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Linear slider supported by squeezed air films with self-propulsion mechanism based on floating height difference

机译:基于浮动高度差的带自推力的压缩空气膜支撑的线性滑块

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摘要

Non-contact supports involving air or magnetic forces are used as guide supports for linear motion mechanisms. In the present study, non-contact supports are generated using the effect of the static pressure force produced by a squeezed air film. The linear slider is supported at just two of its ends. Applying a different excitation amplitude to the two transducers leads to a difference in the floating height at either end of the slider due to the different air-film thicknesses. This causes the slider to tilt, which produces a propulsion force due to the dead load. An experimental apparatus with a flat plate slider was developed and its floating characteristics were examined. In addition, the propulsion force was measured for sliders with different weights. The results indicated that the floating height was 2 to 3 times the excitation amplitude. The slider was capable of travelling all over the movement stroke. The traveling force increased with increasing slider weight, and was about 0.15-0.35 mN. The measurement results were in good agreement with theoretical calculations. Thus, the present study showed that the slider could be successfully supported in a non-contact state and was capable of movement under the influence of a propulsion force generated only by the dead load.
机译:涉及空气或磁力的非接触式支撑物用作线性运动机构的导向支撑物。在本研究中,非接触式支撑是利用压缩空气膜产生的静压力产生的。线性滑块的两端仅受支撑。由于不同的气膜厚度,将不同的激励幅度应用于两个换能器会导致滑块任一端的浮动高度不同。这导致滑块倾斜,由于静载荷而产生推进力。开发了具有平板滑块的实验装置,并研究了其浮动特性。此外,还对不同重量的滑块测量了推进力。结果表明,浮动高度是激发幅度的2至3倍。滑块能够在整个运动行程中移动。行进力随滑块重量的增加而增加,大约为0.15-0.35 mN。测量结果与理论计算吻合良好。因此,本研究表明,滑块可以在非接触状态下成功支撑,并且能够在仅由静载荷产生的推进力的影响下运动。

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