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    • 4. 发明申请
    • Method for Producing Optical Element and Optical Element
    • 光学元件和光学元件的制造方法
    • US20170057856A1
    • 2017-03-02
    • US15119642
    • 2015-02-19
    • Konica Minolta, Inc.
    • Shuhei AshidaShuhei Hayakawa
    • C03B11/12C03B11/08
    • C03B11/122C03B11/084C03B2201/86C03B2215/46C03B2215/66C03B2215/76C03C3/321C03C4/10
    • Provided is a method for producing an inexpensive chalcogenide optical element having high performance. An inside of chalcogenide glass is also heated uniformly by heating the chalcogenide glass with an infrared ray (light LI). Therefore, a molded lens LE hardly causes a crack or the like, a work piece WP as a block of the chalcogenide glass can be softened in a short time, and time required for molding can be shortened. In addition, direct heating with an infrared ray (light LI) allows heating and cooling to be performed in a short time. Therefore, an effect of volatilization, oxidation, crystallization, or the like can be reduced, and the lens LE having a high transmittance can be molded. Press molding can be performed while the temperature of the second mold die 12 is lower than that of the glass. Therefore, the lens LE hardly causing fusion and having an excellent appearance can be molded with a low maintenance frequency.
    • 提供一种生产具有高性能的便宜的硫族化物光学元件的方法。 通过用红外线(光LI)加热硫族化物玻璃,均匀地加热硫属化物玻璃的内部。 因此,模制透镜LE几乎不产生裂纹等,可以在短时间内软化作为硫族化物玻璃的块的工件WP,并且可以缩短成型所需的时间。 另外,用红外线(光LI)的直接加热可以在短时间内进行加热和冷却。 因此,可以降低挥发,氧化,结晶等的效果,并且可以模塑具有高透射率的透镜LE。 可以在第二模具12的温度低于玻璃的温度的同时进行压制成形。 因此,可以以低维护频率来模制难以融合并具有优异外观的透镜LE。