• Title/Summary/Keyword: Polycarbonate

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Effect of Polycarbonate Covering Sheet on Greenhouse Indoor Environments and Growth Behavior of Cherry Tomatoes

  • Choi, Kyung Yun;Kim, Soo Bok;Bae, Seokhu;Yoon, Jeong-Hwan;Yun, Ju-Ho;Kim, Namil
    • Elastomers and Composites
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    • v.55 no.2
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    • pp.114-119
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    • 2020
  • The effect of a greenhouse-covering material on its indoor environment and on the characteristics of cherry tomatoes grown in it was investigated. The conventional polyethylene (PE) film on the greenhouse roof was replaced by a polycarbonate (PC) sheet, while maintaining the main structural frame intact. Color changes and the formation of water droplets on the PC surface were avoided by applying coextrusion and coating layers. When compared to the PE greenhouse, the PC greenhouse enabled increased light transmittance and thus a higher indoor temperature during both summer and winter. The thermal insulating property of the PC sheet effectively reduced the heating loss by approximately 55% during winter. The cherry tomatoes grown in the PC greenhouse exhibited superior fruit characteristics in terms of size, weight, and sugar content. The total amount of cherry tomatoes produced per unit area (1,000 ㎡) in the PC greenhouse was found to be greater by approximately 19% compared to that in the PE greenhouse.

Numerical Study on Ricochet Behavior with Inclined Impact of Polycabonate Plates (폴리카보네이트 판의 경사충격에 의한 도비 거동 수치연구)

  • Yang, Tae-Ho;Lee, Young-Shin;Jo, Jong-Hyun
    • Journal of the Korean Society of Safety
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    • v.29 no.4
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    • pp.1-8
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    • 2014
  • In this study, the numerical simulation using AUTODYN-3D program was investigated angle trajectory prediction for inclined impacts of projectiles. The penetration and perforation of polycarbonate plate by 7.62 mm projectile was investigated numerically. The characteristic structure of the projectile's trajectory in the polycabonate plates was studied. Two combined failure criteria were used in the target plate, and the target plate was modeled with the properties of polycarbonate for simulating the ricochet phenomenon. The effect of the angle of inclination on the trajectory and kinetic energy of the projectile were studied. The dynamic deformation behaviors tests of polycabonate were compared with numerical simulation results which can be used as predictive purpose. From the simulation, the ricochet phenomenon was occurred for angles of inclination of $0^{\circ}{\leq}{\theta}{\leq}20^{\circ}$. The projectile perforated the plate for ${\theta}{\leq}30^{\circ}$, thus defining a failure envelope for numerical configuration. The numerical analyses are used to study the effect of the projectile impact velocity on the depth of penetration (DOP). It can be observed that the residual velocities were almost linear relative to penetration velocities. It means that polycarbonate has high resistance at higher velocities.

Adhesion of Cu on Polycarbonate with the Condition of Surface Modification and DC-Bias Sputtering Deposition (폴리카보네이트에서의 표면개질 조건과 DC-Bias Sputtering 증착에 따른 Cu 밀착성)

  • 배길상;엄준선;이인선;김상호;고영배;김동원
    • Journal of Surface Science and Engineering
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    • v.37 no.1
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    • pp.5-12
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    • 2004
  • The enhancement of adhesion for Cu film on polycarbonate (PC) surface with the $Ar/O_2$ gas plasma treatment and dc-bias sputtering was studied. The plasma treatment with this reactive mixture changes the chemical property of PC surface into hydrophllic one, which is shown by the variation of contact angle with surface modification. The micro surface roughness that also gives the high adhesive environment is increased by the $Ar/O_2$ gas plasma treatment. These results were observed distinctly from the atomic force microscopy (AFM). The negative substrate dc-bias effect for the Cu adhesion on PC was also investifated. Accelerated $Ar^{+}$ lons in sheath area of anode bombard the bare surface of PC during initial stage of dc bias sputtering. PC substrate. therefore, has severe roughen and hydrophilic surface due to the physical etching process with more activated functional group. As dc-bias sputtering process proceeds, morphology of Cu film shows better step coverage and dense layer. The results of peel test show the evidence of superiority of bias sputtering for the adhesion between metal Cu and PC.C.

