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    • 72. 发明申请
    • Method and apparatus for forming an optical element and substrate and moulding tool
    • 用于形成光学元件和基板和成型工具的方法和装置
    • US20050249919A1
    • 2005-11-10
    • US11115415
    • 2005-04-27
    • Bernd WolfingEdgar PawlowskiUlrike StohrRalf Biertumpfel
    • Bernd WolfingEdgar PawlowskiUlrike StohrRalf Biertumpfel
    • G02B3/00B29C43/02B29D11/00C03B11/00C03B11/08G02B3/02G02B5/18B32B3/00
    • B29D11/00B29C43/021B29D11/00317B29D11/00365B29D11/00769B29L2011/0016C03B11/08C03B11/082C03B2215/41C03B2215/412C03B2215/65G02B5/18Y10S425/808Y10T428/24479
    • The invention relates to a process for forming an optical element. A forming tool is used having a plurality of molding or hot-embossing portions formed on a surface thereof for molding or hot-embossing optical structures onto a substrate. On the surface of the substrate there is formed at least one preformed portion. The substrate is heated to a temperature above a transition temperature and the forming tool and the substrate are pressed against each other for forming an optical element having a plurality of structures having an optical effect, wherein the shape of the structures having an optical effect is given by the respective associated molding or hot-embossing portion. According to the invention, when the forming tool and the substrate are pressed against each other, the respective preformed portion of the substrate first of all gets into contact to the associated molding or hot-embossing portion or to the forming tool at a central area so that a nip, which is formed between a surface of the respective preformed portion and a surface of the associated molding or hot-embossing portion or of said forming tool extends and broadens from said central area towards an edge of the respective preformed portion or of said substrate. According to the invention the substrate and said forming tool are provided with a substantially identical base so that the deformation ratio of the substrate is advantageously low.
    • 本发明涉及一种用于形成光学元件的方法。 使用形成工具,其具有形成在其表面上的多个模制或热压花部分,用于将光学结构模制或热压印到基底上。 在基板的表面上形成有至少一个预成型部分。 将基板加热到高于转变温度的温度,并且成形工具和基板彼此压靠以形成具有多个具有光学效果的结构的光学元件,其中给出具有光学效果的结构的形状 通过各自相关联的模制或热压花部分。 根据本发明,当成形工具和基板彼此挤压时,基板的各个预成形部分首先在中心区域与相关联的模制或热压花部分或成形工具接触,从而 形成在相应的预成型部分的表面与相关联的模制或热压花部分或所述成形工具的表面之间的辊隙从所述中心区域朝向相应的预成形部分或所述成形工具的边缘的边缘延伸并变宽 基质。 根据本发明,衬底和所述成形工具设置有基本相同的基部,使得衬底的变形率有利地较低。
    • 75. 发明申请
    • Glass-forming mold and a manufacturing method thereof
    • 玻璃成型模具及其制造方法
    • US20020078713A1
    • 2002-06-27
    • US09994369
    • 2001-11-27
    • NGK Insulators, Ltd.
    • Akira MatsumotoMasashi FukuyamaAkiyoshi Ide
    • C03B011/06
    • C03B11/086C03B11/08C03B11/082C03B2215/03C03B2215/12C03B2215/17C03B2215/32C03B2215/412
    • A glass-forming mold comprising an intermediate layer 2 and a platinum layer 3 is provided. The intermediate layer 2 of thickness 3 nullm which is formed from an alloy comprising 40 wt % of platinum and 60 wt % of iridium is provided over the surface of a mold substrate 1. This substrate is formed from a cemented carbide material having tungsten carbide as principal constituent. The platinum layer 3 of thickness 0.05 nullm is furthermore provided over the intermediate layer 2. By applying the above process, a surface roughness within the range 0.01 nullm to 0.05 nullm is provided to the mold substrate and a surface roughness within the range 0.2 nullm to 1.2 nullm is provided to the platinum layer 3 which corresponds to the surface S1 of the most external layer. The surface roughness of the platinum may be achieved by using sputtering to deposit a platinum film and thereafter promoting platinum grain growth by heat treatment at 500null C. for 1 hr in a nitrogen atmosphere.
