• 제목/요약/키워드: Textile Sensor

검색결과 112건 처리시간 0.027초

Synthesis and Optical Properties of Poly(hydroxyphenylbenzoxazole): A Colorimetric and Fluorescent Sensor for Ionic Species

  • Lee, Jin-Koo;Kim, Tae-Hyun;Kim, Young-shin;Gang Li;Park, Won-Ho;Lee, Taek-Seung
    • 한국섬유공학회:학술대회논문집
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    • 한국섬유공학회 2003년도 The Korea-Japan Joint Symposium
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    • pp.23-24
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    • 2003
  • We synthesized a poly[2-(2'-hydroxyphenyl) benzoxazole] under the two step procedures of Suzuki coupling polymerization with corresponding monomers followed by the deprotection of benzyl group. The polymer in DMF solution is applicable to colorimetric sensing fluoride anion, which shows a color change from colorless to yellow. High sensitivity to fluoride anion compared to other anions such as phosphate, chloride, and sulfate is ascribed to the high coordination ability of the 2-(2'-hydroxy phenyl)benzoxazole moiety in the polymer chain. Emission shift by metal cations, which can be applied to fluorescent sensing w as also observed in the polymer solution.

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거북목 예방을 위한 텍스타일 센서 개발 (Development of Textile Sensors for Prevention of Forward Head Posture)

  • 김민석;박진희;김주용
    • 패션비즈니스
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    • 제27권4호
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    • pp.125-140
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    • 2023
  • This study aimed to develop a smart wearable device for assessing the risk angle associated with turtle neck syndrome in patients with Video Display Terminal (VDT) syndrome. Turtle neck syndrome, characterized by forward head posture resulting from upper cross syndrome, leads to thoracic kyphosis. In this research, a stretch sensor was used to monitor the progression of turtle neck syndrome, and the sensor data was analyzed using a Universal Testing Machine (UTM) and the Gauge Factor (GF) calculation method. The scapula and cervical spine angles were measured at five stages, with 15-degree increments from 0° to 60°. During the experimental process, the stretch sensor was attached to the thoracic spine in three different lengths: 30mm, 50mm, and 100mm. Among these, the attachment method yielding the most reliable data was determined by measuring with three techniques (General Trim Adhesive, PU film, and Heat Transfer Machine), and clothing using the heat transfer machine was selected. The experimental results confirmed that the most significant change in thoracic kyphosis occurred at approximately 30° of forward head posture. Prolonged deformity can lead to various issues, highlighting the need for textile sensor solutions. The developed wearable device aims to provide users with real-time feedback on their turtle neck posture and incorporate features that can help prevent or improve the condition.

Implementation of Real-time Sedentary Posture Correction Cushion Using Capacitive Pressure Sensor Based on Conductive Textile

  • Kim, HoonKi;Park, HyungSoo;Oh, JiWon
    • 한국컴퓨터정보학회논문지
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    • 제27권2호
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    • pp.153-161
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    • 2022
  • 일상생활의 전반에 걸쳐 필요한 생활용품들이 자동화, 스마트화, 지능화됨으로 인해 물리적인 활동이 줄고 앉아 있는 시간이 늘어가는 추세이다. 최근 헬스케어 연구에서는 앉아 있는 시간에 비례해서 비만, 당뇨병, 심장혈관질환, 그리고 조기사망의 가능성이 높아진다고 보고되었다. 본 논문에서는 전도성 섬유 기반 전기용량성 압력 센서를 이용한 실시간 앉은 자세 교정 방석을 개발한다. 자세 교정 방석의 핵심 부품인 전도성 섬유를 이용한 압력 센서를 개발하고, 저전력 기반의 압력 측정 회로를 개발한다. 자세 교정 방석에서 BLE(Bluetooth Low Energy) 근거리 무선통신을 이용하여 실시간으로 측정된 센서값을 스마트 폰으로 전송할 수 있는 기능을 제공하고, 이 센서값을 통해 앉은 자세의 상태를 확인할 수 있도록 모바일 앱을 개발한다. 모바일 앱에서는 앉은 자세를 시각화하여 실시간으로 확인할 수 있고 잘못된 자세로 일정시간 유지할 경우 알람으로 알릴 수 있다. 또한, 앉아 있는 시간 및 자세 정확도를 그래프로 시각화할 수 있도록 한다. 본 논문의 교정 방석을 통해 사용자의 앉아 있는 자세 상태를 인지하여 실제적으로 사용자 자세 교정에 얼마나 효과적인지를 실험해 보고 타제품과 비교하여 차별성과 우수성을 제시한다.

