• Title/Summary/Keyword: Smart textile

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Current Status of International Standardization for Durability Test Methods in Smart Clothing and Future Challenges in Enhancing Product Reliability and Quality Control (스마트 의류의 사용환경 내구성 시험에 대한 국제 표준화 현황과 제품의 신뢰성 향상 및 품질 관리를 위한 향후 과제)

  • Siyeon Kim;Ga-Young Lim;Sukyung Kim;Junghyun Lee
    • Fashion & Textile Research Journal
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    • v.25 no.3
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    • pp.398-408
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    • 2023
  • Smart clothing products can experience a decrease in performance and reliability due to various mechanical, biological, and chemical stress factors that occur throughout their life cycle. These issues can hinder consumer acceptance of the products. This study aims to enhance the reliability of smart clothing and facilitate quality control by analyzing and identifying the current status of international standardization for smart clothing and electronic textiles (e-textiles). The focus of this analysis was on the durability test methods in the use environment. Furthermore, similar standards published by different standardization organizations for durability tests were compared in depth. The study showed that a total of 27 international standards have been developed or are currently under development. The current standardization efforts mainly aim to develop functionality and durability test methods for smart clothing and e-textile products. A detailed comparison was made between two international standards (IEC 63023-204-1:2023 and AATCC TM210:2019) specifically in relation to the washing durability test method and the electrical resistance measurement standards (BS EN 16812:2016 vs AATCC EP13-2021), before and after the environmental exposure tests. Based on this comparison, several suggestions have been made and discussed for the future revision of these international standards.

A Study on the Application Trends of Next-Generation Solar Cells and the Future Prospects of Smart Textile Hybrid Energy Harvesting Devices : Focusing on Convergence with Industrial Materials (차세대 태양전지의 활용 동향 및 스마트 텍스타일 하이브리드 에너지 하베스팅 소자의 미래전망에 관한 연구 : 산업 소재와의 융합 중심)

  • Park, Boong-Ik
    • Journal of Convergence for Information Technology
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    • v.11 no.11
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    • pp.151-158
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    • 2021
  • In this paper, we analyzed the latest research trends, challenges, and potential applications of next-generation solar cell materials in various industrial fields. In addition, future prospects and possibilities of Smart Textile Hybrid Energy Harvesting Devices that will supply electricity by combining with wearable IoT devices are presented. The hybrid textile energy harvesting device fused next-generation solar cells with tribo-piezoelectric devices will develop into new 'Convergence Integrated Smart Wear' by combining the material itself with wearable IoT devices in the era of the 4th industrial revolution. The next-generation nanotechnology and devices proposed in this paper will be applied to the field of smart textile with an energy harvesting function. And we hope it will be a paradigm shift that evolves into creative products which provide AI services such as medical & healthcare by convergence with the future smart wear industry.

The Evaluation of Newness and Innovativeness of Smart Clothing (스마트 의류 Newness와 혁신성 평가)

  • Kang, Keang-Young;Jin, Hyun-Jeong
    • Fashion & Textile Research Journal
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    • v.9 no.5
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    • pp.493-499
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    • 2007
  • The purpose of this study was to investigate the components of newness and product innovativeness of smart clothing, and to examine the evaluation of newness and innovativeness of smart clothing according to the consumer innovativeness. The survey was conducted on male and female subjects aged from 17 to 50. A total of 338 valid responses were used for the analysis. Exploratory factor analysis and confirmatory factor analysis confirmed the evaluation of smart clothing newness consisted of five items: 'novel', 'modern', 'original', 'fresh' and 'up-to-date'. The evaluation of smart clothing innovativeness consisted of two dimensions. One is the evaluation of innovativeness as clothing and the other is the evaluation of innovativenss as electronic devices. The validity of two dimensions were verified by confirmatory factor analysis. The results of ANOVA and Duncan test indicated that there were differences in the evaluation of newness and smart clothing innovativenss according to consumer innovativeness.

A Study of Directions for Development of Smart Clothing Based on the Consumer's Lifestyle (소비자 라이프 스타일 기반의 스마트 의류 기획을 위한 요인 연구)

  • Cho, Ha-Kyung;Kim, Jin-Sun;Lee, Joo-Hyeon
    • Science of Emotion and Sensibility
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    • v.13 no.1
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    • pp.11-20
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    • 2010
  • According to diversity of life style, introduction of well-being trend and increase of demand based on the IT-convergence, Recently "smart clothing" study has been diversified on user applications such as entertainment, healthcare, business and sports. And the smart clothing's market has been progressed in diverse aspects. But, study of smart clothing based on consumer aspect and market diversification is insufficient. The purpose of this study is to identify consumer's needs on smart clothing and to suggest directions for development of smart clothing based on their lifestyle that focused on digital and fashion lifestyle that be closely connected with smart clothing product development. This study is focused on the ages of 20-30 who are considered to be high demand consumers on the smart clothing market. As a result of study, life style based on clothing and digital is categorized 3 types as trend-pursuit style, sensual information-pursuit style and practical function-pursuit style. we suggested direction for development of smart clothing based on consumer's needs of the smart clothing according to the customer's lifestyle types.

