• Title/Summary/Keyword: 대나무 섬유

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Effects of Solvent Treatment of Bamboo Fiber on Physical Properties of Polypropylene/Glass Fiber/Bamboo Fiber Composite (엔진커버용 폴리프로필렌/유리섬유/대나무섬유 복합체의 물리적 특성에 대한 대나무섬유의 용제 처리의 영향)

  • Lee, Su Kyoung;Lim, Sung Wook;Shin, Hyung Shik;Woo, Seung-Keon;Park, Eun Young
    • Textile Coloration and Finishing
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    • v.31 no.1
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    • pp.42-47
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    • 2019
  • In this study, the effects of surface treatment of bamboo fiber on the physical properties of polypropylene(PP)/glass fiber(GF)/Bamboo fiber(BF) composite for engine cover were investigated. PP, GF and BF were fixed at 40%, 40% and 20% and the surface of bamboo fibers were treated to 0.5, 1.0 and 2.0% as an acid and alkali solution. PP/GF/BR composites using surface treated bamboo fibers were prepared and their tensile strength, bursting strength and impact strength were measured by universal testing machine(UTM). The composites with alkali treated bamboo fiber showed better mechanical properties than the acid treated composites. It was checked that the optimum alkali content was at 1.0% from the results of mechanical properties. The effect of surface treatment on the mechanical properties was confirmed by SEM images of fractured surface.

로하스를 적용한 그린 섬유소재에 대한 고찰

  • Kim, In-Ok;Park, Myeong-Su;Heo, Man-U
    • Proceedings of the Korean Society of Dyers and Finishers Conference
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    • 2008.10a
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    • pp.53-54
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    • 2008
  • 섬유 제조에서부터 제품의 소비에 걸친 각 공정에 이르기까지 환경 부하 절감 대책과 섬유 제조 기술에 따른 문제 해결을 위하여 환경 친화적 섬유인 대나무 섬유, 콩 섬유, 재생 섬유, 생분해 되는 섬유 등 다양한 환경 친화적 신소재에 대한 특성을 고찰하고자한다. 환경 친화적 신소재와 섬유 폐기 공정에서의 환경친화적 신소재인 생분해 플라스틱 및 생분해 섬유의 개념을 정의하였다. 환경친화 제품 개발이 여러 가지 면에서 생산자의 부담요인으로 작용할 수 도 있으나, 중장기적으로 볼 때 환경 개선에 기여할 뿐만 아니라 기술 확보 및 시장 개척에 용이할 것이며 소비자들은 환경적, 건강적 이유로 환경친화적 제품에 많은 관심을 가지고 있다. 따라서 제품의 제품개발자들은 공정단계에서 폐기단계에 이르기까지 비용을 감수하더라도 환경 친화적 제품개발에 노력해야 할 것이다.

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Effects of Different Levels of Crushed Bamboo Chip on Performance and Carcass Characteristics in Holstein Steers (파쇄 대나무 급여수준이 젖소 거세우의 성장과 도체특성에 미치는 영향)

  • 안병홍;강춘성;추교문;조희웅
    • Journal of Animal Science and Technology
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    • v.48 no.3
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    • pp.401-414
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    • 2006
  • Twenty eight Holstein steers 12 months old and weighing about 300kg were andomly allotted into one of four groups being fed ammoniated rice straw(ARS) and substituted 30%, 40% and 50% crushed bamboo chip for ARS to determine the effects of different levels of bamboo chip on performance, digestibility and carcass characteristics. Daily weight gain was reduced as the substitution levels of bamboo chip for ARS as a roughage source increased but there were no differences in daily weight gain between steers fed ARS alone and 30% bamboo chip for ARS. Concentrates intakes were not different between treatments by the substitution levels of bamboo chip for the whole fattening period. Roughage intake tended to increase as the substitution levels of bamboo chip increased. Total feed intake was not affected by the substitution levels of bamboo chip. However, feed efficiency got worse with increasing levels of bamboo chip. Animals fed the roughage substituting 30% bamboo chip for ARS were higher in profit by 13% than animals fed ARS alone as a roughage source. Digestibilities of Dry matter(DDM) and crude fiber(DCF) were highest in animals fed ARS alone as a roughage source. DDM's were lower in higher substitution levels of crushed bamboo chip but there were no differences in DCF among animals fed different levels of bamboo chip as a roughage source. Crude protein digestibility was not affected by ammoniated rice straw or by the different levels of bamboo chip. Dressing percentage and backfat thickness were not affected by ammoniated rice straw or by the levels of bamboo chip but ribeye area was narrowed as the levels of bamboo chip increased. Beef color, fat color, texture, maturity and marbling score were not affected by feeding of ammoniated rice straw or by the levels of bamboo chip. According to these results, it may be concluded that profit can increase when Holstein bulls are castrated and roughage containing ammoniated rice straw plus 30% bamboo chip is offered.