Al-Si-N/SiN:H Thin Films Coating for Polycarbonate

  • Kim, Seong-Min;Kim, Gyeong-Hun;Jang, Jin-Hyeok;Han, Seung-Hui;Im, Sang-Ho
    • Proceedings of the Korean Vacuum Society Conference
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    • 2013.08a
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    • pp.190.1-190.1
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    • 2013
  • 현재 자동차 분야에서 차량 경량화를 통해 연비 향상 및 에너지 효율 향상을 기대하고 있으며, 차량 경량화의 한 수단으로 자동차용 유리를 고강도 투명 플라스틱 소재인 PC(Polycarbonate)로 대체하고자 하는 연구가 활발히 이루어지고 있다. 그러나, PC의 낮은 내마모 특성과 자외선에 의한 열화 및 변색 현상은 해결하여야 할 중요한 문제점으로 지적되고 있다. 본 연구에서는, PC의 내마모 특성을 향상시키기 위하여 transmittance가 확보되고, 고경도 특성을 갖는 Al-Si-N 박막 증착에 대한 연구를 하였고, 자외선 차단을 위하여 SiN:H 박막을 증착 하였다. 박막 증착을 위하여 ICP-assisted reactive magnetron sputtering 장비를 이용하였으며, 고경도 특성을 갖는 Al-Si-N 박막을 제조하였다. 그리고 300 nm 파장 이하의 자외선 차단을 위하여 SiN:H 박막을 증착하였다. 분석 장비로는 박막의 chemical state와 crystallinity를 확인하기 위하여 XPS(X-ray Photoelectron Spectroscopy), XRD(X-ray diffraction)를 이용하여 분석을 수행하였으며, Knoop ${\mu}$-hardness tester와 Pin-on-disk를 이용하여 경도 및 내마모 특성을 평가하였다. SiN:H 박막 위에 Al-Si-N 박막을 증착하였고 총 두께는 ~5000 $\AA$을 증착하였으며, 가시광 영역에서 평균 70% 이상의 transmittance를 나타내었다. 박막의 Si/(Al+Si) 비율에 따라 다른 경도 특성을 나타냈는데, Si/(Al+Si) 비율이 26~32% 부근에서 최대 31 GPa의 경도 값을 확인하였고 SiN:H 박막은 300nm 이하의 파장에서 2% 이하의 transmittance를 확인하였다.

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A Study on the Production of Carbon Fiber Composites using Injection-molding Grade Thermoplastic Pellets (사출성형용 열가소성 펠렛을 이용한 탄소섬유 복합소재 제작에 관한 연구)

  • Jeong, E.C.;Yoon, K.H.;Kim, J.S.;Lee, S.H.
    • Transactions of Materials Processing
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    • v.25 no.6
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    • pp.402-408
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    • 2016
  • A manufacturing technology of carbon fiber composites with thermoplastic polymer pellets and continuous woven fiber was investigated using a compression molding process. To secure the impregnation of resin into the porosity of fabric the composite specimens were prepared with general injection-molding grade polypropylene pellets and low viscosity polycarbonate pellets. Tensile tests of polypropylene and polycarbonate composites were performed. Polycarbonate composites showed higher fracture strength than that of polypropylene composites because of the difference of matrix properties. However, the increase rate of strength was lower than that of polypropylene composites due to the difference of coherence between matrix and reinforcement. To investigate the effect of carbon fiber volume fraction on the fracture strength variation polypropylene composites with different volume fraction were compression molded and tensile tests were performed together. It was shown that the fracture strength of the polypropylene composites increased by 3.2, 5.4 and 6.9 times with the increase of carbon fabric volume fraction of 0.256, 0.367, and 0.480, respectively.

Fabrication of Polycarbonate Nano Fibers Using Electrospinning (전기방사법을 이용한 Polycarbonate 나노 섬유 제조)

  • Kim Giltae;Park Sangkyoung;Lee Jaekeun;Ahn Youngchull
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.29 no.4 s.235
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    • pp.512-518
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    • 2005
  • Polymeric fibers with nanometer-scale diameters are produced by electrospinning. When the electrical forces at the surface of a polymer solution or melt overcome the surface tension then electrospinning occurs. Polycarbonate has been electrospun. Electrospun fibers are observed by scanning electron microscopy and transmission electron microscopy. The surface morphology of e-spun fiber has been studied by many variables that are involved in different polymer concentrations, solvent mixing ratios and ambient parameters. The average diameters of the electrospun fibers range from 200 nm to 4,570 nm when the PC concentration is decreasing from 15.5\;wt{\%}\;to\;25\;wt{\%}.$ The higher concentration of the polymer solution makes the fibers thicker due to preventing the fiber stretching. With respect evaporation effects, the solvent mixing ratios cause significant changes of the fiber size distribution. As a matter of fact the fiber diameter steadily increases with increasing amount of DMF until the solvent mixture is at THF:DMF ratio of 60:40.

