• 제목/요약/키워드: non-woven tissue

검색결과 17건 처리시간 0.019초

무게가 상이한 탄소부직포가 삽입된 CFRP적층판의 층간파괴인성 (Interlaminar Fracture Toughness of CFRP Laminates with Carbon Non-Woven Tissue Having Different Weights)

  • 정성균
    • Composites Research
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    • 제22권2호
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    • pp.43-48
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    • 2009
  • 탄소부직포(CNWT)의 삽입에 의해 개선되는 층간파괴특성을 활용하기 위하여, CNWT의 무게에 대한 층간파괴인성값(GIC 및 GIIC)의 변화를 비교함으로써 CFRP적층판에 삽입되는 적절한 CNWT의 무게를 세안하고자 실험적으로 검토하였다. Mode I 및 Mode II 층간파괴인성값(GIC 및 GIIC)은 DCB 실험과 ENF 실험에 의하여 얻어졌으며, 6종류($8g/m^2,\;10g/m^2,\;12g/m^2,\;16g/m^2,\;20g/m^2$$24g/m^2$)의 CNWT가 각각 삽입된 6종류의 시험편들이 준비되었다. 6종류의 CNWT가 삽입된 시험편들에 대하여, 평균적인 GIC는 거의 비슷하였고 CFRP시험편과 비교하여 약간 감소하였다. 무게가 다른 CNWT가 삽입된 시험편들의 Mode II 층간파괴인성값(GIIC) 역시 서로 비슷하였으나, CFRP 시험편의 Mode II 층간파괴 인성값에 비해서는 약 2배 이상 게 증가하였다. 탄소부직포의 무게에 따른 층간과괴인성값(GIC 및 GIIC)들 사이에는 각별한 상관관계가 되이지 않았으며, CNWT의 삽입에 의해 개선되는 층간파괴특성을 활용하기 위해서는 6종류의 CNWT 중에 경제적이고 무게가 가벼운 $8g/m^2$의 CNWT를 선택하는 것이 바람직하다고 제안한다.

부직포를 이용한 하이브리드 복합재료의 개발 (On the Development of Hybrid Composites with Non-Woven Tissue)

  • 이승환;노구찌히로시;정성균
    • Composites Research
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    • 제19권2호
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    • pp.20-27
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    • 2006
  • 부직포를 이용한 하이브리드 복합재료는 일반적인 섬유강화 적층복합재료의 기계적 특성을 개선하기 위하여 개발되었다. 부직포 하이브리드 프리프레그는 전형적 FRP 프리프레그와 부직포 프리프레그로 이루어전 있다. 부직포 프리프레그는 부직포와 수지의 조합에 의해 만들어진다. 부직포는 단섬유가 평면상에 불규칙적으로 분산되어 배치된 형상이다. 부직포를 이용한 하이브리드 프리프레그의 개발목적은 (i) 적층간의 층간특성(층간파괴인성 및 층간강도)을 향상시키고, (ii) 저비용으로 재료의 기계적 강도에 대한 신뢰성을 개선하며, (iii) 복합적층판에서 강화가 요구되는 층에 인성과 강도를 부여함에 있다. 상기의 목적을 달성하기 위하여 부직포층의 기포를 감소시키기 위한 제조기술을 제안하였다. 그 결과, 부직포를 이용한 하이브리드 개념을 도입함으로써 복합적층판의 층간파손특성이 크게 개선되었다.

백서 두개골 결손부에서 항생제를 함유한 키토산 차단막의 골재생 유도 효과 (The Bone regenerative effects of tetracycline blended chitosan membranes on the calvarial critical size defect in Sprague dawley rats)

