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    • 6. 发明授权
    • Optical alignment method and liquid crystal display element
    • 光学对准方法和液晶显示元件
    • US07787085B2
    • 2010-08-31
    • US11936905
    • 2007-11-08
    • Masayuki KimuraHiroshi Yokoyama
    • Masayuki KimuraHiroshi Yokoyama
    • G02F1/1337
    • G02F1/133788G02F2001/133742
    • An optical alignment method which develops a pretilt angle by batch plane exposure without tilting a substrate. This optical alignment method provides liquid crystal aligning capability to the surface of a polymer film by exposing the surface of the polymer film through a slit exposure mask while the surface of the polymer film and the slit exposure mask are moved relative to each other substantially at a fixed rate. Alternatively, liquid crystal aligning capability is provided to the surface of the polymer film by exposing the surface of the polymer film through an optical exposure pattern while the optical exposure pattern having a plurality of lines with a certain width at certain intervals is formed on the surface of the polymer film continuously.
    • 一种光学对准方法,其通过间歇式曝光而不倾斜衬底来产生预倾角。 该光学取向方法通过使聚合物膜的表面通过狭缝曝光掩模曝光而在聚合物膜的表面提供液晶取向能力,同时聚合物膜和狭缝曝光掩模的表面基本上彼此相对移动 固定利率。 或者,通过使聚合物膜的表面通过光学曝光图案曝光而将聚合物膜的表面提供液晶取向能力,同时在表面上形成具有一定宽度的多条线的光学曝光图案 的聚合物膜。
    • 7. 发明授权
    • Method and apparatus for removing a casted part for use in a die casting machine
    • 用于去除用于压铸机的铸造件的方法和装置
    • US07775258B2
    • 2010-08-17
    • US11615095
    • 2006-12-22
    • Masaki YashiroHiroshi Yokoyama
    • Masaki YashiroHiroshi Yokoyama
    • B22D17/32B22D29/00
    • B22D17/2084
    • A method for removing a casted part, for use in a die casting machine comprises the steps of setting a position in which a chuck performs an operation to grasp a casted part attached to a movable mold as a position from which the casted part is to be removed, and setting a relative positional relationship between a handle portion which is a part of the casted part attached to the movable mold to be grasped by the chuck and a movable die plate. The method further comprises the step of advancing the chuck between the movable mold and the fixed mold and positioning the chuck at the position from which the casted part is to be removed, in parallel with the movement of the movable die plate. Additionally, the method comprises the steps of stopping the movable die plate when the handle portion of the casted part attached to the movable mold reaches the position from which the casted part is to be removed, grasping the handle portion of the casted part by using the chuck, and removing the casted part from the movable mold.
    • 一种用于去除压铸机中铸造件的方法,包括以下步骤:设置卡盘执行操作的位置,以抓住附着在可移动模具上的铸件作为铸造件的位置 并且设置作为被卡盘夹持的可动模具附着的铸造件的一部分的手柄部与可动模板之间的相对位置关系。 该方法还包括使卡盘在可移动模具和固定模具之间推进并将卡盘定位在与待移除的铸件部分平行的活动模板的移动的步骤。 此外,该方法包括以下步骤:当附接到可移动模具的铸造件的手柄部分到达要移除铸件的位置时,使活动模板停止,通过使用 卡盘,并从铸模上取下铸造件。
    • 8. 发明授权
    • System for changing a mold in a die casting machine
    • 用于在压铸机中更换模具的系统
    • US07736141B2
    • 2010-06-15
    • US11953976
    • 2007-12-11
    • Makoto TsujiHiroshi YokoyamaShinya Itani
    • Makoto TsujiHiroshi YokoyamaShinya Itani
    • B29C45/17B22D33/00
    • B22D17/263B29C45/1756Y10T483/1729
    • The present invention provides a die plate and a mold clamping apparatus equipped with the die plate for a die casting machine and so on capable of reducing dimensions of die length as small as possible.A fixed die plate FXPL and a moving die plate MVPL of a mold clamping apparatus on a base BS place a versatile main mold inside, respectively. A pair of insert dies FINS and MINS is carried in to a mold opened space without disturbing tie bars TBU or TBD located in an upper portion or a side portion. The pair of insert dies are separated and fastened to each of the versatile main mold. The die length becomes zero or very small when the moving die plate positions at a mold closing position, and as the result dimension of the mold clamping apparatus in the direction of mold opening and closing can be shortened. Also, particularly the moving die plate can be avoided to tilt.