Enhanced Crystallization of Bisphenol-A Polycarbonate by Organoclay in the Presence of Sulfonated Polystyrene Ionomers

  • Govindaiah, Patakamuri;Lee, Jung-Min;Lee, Seung-Mo;Kim, Jung-Hyun;Subramani, Sankaraiah
    • Macromolecular Research
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    • v.17 no.11
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    • pp.842-849
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    • 2009
  • Polycarbonate (PC)/sulfonated polystyrene (SPS) ionomer/organoclay nanocomposites were prepared by a solution intercalation process using the SPS ionomer as a compatibilizer. The effect of an organoclay on the melt crystallization behavior of the ionomer compatibilized PC were examined by differential scanning calorimetry (DSC). The melt crystallization behavior of PC was dependent on the extent of organoclay dispersion. The effect of the ionomer loading and cation size on intercalation/exfoliation efficiency of the organoclay in PC/SPS ionomer matrix was also studied using wide angle X-ray diffraction (WAXD) and transmission electron microscopy (TEM). Dispersion of the organically modified clay in the polymer matrix improved with increasing ionomer compatibilizer loadings and cation size. The SPS ionomer compatibilized PC/organoclay nanocomposite showed enhanced melt crystallization compared to the SPS ionomer/PC blend. Well dispersed organoclay nanocomposites showed better crystallization than the poorly dispersed clay nanocomposites. These nanocomposites also showed better thermal stability than the SPS ionomer/PC blend.

Electron Dose Measurement with Polycarbonate Film Dosimeter

  • Yoo, Young-Soo
    • Nuclear Engineering and Technology
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    • v.8 no.1
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    • pp.9-17
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    • 1976
  • Dosimetrical properties of polycarbonate film for high-level dosimetry of electrons have been examined. Polycartonate film of 0.1mm in thickness was chosen for this purpose. It can cover the dose range of 1.0-130 Mrad and the measurable range can be extended up to 200 Mrad by using calibration curve. The measurement error was within 3.5%. The radiation induced optical density at 330nm shows rapid initial fading of 7-l3n for one day after irradiation at room temperature and subsequent fading rate is very small, about 0.6% per day. The fading depends on the absorbed dose, storage temperature, and wavelengths. The effects of storage time and temperature during and after irradiation of this film are presented. For practical dosimetry, it is necessary to stabilize the induced optical density by storing the irradiated film for a day or by heat treatment at 10$0^{\circ}C$ for an hour.

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The Effect of Surface Treat`ment on Bond Strength of Polycarbonate Bracket (폴리카보네이트 브라켓 부착 시 결합강도 증진을 위한 표면처리 효과)

  • Kim, Seok-Pil;Kim, Nyeon-Kyeong;Lee, Hyun-Jung;Hwang, Hyeon-Shik
    • The korean journal of orthodontics
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    • v.36 no.5
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    • pp.331-338
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    • 2006
  • Objective: The purpose of this study was to evaluate whether the bond strength of polycarbonate brackets can be increased through surface treatment. Methods: One hundred polycarbonate brackets (Alice) were bonded to bovine incisors with light-cured adhesive. The bracket bases were treated with one of three methods; sandblasting, plastic conditioner application, and combined treatment with sandblasting and plastic conditioner. The brackets without any suraace treatment served as the control. The shear bond strength was tested with a universal testing machine, and failure pattern was assessed with the adhesive remnant index. Results: The shear bond strength in all experimental groups was higher than that of the control group (p < 0.001). The group treated with plastic conditioner after sandblasting showed statistically higher shear bond strength than the sandblasting only group to (p < 0.05). The group treated with plastic conditioner after sandblasting showed higher shear bond strength than plastic conditioner only group, but the difference was not statistically significant. Conclusion: The above results suggest that the surface treatments of polycarbonate bracket is mandatory to improve bond strength, and the most effective method is an application of plastic conditioner after sandblasting.

Study of Air-Breathing Polymer Electrolyte Membrane Fuel Cell Using Metal-Coated Polycarbonate as a Material for Bipolar Plates (도금된 폴리카보네이트 분리판을 이용한 공기 호흡형 고분자 전해질막 연료전지에 관한 연구)

  • Park, Taehyun;Lee, Yoon Ho;Chang, Ikwhang;Ji, Sanghoon;Paek, Jun Yeol;Cha, Suk Won
    • Transactions of the Korean Society of Mechanical Engineers B
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    • v.37 no.2
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    • pp.155-161
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    • 2013
  • In this study, a metal-plated polycarbonate was adopted as a material for bipolar plates in a polymer electrolyte membrane fuel cell (PEMFC). The coated layers included 40-${\mu}m$-thick copper, 10-${\mu}m$-thick nickel, and 0.3-${\mu}m$-thick gold that respectively played the roles of current conduction, adhesion between copper and gold, and minimization of surface corrosion. The maximum power of the air-breathing PEMFC with polycarbonate bipolar plates was $120mW/cm^2$, which was similar to that of graphite bipolar plates. Finally, the maximum power of a 12-cell stack of polycarbonate bipolar plates was $132.7mW/cm^2$, and it had an operating time of 12 h. Therefore, this was considered a suitable material for bipolar plates in PEMFCs.