사용성 평가에 기반한 센서 기반 헬스 케어 스마트 의류의 모형 개발 (The Development of Sensor based Healthcare Smart clothing based on usability test)

  • 조하경;이주현
    • 감성과학
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    • 제11권1호
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    • pp.81-90
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    • 2008
  • 최근의 스마트 의류는 급변하는 환경과 테크놀로지 그리고 인간중심의 패러다임의 변화는 기술적 발전과 더불어 보다 인간 중심의 요소와 감성을 중시한 디자인을 요구하며, 기술적인 측면과 함께 보다 인간 중심의 사용성 평가를 중시하는 디자인으로 연구, 개발되고 있다. 이에 본 연구에서는 헬스케어를 위한 생체신호 측정 센서 기반 스마트 의류의 디자인 프로토 타입을 개발, 사용성 평가 및 착용성 평가를 실시하였다. 평가는 정성적, 정량적 평가로 이루어졌으며, 사용성 평가 결과를 기반으로 도출된 문제점의 수정, 보완을 통해 최종 센서기반 스마트 의류의 모형을 제시하였다.

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높은 민감도 및 우수한 피부 통기성을 가진 마이크로 섬유 기반의 직물형 유연 압력 센서 (Microfiber-based Textile Pressure Sensor with High Sensitivity and Skin-breathability)

  • 한강토;최장희;임정우;공혜영;배근열
    • 한국염색가공학회지
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    • 제35권3호
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    • pp.179-187
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    • 2023
  • In this study, we developed a microfiber-based flexible pressure sensor with high sensitivity and excellent skin breathability. A nonwoven fabric composed of microfibers was prepared by electrospinning, which resulted in excellent moisture permeability of the sensor (143 g∙m-2∙h-1). In particular, high-pressure sensitivity (0.36 kPa-1) was achieved by introducing submicron structures on the microfiber surface by controlling the ambient humidity during electrospinning. The fabrication technology of the microfiber-based flexible pressure sensors reported in this study is expected to contribute to the commercialization of flexible pressure sensors applicable to long-term wearable health monitoring as well as virtual/augmented reality and electronic skin applications.

압전 필름과 전도성 섬유를 이용한 맥파 전달 속도 측정을 위한 센서의 제작 및 성능평가 (Fabrication and Evaluation of Sensor for Measuring Pulse Wave Velocity using Piezo Film and Conductive Textile)

  • 김정채;지선하;유선국
    • 센서학회지
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    • 제21권2호
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    • pp.135-143
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    • 2012
  • Arterial stiffness is causing the serious problems for human who is suffered from hypertension and metabolic syndrome. So it is important that measure the arterial stiffness for early prevention. Many researches point out that pulse wave velocity(PWV) is the reliable and simple method to predict arterial stiffness. In this paper, we developed the sensing parts that detect the pulse wave and ECG by using piezoelectric film and conductive textile with elastic band. Our system could detect 3ch pulse wave and ECG. Simultaneously, our algorithm extracts the features for calculating the delays among pulse waves. The delays are the significant parameter to estimate PWV, thus we design the experiment for evaluating the performance of our sensing parts. The reference is PP-1000(HanByul Meditech, Korea) that is good for performance evaluation. As a result, the start point of the pulse wave was the most reliable feature for comparing with PP-1000(r=0.691, P=0.00). The results between two operators showed that there is only a slight difference in the reproducibility of the devices. In conclusion, we assume that the suggested sensor could be more comfortable and faithful method for arterial stiffness.

텍스타일형 스트레치 센서를 이용한 스마트 축구 양말 개발 -14~15세 여중생을 중심으로- (Development of Smart Soccer Socks Using a Textile Stretch Sensor -Focused on Middle School Girls between the Ages of 14 and 15-)

