특성 (Electrical Properties of Ag-coated Conductive Yarns Depending on Physical and Chemical Conditions)

  • 류종우;지영주;김홍제;권서윤;윤남식
    • 한국염색가공학회지
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    • 제23권1호
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    • pp.43-50
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    • 2011
  • Electrically conductive yarn coated with silver particles are widely used to make smart wear but recent studies on smart fabrics are focused on measuring method of electrical characteristics and improving technologies of its electric properties. Also durability of conductive yarn with environmental change was also important work to make smart fabric. We compared resistance changes of silver coated conductive yarns under various physical and chemical conditions such as repeated strain, heat exposure and pH for basic informations on smart wear manufacturing process. And we deduct that repeated strain among the physical conditions was most effective factors on yarn resistance change and the low resistance change was observed with increasing the number of filaments in identical yarn fineness.

Implementation of the Wearable Sensor Glove Using EDA Sensor and Conducting Fabric

  • Lee, Young-Bum;Lee, Byung-Woo;Choo, Young-Min;Kim, Jin-Kwon;Jung, Wan-Jin;Kang, Dae-Hoon;Lee, Myoung-Ho
    • 대한의용생체공학회:의공학회지
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    • 제28권2호
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    • pp.280-286
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    • 2007
  • The wearable sensor glove was developed using EDA sensors and conducting fabric. EDA(Electro-dermal Activity) signal is an electric response of human skin. There are SIL(Skin Impedance Level) and SIR(Skin Impedance Response) in EDA. SIL consists mostly of a DC component while SIR consists of an AC component. The relationship between drowsiness and the EDA signal is utilized. EDA sensors were made using a conducting fabric instead of AgCl electrodes, for a more suitable, more wearable device. The EDA signal acquisition module was made by connecting the EDA sensor gloves through conductive fabric lines. Also, the EDA signal acquisition module can be connected to a PC that shows the results of the EDA signal processing analysis and gives proper feedback to the user. This system can be used in various applications to detect drowsiness and prevent accidents from drowsiness for automobile drivers.

직물형 ECG센서 설계를 위한 제직구조 및 내구성에 대한 기초연구 (Basic Study of Weaving Structure and Durability for Fabric-type ECG Sensor Design)

  • 류종우;지영주;김홍제;윤남식
    • 한국염색가공학회지
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    • 제23권3호
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    • pp.219-226
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    • 2011
  • Recently, study of functional clothing for vital sensing is focused on improving conductivity and decreasing resistance, in order to enhance the electrocardiogram(ECG) sensing accuracy and obtained stable environmental durability on operation condition. In this study, four ECG fabrics that having different componnt yarns and weaving structures were produced to analyze their environmental durabilities and electric properties under general operation conditions including different physical and chemical stimulation. For outstanding electric properties and physical properties, the optimized ECG sensing fabric should consist of a fabric of 2 up 3 down twill structure containing 210de silver-coated conductive yarns and polyester yarn in warp and weft directions respectively. The selected fabric has $0.11{\Omega}$ which is relative lower resistance than otherwisely produced fabrics under ECG measurement condition. And it has 7% stable resistance changes under 25% strain and repeated strain.