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Development of a compression molding process for three-dimensional tailored free-form glass optics

机译:开发用于3D量身定制的自由形式玻璃光学器件的压缩成型工艺

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摘要

Because of the limitation of manufacturing capability, free-form glass optics cannot be produced in a large volume using traditional processes such as grinding, lapping, and polishing. Very recently compression molding of glass optics became a viable manufacturing process for the high-volume production of precision glass optical components. An ultraprecision diamond-turning machine retrofitted with a fast tool servo was used to fabricate a free-form optical mold on a nickel-plated surface. A nonuniform rational B-spline trajectory generator was developed to calculate the computer numerical control machine tool path. A specially formulated glass with low transition temperature (T_(g)) was used, since the nickel alloy mold cannot withstand the high temperatures required for regular optical glasses. We describe the details of this process, from optical surface geometry, mold making, molding experiment, to lens measurement.
机译:由于制造能力的限制,使用传统工艺(例如研磨,研磨和抛光)无法大量生产自由形状的玻璃光学器件。最近,玻璃光学器件的压铸已成为批量生产精密玻璃光学组件的可行制造工艺。配备快速工具伺服系统的超精密金刚石车削机床用于在镀镍表面上制造自由形式的光学模具。开发了非均匀有理B样条轨迹发生器,计算了计算机数控机床的路径。使用低过渡温度(T_(g))的特殊配方玻璃,因为镍合金模具无法承受常规光学玻璃所需的高温。我们描述了此过程的细节,从光学表面几何形状,模具制造,成型实验到镜片测量。

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