  • 김지선;박진희;김주용
    • 패션비즈니스
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    • 제24권3호
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    • pp.17-29
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    • 2020
  • This study aimed to produce fiber stretch sensors for smart soccer socks to prevent injuries during training. A sensor was manufactured with stretchable fabric and tested to ensure convenience during training. In order to manufacture the fiber stretch sensor, a CNT dispersion solution was applied to an e-band and elastic polyester fabric, and the performance of the sensors was evaluated by a tensile test. Performance evaluation showed that both of the tested fabrics are excellent for this purpose. Both sensors were attached to socks to create prototype wearable devices, and an experiment was conducted to determine whether a resistance change accompanying relaxation and contraction of the gastrocnemius muscle could be detected. In order to accurately evaluate performance as a sensor, the fabric was stretched 20 times at low speeds of 1 Hz and 0.5 Hz. A change in resistance due to tension was observed, with both the E-band and the stretchable poly fabric showing high sensitivity and high reproducibility. Both can be used as relaxation/contraction sensors. Smart soccer socks were made using the two materials, and an evaluation was conducted. Tensile tests were done on the smart soccer socks; the tests were done 20 times per sock, and the sensor showed a stable resistance change between 30 and 40 ohms depending on the tension of the sensor. As a result, we confirmed that smart soccer socks with stretch sensors made of E-bands can measure changes in the gastrocnemius muscle.

호흡 측정 기능의 스마트 의류를 위한 기초 디자인 연구 (A Study of the Basic Design for Smart Clothing based on Measurement of the Respiration)

  • 조하경;민세동
    • 감성과학
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    • 제15권4호
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    • pp.415-424
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    • 2012
  • 1990년대 이후 웰빙 라이프스타일의 도입 및 인구 고령화 사회의 진입으로 인해 언제 어디서나 지속적으로 측정가능한 생체 신호 센싱 모니터링 시스템에 대한 관심이 높아지고 있다. 이에 따라, 최근 지속적으로 호흡 측정이 가능한 시스템에 대한 연구 및 개발이 활발히 이루어지고 있으나 소비자 수요에 기반한 스마트 의류적용을 위한 호흡 측정 시스템의 연구는 미비하다. 따라서, 본 연구에서는 압전의 원리를 이용하여 호흡시 인체의 체표면이 변화하면서 센서에 가해지는 압력을 전기적 신호로 바꾸어 호흡을 측정하는, 전도성 섬유기반의 전기용량성 섬유 압력 센서(Textile Capacitive Pressure Sensor, TCPS)를 개발하였으며, 이를 실증적 연구를 통해 센서의 유용성을 입증하고자 하였다. 그 결과, Nasal로부터 측정된 호흡율과 TCPS를 통해 측정된 호흡율간의 상관계수는 r=0.9553 (p< 0.0001)로 TCPS의 신호 측정 정확성을 확인할 수 있었으며, 또한, 사용성 및 착용성 평가의 결과 인지적 변화, 착용성, 운동성, 관리의 용이성 및 유용성에서 모두 만족한다 정도의 평가 결과를 가져와 본 연구에서 개발된 TCPS의 착용성 및 의류 적합성을 입증하였다. 마지막으로 TCPS의 의류 적합 위치 평가 결과는 복부 부위에서 신호의 안정감을 갖으며, 착용감도 높은 것으로 나타났다. 최종적으로, 위의 결과들을 종합하여 호흡 측정 기능의 스마트 의류 개발을 위한 기초 디자인을 제시하였다.

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지속가능 섬유 소재 추적성과 저탄소화 공정 (Low Carbonization Technology & Traceability for Sustainable Textile Materials)

  • 최민기;김원준;심명희
    • 한국의류산업학회지
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    • 제25권6호
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    • pp.673-689
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    • 2023
  • To realize the traceability of sustainable textile products, this study presents a low-carbon process through energy savings in the textile material manufacturing process. Traceability is becoming an important element of Life Cycle Assessment (LCA), which confirms the eco-friendliness of textile products as well as supply chain information. Textile products with complex manufacturing processes require traceability of each step of the process to calculate carbon emissions and power usage. Additionally, an understanding of the characteristics of the product planning-manufacturing-distribution process and an overall understanding of carbon emissions sources are required. Energy use in the textile material manufacturing stage produces the largest amount of carbon dioxide, and the amount of carbon emitted from processes such as dyeing, weaving and knitting can be calculated. Energy saving methods include efficiency improvement and energy recycling, and carbon dioxide emissions can be reduced through waste heat recovery, sensor-based smart systems, and replacement of old facilities. In the dyeing process, which uses a considerable amount of heat energy, LNG, steam can be saved by using "heat exchangers," "condensate management traps," and "tenter exhaust fan controllers." In weaving and knitting processes, which use a considerable amount of electrical energy, about 10- 20% of energy can be saved by using old compressors and motors.