  • 채경준;김태균;정의원;이수복;정용식;이용근;김창성;채중규;조규성;김종관;최성호
    • Journal of Periodontal and Implant Science
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    • 제35권4호
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    • pp.1019-1037
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    • 2005
  • The major goals of periodontal therapy are the functional regeneration of periodontal supporting structures already destructed by periodontal disease as well as the reduction of signs and symptoms of progressive periodontal disease. There have been many efforts to develop materials and therapeutic methods to promote periodontal wound healing. There have been increasing interest on the chitosan made by chtin. Chitosan is a derivative of chitin made by deacetylation of side chains. Chitosan has been widely studied as bone substitution and membrane material in periodontology. Many experiments using chitosan in various animal models have proven its beneficial effects. Tetracycline has been considered for use in the treatment of chronic periodontal disease and gingivitis. The aim of this study is to evlauate the osteogenesis of tetracycline blended chitosan membranes on the calvarial critical size defect in Sprague Dawley rats. An 8mm surgical defect was produced with a trephine bur in the area of the midsagittal suture. The rats were divided into five groups: Untreated control group versus four experimental group. Four types of membranes were made and comparative study was been done. Two types of non-woven membranes were made by immersing non-woven chitosan into either the tetracycline solution or chitosan-tetracycline solution. Other two types of sponge membranes were fabricated by immersing chitosan sponge into the tetracycline solution, and subsequent freeze-drying. The animals were sacrificed at 2 and 8 weeks after surgical procedure. The specimens were examined by histologic analyses. The results are as follows: 1. Clinically the use of tetracycline blended chitosan membrane showed great healing capacity. 2. The new bone formations of all the experimental group, non-woven and sponge type membranes were greater than those of control group. But, there was no significant difference between the experimental groups. 3. Resorption of chitosan membranes were not shown in any groups at 2 weeks and 8 weeks. These results suggest that the use of tetracycline blended chitosan membrane on the calvarial defects in rats has significant effect on the regeneration of bone tissue in itself. And it implicate that tetracycline blended chitosan membrane might be useful for guided tissue regeneration.

Preparation and Characterization of Small Intestine Submucosa Powder Impregnated Poly(L-lactide) Scaffolds: The Application for Tissue Engineered Bone and Cartilage

  • Khang, Gilson;Rhee, John M.;Shin, Philkyung;Kim, In Young;Lee, Bong;Lee, Sang Jin;Lee, Young Moo;Lee, Hai Bang;Lee, Ilwoo
    • Macromolecular Research
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    • 제10권3호
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    • pp.158-167
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    • 2002
  • In order to endow with new bioactive functionality from small intestine submucosa (SIS) powder as natural source to poly (L-lactide) (PLA) and poly (lactide-co-glycolide) (PLGA) synthetic biodegradable polymer, porous SIS/PLA and SIS/PLGA as natural/synthetic composite scaffolds were prepared by means of the solvent casting/salt leaching methods for the possibility of the application of tissue engineered bone and cartilage. A uniform distribution of good interconnected pores from the surface to core region was observed the pore size of 40~500 ${\mu}{\textrm}{m}$ independent with SIS amount using the solvent casting/salt leaching method. Porosities, specific pore areas as well as pore size distribution also were almost same. After the fabrication of SIS/PLA hybrid scaffolds, the wetting properties was greatly enhanced resulting in more uniform cell seeding and distribution. Five groups as PGA non-woven mesh without glutaraldehyde (GA) treatment, PLA scaffold without or with GA treatment, and SIS/PLA (Code No.3 ; 1 : 12 of salt content, (0.4 : 1 of SIS content, and 144 ${\mu}{\textrm}{m}$ of median pore size) without or with GA treatment were implanted into the back of nude mouse to observe the effect of SIS on the induction of cells proliferation by hematoxylin and eosin, and von Kossa staining for 8 weeks. It was observed that the effect of SIS/PLA scaffolds with GA treatment on bone induction are stronger than PLA scaffolds, that is to say, in the order of PLA/SIS scaffolds with GA treatment > PLA/SIS scaffolds without GA treatment > PGA nonwoven > PLA scaffolds only with GA treatment = PLA scaffolds only without GA treatment for the osteoinduction activity. The possible explanations are (1) many kinds of secreted, circulating, and extracellular matrix-bound growth factors from SIS to significantly affect critical processes of tissue development and differentiation, (2) the exposure of SIS to GA resulted in significantly calcification, and (3) peri-implant fibrosis due to covalent bonding between collagen molecule by crosslinking reaction. In conclusion, it seems that SIS plays an important role for bone induction in SIS/PLA scaffolds for the application of tissue engineering area.

