• 제목/요약/키워드: natural polymer

검색결과 689건 처리시간 0.028초

Bentonite가 ABS 수지의 기계적 물성에 미치는 영향 (Effect of Bentonite on the Mechanical Properties of ABS Resin)

  • 돈윤승;심미자;김상욱
    • 공업화학
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    • 제5권6호
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    • pp.981-989
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    • 1994
  • 국내에서 상당량 채취되는 자연산 bentonite(Ca계)와 이를 $Na_2CO_3$로 전환시켜 상업적으로 여러 용도에서 사용되는 Na계 bentonite를 신소재 개발을 위한 점토/유기물 복합체에 대한 고찰 측면에서 matrix 수지를 ABS로 하고 이의 충진재로의 특성을 살펴 보았다. 결과, bentonite의 함량이 증가하면 탄성율은 증가하지만 충격강도는 감소하였으며, 경도는 일정하였다. Na계 bentonite가 Ca계에 비하여 탄성율은 낮지만 충격강도에서 상대적 높은 값을 나타내었다. 저장탄성율(E')은 온도가 상승함에 따라 감소하나 tan ${\delta}$는 주파수가 증가할수록 고온으로 shift되었다.

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천연고분자 분해성 필름의 생체적합성 연구 (Biocompatibility of Biodegradable Films by Natural Polymers)

  • 황성규;이기창;임국환
    • 공업화학
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    • 제10권6호
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    • pp.939-943
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    • 1999
  • 최근에 생분해성 고분자를 이용한 의료용재료로의 응용에 대한 관심이 고조되고 있다. 본 연구에서는 천연고분자(xanthan, locust bean, guar gum, chitosan 및 algin)를 생체재료로 사용할 목적으로 용액주조법에 의하여 분해성 필름을 제조하였다. 천연고분자로부터 제조한 생체재료의 가능성을 피부이식제로서 생체적합성 측정에 의하여 평가하였다. 이들을 실험동물의 등부위에 피하 삽입하여 필름의 시간에 따른 구조적, 중량적변화와 랫드의 혈액학적 변화를 측정하여 생체적합성을 연구하였다. 랫드에 대한 테스트결과 locust bean과 guar gum은 삽입 24시간, 48시간 후 조직에서의 생체 이물 반응에 의한 생체 부적합성을 나타내었으며, 일부 천연고분자로부터 제조한 분해성 필름은 단기간의 이상적인 생체재료로서의 가능성을 나타내었다.

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이산화탄소 저감형 고분자 블렌드의 상 분리 특성연구 (Study on Phase Separation of Carbon Dioxide-reducible Polymer Blends)

  • 조용광;김영우;이학용;박상보;박찬영;이원기
    • 한국환경과학회지
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    • 제24권1호
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    • pp.9-15
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    • 2015
  • Sustainable and eco-friendly polymers, natural polymers, bio-based polymers, and degradable polyesters, are of growing interest because of environmental concerns associated with waste plastics and emissions of carbon dioxide from preparation of petroleum-based polymers. Degradable polymers, poly(butylene adipate-co-terephthalate) (PBAT), poly(propylene carbonate) (PPC), and poly(L-lactic acid) (PLLA), are related to reduction of carbon dioxide in processing. To improve a weak mechanical property of a degradable polymer, a blending method is widely used. This study was forced on the component separation of degradable polymer blends for effective recycling. The melt-mixed blend films in a specific solvent were separated by two layers. Each layer was analysed by FT-IR, DSC, and contact angle measurements. The results showed that each component in the PPC/PLLA and PPC/PBAT blends was successfully separated by a solvent.