    • 本发明提供一种模具板和模具夹紧装置,其配备有用于压铸机等的模板,能够尽可能地减小模具长度的尺寸。 分别在基座BS上的模具夹紧装置的固定模板FXPL和移动模板MVPL分别放置通用主模具。 一对插入模具FINS和MINS被携带到模具打开空间中,而不会干扰位于上部或侧部中的连杆TBU或TBD。 一对插入模具被分离并紧固到通用主模具中的每一个。 当移动的模板位于模具闭合位置时,模具长度变为零或非常小,因此可以缩短模具夹紧装置在模具打开和关闭方向上的尺寸。 此外,特别地,可以避免移动的模板倾斜。
    • 9. 发明申请
    • LIQUID CRYSTAL DISPLAY DEVICE USING NEMATIC LIQUID CRYSTAL
    • 液晶显示装置使用液体液晶
    • US20090279033A1
    • 2009-11-12
    • US12064987
    • 2006-08-14
    • Makoto YoneyaHiroshi Yokoyama
    • Makoto YoneyaHiroshi Yokoyama
    • G02F1/1337
    • G02F1/133753G02F1/133788G02F1/13725G02F1/1391G02F1/1392G02F1/1393G02F2001/133757G02F2202/043
    • The present invention provides a liquid crystal display device using nematic liquid crystal material with low power consumption and having a memory characteristic which can be easily fabricated with a high yield. The liquid crystal device using nematic liquid crystal material includes: a pair of substrates (1,4) with plate-like electrode layers (2,5) thereon; a liquid crystal layer interposed between the pair of substrates (1,4); and alignment layers (3,6) arranged between the liquid crystal layer and at least one of the pair of substrates (1,4). The alignment layers (3,6) include a plurality of different alignment domains having a substantially vertical direction and substantially horizontal direction to the surface of the substrate. Both of two orientation states, i.e. a substantially vertical orientation state and a substantially horizontal orientation state of the liquid crystal, are stable and have a memory characteristic in the absence of an electric field.
    • 本发明提供了一种液晶显示装置,其使用具有低功耗的向列型液晶材料,并具有可以容易地以高产率制造的记忆特性。 使用向列液晶材料的液晶装置包括:一对其上具有板状电极层(2,5)的基板(1,4) 夹在所述一对基板(1,4)之间的液晶层; 以及布置在所述液晶层和所述一对基板(1,4)中的至少一个之间的取向层(3,6)。 取向层(3,6)包括多个不同的对准域,其具有基板的基本垂直方向和基本水平的方向。 液晶的两个取向状态即基本垂直取向状态和基本上水平的取向状态都是稳定的,并且在不存在电场的情况下具有记忆特性。
    • 10. 发明申请
    • Filler metal installation position checking method and filler metal installation position checking system
    • 填料金属安装位置检查方法和填充金属安装位置检查系统
    • US20090144008A1
    • 2009-06-04
    • US12292382
    • 2008-11-18
    • Hiroshi YokoyamaYuichi YamamotoShinichi Ebata
    • Hiroshi YokoyamaYuichi YamamotoShinichi Ebata
    • G01P21/00
    • G01C11/00G06T7/0006G06T2207/30132G06T2207/30136
    • The present invention is a filler metal installation position checking method and a filler metal installation position checking system for confirming difference between installation position and designed position of a filler metal embedded in a wall surface. A standard surface target 16 having known actual dimension and position to a wall surface 12 is provided to the wall surface 12 where a filler metal 14 is installed. The wall surface 12 is photographed together with the standard surface target 16 to create image data 18. Using actual position and dimension of the standard surface target 16 and position and dimension of the standard surface target 16 on an image displayed by the image data 18, the image data 18 is converted into corrected image data 20 displaying an image corrected in a manner that the image is photographed from front of the wall surface. Design CAD data 22 showing actual designed position of the filler metal is read out and the images shown by the corrected image data 20 and the design CAD data 22 are outputted as images on one same display.
    • 本发明是一种填充金属安装位置检查方法和填充金属安装位置检查系统,用于确认嵌入壁表面中的填充金属的安装位置和设计位置之间的差异。 具有已知的实际尺寸和位置的壁表面12的标准表面目标16被提供给安装有填充金属14的壁表面12。 与标准表面目标16一起拍摄壁表面12以产生图像数据18.使用标准表面目标16的实际位置和尺寸以及标准表面目标16的位置和尺寸在由图像数据18显示的图像上, 图像数据18被转换成校正图像数据20,其显示以从壁表面的前方拍摄图像的方式校正的图像。 读取显示填充金属的实际设计位置的设计CAD数据22,并且将校正图像数据20和设计CAD数据22所示的图像作为图像输出在同一显示器上。