• Title/Summary/Keyword: molecular orientation

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Effect of Uniaxial Drawing Conditions on the Orientation of Poly (ethylene 2,6- naphthalate) (일축 연신 조건에 따른 Poly(ethylene 2,6-naphthalate) 배향에 관한 연구)

  • 진병석;이성효;이광희
    • Polymer(Korea)
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    • v.25 no.5
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    • pp.699-706
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    • 2001
  • The effects of uniaxial drawing conditions on the molecular orientation of poly (ethylene 2,6-naphthalate) (PEN) are investigated. Birefringence measurements show that the orientation is significantly enhanced at high draw ratio, low drawing temperature, and fast drawing speed. The characteristics of orientation examined by FTIR- ATR dichroism method represent almost same results. Amorphous orientation function increases with drawing rate at $120^{\circ}C$, but it decreases with drawing rate at $141^{\circ}C$. These behaviors can be explained with the relation between crystallization and chain relaxation rates. It is observed that the orientation of PEN film is accompanied by significant alignment of the naphthalene rings of PEN parallel to the film surface.

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The Alignment of Liquid Crystals on the Film Surfaces of Soluble Aromatic Polyimides Bearing t-Butylphenyl and Trimethylsilylphenyl Side Groups

  • Hahm, Suk-Gyu;Jin, Kyeong-Sik;Park, Sam-Dae;Ree, Moon-Hor;Kim, Hyung-Sun;Kwon, Soon-Ki;Kim, Yun-Hi
    • Macromolecular Research
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    • v.17 no.12
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    • pp.976-986
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    • 2009
  • With the study goal of firstly elucidating the anisotropic interactions between oriented polymer chain segments and liquid crystal (LC) molecules, and secondly of determining the contributions of the chemical components of the polymer segments to the film surface topography, LC alignment, pretilt, and anchoring energy, we synthesized three dianhydrides, 1,4-bis(4'-t-butylphenyl)pyromellitic dianhydride (BBPD), 1,4-bis(4'-trimethylsilylphenyl)pyromellitic dianhydride(BTPD), and 2,2'-bis(4"-tert-butylphenyl)-4,4',5,5'-biphenyltetracarboxylic dianhydride (BBBPAn), and a series of their organosoluble polyirnides, BBPD-ODA, BBPD-MDA, BBPD-FDA, BTPD-FDA, and BBBPAn-FDA, which contain the diamines 4,4'-oxydianiline (ODA), 4,4'-methylenediamine (MDA), and 4,4'-(hexafluoroisopropylidene)dianiline (FDA). All the polyimides were determined to be positive birefringent polymers, regardless of the chemical components. Although all the rubbed polyimide films exhibited microgrooves which were created by rubbing process, the film surface topography varied depending on the polyimides. In all the rubbed films, the polymer chains were unidirectionally oriented along the rubbing direction. However, the degree of in-plane birefringence in the rubbed film varied depending on the polyimides. The rubbing-aligned polymer chains in the polyimide films effectively induced the alignment of nematic LCs along their orientation directors by anisotropic interactions between the preferentially oriented polymer chain segments and the LCs. The azimuthal and polar anchoring energies of the LCs ranged from $0.45{\times}10^{-4}\;-\;1.37{\times}10^{-4}\;J/m^2$ and from $0.86{\times}10^{-5}\;-\;4.26{\times}10^{-5}\;J/m^2$, respectively, depending on the polyimides. The pretilt angles of the LCs were in the range $0.10-0.62^{\circ}$. In summary, the soluble aromatic polyimides reported here are promising LC alignment layer candidates for the production of advanced LC display devices.

Influence of thermo-physical properties on solutal convection by physical vapor transport of Hg2Cl2-N2 system: Part I - solutal convection

  • Kim, Geug-Tae;Kim, Young-Joo
    • Journal of the Korean Crystal Growth and Crystal Technology
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    • v.20 no.3
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    • pp.125-132
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    • 2010
  • For typical governing dimensionless parameters of Ar = 5, Pr = 1.16, Le = 0.14, Pe = 3.57, Cv = 1.02, $Gr_s=2.65{\times}10^6$, the effects of thermo physical properties such as a molecular weight, a binary diffusivity coefficient, a partial pressure of component B on solutally buoyancy-driven convection (solutal Grashof number $Gr_s=2.65{\times}10^6$) are theoretically investigated for further understanding and insight into an essence of solutal convection occurring in the vapor phase during the physical vapor transport of a $Hg_2Cl_2-N_2$ system. The solutally buoyancy-driven convection is significantly affected by any significant disparity in the molecular weight of the crystal components and the impurity gas of nitrogen. The solutal convection in a vertical orientation is found to be more suppressed than a tenth reduction of gravitational accelerations in a horizontal orientation. For crystal growth parameters under consideration, the greater uniformity in the growth rate is obtained for either solutal convection mode in a vertical orientation or thermal convection mode in horizontal geometry. The growth rate is also found to be first order exponentially decayed for $10{\leq}P_B{\leq}200$ Torr.