Structure of a single polymer chain confined in a dense array of nanoposts

  • Joo, Heesun;Kim, Jun soo
    • EDISON SW 활용 경진대회 논문집
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    • 제4회(2015년)
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    • pp.48-52
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    • 2015
  • Control of polymer conformations in heterogeneous confinement plays an important role in natural and engineering processes. We present a simulation study on the conformational structure and dynamics of a single, flexible polymer in a dense array of nanoposts with different sizes and separations, especially, when the volume of the interstitial space formed between four nanoposts is less than the size of the polymer chain. When a polymer is placed in the array of nanoposts, the size of polymer increases compared with that in the absence of nanoposts due to the confinement effect. It is shown that when a polymer is confined in the array of nanoposts the chain is elongated in the direction parallel to the nanoposts. As the interstitial volume between four nanoposts decreases either by increasing the nanopost diameter or by decreasing the separation between nanoposts, the chain elongation becomes more pronounced. On the contrary, the polymer size varies in a non-monotonic fashion, with an initial elongation followed by a chain contraction, as the interstitial volume is reduced both by increasing the nanopost diameter and decreasing the separation at the same time while keeping constant the width of the passageway between two nanoposts. The simulation analysis shows that the non-monotonic dependence of polymer size is determined by interplay between the chain alignment along the nanoposts in each interstitial volume and the chain spreading through passageways over several interstitial volume.

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폴리프로필렌-천연섬유 복합재료의 혼합시 유변학적 물성 및 열적 특성 (Polypropylene-Natural Fiber Composites: Rheological Properties during Mixing and Thermal Properties)

  • 김삼중;유종선;김규현;하창식
    • 접착 및 계면
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    • 제9권4호
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    • pp.24-29
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    • 2008
  • 두 종류의 천연섬유, 즉 면섬유와 목분을 이용하여 폴리프로필렌 - 천연섬유 복합재료를 제조하고 혼합가공시 유변학적 특성과 열적특성을 고찰하였다. PP/천연섬유 복합재료에서 천연섬유의 함량이 증가함에 따라 토오크 값이 상승하였고, 면섬유의 경우 낮은 체적 밀도로 인해 목분 복합재료보다 높은 토오크값을 나타내었다. PP의 MI에 따라서는 낮은 MI의 PP/천연섬유 복합재료에서 더 높은 토오크값이 관찰되었다. X-선 회절분석과 시차주사열분석을 통해 천연섬유의 함량이 증가될수록 PP/천연섬유 복합재료의 결정화온도는 상승하나 결정화도는 감소함이 확인되었다.

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Layered Silicate-Polymer Nanocomposites

  • Jeong, Han-Mo
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2003년도 춘계학술발표강연 및 논문개요집
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    • pp.18-18
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    • 2003
  • Natural clays are composed of oxide layers whose thickness is about 1nm and cations existing between the layers. A number of these layers makes primary particles with a height of about 8∼10nm and these primary particles make aggregates with a size of about 0.1∼10$\mu\textrm{m}$. When layered silicate was made to be organophilic, by exchanging the interlayer cations with organic cationic molecules, the matrix polymer can penetrate between the layers to give a nanocomposite, where 1nm-scal clay layers exist separately in a continuous polymer matrix. These nanostructured hybrid organic-inorganic composites have attracted the great interest of researchers over the last 10 years. They exhibit improved performance properties compared with conventional composites, because their unique phase morphology by layer intercalation or exfoliation maximizes interfacial contact between the organic and inorganic phases and enhances interfacial properties. Since the advent of nylon-6/montmorillonite nanocomposite developed by Toyota Motor Co., the studies on layered silicate-polymer nanocomposites have been successfully extended to other polymer systems. They greatly improved the thermal, mechanical, barrier, and even the flame-retardant properties of the polymers.

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재생굵은골재를 사용한 다공성 폴리머 블록의 식생 특성 (Planting Properties of Porous Polymer Block Using Recycled Coarse Aggregates)

  • 성찬용;김영익
    • 농업과학연구
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    • 제37권1호
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    • pp.87-96
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    • 2010
  • This study was performed to evaluate the planting properties of herbaceous plant and cool-season grass in porous polymer blocks that were manufactured by using recycled coarse aggregates and unsaturated polyester resin to develop environmentally friendly planting blocks. Unsaturated polyester resin, natural and recycled coarse aggregates and $CaCO_3$ were used. The mix proportions were determined to satisfy the requirement for the workability and slump according to aggregate sizes(5-10 and 5-20mm). Tests for the void ratio and compressive strength of porous polymer concrete were performed at curing age 7 days. Also, porous polymer block using recycled coarse aggregates were applied to kinds of plants such as tall fescue, Perennial ryegrass, Lesedeza and Alfalfa. After seed, initial germination, germination ratio, cover view and growth length for planting blocks were estimated by various methods.