핫이슈-우뭇가사리로 종이만든다

  • Jo, Gap-Jun
    • 프린팅코리아
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    • s.53
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    • pp.102-105
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    • 2006
  • 홍조류의 일종인 우뭇가사리에서 채쥐한 섬유소로 제작된 종이(펄프)가 최근 서영범 충남대학교 임산공학과 교수에 의해 공개됐다. 지금까지 목재 펄프가 아닌 비목재 펄프에 대한 도전은 많았다. 볏짚, 사탕수수, 갈대, 대나무 등 주로 지상에서 채취되는 원료를 사용했는데, 해조류를 활용한 것은 지극히 예외적인 경우로 더욱 큰 관심을 불러일으키고 있다.

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Dyeability and Functionality of Bamboo Extracts (Part II) -Dyeing Properties of Protein Fiber- (대나무 추출물의 염색성과 기능성 (제2보) -단백질섬유에 대한 염색성-)

  • Jung, Go-Eun;Lee, Jung-Soon
    • Journal of the Korean Society of Clothing and Textiles
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    • v.35 no.3
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    • pp.336-346
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    • 2011
  • Dyeing properties of protein fiber with bamboo colorants were studied by investigating the effect of dyeing conditions such as dye concentration, dyeing temperatures, times on dye uptakes, effect of mordants, and color change. The various colorfastness of dyed fabrics were evaluated for practical use. In addition, the antimicrobial ability, ultraviolet-cut ability, and deodorant ability were estimated. The dye uptake increased as the dyeing concentration increased. Bamboo colorants showed relatively good affinity to protein fiber and produced a yellow color. Dye uptake increased as the dyeing time and temperature increased. Post-mordanting was more effective than pre-mordanting. Mordants, Fe and N.Fe, were effective for increasing dye uptake. The color of fabric mordanted with Cu and N.Cu changed to GY. Colorfastness of dyed fabrics showed a relatively good rating, and mordanting had no significant effect on colorfastness. Dyed silk fabric showed very good antimicrobial abilities of 99.9%. Also, ultraviolet-cut ability and deodorant ability were improved in silk fabric dyed with bamboo extracts.

A Study of the Cationization of Bamboo-cotton Blended Fabric (대나무-면 복합직물의 양이온화에 관한 연구)

  • Noh, Young-Ju;Lee, Shin-Hee
    • Fashion & Textile Research Journal
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    • v.24 no.2
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    • pp.260-266
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    • 2022
  • Cellulose fiber is a material used in various fields. It is the most used type of fiber because of its excellent hygroscopicity and dyeability. Recently, as natural fiber materials have been highlighted due to the influence of eco-friendliness and well-being, bamboo fiber has become a commonly used eco-friendly fiber. Cellulose fibers are part of the -OH hydroxyl group, which means they are more chemically reactive than synthetic fibers. In this study, the cationization properties of bamboo-cotton blended fabrics cationized using CHPTAC (3-chloro-2-hydroxypropyl trimethyl ammonium chloride) in the PDC (padding-drying-curing) method were investigated. Various characteristics according to cationization were studied through elemental analysis, FT-IR (fourier-transform infrared spectroscopy) analysis, X-ray diffraction analysis, TGA (thermogravimetric) analysis, and SEM (scanning electron microscope) analysis. The nitrogen content of the cationized bamboo-cotton blended fabric increased with an increase in the concentration of the cationizing agent CHPTAC, and it was seen to be highly bound to cellulose molecules. As a result of the FT-IR analysis, both 100% pure cotton fabrics and CHPTAC-0 and CHPTAC-150 fabrics were seen to be typical cellulose. As a result of the X-ray diffraction analysis, both 100% pure cotton fabrics and CHPTAC-0 and CHPTAC-150 fabrics showed typical cellulose I structures. As a result of the X-ray diffraction analysis, both 100% pure cotton fabrics and CHPTAC-0 and CHPTAC-150 fabrics showed typical cellulose I structures. As the cationization progressed, micropores appeared on the surface of the blended fabric.

Effect of the Compatibilizer on Physical Properties of Polypropylene (PP)/Bamboo Fiber (BF) Composites (폴리프로필렌/대나무 섬유 복합체의 물성에 대한 상용화제의 영향)

  • Lee, Jong Won;Ku, Sun Gyo;Lee, Beom Hee;Lee, Ki-Woong;Kim, Cheol Woo;Kim, Ki Sung;Kim, Youn Cheol
    • Applied Chemistry for Engineering
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    • v.26 no.5
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    • pp.615-620
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    • 2015
  • Polypropylene (PP)/bamboo fiber (BF) composites were fabricated by twin screw extruder in order to investigate effects of the compatibilizer on physical properties of PP/BF composites. The content of BF changed from 10 to 25 wt% and that of the compatibilizer was fixed at 3 wt%. Maleic anhydride grafted PP (PP-g-MAH) was used to increase the compatibility between PP and BF as a compatibilizer. Chemical structures of the composites were confirmed by the existence of carbonyl group (C=O) stretching peak at $1,700cm^{-1}$ in FT-IR spectrum. Considering the degradation and mechanical properties, the optimum extrusion conditions were selected to be $210^{\circ}C$ and 100 rpm, respectively. There was no distinct changes in melting temperature of the composites, but the crystallization temperature increased by $10-20^{\circ}C$ owing to the heterogeneous nuclei of BF. It was checked that the optimum BF content was in the range of 15-20 wt% from the results of tensile and flexural properties of the composites. The effect of the compatibilizer on mechanical properties was confirmed by SEM images of fractured surface and contact angles.

