• 제목/요약/키워드: regenerative material

검색결과 88건 처리시간 0.024초

친환경 패션제품 유형분류체계 개발을 위한 친환경 패션제품 특성 연구 (Research on features of eco-friendly fashion products for the development of typology of eco-friendly fashion products)

  • 여은아
    • 복식문화연구
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    • 제32권1호
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    • pp.86-107
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    • 2024
  • Although interest in eco-friendly fashion products is increasing among scholars and industry leaders, the concept of eco-friendly products remains unclear, preventing consistent assessment of which fashion products are eco-friendly. This study conducted a content analysis of eco-friendly product information from 87 domestic and 102 foreign brands to reveal key standards for categorizing eco-friendly fashion products. Product characteristic information was coded according to the four material-based standards (i.e., organic material, regenerative material, alternative material, and sustainably produced/upcycled material). Consistency between coders was confirmed by Cohen's kappa. In results, eco-friendly fashion products are categorized by four material-based standards and two certification standards (i.e., certified, not certified). Among the four material-based categories, the greatest number of domestic and foreign companies produced eco-friendly products that were classified as the regenerative material group. In addition, companies acquired eco-friendly certifications related to the use of organic, regenerative, and alternative materials. The greatest number of eco-friendly material brands used for eco-friendly fashion products belonged to the regenerative material group. Based on the study results, a typology of eco-friendly products was suggested. This typology can benefit practitioners and academics by highlighting a need for classification system for the eco-friendly fashion products, as well as by providing insight into the categorization of eco-friendly fashion products.

세라믹스의 축열연소시스템 응용 (Ceramic Application for Regenerative Burner System)

  • 한동빈;박병학;김영우;배원수
    • 한국세라믹학회지
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    • 제36권5호
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    • pp.497-503
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    • 1999
  • Recently regenerative burner system was developed and begins to be gradually used for better energy savings. Compared to conventional burner system the regenrative one has the several merits such as higher fuel efficiency light weigh of apparatus low harmful toxic gas and homogeneous heating zone etc. The regenerative material a very important component of the new regenerative burner system should possess the properties of low specific density higher surface area and high specific heat capacity. Ceramics is the best regenerative material because of stable mechanical properties even at high temperature and better thermal properties and excellent chemical stability. In this study alumina ball alumina tube 3-D ceramic foam and hoeycomb as regenerative materials were tested and evaluated. The computer silumation was conducted and compared to the result of field test. This paper is aimed to introduce a new application of ceramics at high temperature.

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축열식 고온공기 연소시스템에 대한 실험적 연구 (Experimental Study on High Temperature Air Regenerative Combustion System)

  • 양병옥;임인권
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 1999년도 제19회 KOSCO SYMPOSIUM 논문집
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    • pp.189-200
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    • 1999
  • Combustion characteristics of a regenerative combustor for high temperature air combustion have experimentally studied. Temperature measurement on regenerative ceramic material and combustor has been carried out with changing equivalence ratio at constant turn-over period. Stable and unstable combustion region have been found and also detailed averaged temperature profile with respect to various air flow conditions have been obtained.

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고분자 생체재료와 줄기세포를 이용한 조직공학과 재생의학의 최신 동향 (Recent Applications of Polymeric Biomaterials and Stem Cells in Tissue Engineering and Regenerative Medicine)

  • 이상진
    • 폴리머
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    • 제38권2호
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    • pp.113-128
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    • 2014
  • Tissue engineering and regenerative medicine strategies could offer new hope for patients with serious tissue injuries or end-stage organ failure. Scientists are now applying the principles of cell transplantation, material science, and engineering to create biological substitutes that can restore and maintain normal function in diseased or injured tissues/organs. Specifically, creation of engineered tissue construct requires a polymeric biomaterial scaffold that serves as a cell carrier, which would provide structural support until native tissue forms in vivo. Even though the requirements for scaffolds may be different depending on the target applications, a general function of scaffolds that need to be fulfilled is biodegradability, biological and mechanical properties, and temporal structural integrity. The scaffold's internal architecture should also enhance the permeability of nutrients and neovascularization. In addition, the stem cell field is advancing, and new discoveries in tissue engineering and regenerative medicine will lead to new therapeutic strategies. Although use of stem cells is still in the research phase, some therapies arising from tissue engineering endeavors that make use of autologous adult cells have already entered the clinic. This review discusses these tissue engineering and regenerative medicine strategies for various tissues and organs.

임플란트 식립시 동종뼈 막의 임상적 활용 (CLINICAL USES OF HOMOLOGOUS GELATINIZED BONE MATRIX(GBM) IN DENTAL IMPLANT SURGERY)

  • 이은영;김경원;엄인웅
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제28권3호
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    • pp.229-236
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    • 2006
  • The biologic principle of guided bone regeneration(GBR) has been studied extensively in hopes of regenerating alveolar bone. Various materials have been utilized as regenerative membranes and grafting materials in implant surgery. To improve the ability of membranes, several types of membrane have been developed. Various materials have been utilized as regenerative membranes; however, all materials have disadvantages, and the ideal membrane material is yet to be identified. In these cases, a homologous gelatinized bone matrix(GBM) were used as a regenerative material in conjunction with the placement of endosseous root implants. 22 patients participated in this study, and 42 implants were inserted. The result of 1st operative surgery was uneventful, inflammatory reaction and dehiscences were not observed except for only one case. After the final protheses, all implants were functioning successfully. The major advantages in the use of GBMs for guided bone regeneration are of very wide application such as membrane and graft material, and that a second procedure to remove the material is not necessary, and the GBMs are accepted by the surrounding tissues without complications. The purpose of this study was to observe the usefulness of GBMs in dental implant surgery.