계란 항체의 생산에 있어서 polymerization의 효과 (Effect of polymerization in inducing yolk antibodies)

  • 이경애
    • 한국생활과학회지
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    • 제2권1호
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    • pp.17-24
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    • 1993
  • Insulin (P)를 면역원으로 이용하여 insulin에 대한 균일한 항체집단의 대량유도 가능성 및 유도된 항체의 특성을 검토하였다. Insulin (P)에 의해 유도된 IgY는 insulin (M)에 의해 유도된 IgY 보다 조금 낮은 친화성을 나타내었으나 큰 차이는 없었다. 두 종류의 면역원에 의해 유도된 IgY는 대부분 insulin (M)을 인식하였으며, 같은 항원 특이성을 나타내었다.

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탄소섬유 및 유리섬유로 보강한 재생 폴리머 콘크리트의 공학적 특성 (Engineering Properties of Carbon Fiber and Glass Fiber Reinforced Recycled Polymer Concrete)

  • 노진용;성찬용
    • 한국농공학회논문집
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    • 제58권3호
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    • pp.21-27
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    • 2016
  • This study was performed to evaluate engineering properties of carbon and glass fiber reinforced recycled polymer concrete. Fiber reinforced recycled polymer concrete were used recycled aggregate as coarse aggregate, natural aggregate as fine aggregate, $CaCO_3$ as filler, unsaturated polyester resin as binder, and carbon and glass fiber as fibers. The compressive and flexural strength of carbon fiber reinforced recycled polymer concrete were in the range of 68~81.5 MPa and 19.1~21.5 MPa at the curing 7days. Also, the compressive and flexural strength of glass fiber reinforced recycled polymer concrete were in the range of 69.4~85.1 MPa and 19~20.1 MPa at the curing 7days. Abrasion ratio of carbon and glass fiber reinforced recycled polymer concrete were decreased 21.6 % and 11.6 % by fiber content 0.9 %, respectively. After impact resistance test, drop numbers of initial and final fracture were increased with increase of fiber contents. Accordingly, carbon fiber and glass fiber reinforced recycled polymer concrete will greatly improve the hydraulic structures, underground utilities and agricultural structures.

재유화형 분말수지와 고로 슬래그 미분말을 혼입한 폴리머 콘크리트의 압축강도 및 내산성 (Compressive Strength and Acid-Resistant of Polymer Concrete Using Redispersible Polymer and Blast Furance Slag Powder)

  • 김인수;성찬용
    • 한국농공학회논문집
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    • 제50권5호
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    • pp.19-27
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    • 2008
  • This study was performed to evaluate the compressive strength and acid-resistant of polymer concrete using redispersible polymer powder(RPP) and blast furnace slag powder(BSP). Material used were ordinary portlant cement, recycled coarse aggregate, natural fine aggregate, redispersible polymer powder and blast furnace slag powder. The main experimental variables were the substitution ratio of redispersible polymer powder and blast furnace slag powder, when the substitution ratios of RPP were 0, 1, 2, 3, 4, 5 and 6%, and those of BSP were 10%. The compressive strength and acid-resistant of polymer concrete using RPP and BSP were compared with those of ordinary concrete(Basis). When the substitution ratio of RPP was 1%, at age of 28 days, the compressive strength were more higher than those of Basis by 24%, and it was decreased with increasing the RPP content, respectively. Also, the water absorption ratio was decreased with increasing the RPP content. But, the acid-resistant was improved with increasing the RPP content.