수종의 흡수성 차단막의 생체 분해도와 조직학적 반응 (Resorbability and histological reaction of bioabsorbable membranes)

  • 석헌주;권석훈;김창성;최성호;전동원;김종관
    • Journal of Periodontal and Implant Science
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    • 제32권4호
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    • pp.781-800
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    • 2002
  • The major goals of periodontal therapy are the functional regeneration of periodontal supporting structures already destructed by periodontal disease. There have been many efforts to develop materials and therapeutic methods to promote periodontal wound healing. With the development of non-resorbable membrane, GTR has proved to be the representive technique of periodontal regeneration. However, due to various clinical problems of non-resorbable membrane, resorbable membrane was developed and it showed to be clinically effective. The newly developed Para-Dioxanone membrane has a characteristic of non-woven fabric structures which is different from the generally used membranes with structure of mesh form. In addition, Chitosan membrane has been developed to apply its adventage maximally in GTR. Although a number of different types of membranes had been clinically used, researches on absorption rate of membranes were inadequate and limited to subjective opinions. However, since long term period of resorption and space maintenance are required in implant or ridge augmentation, accurate verification of resorption rate is clinically important. In this study, we had implanted Resolut(R), Biomesh(R), Para-Dioxanone membrane and Chitosan membrane (Size : 4mm ${\times}$ 4mm) on dorsal side of Sprague Dawley rat, and sacrified them after 4 weeks, 8 weeks, 12 weeks respectively. Histologic observation was carried out, and the following results were obtained by calculating the objective resorption rate. 1. In case of Resolut(R), external resorption took place initially, followed by internal resorption. Surface area are 5.76${\pm}$2.37$mm^2$, 4.90${\pm}$l.06$mm^2$, 4.90${\pm}$0.98$mm^2$ at 4 weeks, 8 weeks, 12 weeks respectively, and invasion rate of connective tissue to membrane are 31.6${\pm}$4.5%, 52.8${\pm}$9.4%, 56.4${\pm}$5.1% respectively. 2. Biomesh(R) showed a pattern of folding, relatively slow resorption rate with small size of membrane. Surface area are 3.62${\pm}$0.82$mm^2$, 3.63${\pm}$0.76$mm^2$, 4.07${\pm}$1.14$mm^2$ at 4 weeks, 8 weeks, 12 weeks respectively, and invasion rate of connective tissue to membrane are 26.1${\pm}$5.8%, 30.9${\pm}$3.4%, 29.2${\pm}$3.6%, respectively. 3. Para-Dioxanone membrane was surrounded by fibrous conncetive tissue externally, and resorption took place internally and externally. Surface area are 5.96${\pm}$1.05$mm^2$, 4.77${\pm}$10.76$mm^2$, 3.86${\pm}$0.84$mm^2$ at 4 weeks, 8 weeks, 12 weeks respectively, and invasion rate of connective tissue to membrane are 30.7${\pm}$5.1%, 53.3${\pm}$4.4%, 69.5${\pm}$3.1%, respectively. 4. Each fiber of Chitosan membrane was surrounded by connective tissue and showed external resorption pattern. It showed little invasion of inflammatory cells and excellent biocompatability. The resorption rate was relatively slow. Surface area are 6.01${\pm}$2.01$mm^2$, 5.49${\pm}$1.3$mm^2$, 5.06${\pm}$1.38$mm^2$ at 4 weeks, 8 weeks, 12 weeks respectively, and invasion rate of connective tissue to membrane are 31.3${\pm}$3.6%, 38.4${\pm}$3.80%, 39.7${\pm}$5.6%, respectively. Consequently, Para-Dioxanone membrane and Chitosan membrane are found to be clinically effective for their excellent tissue reaction and biocompatibility. Futhermore, the advantage of bone regenerating ability as well as the relatively long resorption period of Chitosan membrane, it might be widely used in implant or ridge augmentation.

