• Title/Summary/Keyword: 보유 의복

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각 환경기온하에서의 성인남자 피부온에 관한 연구

  • 심부자
    • Proceedings of the ESK Conference
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    • 1996.04a
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    • pp.250-251
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    • 1996
  • 인간의 온열환경에 대한 적응은 인간-의복-환경 System사이의 산열과 방열의 열교 환을 통해 보유량을 일정하게 유지하는 항체온 조절에 의해 이루어진다. 이러한 인체와 의 관계와의 열교환은 주로 피부표면을 통해 이루어지므로 피부온은 외계로의 방열을 예측 하여 인간의 체온조절반응을 나타내며, 온열감각을 좌우하는 인자로 의복의 온열생리, 의 복의 보온력, 쾌적성을 평가하는 중요한 생리적인 지표가 되어 착의의 적부를 검토하는 데 의미를 지니면서 의복설게의 기초가 된다. 이에 본 연구는 국내의 기후 및 변화된 온열환경에 적응된 인체의 각 환경기온하에서의 피부온을 기존의 연구와는 달리 장시간의 노출에 의한 변동을 파악하여 쾌적 착의의 관점에서 인체와 환경사이에 존재하는 의복에 있어서 설계의 기초가 되는 피부온의 의의를 재검토함을 목적으로 한다.

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Investigations into the Causes of Wardrobe Pveferene/Dispreference through Open-ended Response Questionnaire (자유 기술 응답을 통한 보유 의복 선호/비선호 원인 구조 고찰)

  • Kim Saehee
    • Journal of the Korean Society of Costume
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    • v.54 no.8
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    • pp.59-74
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    • 2004
  • The Purposes of this study are to investigate consumers' causes of clothing preference and dispreference separately, and to get 'real' descriptions about that causes using an open-ended response questionnaire. The sample was composed of 81 undergraduate students. Subjects were asked to select their preferred clothing and disprefered clothing respectively among wardrobes they have and to describe the causes of that preference/dispreference. The data was collected through an open-ended response questionnaire and analyzed using content analysis. The system for content analysis was divided into the view Point of image, clothing itself, wearer's physical characteristics, wearing situation, others' response, wearer's values, wearer's consciousness, and purchase process. Image was the primary cause that raised clothing preference, and clothing itself, wearer's physical characteristic, wearing situation, others' response, wearer's consciousness, wearer's values, and purchase process followed. In audition. wearer's physical characteristic was the primary cause that raised clothing dispreference. and image, clothing itself. wearer's consciousness, wearer's values. wearing situation, purchase process, and others' response followed. Finally, the framework for the causes of clothing preference/dispreference was developed.

Structure and Properties of Wool Keratose Films -the effect of addition of glycerol onto keratose solution-

  • 한청희;박영환
    • Proceedings of the Korean Fiber Society Conference
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    • 1998.10a
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    • pp.320-324
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    • 1998
  • 양모의 주성분인 케라틴 단백질은 과거에는 주로 의복용 재료로서 이용되어 왔지만 최근에는 케라틴이 가지는 물리적, 화학적 특성 때문에 양모-케라틴 유도체를 기능성고분자 소재로 이용하려는 관심이 높아지고 있다. 양모케라틴 단백질은 원래 섬유 자체가 중금속 흡착성을 보유하고 있어 여러 용해 유도체의 흡착특성이 연구되고 있으며 우수한 생체적합성이 있어 헤파린과의 불용성 전해질 복합체를 필름으로 제조하여 인공혈관으로의 응용와 같은 의료분야에의 연구도 진행되고 있다. (1-3) (중략)

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Silica Aerogel Blanket Processing Technologies for Use as a Widespread Thermal Insulation Material (범용 단열재로 활용하기 위한 실리카 에어로젤 블랭킷의 처리 기술)

  • Jae-Wook Choi;Young Su Cho;Dong Jin Suh
    • Clean Technology
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    • v.29 no.4
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    • pp.237-243
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    • 2023
  • Aerogel is the most excellent insulation material known to date, but it is inflexible and has very low strength. A blanket containing aerogel in a nonwoven fabric or fiber is currently the most practical form. However, aerogel blankets are not yet widely used because they cannot avoid dust generation when handled, lack flexibility, and can possibly deform. In this study, vacuum treatment, surface treatment, and composite materialization technology were applied to solve this problem, and some prototypes were also made. If an aerogel blanket is wrapped in an aluminum sheet, sealed at the four ends, and vacuumed, it can become a material with better insulation than the blanket itself. An aerogel molded body can be made by coating the aerogel blanket with resin and treating the surface. If the aerogel blanket is multi-packed and laminated with resin or fiber in multiple layers to make it a composite material, it can be used as a flexible insulation material. In particular, this composite material, which utilizes a Teflon membrane with controlled pores, is breathable and waterproof, so it can be used for clothing. Prototypes of insoles for winter boots and outdoor roll mats were also produced using aerogel blanket resin and fiber composites. These prototypes showed low thermal conductivity of less than 20 mW m-1K-1, with good flexibility and durability.