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    • 3. 发明申请
    • Manufacturing method of film insert molded article
    • 薄膜嵌件成型制品的制造方法
    • US20080277823A1
    • 2008-11-13
    • US12081368
    • 2008-04-15
    • Seiji HayashiKiyomi MatsuokaYoshihide GotoEiichiro Goto
    • Seiji HayashiKiyomi MatsuokaYoshihide GotoEiichiro Goto
    • B29C39/12
    • B29C45/14688B29C45/14811B29C2045/14704B29K2715/006
    • A manufacturing method of a film insert molded article in which no resin layer is seen in the front and no wrinkle is generated in a film is provided. A thermoformed film (11) for coating is arranged within a cavity (15), and molten resin is injected so that a film insert molded article (50) molded integrally with the film (11) for coating and having a coating plane coated with the film (11) for coating is obtained. A printing ink layer (20) and a binder layer (30) are formed in a raw material film (10). The raw material film (10) is cut out and the film (11) for coating is formed so as to have a size for coating the coating plane and being able to form an outer circumferential bending portion (12) arranged in an outer circumferential side portion (41) by adding a width exceeding a heat shrinking amount of the film. After the film (11) for coating is preheated, the film (11) for coating is thermoformed so that a predetermined three-dimensional shape (13) and the outer circumferential bending portion (12) are formed. The film (11) for coating in which the three-dimensional shape (13) and the outer circumferential bending portion (12) are formed, is arranged within the cavity (15) such that the binder layer (30) comes into contact with molten resin. The molten resin is then injected.
    • 提供了一种薄膜嵌件模塑制品的制造方法,其中在膜中不产生树脂层,并且在膜中不产生皱纹。 用于涂覆的热成型膜(11)设置在空腔(15)内,并且注入熔融树脂,使得与用于涂覆的膜(11)一体模制的膜嵌件模塑制品(50)并且涂覆有涂层 得到用于涂布的薄膜(11)。 在原料膜(10)中形成印刷油墨层(20)和粘合剂层(30)。 切割出原料膜(10),并且形成涂膜用薄膜(11),使其具有涂布面的尺寸,能够形成配置在外周侧的外周弯曲部(12) 通过添加超过膜的热收缩量的宽度的部分(41)。 在对涂布用薄膜(11)进行预热后,将成膜用薄膜(11)热成型,形成规定的三维形状(13)和外周弯曲部(12)。 其中形成有三维形状(13)和外周弯曲部(12)的涂布用薄膜(11)配置在空腔(15)内,使得粘合剂层(30)与熔融 树脂。 然后注入熔融树脂。
    • 4. 发明授权
    • Safety device for telescope
    • 望远镜安全装置
    • US06698904B1
    • 2004-03-02
    • US10070046
    • 2002-02-22
    • Masao NiinoYoshihide GotoShiroh Iiyama
    • Masao NiinoYoshihide GotoShiroh Iiyama
    • G02B2600
    • G02B26/02G02B23/00
    • A ray of light incident via a pin hole (6) and a field stop (7) having a field of vision a predetermined angle larger than a telescope's actual field of vision that are disposed on an axis (5) in parallel to the optical axis (4) of the telescope is measured in intensity by a photoelectric element (8). When a quantity of light incident on the photoelectric element is larger than a predetermined quantity of light, a shutter (11) is inserted into an optical path of the telescope to cut off a ray of light going into the eyes of the observer. Since an incidence of a quantity of light in excess of a predetermined one into a field of vision a predetermined angle larger than the actual field of vision of the telescope will block the optical path of the telescope, a risk such as damage to the eyes of the observer can be eliminated to prevent an accident even when the observer erroneously observes a strong light-generating object such as the sun.
    • 通过针孔(6)入射的光线和具有比望远镜的实际视野大的预定角度的视场(7)的视野,该视野设置在平行于光轴的轴线(5)上 (4)通过光电元件(8)以强度测量。 当入射到光电元件上的光量大于预定量的光时,将快门(11)插入到望远镜的光路中,以切断进入观察者的眼睛的光线。 由于将超过预定值的光量超过望远镜的实际视野大于预定角度的视野会阻挡望远镜的光路,所以存在诸如眼睛损伤的风险 即使当观察者错误地观察诸如太阳的强光产生物体时,也可以消除观察者以防止事故。
    • 9. 发明申请
    • Digital camera-equipped ground telescope
    • 数码相机配备的地面望远镜
    • US20060203350A1
    • 2006-09-14
    • US10551062
    • 2004-04-30
    • Hirokatsu NakanoYoshihide GotoShuichi TominagaTakayuki Ishida
    • Hirokatsu NakanoYoshihide GotoShuichi TominagaTakayuki Ishida
    • G02B27/14
    • G02B23/04G02B26/0875H04N5/2254
    • An imaging element (3) is disposed behind a group of objective lenses (1), and a retractable quick-return half-mirror (2) is disposed as an optical-path splitting means in the direction of an observation optical system between the group of objective lenses and the imaging element. Plane glass (9) for correcting an change in image-formation position caused by retraction of the quick-return half-mirror is inserted into the optical path of the imaging optical system in association with the retraction of the quick-return mirror from the optical axis of the imaging optical system. The quick-return half-mirror and the plane glass are respectively held at both ends of a mirror guide lever (8) of one rigid member to effect respective retractions and insertions. The quick-return half-mirror may be provided with an inclined plane for correcting an image-formation positional deviation in the optical axis crossing direction.
    • 成像元件(3)设置在一组物镜(1)的后面,并且可伸缩快速半反射镜(2)作为光路分离装置设置在组之间的观察光学系统的方向上 的物镜和成像元件。 与快退式反射镜从光学镜头缩回相关联的用于校正由快速复原半反射镜缩回引起的图像形成位置变化的平面玻璃(9)被插入成像光学系统的光路中 成像光学系统的轴。 快速返回半反射镜和平面玻璃分别保持在一个刚性构件的反射镜引导杆(8)的两端,以实现各自的缩回和插入。 快速返回半反射镜可以设置有用于校正光轴交叉方向上的图像形成位置偏差的倾斜平面。