• Title/Summary/Keyword: Tension Type Shadow Mask

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Vibration Control of Membrane with Tension Gradient Using Multiple Dynamic Absorber (다중 동흡진기를 이용한 장력구배를 갖는 박판의 진동 제어)

  • Park, Chong-Hyun;Kim, Sung-Dae;Kim, Won-Jin
    • Transactions of the Korean Society for Noise and Vibration Engineering
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    • v.15 no.5 s.98
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    • pp.595-603
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    • 2005
  • In this work, the multiple dynamic absorber( MDA ) is introduced to reduce several vibration modes of shadow mask simultaneously and its design method is developed from the theory of the simple dynamic absorber. When designing the dynamic absorber, there are three significant design parameters such as mass, damping ratio and tuning frequency. Therefore the sensitivity analysis for those parameters has been executed in order to find out the design criteria of multiple dynamic absorber using the finite element model of shadow mask. The multiple dynamic absorber(MDA) designed by the proposed method is tested theoretically and experimentally to estimate the efficiency of vibration reduction. From the results, it is verified that the method is feasible to apply the system having the multiple nitration modes and more efficient than the thin wire-type damper used commercially to reduce the vibration of shadow mask.

Development of Registration Method of Panel and Mask for FTM Tube (FTM 튜브의 판넬과 마스크의 일치방법 개발)

  • Yun, Jong-Soon;Jung, Jong-Yun
    • IE interfaces
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    • v.11 no.2
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    • pp.107-117
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    • 1998
  • This paper presents a useful method of registration in manufacturing of shadow color mask for cathode ray tubes of the FTM (Flat Tension Mask) type, wherein the shadow mask and front panel are interchangeable when mask-panels are assembled, which is called ICM system. Theoretical analysis and alignment process are presented. The pattern of mask aperture is registered with a screen pattern of corresponding geometry of the panel in flat tension mask tube. Registration accuracy of panel and mask affects the purity of color cathode ray tube concerned with mislanding. It tries to minimize the misregistration caused by variances, which are mechanical error, mask stretching position error, restrictive number of fiducial point, etc.

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