• Title/Summary/Keyword: Pet-tech

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Development of Cold Chain Delivery Service for Pet Healthcare Service using IoT Technology and Service Design (IoT 기술과 서비스디자인을 활용한 반려동물 헬스케어 서비스를 위한 검체 운반 콜드체인 배송 서비스 개발 )

  • Haewoong Shin;Jangsoo Kim
    • Journal of Platform Technology
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    • v.11 no.1
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    • pp.60-71
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    • 2023
  • The pet industry is also developing and growing in various ways as the number of companions is steadily increasing around the world and social awareness of pets has changed to members of the "family." The pet tech market, which can check health changes early by utilizing IOT technology, is also drawing attention as pets often cannot be expressed even if they have health problems. Based on this problem recognition, this study aims to promote the cold chain service market by developing important animal sample transport services in the pet healthcare market and to develop solutions that satisfy all stakeholders such as pets, pets, and animal hospitals. It was developed to apply sustainability related to society and culture as well as economic and environmental values in the research process.

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Experimental Study on Drainage Characteristics of PET Aggregates (PET 인공골재의 배수특성에 관한 실험적 연구)

  • Shin, Eun-Chul;Shin, Hui-Su;Kim, Kyeong-Sig;Kim, Ki-Sung;Park, Jeong-Jun
    • Journal of the Korean Geosynthetics Society
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    • v.15 no.2
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    • pp.35-44
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    • 2016
  • PET aggregates were produced by mixing heated PET flakes with frictional soils. Using these artificially-made PET aggregates, horizontal drain tests in the laboratory, pilot scale model tests were conducted for the evaluation of the drainage characteristics of PET aggregates. Laboratory horizontal drain tests were conducted under twenty different conditions varying mixing ratios and surcharged pressures. Moreover, by utilizing the aggregates with a mixing ratio producing the lowest variation in terms of permeability against applied load, large scale tests were performed. Reliability of the test results was evaluated from comparison with the results of the laboratory horizontal drain test.

A Study on the Low-Temperature Plasma$(O_2)$ Etching of Poly (ethylene terephthalate) Fabrics (I) -Effects of Weight Loss and Bathochromicity- (PET 직물에 대한 저온 plasma$(O_2)$ Ethching에 관한 연구(I))

  • Cho, Hwan;Jeong, Hee-Cheon;Cho, In-Sul;Huh, Man-Woo;Chang, Du-Sang
    • Textile Coloration and Finishing
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    • v.2 no.3
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    • pp.8-13
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    • 1990
  • In order to study the modification of wettability, tactility, and bathochromicity of the poly (ethylene Terephthalate) (PET) fabrics, low-temperature plasma$(O_2)$ has been irradiated on the PET fabrics in various conditions. The results obtained from this study were as follows; 1) The weight loss rate of plasma-treated PET fabrics is proportional to irradiation time and internal gas temperature of treating chamber. Also, the effect of weight loss is remarkable at gas pressure ranging from 3 torr to 5 torr. 2) The bathochromic effect of PET fabrics treated with low-temperature plasma$(O_2)$ was improved.

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Surface Characteristics of Sputter Etched Poly(ethylene terephthalate) and Nylon 6 Films (Sputter Etching한 Poly(ethylene terrephthalate)와 Nylon 6 Film의 표면특성)

  • Kang, Koo;Wakida, T.;Cho, In-Sul;Cho, Hwan
    • Textile Coloration and Finishing
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    • v.3 no.2
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    • pp.25-33
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    • 1991
  • Poly(ethylene terephthalate)(PET) and nylon 6 films stretched uniaxially and biaxially were sputter etched in the presence of argon gas. The surface of the etched films was investigated using a scanning electron microscope(SEM). While cracks perpendicular to the stretched direction were observed in the uniaxil stretched films sputter etched for 30 min., many protrusions were formed in the biaxial stretched films at the height of 0.3-0.4 gm for PET and $0.1-0.2\mum$ for nylon 6. The tops of two or three protrusions merged etching time increased to 60 min. The contact angle to water of the sputter etched PET and nylon 6 films decreased steeply when etched for one to 3 min. In order to investigate chemical changes on the surface ESCA analysis was carried out. In both films sputter etched $C_{1s}$ intensity decreased and $O_{1s}$ intensity increased compared with the unetched ones.

