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    • 1. 发明授权
    • Glass ceramic plates for holding substrates during pre-heating
    • 用于在预热期间保持基板的玻璃陶瓷板
    • US06642484B2
    • 2003-11-04
    • US10264406
    • 2002-10-04
    • Hartmut EggertArmin KunkelJuergen VogtRolf MeyerPeter Woerner
    • Hartmut EggertArmin KunkelJuergen VogtRolf MeyerPeter Woerner
    • F27B514
    • C23C16/4581C23C14/541C23C16/46
    • In the method for coating substrates the substrates are placed in recesses in a glass-ceramic plate or plates arranged over infrared high-temperature radiators with the surfaces to be coated on the radiators. The substrates are heated from below to the process temperature required for the coating. Subsequently the substrates are removed from the heating device, introduced into a coating chamber and coated. The preheating device for the substrates has two glass-ceramic plates that are placed loosely on top of each other and infrared high-temperature radiators. Substrate receptacles are provided in the glass-ceramic plates by approximately coincident recesses of different size in the plates so that the substrates can be held in close proximately to the radiators during the preheating.
    • 在用于涂布基板的方法中,将基板放置在布置在红外高温辐射器上的玻璃 - 陶瓷板或板中的凹槽中,其中要涂覆在散热器上的表面。 将基底从下面加热到涂层所需的工艺温度。 随后将基板从加热装置中取出,引入涂覆室并进行涂布。 用于基板的预热装置具有两个宽松地放置在彼此之上的玻璃陶瓷板和红外高温散热器。 在玻璃陶瓷板中通过在板中具有不同尺寸的几乎重合的凹槽来提供衬底插座,使得在预热期间,衬底可以靠近辐射器保持紧密。
    • 2. 发明授权
    • Method for coating substrates with improved substrate preheating
    • 用改进的衬底预热涂覆衬底的方法
    • US06511717B2
    • 2003-01-28
    • US10139298
    • 2002-05-03
    • Hartmut EggertArmin KunkelJuergen VogtRolf MeyerPeter Woerner
    • Hartmut EggertArmin KunkelJuergen VogtRolf MeyerPeter Woerner
    • H05H120
    • C23C16/4581C23C14/541C23C16/46
    • In the method for coating substrates the substrates are placed in recesses in a glass-ceramic plate or plates arranged over infrared high-temperature radiators with the surfaces to be coated on the radiators. The substrates are heated from below to the process temperature required for the coating. Subsequently the substrates are removed from the heating device, introduced into a coating chamber and coated. The preheating device for the substrates has two glass-ceramic plates that are placed loosely on top of each other and infrared high-temperature radiators. Substrate receptacles are provided in the glass-ceramic plates by approximately coincident recesses of different size in the plates so that the substrates can be held in close proximately to the radiators during the preheating.
    • 在用于涂布基板的方法中,将基板放置在布置在红外高温辐射器上的玻璃 - 陶瓷板或板中的凹槽中,其中要涂覆在散热器上的表面。 将基底从下面加热到涂层所需的工艺温度。 随后将基板从加热装置中取出,引入涂覆室并进行涂布。 用于基板的预热装置具有两个宽松地放置在彼此之上的玻璃陶瓷板和红外高温散热器。 在玻璃陶瓷板中通过在板中具有不同尺寸的几乎重合的凹槽来提供衬底插座,使得在预热期间,衬底可以靠近辐射器保持紧密。
    • 6. 发明授权
    • Device for wetting a medical equipment component
    • 用于润湿医疗设备部件的装置
    • US09101699B2
    • 2015-08-11
    • US13421913
    • 2012-03-16
    • Juergen VogtEduard Fransen
    • Juergen VogtEduard Fransen
    • B05C7/00A61M5/00
    • A61M5/00
    • The invention concerns a device (1) for wetting a medical equipment component (20) with a liquid medium (M), having a dispenser (10) for applying the liquid medium (M) to a section (200) of the component (20) that is to be wetted. A device of this type is characterized by a suction device (12) for drawing off at least a portion of the liquid medium (M) from the section (200) of the component (20) that is to be wetted. The invention furthermore concerns a method for wetting a component. In this manner, a device and a method for wetting a component with a liquid medium is created, with which a wetting procedure can be executed in an at least partially automated manner, at least partially reducing the risk thereby of blockage at the opening of the component as a result of too much liquid being applied.
    • 本发明涉及一种用于用液体介质(M)润湿医疗设备部件(20)的装置(1),其具有用于将液体介质(M)施加到部件(20)的部分(200)的分配器(10) )要润湿。 这种装置的特征在于用于从待润湿的部件(20)的部分(200)抽出至少一部分液体介质(M)的抽吸装置(12)。 本发明还涉及润湿组分的方法。 以这种方式,产生了用液体介质润湿组分的装置和方法,利用该装置和方法可以以至少部分自动化的方式执行润湿程序,至少部分地降低了在开口处的堵塞的风险 作为施加过多液体的结果的组分。
    • 8. 发明申请
    • Method for making contact lenses
    • 隐形眼镜的制作方法
    • US20070037897A1
    • 2007-02-15
    • US11500721
    • 2006-08-08
    • Guigui WangDawn SmithJuergen VogtJohn LallyBrian Devlin
    • Guigui WangDawn SmithJuergen VogtJohn LallyBrian Devlin
    • B29D11/00G02B1/04
    • B29C33/60B29C33/62B29D11/00134B29D11/00192G02B1/043
    • The instant invention pertains to a method and a fluid composition for producing contact lenses with improved lens quality and with increased product yield. The method of the invention involves adding a non-crosslinkable hydrophilic polymer into a fluid composition including a lens-forming material in an amount sufficient to reduce an averaged mold separation force by at least about 40% in comparison with that without the non-crosslinkable hydrophilic polymer and to provide a disparity of about 10 N or less in mold separation force. The non-crosslinkable hydrophilic polymer has a limited miscibility with the lens-forming material low enough to successfully and timely form an intact interfacial film with a sufficient thickness at an interface between the mold and the fluid composition therein, and has a structure that minimizes entanglement of the non-crosslinkable hydrophilic polymer in the interfacial film with the polymer matrix of the formed lens.
    • 本发明涉及一种用于制造具有改善的镜片质量和增加的产品产量的隐形眼镜的方法和流体组合物。 本发明的方法包括将不可交联的亲水性聚合物添加到包含透镜形成材料的流体组合物中,该透镜形成材料的量足以将平均的模具分离力减小至少约40%,与没有不可交联的亲水性 并且在模具分离力中提供约10N或更小的差异。 不可交联的亲水性聚合物与透镜形成材料的混溶性有限,足够低以在模具和其中的流体组合物之间的界面处成功地及时地形成具有足够厚度的完整界面膜,并且具有最小化缠结的结构 的界面膜中的不可交联的亲水聚合物与形成的透镜的聚合物基体。