• Title/Summary/Keyword: Polymer behavior model

검색결과 285건 처리시간 0.028초

계면 결합력과 나노튜브의 응집에 따른 나노튜브/고분자 복합재의 탄소성 거동 예측에 대한 연구 (A Study on the Prediction of Elastoplastic Behavior of Carbon Nanotube/Polymer Composites)

  • 양승화;유수영;류정현;조맹효
    • 한국전산구조공학회논문집
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    • 제26권6호
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    • pp.423-430
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    • 2013
  • 본 연구에서는 탄소나노튜브와 폴리프로필렌 기지 간 계면결합력과 나노튜브의 국부적 응집에 따른 나노복합재의 탄소성 거동 변화에 대한 파라메트릭 연구를 수행한다. 나노복합재의 탄소성 거동 예측을 위해 분자동역학 전산모사를 수행하고, 분자동역학 결과와 Mori-Tanaka 모델을 적용한 비선형 미시역학 모델을 연계하여 나노복합재 내 흡착계면의 탄소성 거동을 역으로 도출하는 2단계 영역분할 기법을 적용하였다. 미시역학 모델에서는 시컨트 계수방법을 Mori-Tanaka 모델에 적용하여 나노복합재의 비선형 거동을 예측하는 방법을 적용하였으며, 나노튜브와 기지 간 재료계면의 불완전 결합을 고려하기 위해 변위 불연속 조건을 적용하였다. 흡착영역을 고려한 미시역학 모델을 통해 흡착계면의 유무 및 재료계면 결합력 변화 그리고 나노튜브의 국부적 응집현상에 따른 나노복합재의 응력-변형률 관계를 예측하였다. 그 결과 나노튜브의 국부적 응집이 나노복합재의 강화효과를 저하시키는 가장 중요한 변수임을 확인하였다.

폴리머 침투콘크리트의 재료특성과 휨부재의 비선형 파괴해석 (Material Properties of Polymer-Impregnated Concrete and Nonlinear Fracture Analysis of Flexural Members)

  • 변근주;이상민;최홍식;노병철
    • 콘크리트학회지
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    • 제6권2호
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    • pp.97-107
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    • 1994
  • 폴리머 침투콘크리트는 경화된 보통 콘크리트에 폴리머 침투제를 침투시켜 제조되는 신소재의 폴리머-콘크리트 복합체이다. 본 연구는 아크릴계 열가소성수지를 이용한 폴리머 침투콘크리트를 개발하고 폴리머 침투콘크리트 휨부재의 거동평가를 위한 재료모델, 구조해석 과정과 구조해석 프로그램을 개발하는데 목적이 있다. 본 연구는 크게 두 부분으로 구성된다. 첫 번째 단계에서는 결정성 고분자모노머인 methyl methacrylate(MMA)를 대상으로 침투성, 반응성, 열적 안정성 및 물성개선 효과를 종합적으로 분석하여 폴리머 침투제의 구성비와 제조공정을 정립하고, 본 연구의 실험자료로부터 폴리머 침투콘크리트의 제 강도특성, 파괴인성, 파괴에너지, 응력-변형률 관계 및 인장연화 관계를 보통 콘크리트의 압툭강도와 휨강도, 폴리머 함유율, 부재깊이, 초기 인공균열깊이 등의 함수로 각각 실험공식을 도출한다. 두 번째 단계에서는 MMA계 폴리머 침투콘크리트 구조부재의 하중단계별 탄성거동, 극한거동 및 인장연화거동을 해석하기 위한 구조해석 프로그램을 개발하고, 연구결과의 타당성과 적용성을 입증하기 위하여 폴리머 침투콘크리트의 제조공정, 제 실험공식 및 구조해석 프로그램은 실측거동을 잘 반영하고 있으므로 제한된 범위내에서 MMA계 폴리머 침투콘크리트 구조부재의 제조, 물성평가 및 거동해석에 적용 가능한 것으로 사료된다.

내충격성 폴리스티렌의 고무상 입자경 예측 (Average Particle Size Prediction of Rubber Dispersed Phase in High Impact Polystyrene)

  • 이성재;정경호
    • Elastomers and Composites
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    • 제31권5호
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    • pp.327-334
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    • 1996
  • A correlative analysis has been carried out to predict the average particle size of rubber dispersed phase In high impact polystyrene manufactured by bulk polymerization. To do the correlation, a mechanistic model suggested previously by the author was used for describing the size of stabilizing particles agitated under the turbulent viscous shear subranges in a prepolymerization reactor, where the rubber particles were assumed to be formed at the time of phase inversion in the reactor. Viscosities required for the model were postulated to describe the overall behavior of butadiene rubber and polystyrene mixture along the wide range of conversion. The good agreement between the model and the experimental data from a plant was quite satisfactory for the prediction of the average rubber particle size of high impact polystyrene.