Anatomical Characteristics of Three Korean Bamboo Species (국내산 대나무 3종의 해부학적 특성)

  • Jeon, Woo-Seok;Kim, Yun-Ki;Lee, Ju-Ah;Kim, Ah-Ran;Darsan, Byantara;Chung, Woo-Yang;Kim, Nam-Hun
    • Journal of the Korean Wood Science and Technology
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    • v.46 no.1
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    • pp.29-37
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    • 2018
  • Bamboo is one of the major biomass resources in the world. To obtain valuable information for effective use of bamboo resources in Korea, the anatomical characteristics of the commercial Korean bamboo species (Phyllostachys pubescens, Phyllostachys nigra, and Phyllostachys bambusoides) were analyzed. The structures in bamboo culm were observed by optical and scanning electron microscopy. Also the crystalline properties as relative crystallinity and crystallite width were measured by an X-ray diffraction method. The three Korean bamboo species had the vascular bundle type I with tylosoid in intercellular space. In the outer part of culm, vascular bundles showed denser spacing than inner part. The fiber length in outer part samples of the three bamboo species showed longer than inner part samples. Furthermore, the fiber length showed a significant difference between inner part and outer part in three bamboo species, showing the longest fiber length in Phyllostachys bambusoides. Phyllostachys pubescens showed the greatest diameter in vessel and parenchyma on cross section. Parenchyma cells in Phyllostachys pubescens and Phyllostachys bambusoides showed similar length and width in both radial and tangential sections. The relative crystallinity and crystallite width in outer part samples of the three bamboo species showed higher values than those in inner part samples, with the greatest values from Phyllostachys bambusoides.

Manufacture of Wood Veneer-Bamboo Zephyr Composite Board: II. Effect of Manufacturing Conditions on Properties of Composite Board (목재 단판-대나무 제퍼 복합보드 제조: II. 복합보드의 성능에 미치는 제조조건의 영향)

  • Roh, Jeang Kwan
    • Journal of the Korean Wood Science and Technology
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    • v.35 no.6
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    • pp.108-117
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    • 2007
  • This research was performed to investigate the feasibility of bamboo as a raw material for the manufacture of plywood. Wood veneer-bamboo zephyr composite boards (WBCB) were manufactured using keruing (Dipterocarpus sp.) veneers and hachiku bamboo (Phyllostacbys nigra var. henonis Stapf) using various adhesives, and the effect of the method and amount of resin spread on the mechanical properties of the composites were investigated. The WBCB manufactured using polymeric isocyanate (PMDI) showed the best mechanical properties, followed by phenol-formaldehyde resin (PF), phenol-melamine-formaldehyde resin, urea-melamine-formaldehyde resin, and urea-formaldehyde resin. However, considering the operation feasibility as well as mechanical properties, PF resin proved to be the appropriate adhesive for the practical purpose. As the amount of resin spread increased, the mechanical properties of 5-ply WBCB with 12 mm thicknesses manufactured using PF resin tended to increase, and more failure occurred at the interface between veneer and bamboo zephyr than at the interface among bamboo zephyrs. This result suggests that penetration of resin into bamboo zephyr could be the important factor. In this research, the appropriate amount of resin amount was $320g/m^2$. 5-ply WBCBs were manufactured using various methods of resin spread but the effect of the methods on the mechanical properties showed no little difference, which meant that the method of resin spread could be chosen considering the manufacturing conditions and operation feasibility.

A study on the mechanical Characteristics of Bamboo fiber Composites (대나무섬유 복합재의 기계적 특성 변화)

  • Jung, Seong-Hyun;Han, Hyun-Kak;Park, Chan-Wong;Lee, Ki-Woong;Joo, Deuk-Ki
    • Proceedings of the KAIS Fall Conference
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    • 2012.05a
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    • pp.448-451
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    • 2012
  • 본 연구에서 matrix간의 계면 결합력을 불리하게 작용하는 Wax성분이나 Lignin, Hemi-Cellulose등의 제거를 위해 화학적 개질방법중인 NaOH, Acetic acid, Silane으로 처리하여 기질 고분자의 계면의 영향을 알아보고 SEM을 이용하여 형태학적 변화와 열적특성 변화를 관찰하였다. 형태학적 변화에서는 NaOH, Acetic acid 처리보다 Silane처리가 계면결합력이 증가하여 기계적 물성이 증가되었다는 것을 볼수 있었고, 열분석에서는 NaOH, Acetic acid, Silanec 처리가 유사하게 나타났지만, 복합재를 전처리하지 않은것보다 기질고분자와 천연섬유간의 계면 결합은 전처리하는 것이 결합에 있어서 좋다는 결과를 확인하였다.

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