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    • 1. 发明申请
    • NOVEL PROCESS FOR MAKING MOLDED DEVICES
    • 制造成型设备的新工艺
    • US20150151461A1
    • 2015-06-04
    • US14549636
    • 2014-11-21
    • Novartis AG
    • Rene Ochrombel
    • B29C39/26B29C39/02
    • B29C39/026B29C33/424B29C33/428B29C33/52B29C39/006B29C2037/0035B29D11/00336B29D11/00519B29K2083/00B29L2011/0041
    • This invention is directed to a process for applying a symbol to a molded device which symbol on the molded device is visible as an indentation in the surface of the device. The process involves the step of applying the symbol as an elevation to the mold before using the mold for making the molded device. The process of the invention is characterized in that the elevation on the mold is produced by applying a material to the mold surface which material is liquid when being applied and which material is applied at a temperature higher than the temperature which is at or preferably below the melting point of the material, and which material solidifies at the temperature of the mold. The material applied to the mold and solidified on the mold surface as an elevation needs to remain solid during the process of using the mold for making the molded device. During the molding process the elevation of the symbol on the mold is transferred as an indentation of the symbol to the surface of the molded device. After the molding process is complete and the molded device has been separated from the mold the elevation on the mold surface can be removed and the mold can be re-used without an elevation or with another elevation being applied to make another molded device.
    • 本发明涉及一种将符号应用于模制装置的方法,该模制装置上的符号可视为装置表面中的凹陷。 该方法包括在使用模具制造模制装置之前将符号作为高度施加到模具的步骤。 本发明的方法的特征在于,通过在模具表面上施加材料来产生模具上的高度,该材料在施加时是液体的,哪种材料在高于或优选低于 材料的熔点,以及哪种材料在模具的温度下固化。 在使用模具制造模制装置的过程中,施加到模具并在模具表面上固化的材料作为仰角需要保持固体。 在模制过程中,模具上的符号的高度作为符号的压痕转移到模制装置的表面。 在模制过程完成并且模制装置已经与模具分离之后,可以去除模具表面上的高度,并且可以在没有高度或另外的高度应用模具的情况下重新使用模具以制造另一个模制装置。
    • 4. 发明申请
    • FILM PRODUCING SYSTEM
    • 电影制作系统
    • US20120040036A1
    • 2012-02-16
    • US12913791
    • 2010-10-28
    • SEI-PING LOUH
    • SEI-PING LOUH
    • B29C43/08
    • B29C43/222B29C43/28B29D11/00278B29D11/00336G02B3/0031
    • A film producing system for producing optical film includes a glue dispenser, a conveyor including a flexible base, a compression molding device, and a light curing device. The glue dispenser is configured for receiving glue therein and dispensing the glue onto the flexible base. The flexible base is configured for carrying the glue dispensed thereon from the glue dispenser to the compression molding device. The compression molding apparatus configured for press molding the glue dispensed on the flexible base to a predetermined shape. The flexible base is configured for carrying the shaped glue from the compression molding device to the light curing device. The light curing device is configured for curing the glue shaped by the compression molding device. The compression molding device includes a rotating pressing roller and a fixed pressing blocking configured for shaping the glue on the flexible base to the predetermined shape.
    • 用于制造光学膜的薄膜制造系统包括胶水分配器,包括柔性基座的输送机,压缩模制装置和光固化装置。 胶水分配器构造成用于在其中接收胶水并将胶水分配到柔性基底上。 柔性基座构造成将从胶水分配器分配的胶水携带到压缩模制装置。 压缩成形装置,其构造成将分配在柔性基部上的胶水压模成规定形状。 柔性基座构造成将成形胶从压缩模制装置运送到光固化装置。 光固化装置构造成用于固化由压缩成型装置成形的胶水。 压缩成型装置包括旋转加压辊和固定按压块,用于将柔性基底上的胶成形为预定形状。
    • 10. 发明授权
    • Marking of mold inserts to produce marked contact lenses
    • 标记模具插件以产生标示的隐形眼镜
    • US5641437A
    • 1997-06-24
    • US536159
    • 1995-09-29
    • Wayner E. WilliamsMark A. Duarte
    • Wayner E. WilliamsMark A. Duarte
    • G02C7/04B29C33/42B29C33/76B29D11/00G01B9/02G02C7/02
    • B29D11/00336B29C33/424B29D11/00125B29D11/00317G01B9/0209G02C7/021
    • A method for producing visible marks in molded contact lenses, particularly soft hydrogel contact lenses, by placing a recessed mark configuration in a metal insert. The metal insert is subsequently used to produce injection molding frames, which are then subsequently used in the molding of the final contact lenses. The recessed mark configuration is at least approximately 10 microns deep, has a Volume Index, which is the ratio of the quantity volume below a reference surface minus the volume above the reference surface over the volume below the reference surface, of at least approximately 0.9. The recessed mark configuration also preferably has a ratio of surface roughness (RMS or Ra) to a peak-to-valley (PV) measurement, RMS/PV or of Ra/PV, of greater than approximately 0.15. The recessed mark configuration in the metal insert is subsequently transferred as a raised portion to the injection molded frames, and is then subsequently transferred as a visible recessed mark in contact lenses molded in the frames prepared using the inserts. The ratio of the surface roughness (RMS or Ra) to the height (H), wherein H is the distance between two reference lines in a profile of the mark, RMS/H or Ra/H, is at least approximately 1.5. A preferred method of imparting the recessed configuration to the insert is by Electric Discharge Machining (EDM). The dimensions of the several parameters can be verified by using a noncontact scanning white light interferometer.
    • 通过在金属插入物中放置凹痕标记构造,在模制的隐形眼镜,特别是软水凝胶隐形眼镜中产生可见标记的方法。 随后使用金属插件来生产注射成型框架,然后随后将其用于模制最终的隐形眼镜。 凹陷标记构型至少约10微米深,具有体积指数,其是低于参考表面的量体积减去比参考表面以上的体积低于参考表面的体积的比率至少为0.9。 凹陷标记构造还优选地具有大于约0.15的表面粗糙度(RMS或Ra)与峰 - 谷(PV)测量的RMS / PV或Ra / PV之比。 金属插入物中的凹痕标记构造随后作为凸起部分转移到注射成型框架上,然后随后在作为使用插入件制备的框架中模制的隐形眼镜中转移为可见凹痕。 表面粗糙度(RMS或Ra)与高度(H)的比值,其中H是标记轮廓中的两个参考线之间的距离,RMS / H或Ra / H至少为1.5。 通过放电加工(EDM)将凹陷构造赋予插入件的优选方法。 可以通过使用非接触扫描白光干涉仪来验证几个参数的尺寸。