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Poly ${\beta}>-hydroxybutyric$ Acid를 이용한 약물방출 조절 (Control of Drug Release by Poly ${\beta}>-hydroxybutyric$ Acid)

  • 나재운;김종균김선일
    • KSBB Journal
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    • 제6권1호
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    • pp.79-83
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    • 1991
  • 생물고분자인 PHB로 고분자 matrix를 제조하여 대상약물인 silver sulfadiazine의 방출기전을 연구하였다. 고분자 matrix내의 PHB의 함유량 증가와 matrix의 두께비가 증가할수록 방출속도는 늦어졌다. 그러나 가소제량이 증가함에 따라 방출 기전은 각각 18, 17, 16, 12 및 10시간으로 감소하였다. 이 제형은 약물방출기전은 Higuchi model에 따른 확산으로 생각되었다. 결론적으로 PHB의 함유량과 가소제의 함유량 및 matrix 두께의 상관관계를 조절하므로써 특정한 약물의 방출기전을 얻을 수 있는 maxtrx형태의 개발 가능성을 보였다.

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Poly(L-lysine) Based Semi-interpenetrating Polymer Network as pH-responsive Hydrogel for Controlled Release of a Model Protein Drug Streptokinase

  • Park, Yoon-Jeong;Jin Chang;Chen, Pen-Chung;Victor Chi-Min Yang
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제6권5호
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    • pp.326-331
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    • 2001
  • With the aim of developing of pH-sensitive controlled drug release system, a poly(Llysine) (PLL) based cationic semi-interpenetrating polymer network (semi-IPN) has been synthesized. This cationic hydrogel was designed to swell at lower pH and de-swell at higher pH and therefore be applicable for achieving regulated drug release at a specific pH range. In addition to the pH sensitivity, this hydrogel was anticipated to interact with an ionic drug, providing another means to regulate the release rate of ionic drugs. This semi-IPN hydrogel was prepared using a free-radical polymerization method and by crosslinking of the polyethylene glycol (PEG)-methacrylate polymer through the PLL network. The two polymers were penetrated with each other via interpolymer complexation to yield the semi-IPN structures. The PLL hydrogel thus prepared showed dynamic swelling/de-swelling behavior in response to pH change, and such a behavior was influenced by both the concentrations of PLL and PEG-methacrylate. Drug release from this semi-IPN hydrogel was also investigated using a model protein drug, streptokinase. Streptokinase release was found to be dependent on its ionic interaction with the PLL backbones as well as on the swelling of the semi-IPN hydrogel. These results suggest that a PLL semi-IPN hydrogel could potentially be used as a drug delivery platform to modulate drug release by pH-sensitivity and ionic interaction.

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Drug Release Behavior of Poly($\varepsilon$-caprolactone )-b-Poly( acrylic acid) Shell Crosslinked Micelles below the Critical Micelle Concentration

  • Hong Sung Woo;Kim Keon Hyeong;Huh June;Ahn Cheol-Hee;Jo Won Ho
    • Macromolecular Research
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    • 제13권5호
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    • pp.397-402
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    • 2005
  • To explore the potential of shell crosslinked micelle (SCM) as a drug carrier, the drug release behavior of poly($\varepsilon$-caprolactone)-b-poly(acrylic acid) (PCL-b-PAA) SCMs was investigated. PCL-b-PAA was synthesized by ring opening polymerization of $\varepsilon$-caprolactone and atom transfer radical polymerization of tert-butyl acrylate, followed by selective hydrolysis of tert-butyl ester groups to acrylic acid groups. The resulting amphiphilic polymer was used to prepare SCMs by crosslinking of PAA corona via amidation chemistry. The drug release behavior of the SCMs was studied, using pyrene as a model drug, and was compared with that of non-crosslinked micelles, especially below the critical micelle concentration (CMC). When the shell layers were crosslinked, the drug release behavior of the SCMs was successfully modulated at a controlled rate compared with that of the non-crosslinked micelles, which showed a burst release of drug within a short time.

Influence of Several Physicochemical Conditions on the Flocculation of Micro Stickies

  • Kim, Jong-Min;Lee, Hak-Lae
    • 펄프종이기술
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    • 제40권5호
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    • pp.20-26
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    • 2008
  • Behavior of micro stickies was analyzed using model micro stickies prepared with PVAc emulsion adhesive. Flocculation of micro stickies increased with temperature. Acidic state also induced greater flocculation of micro stickies since they became more unstable under these conditions. Flocculation of micro stickies increased as calcium ion concentration increased. But the presence of calcium carbonates made micro stickies dispersed indicating that calcium carbonates cause two different effects on the behavior of micro stickies. Talc increased flocculation of micro stickies because of its hydrophobic nature. Cationic polymer increased flocculation of micro stickies. Especially cationic starch has far greater effect in flocculating sticky particles by forming bridging flocculations.