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Analysis of Migration Properties and Color Fastness of Disperse Dyes on Acetate, Tri-Acetate, PET and Mixture Fabrics (Acetate, Tri-Acetate, PET 및 복합소재에 대한 염색성 및 물성분석)

  • Kim, Gyeong-Mi;Woo, Jong-Hyeong;Chung, Yean-Kyu
    • Proceedings of the Korean Society of Dyers and Finishers Conference
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    • 2011.11a
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    • pp.51-51
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    • 2011
  • Acetate 섬유는 고감성 제품의 대표적 핵심소재로서 실크와 같은 우아한 광택과 청량감을 주어 고가의 의류제품으로 사용되지만 편직 및 염색가공 공정이 까다롭고 비교적 저분자량의 분산염료로 염색되어 내열성, 염색견뢰도 및 물에 대한 형태안정성이 떨어진다. 특히, Acetate 편직물은 이태리나 일본 등 섬유선진국에서도 제조가 까다로운 기술적 난이도가 매우 높은 제품군이다. 반면 Tri-Acetate는 Acetate의 장점을 가지면서 내열성, 내세탁성, 원상회복력(resilience)등이 우수하여 기존 Acetate 시장의 고급제품 용도로의 전개가 가능할 뿐만 아니라 PET 등의 물성 및 형태가 다른 복수의 소재성분을 직물 사이에 공존시킴으로써 새로운 태, 기능, 외관, 광택의 부여가 가능하며 이를 활용한 차별화된 고부가가치 시장의 창출이 기대된다. Acetate와 Tri-Acetate 모두 셀룰로오스의 친수기가 아세틸화된 구조를 가지는 소수성 섬유로 분자구조가 치밀하여 분산염료로 염색된다. 그러나 일반적으로 Acetate 섬유의 경우 Acetate용 일반분산염료를 사용하여 저온상압염색을 하는 반면, Tri-Acetate의 경우 고온고압 분산염료를 사용하여 고온고압염색을 한다. PET와 Tri-Acetate 복합소재의 경우, 두 소재의 염색거동이 비슷하여 고온고압 분산염료로 염색이 가능하지만 T/P 복합소재에 상응하는 염색을 위해서는 복합소재를 구성하는 각각의 섬유소재에 적합한 염료의 선정 및 염색법의 개발이 필요하다. 본 연구에서는 Tri-Acetate 및 T/P 복합소재에 대한 염색최적조건을 규명하고자 염색온도별, 2종의 분산염료의 농도별 염색성, 염색시료의 인열강도 및 견뢰도를 측정하여 적정조건을 도출하였다.

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A Study on the Alkali Hydrolysis of Sea-island PET Ultra-microfiber (해도형(海島型) PET 초극세섬유의 알칼리 가수분해에 관한 연구)

  • Seo, Mal Yong;Lee, Jun Hee;Ok, Chi Min;Cho, Seong Hun;Lee, Jong Woo;Cho, Ho Hyun
    • Textile Coloration and Finishing
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    • v.25 no.4
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    • pp.303-313
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    • 2013
  • Alkali hydrolysis of sea-island PET 0.02denier microfiber were compared to those on the fabrics of the 0.06denier microfiber. In the dissolution of the sea component out of sea island type ultra-microfiber, it is important to determine the optimum division and divided material. Weight reduction of sea island ultra-micro sea island fiber was faster than regular PET about 10 times. Also 0.2denier sea-island ultra-micro sea island fiber has better color fastness (washing, friction, and daylight) than 0.06denier level sea-island ultra-microfiber. In this study, 0.2denier ultra-micro sea island fiber shows the possibility of high value product.

Electrospinning Application for Production of Nano-type PET Fibers (나노형 폴리에스테르섬유 제조에 있어 전기방사의 응용)

  • Shin, Jung-Hee;Lee, Seung-Goo;Joo, Chang-Whan
    • Proceedings of the Korean Fiber Society Conference
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    • 2002.04a
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    • pp.173-176
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    • 2002
  • With the introduction of high-tech industries, these days textile products used as advanced materials of semiconductor, transport and medical fields. It was concerned with environmental problem in textile industry lately. So the problem is receiving careful study for high effectiveness and high efficiency of filter media made by nonwoven fabric to get rid of a pollutant. PET filter media produced from conventional methods can not precisely filtrate small particles, because conventional PET filter media has too large pore size. (omitted)

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A Study on the Bathochromic of Poly(Ethylene Terephthalate) Fabrics by Plasma Polymerization (Plasma polymerization에 의한 PET 직물의 심색화에 관한 연구)

  • Cho, Hwan;Kim, Han-Ki;Jang, Byung-Yul;Lee, Kwang-Woo;Cho, In-Sool;Heo, Man-Woo
    • Textile Coloration and Finishing
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    • v.5 no.3
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    • pp.194-205
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    • 1993
  • Plasma polymerization in prepared glow discharge was carried out to improve the bathochromic of dyed PET fabrics by using silicon containing vinyl monomer in plasma polymerization equipment which consists of a pair of electrodes was connected to the 13.56MHz RF generator. The optimum condition for the bathochromic effect was investigated on various plasma polymeriztion parameters. By plasma polymerization used silicon containing vinyl monomer, the bathochromic of dyed PET fabrics was very enhanced. The optimum conditions on this equipment were as follows ; electrode distance : 3cm, discharge output : 60W, gas pressure : 0.3 Torr, monomer flow rate : 30㎤/min. plasma polymerization time : 60sec. The apparent strength of plasma polymerized PET fabrics was increased about 40∼47% with decreasing about 3 of L value.

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