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Computer numerically controlled plasma chemical vaporization machining with a pipe electrode for optical fabrication

机译:使用管电极进行光学制造的计算机数控等离子体化学汽化加工

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We have developed a chemical vaporization machining device that has computer numerically controlled plasma, by using a pipe electrode for optical fabrications. In this device, less than approximately 1 atm of pressure, plasma is generated around the tip of a pipe electrode. During the process, a workpiece is scanned against the electrode under computer control to achieve the desired shape to be removed. A workpiece of silica glass plate is shaped by use of this device, and the removal characteristics of the device are examined. The equations to characterize numerically the shape resulting from scanning of a workpiece have been derived. The new device allows the high precision of optics hom the micrometer to the nanometer level with high-speed removal. The shaped surface is sufficiently smooth to be suitable for optical use. (C) 1998 Optical Society of America. [References: 21]
机译:我们已经开发出一种化学汽化加工设备,该设备通过使用管电极进行光学制造而具有计算机数控等离子体。在该装置中,在小于大约1个大气压的压力下,在管道电极的尖端周围产生了等离子体。在此过程中,在计算机的控制下,将工件靠着电极扫描,以获得所需的要去除的形状。通过使用该装置使石英玻璃板的工件成形,并检查该装置的去除特性。推导了用数字表征工件扫描产生的形状的方程式。这种新设备可以通过高速去除将微米级的光学元件精确到纳米级。成形表面足够光滑以适合于光学用途。 (C)1998年美国眼镜学会。 [参考:21]

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