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Arbitrary Curvature Radius Of the Optical Parts Precision Polishing Technology

机译:光学零件的任意曲率半径精密抛光技术

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This paper puts forward a kind of magnetorheological polishing technology of arbitrary curvature radius spherical optical parts and the mechanical structure of its supporting equipment. By changing the position of the intersection point of the spindle unit and pendulum shaft device in the space, it can achieve high quality and rapid processing of an arbitrary curvature radius of the spherical optical parts. The wheel-head structure of our equipment is an endless belt structure. The magnetorheological fluids are added to the endless belt, and the wheel-head structure 15 is powered. Then, it will form a Bingham on the endless belt with which the surface of the processed optical parts contact. At last, it will achieve precision flexible polishing process ultimately. A simple mechanical structure design and breakthrough processing method are used in the equipment and the complete processing technology, which can achieve flexible polishing of large-diameter spherical (or plane) optical components with any radius. The machining accuracy is less than lnm, achieving the requirements of the ultra-smooth surface.
机译:本文提出了一种任意曲率半径球形光学零件的磁流变抛光技术及其支撑设备的机械结构。通过在空间中改变主轴单元和摆锤装置的交叉点的位置,可以实现球形光学部分的任意曲率半径的高质量和快速处理。我们设备的轮子结构是无环形带结构。磁流体流体被添加到环形带中,并且车轮头结构15被动力。然后,它将在环形带上形成弯曲,其中处理过的光学部件的表面接触。最后,它将最终实现精密柔性抛光过程。设备和完整的加工技术中使用了简单的机械结构设计和突破性加工方法,可以实现具有任何半径的大直径球形(或平面)光学元件的灵活抛光。加工精度小于LNM,实现超光滑表面的要求。

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