Effect of Crystalline Lameliar Orientation on the Creep and Wear of Ultra-high Molecular Weight Polyethylene (초고분자량 폴리에틸렌 미세구조가 변형과 마모에 미치는 영향)

  • 이권용
    • Tribology and Lubricants
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    • v.14 no.3
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    • pp.46-50
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    • 1998
  • 초고분자량 폴리에틸렌(Ultra-High Molecular Weight Polyethylene)은 인공관절 라이너에 쓰이는 대표적 생체재료이다. 초고분자량 폴리에틸렌의 변형과 마모에 영향을 주는 인자에 대한 기본적 연구를 위하여 본 연구에서는 미세구조 결정상의 정도와 결정구조 방향성에 따른 초고분자량 폴리에틸렌의 크리프 변형 및 마모 특성의 연구를 행하였다. 압출 제작된 초고분자량 폴리에틸렌 봉(extruded UHMWPE rod)단면의 중앙(center)부분과 원주(periphery)부분으로부터 각각 직사각형 및 원통형의 시편을 제작하여 크리프 실험과 마모 실험을 실시하였다. 원주 시편의 크리프 변형율은 중앙 시편의 크리프 변형율보다 11%크며(p<0.05), 마모량도 원주 시편이 중앙 시편보다 두 배나 큰 것으로 (p<0.05)관측되었다. 이 결고달로부터 초고분자량 폴리에틸렌의 크리프 변형과 마모가 미세 결정구조 방향성에 영향을 받는 것으로 나타났다.

Comparison of Effects of Ultraviolet and $^{60}$ Co Gamma Ray Irradiation on Nylon 6 Mono-filaments

  • Ohtsuka, Mika;Suzuki, Yoshino;Sakai, Tetsuya;Netravali, Anil N.
    • Fibers and Polymers
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    • v.5 no.3
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    • pp.225-229
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    • 2004
  • The effect of UV and $^60{Co}$ gamma radiations on the physical and mechanical properties of nylon 6 mono-filaments with different draw ratios has been studied. Specimens were exposed to either up to 25 Mrad of gamma or up to 168 hrs of intense UV irradiation. The results show that nylon mono-filaments exposed to gamma rays, with much higher quantum energy than UV, undergo a larger extent of molecular chain scission. Higher irradiation dose also results in the production of insoluble, macroscopic three-dimensional cross-linked network structure. The amorphous regions with a lower density of cohesive energy (lower molecular orientation) show a higher extent of cross linking reaction whereas amorphous regions with a higher density of cohesive energy (higher orientation) show higher extent of chain scission reaction, irrespective of UV ray or gamma ray irradiation.

Dynamic Compressive Creep of Extruded Ultra-High Molecular Weight Polyethylene

  • Lee, Kwon-Yong;David Pienkowski;Lee, Sungjae
    • Journal of Mechanical Science and Technology
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    • v.17 no.9
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    • pp.1332-1338
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    • 2003
  • To estimate the true wear rate of polyethylene acetabular cups used in total hip arthroplasty, the dynamic compressive creep deformation of ultra-high molecular weight polyethylene (UHMWPE) was quantified as a function of time, load amplitude, and radial location of the specimen in the extruded rod stock. These data were also compared with the creep behavior of polyethylene observed under static loading. Total creep strains under dynamic loading were only 64%, 70%, and 61% of the total creep strains under static loading at the same maximum pressures of 2 MPa,4 MPa, and 8 MPa, respectively. Specimens cut from the periphery of the rod stock demonstrated more creep than those cut from the center when they were compressed in a direction parallel to the extrusion direction (vertical loading) whereas the opposite was observed when specimens were compressed in a direction perpendicular to the extrusion direction (transverse loading). These findings show that creep deformation of UHMWPE depends upon the orientation of the crystalline lamellae.

Effect of crystalline lamellar orientation on the creep and wear of ultra-high molecular weight polyethylene (초고분자량 폴리에닐렌 미세구조가 변형과 마모에 미치는 영향)

  • 이권용
    • Proceedings of the Korean Society of Tribologists and Lubrication Engineers Conference
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    • 1998.10a
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    • pp.100-105
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    • 1998
  • 초고분자량 폴리에틸렌(Ultra-High Molecular Weight Polyethylene)은 인공관절 라이너에 쓰이는 대표적 생체재료이다. 초고분자량 폴리에틸렌의 변형과 마모에 영향을 주는 인자에 대한 기본적 연구를 위하여 본 연구에서는 미세구조 결정상의 정도와 결정구조 방향성에 따른 초고분자량 폴리에틸렌의 크리프 변형 및 마모 특성의 연구를 행하였다. 압출 제작된 초고분자량 폴리에틸렌 봉(extruded UHMWPE rod)단면의 중앙(center) 부분과 원주(periphery)부분으로부터 각각 직사각형 및 원통형의 시편을 제작하여 크리프 실험과 마모 실험을 실시하였다. 원주 시편의 크리프 변형율은 중앙 시편의 크리프 변형율보다 11% 크며 (p<0.05), 마모양도 원주 시편이 중앙 시편보다 두 배나 큰 것으로(p<0.05)관측되었다. 이 결과들로부터 초고분자량 폴리에틸렌의 크리프 변형과 마모가 미세 결정구조 방향성에 영향을 받는 것으로 나타났다.

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