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Understanding the Consumer Experience about Smart Clothing Using the Critical Incident Technique (결정적 사건기법(CIT)을 이용한 소비자의 스마트 의류 경험에 대한 연구)

  • Jaekyong Lee;Ha Kyung Lee
    • Fashion & Textile Research Journal
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    • v.25 no.3
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    • pp.304-314
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    • 2023
  • The rapid development of digital technology is diversifying the fashion industry by influencing both the manufacturing processes and the characteristics of fashion products. Although various smart clothing technologies are being developed as part of the government's technology development policy, the number of smart clothing products available to consumers in stores remains very limited. To address this issue, this study analyzes the key attributes of smart clothing as expressed in consumer language. The CIT (Critical Incident Technique) research method was used, and data were collected through an online survey. The study focuses on identifying potential factors that may influence the development direction or strategy of smart clothing. By classifying past experiences and attitudes towards smart clothing into positive and negative categories, it was found that positive responses to smart clothing were heavily influenced by expectations from technology and convenience. Participants' experience with smart technology has had a positive impact on their evaluation of smart clothing. Consumers with negative attitudes towards smart clothing expressed expectations for new benefits resulting from technological development, and indicated that they would consider purchasing such clothing in the future when design and technology improve. Ultimately, this study provides a valuable reference for the development of smart clothing products in Korea by analyzing consumer experiences and acceptance conditions towards smart clothing.

Suggestion of the Structure for Development of Smart Pants with Vibrating Massaging Function (진동 안마 기능의 스마트 팬츠 개발을 위한 설계 제안)

  • Choi, Sun-Yoon;Lee, Jeong-Ran
    • Fashion & Textile Research Journal
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    • v.9 no.3
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    • pp.327-335
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    • 2007
  • As the digital environment gets ubiquitous, domestic and international research and development on smart clothing is being conducted actively these days. However, most research is being carried out with its center on upper garment. So research on lower garment is insufficient even though it affects wearer's activity and comfort to a great extent when digital devices are attached or wearers moves their body. Therefore, the type of clothes this research proposes is men's formal pants which have an electrically-vibrating wearable device. These are smart pants which are helpful in easing muscle pain with their massaging effect in daily life. For this purpose, this research intends to develop patterns considering the body shapes and movements of wearers and suggest a tentative structure plan for smart pants where a vibration device is attached, which is mainly composed of vibrating motor, controller, and switch, and considered their bulks, numbers, attaching places.

A Study of Sensing Locations for ECG Monitoring Clothing based on the Skin Change rate (체표 변화에 기반한 심전도 모니터링 의류의 센싱 위치 연구)

  • Cho, Hakyung;Cho, Sang woo
    • Fashion & Textile Research Journal
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    • v.17 no.5
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    • pp.844-853
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    • 2015
  • Recently, according to change of lifestyle and increase of concerning in health, needs of the smart clothing based on the vital sign monitoring have increased. Along with this trend, smart clothing for ECG monitoring has been studied various way as textile electrode, clothing design and so on. Smart clothing for ECG monitoring can become a comfortable system which enables continuous vital sign monitoring in daily use. But, smart clothing for ECG monitoring has a weakness on artifact during motion. One of the motion artifact caused by shifting of the electrode position was affected skin change by motion. The aim of this study was to suggest electrode locations for clothing of ECG monitoring to reduce of motion artifacts. Therefore, change of skin surface during the movement were measured and analyzed in order to find location to minimize motion artifacts in ECG monitoring clothing by 3D motion capture. For the experiment, the subjects consisted of 5 males and 5 females in their 20' with average physique. As a result, the optimal location for ECG monitoring was deducted under the bust line and scapula which have least motion artifact. These locations were abstracted to be least affected by movement in this research.

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

  • Ryu, Jong-Woo;Jee, Young-Joo;Kim, Hong-Jae;Kwon, Seo-Yoon;Yoon, Nam-Sik
    • Textile Coloration and Finishing
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    • v.23 no.1
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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.