    • 提供了包含中间层2和铂层3的玻璃成型模具。 在模具基板1的表面上设置由包含40重量%的铂和60重量%的铱的合金形成的厚度为3μm的中间层2。该基板由具有碳化钨的硬质合金材料形成 主要成分。 另外在中间层2上设置厚度为0.05μm的铂层3.通过应用上述方法,将0.01μm至0.05μm的范围内的表面粗糙度提供给模制基底,将表面粗糙度范围为0.2μm至 1.2μm被提供给对应于最外层的表面S1的铂层3。 铂的表面粗糙度可以通过使用溅射沉积铂膜来实现,然后通过在氮气气氛中在500℃下热处理1小时促进铂晶粒生长。
    • 78. 发明申请
    • Device for forming partition walls of plasma display panel
    • 用于形成等离子体显示面板隔墙的装置
    • US20010004576A1
    • 2001-06-21
    • US09729965
    • 2000-12-06
    • Sang Jin OhBong Hyang KimDeok Hwan KimSoon Kug Hong
    • H01J009/46
    • H01J9/242B29C59/022B29L2031/7232C03B11/06C03B11/082C03B2215/412H01J11/10H01J11/36
    • A device for forming partition walls of a plasma display panel is disclosed. This device has a lower plate used for seating the base panel of the plasma display panel thereon, with a partition wall sheet of a predetermined thickness formed on the base panel and a plurality of electrodes arranged on the base panel. A punch, having a plurality of partition wall forming grooves and a plurality of lands formed between the partition wall forming grooves. An electrode holding groove or inclined surface is formed on each of the lands and is used for preventing the electrodes from being undesirably moved during a partition wall forming process. An upper plate is positioned above the punch so as to hold the punch and to move the punch in a vertical direction within a predetermined range. Due to the electrode holding grooves or the inclined surfaces formed on the lands, the device of this invention thus almost completely prevents an undesired movement of the printed address electrodes of the base panel, thus finally allowing a precise arrangement of the partition walls with the address electrodes on the base panel.
    • 公开了一种用于形成等离子体显示面板的分隔壁的装置。 该装置具有用于将等离子体显示面板的基板放置在其上的下板,具有形成在基板上的预定厚度的分隔壁板和布置在基板上的多个电极。 具有多个分隔壁形成槽的冲头和在分隔壁形成槽之间形成的多个平台。 在每个焊盘上形成电极保持槽或倾斜表面,并用于防止电极在分隔壁形成过程中不期望地移动。 上板位于冲头上方,以便保持冲头并使冲头在预定范围内沿垂直方向移动。 由于电极保持槽或形成在焊盘上的倾斜表面,因此本发明的装置几乎完全防止了基板的印刷地址电极的不期望的移动,从而最终允许分隔壁与地址的精确布置 基板上的电极。
    • 79. 发明授权
    • Press mold for glass substrate
    • 压模用于玻璃基板
    • US06223561B1
    • 2001-05-01
    • US09272113
    • 1999-03-19
    • Masashi FukuyamaKazutoshi TohyamaMasahiro Maeda
    • Masashi FukuyamaKazutoshi TohyamaMasahiro Maeda
    • C03B1112
    • C03B23/0302C03B11/082C03B11/088C03B11/125C03B23/02C03B2215/412C03B2215/44Y10S100/918
    • A press mold for glass substrate includes an upper mold and a lower mold, and a pressure apparatus for applying pressure to the upper mold and the lower mold, for molding a plate-shaped glass substrate having a predetermined thickness between the upper mold and the lower mold. An engaging projected piece is projectingly provided on the side portion of the upper mold, an engaging projected piece supporting portion for supporting the engaging projected piece is provided on the side portion of the lower mold, and an end portion of the upper mold is formed so as to be released from the lower mold with the engaging projected piece as a rotating shaft. Variance in pressure on mold surfaces between the upper mold and lower mold is detected, and a buffer made of material having lower compressive yield strength than material constituting the lower mold is inserted between the lower mold and the pressure apparatus in a position corresponding to the mold surface portion at lower pressure. It is possible to prevent the molded object or the mold from being damaged, and to apply uniform pressure on an entire mold surface by eliminating pressure variance on the mold surface of the mold as far as possible, and therefore, a large glass substrate molded object of excellent quality can be molded.
    • 玻璃基板用压模包括上模和下模,以及用于向上模和下模施加压力的压力装置,用于在上模和下模之间成型具有预定厚度的板状玻璃基板 模子。 在上模的侧部突出设置有接合的突出片,在下模的侧部设置有用于支撑接合突出片的接合突出片支撑部,并且形成上模的端部 以与作为旋转轴的接合突出片从下模释放。 检测上模和下模之间的模具表面的压力差异,并且在与模具相对应的位置中将下模和压装置之间的压缩屈服强度较低的材料制成的缓冲器插入下模和加压装置之间 表面部分处于较低压力。 可以通过尽可能地消除模具的模具表面上的压力变化来防止模制对象或模具被损坏并且对整个模具表面施加均匀的压力,因此,大的玻璃基板模制对象 优良的品质可以模塑。