• 제목/요약/키워드: Pneumatic spinning

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Vorticity Analysis Associated with Drafting Cylinders for Pneumatic Spinning

  • Bergada J.M.;Valencia E.;Coll Ll
    • Fibers and Polymers
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    • 제7권2호
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    • pp.146-157
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    • 2006
  • Traditional spinning systems have reached profitability limits in developed countries due to high production costs and low system productivity. Pneumatic spinning is seen as a developing system, because productivity is much higher than conventional systems. This study evaluates one of the main problems to increase productivity in pneumatic spinning, where air mass-flow is dragged by the drafting cylinders. This flow interacts with the incoming fibres deviating them from their expected path. Via laser anemometry, airflow velocity distribution around drafting cylinders has been measured and it has been found that vorticity is created at the cylinder's inlet. Extensive CFD simulation on the air flow dragged by the cylinders has given a clear insight into the vortex created, producing valuable information on how cylinder design affects the vorticity created. Several drafting cylinder designs have been tested without giving any improvement in productivity. However, the use of a drafting cylinder with holes in it produced good results to the problem of air currents, strongly reducing them and therefore allowing a sharp increase in yarn quality, as well as an increase in productivity. An extensive study on vortex kinematics has been undertaken, bringing with it a better understanding of vortex creation, development and breakdown.

솔젤법에 의해 제조한 PZT(52/48) 막의 두께에 따른 우선배향성의 변화 및 이에 따른 압전 및 전기적 물성의 변화 평가 (Thickness Dependence of Orientation, Longitudinal Piezoelectric and Electrical Properties of PZT Films Deposited by Using Sol-gel Method)

  • 이정훈;김태송;윤기현
    • 한국세라믹학회지
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    • 제38권10호
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    • pp.942-947
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    • 2001
  • MEMS 소자에의 응용을 위한 PZT(52/48) 박막을 diol을 용매로한 솔젤법에 의해 제조하였으며 미세구조에 따른 전기적 특성 및 압전 특성 관계를 고찰하였다. 0.5 mol 의 sol을 제작하여 1회 코팅시 $0.2{\mu}m$ 두께를 갖는 균열 없는 박막을 얻을 수 있었으며 $0.2{\mu}m$에서 $3.8{\mu}m$의 두께의 막을 증착하였다. 미세구조사진으로부터 층간 porous한 영역이 관찰되지 않음과 제2상의 성장이 없는 치밀한 columnar입자 성장을 확인 할 수 있었으며 균열없는 치밀화된 입자의 성장으로부터 우수한 이력곡선을 얻을 수 있었다. XRD분석으로부터 우선 배향성을 알아본 결과 (111)우선 배향성이 $1{\mu}m$ 영역까지 우세하다가 $1{\mu}m$이상의 두께에서 점차 random하게 바뀌는 것을 확인할 수 있었으며, 유전 특성 및 압전특성의 경향도 이와 유사하게 $1{\mu}m$ 영역까지 증가하다가 그 이상의 두께에서는 수렴하여 각각 1400, 300 pC/N 정도의 우수한 값을 가졌다.

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PZT 박막의 압전 특성 및 MEMS 기술로 제작된 PZT cantilever의 전기기계적 물성 평가 (Piezoelectric and electromechanical properties of PZT films and PZT microcantilever)

  • 이정훈;황교선;윤기현;김태송
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2002년도 하계학술대회 논문집
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    • pp.177-180
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    • 2002
  • Thickness dependence of crystallographic orientation of diol based sol-gel derived PZT(52/48) films on dielectric and piezoelectric properties was investigated The thickness of each layer by one time spinning was about 0.2 $\mu\textrm{m}$, and crack-free films was successfully deposited on 4 inches Pt/Ti/SiO$_2$/Si substrates by 0.5 mol solutions in the range from 0.2 $\mu\textrm{m}$ to 3.8 $\mu\textrm{m}$. Excellent P-E hysteresis curves were achieved without pores or any defects between interlayers. As the thickness increased , the (111) preferred orientation disappeared from 1$\mu\textrm{m}$ to 3 $\mu\textrm{m}$ region, and the orientation of films became random above 3 $\mu\textrm{m}$. Dielectric constants and longitudinal piezoelectric coefficient d$\_$33/, measured by pneumatic method were saturated around the value of about 1400 and 300 pC/N respectively above the thickness of 0.8 7m. A micromachined piezoelectric cantilever have been fabricated using 0.8 $\mu\textrm{m}$ thickness PZT (52/48) films. PZT films were prepared on Si/SiN$\_$x/SiO$_2$/Ta/Pt substrate and fabricated unimorph cantilever consist of a 0.8 fm thick PZT layer on a SiNx elastic supporting layer, which becomes vibration when ac voltage is applied to the piezoelectric layer. The dielectric constant (at 100 kHz) and remanent polarization of PZT films were 1050 and 25 ${\mu}$C/$\textrm{cm}^2$, respectively. Electromechanical characteristics of the micromachined PZT cantilever in air with 200-600 $\mu\textrm{m}$ lengths are discussed in this presentation.

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