재생냉각형 가스발생기 챔버 구조해석 (Structural Analysis of Gas Generator Regenerative Cooling Chamber)

  • 류철성;김홍집;최환석
    • 대한기계학회논문집A
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    • 제31권10호
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    • pp.1046-1052
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    • 2007
  • Elastic-plastic structural analysis for regenerative cooling chamber of gas generator was performed. Uniaxial tension test was conducted for STS316L at room and high temperature conditions to get the material data necessary for the structural analysis of the chamber which was operated under thermal load and high internal pressure. Physical properties including thermal conductivity, specific heat and thermal expansion were also measured. The structural analysis for four different types of regenerative cooling chamber of gas generator revealed that increased cooling performance decreased the thermal load and strain of the cooling channel structure. The results propose that in order for the regenerative cooling gas generator chamber to have high structural stability with endurance to high mechanical and thermal loads, it is important for the chamber to be designed to have high cooling performance.

가스발생기 재생냉각 챔버 구조해석 (Structural Analysis of Gas Generator Regenerative Cooling Chamber)

  • 류철성;최환석
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2007년도 춘계학술대회A
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    • pp.802-807
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    • 2007
  • Elastic-plastic structural analysis for regenerative cooling chamber of gas generator was performed. Uniaxial tension test was also conducted for STS316L at room and high temperature conditions to get the material data necessary for the structural analysis of the chamber which is operated under thermal load and high internal pressure. Physical properties including thermal conductivity, specific heat and thermal expansion data were also measured. The structural analysis for four different types of regenerative cooling chamber of gas generator revealed that increased cooling performance decreases the thermal load and strain of the cooling channel. The results propose that in order for the regenerative cooling gas generator chamber to have high structural stability with endurance to high mechanical and thermal loads, it is important for the chamber to be designed to have high cooling performance.

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임플란트 주위 골 결손부의 이식재 크기에 따른 재생 효과 비교 연구 (The comparative study - the regenerative effect depends on size of bone graft material in bone loss site around dental implant)

  • 오흥균;홍기석;정진형;임성빈
    • Journal of Periodontal and Implant Science
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    • 제38권3호
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    • pp.493-502
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    • 2008
  • Purpose: The purpose of this study is to investigate on the regenerative capacity by using different size of graft materials around bony defect around implant. Material and Methods: Dental implant fixtures(Bio-TIS, Korea) were placed into the tibia of 8 rabbits. After placement of implant, artificial defects were created for each group, and the size of bone graft materials were used according to each designated group. 4 weeks after surgery, 8 rabbits were sacrificed. The histologic and histomorphometrical study were done for comparison of the regenerative capacity using $80-90{\mu}m$ and $200{\sim}1000{\mu}m$ size of grafting materials of OCS-$B^{(R)}$. Result: Matured bone formation was significantly increased more in Group E1($80-90{\mu}m$) than in Group E2($200{\sim}1000{\mu}m$). Group E1($80-90{\mu}m$) showed more significant augmentation in marginal length of graft material per unit area than Group E2($200{\sim}1000{\mu}m$). Group E1($80-90{\mu}m$) showed more interspace in graft material than Group E2($200{\sim}1000{\mu}m$). Control group showed no new bone formation around and inside of implanted fixture. Conclusion: Small grafting material size has great influence on bone regeneration.

액체로켓 연소기 재생냉각형 노즐의 벌징 공정 개발 (Development of Bulging Process for Regenerative Cooling Nozzle of Liquid Rocket Thrust Chamber)

  • 류철성;최환석
    • 항공우주기술
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    • 제7권2호
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    • pp.103-109
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    • 2008
  • 액체로켓 연소기의 제작에 필수적인 재생냉각 노즐의 벌징공정에 대한 연구를 수행하였다. 벌징공정을 개발하기 위하여 벌징시험용 재료에 대한 인장시험을 수행하여 기계적인 물성 값들을 획득하였다. 벌징공정을 완료하기 위해서는 벌징치구가 2개 또는 3개 필요하였다. 재료의 네킹이 벌징공정에서 발생되는 주된 실패 원인이었으며, 재료의 그레인 사이즈가 이 네킹 발생에 큰 영향을 미침을 본 연구에서 나타났다. 그레인 사이즈를 조절한 재료로 현재 개발된 벌징공정을 이용하여 축소형 및 30톤 실물형 재생냉각 노즐의 제작을 성공적으로 수행함으로서 본 연구에서 개발된 벌징공정의 적용성 및 유용성을 보여주었다.

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탄소섬유 강화 탄화규소 세라믹 복합소재 초음속 재생냉각 연소기 개발 (Development of regenerative scramjet combustor with carbon fiber reinforced ceramic matrix composites)

  • 김세영;김수현;한인섭;우상국;성영훈
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2017년도 제48회 춘계학술대회논문집
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    • pp.232-235
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    • 2017
  • 초음속 스크램제트 연소기는 약 2000K 이상의 고온과 빠른 유속을 가지는 연소 환경에 노출되며 현재 inconel 등의 고온 금속 소재를 적용하고 있다. 이러한 금속소재는 1000K 이상의 고온 환경에서 물성 저하 현상이 크게 나타나 장시간 및 재사용이 불가능하다. 이에 본 연구에서는 차세대 고온 내열 소재로 주목 받는 섬유강화 세라믹 복합소재를 스크램제트 연소기에 적용하기 위한 연구를 수행 하였으며, 연소효율 향상을 위해 고온의 연료를 분사할 수 있는 재생냉각형 연소기 제조를 위한 기초 기술을 개발 하였다.

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