Design and SAR Analysis of Wearable Antenna on Various Parts of Human Body, Using Conventional and Artificial Ground Planes

  • Ali, Usman;Ullah, Sadiq;Khan, Jalal;Shafi, Muhammad;Kamal, Babar;Basir, Abdul;Flint, James A;Seager, Rob D.
    • Journal of Electrical Engineering and Technology
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    • 제12권1호
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    • pp.317-328
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    • 2017
  • This paper presents design and specific absorption rate analysis of a 2.4 GHz wearable patch antenna on a conventional and electromagnetic bandgap (EBG) ground planes, under normal and bent conditions. Wearable materials are used in the design of the antenna and EBG surfaces. A woven fabric (Zelt) is used as a conductive material and a 3 mm thicker Wash Cotton is used as a substrate. The dielectric constant and tangent loss of the substrate are 1.51 and 0.02 respectively. The volume of the proposed antenna is $113{\times}96.4{\times}3mm^3$. The metamaterial surface is used as a high impedance surface which shields the body from the hazards of electromagnetic radiations to reduce the Specific Absorption Rate (SAR). For on-body analysis a three layer model (containing skin, fats and muscles) of human arm is used. Antenna employing the EBG ground plane gives safe value of SAR (i.e. 1.77W/kg<2W/kg), when worn on human arm. This value is obtained using the safe limit of 2 W/kg, averaged over 10g of tissue, specified by the International Commission of Non Ionization Radiation Protection (ICNIRP). The SAR is reduced by 83.82 % as compare to the conventional antenna (8.16 W/kg>2W/kg). The efficiency of the EBG based antenna is improved from 52 to 74 %, relative to the conventional counterpart. The proposed antenna can be used in wearable electronics and smart clothing.

차근육묘를 위한 자재 및 배지 종류가 토양환경과 '설향' 딸기 자묘의 생장에 미치는 영향 (Influence of Root Restriction Materials and Media on Soil Environment and Growth of Runner Plantlets during Propagation of 'Seolhyang' Strawberry)

  • 박갑순;채수천;오찬식;최종명
    • 원예과학기술지
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    • 제33권4호
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    • pp.511-517
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    • 2015
  • '설향' 딸기 차근육묘에서 배지 및 차근자재의 종류가 자묘 생장에 미치는 영향을 구명하고자 본 연구를 수행하였다. 연구목적을 달성하기 위해 폴리에틸렌 필름이 차근자재인 조건에서 팽연왕겨, 사양토 및 양질사토 등 세 종류 배지가 자묘 생장에 미치는 영향을 밝혔다. 또한 폴리에틸렌 필름(PE), 부직포(NF), 유공비닐(PP) 및 방근시트(RPS)의 네 종류 차근자재를 설치하고 팽연왕겨를 배지로 충진한 후 배지의 함수량 및 근권온도 변화와 자묘의 생장에 미치는 영향도 구명하였다. 런너에서 발생한 자묘를 세 종류 배지에 고정시키고 20일 및 40일 후 조사한 자묘의 생장에서 팽연 왕겨 처리가 착근 20일 후의 엽 면적과 관부 직경, 그리고 40일 후의 관부 직경, 근중 및 생체중 등 지상부 및 뿌리 생육이 가장 우수하였다. 네 종류 차근 자재를 깔고 팽연왕겨를 충진한 후 관수 주기별 배지의 수분함량(volumetric water content, VWC)를 조사한 결과 PE 처리는 관수 후 55%로 측정된 VWC가 관수 직전 26%로 낮아졌으며, PP는 10-16%, NF 및 RPS는 관수 후 다음 관수까지 10% 미만의 VWC를 유지하였다. 육묘 기간 중 PE 처리가 NF, PP 및 RPS 처리보다 차근 자재에 영향을 받은 오후 2-5시 사이의 배지온도가 약 $1^{\circ}C$ 낮았고, 주 야간 온도차는 $1.5^{\circ}C$ 적었다. 자묘의 초장, 생체중 및 근 중은 PE 처리가 가장 크거나 무거웠다. NF 및 PP 처리는 뿌리가 차근되지 않아 자묘 뿌리가 차근자재 윗부분에 제한적으로 존재하지 못하고 자재 밑으로 많은 근계가 형성되었다. 이상과 같이 PE를 차근자재로 삼은 경우 팽연왕겨가 바람직한 배지이고, 차근 자재로써 PE가 NF, PP 및 RPS 보다 자묘의 생장에 더 우수한 영향을 미쳤으며, 본 연구 결과는 딸기 양질묘 생산을 위한 기초자료로 활용될 수 있을 것이다.