Study on behavior of RCC beams with externally bonded FRP members in flexure

  • Sumathi, A.;Arun Vignesh, S.
    • Advances in concrete construction
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    • 제5권6호
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    • pp.625-638
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    • 2017
  • The flexural behavior of Fiber reinforced polymer (FRP) sheets has gained much research interest in the flexural strengthening of reinforced concrete beams. The study on flexure includes various parameters like increase in strength of the member due to the externally bonded (EB) Fiber reinforced polymer, crack patterns, debonding of the fiber from the structure, scaling, convenience of using the fibers, cost effectiveness, etc. The present work aims to study experimentally about the reasons behind the failure due to flexure of an externally bonded FRP concrete beam. In the design of FRP-reinforced concrete structures, deflection control is as critical as much as flexural strength. A numerical model is created using Finite element (FEM) software and the results are compared with that of the experiment.

일축 하중을 받는 PET 재활용 폴리머콘크리트의 응력-변형률 모델의 제안 (A Proposal of Stress-Strain Relations Model for Recycled-PET Polymer Concrete under Uniaxial Stress)

  • 조병완;문린곤;박승국
    • 콘크리트학회논문집
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    • 제16권6호
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    • pp.767-776
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    • 2004
  • 폴리머콘크리트는 시멘트 콘크리트에 비해 강도와 내구성에 탁월한 성능을 가지고 있기 때문에 건설현장에서도 다양한 용도로 개발되어 널리 사용되고 있다. 그러나 폴리머콘크리트는 그 결합재로 쓰이는 수지의 비용이 높아 경제적인 면에서는 다소 불리하여 기존의 수지를 대체할 수 있는 결합재에 관한 연구가 진행되고 있다. PET를 재활용한 폴리머콘크리트는 산업폐기물을 재활용하여 경제적인 건설 신소재를 개발할 수 있어 그 영역이 점차 확대 될 것으로 전망된다. 본 연구에서는 프리캐스트 제품 및 구조부재로의 응용과 자원 재활용을 목적으로 PET 재생 불포화 폴리에스터수지를 이용하여 고강도의 폴리머콘크리트를 제조하고 이에 대한 응력-변형률 거동 특성을 파악하여 실험결과와 이론적 근거를 바탕으로 PET 재활용 폴리머콘크리트의 응력-변형률 곡선의 모델식을 얻고자 하였다. 실험 결과 수지 사용량의 증가에 따라 최대 응력과 최대 변형률이 함께 증가하였으나 증가폭에 한계가 있는 것으로 나타났으며 응력-변형률 곡선의 기울기는 상온보다는 고온양생이 더 크게 나타났다. 실란의 첨가는 강도증진의 효과뿐만 아니라 최대하중 이후의 압축 연화거동에 효과적인 것으로 나타났다. 또한 위와 같은 응력-변형률 거동 특성을 통하여 PET 재활용 폴리머콘크리트 응력-변형률 곡선의 수정 모델식을 제안하였으며 PET 재활용 폴리머콘크리트의 특성을 정확히 예측하였다.

Poly(vinyl pyrrolidone) Conjugated Lipid System for the Hydrophobic Drug Delivery

  • Lee, Hye-Yun;Yu, Seol-A;Jeong, Kwan-Ho;Kim, Young-Jin
    • Macromolecular Research
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    • 제15권6호
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    • pp.547-552
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    • 2007
  • Water soluble polymer, poly(vinyl pyrrolidone) was chosen to conjugate with 1,2-dioleoyl-sn-glycero-3-phosphoethanolamine-N-(succinyl) (N-succinyl DPPE) to make a new drug delivery system. PVP with an amine group (amino-PVP) was polymerized by free radical polymerization. The amine group of amino-PVP was conjugated with the carboxylic group of N-succinyl DPPE. The resultant conjugate could form nanoparticles in the aqueous solution; these nanoparticles were termed a lipid-polymer system. The critical aggregation concentration was measured with pyrene to give a value of $1{\times}10^{-3}g/L$. The particle size of the lipid-polymer system, as measured by DLS, AFM and TEM, was about 70 nm. Lipophilic component in the inner part of the lipid-polymer system could derive the physical interaction with hydrophobic drugs. Griseofulvin was used as a model drug in this study. The loading efficiency and release profile of the drug were measured by HPLC. The loading efficiency was about 54%. The release behavior was sustained for a prolonged time of 12 days. The proposed lipid-polymer system with biodegradable and biocompatible properties has promising potential as a passive-targeting drug delivery carrier because of its small particle size.