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    • 1. 发明授权
    • Transfer foil, transfer method, transfer apparatus, flat cathode-ray tube, and its manufacturing method
    • 转印箔,转印方法,转印装置,平面阴极射线管及其制造方法
    • US06906455B2
    • 2005-06-14
    • US09891246
    • 2001-06-27
    • Jun MiuraKoichi Furui
    • Jun MiuraKoichi Furui
    • H01J9/227H01J9/00H01J31/00
    • H01J9/2277Y10T156/1705Y10T428/24802
    • A reflection type flat cathode-ray tube enhanced in quality of display image, and its manufacturing method are presented. A flat cathode-ray tube is composed by forming a grid layer, a reflective layer, and a fluorescent layer sequentially at the inner side of a screen panel. The reflective layer is preferably formed at the outer side of the circumference of the fluorescent layer. On a transfer substrate, a transfer foil laminating at least a fluorescent layer, a reflective layer, and a grid layer in this order is prepared, the grid layer side of the transfer foil is heated, pressed and adhered to the inner side of a screen panel, a transfer substrate is peeled off, and a fluorescent screen composed of the fluorescent layer, reflective layer, and grid layer is transferred.
    • 提出了一种提高显示图像质量的反射型平面阴极射线管及其制造方法。 平面阴极射线管通过在屏幕面板的内侧依次形成栅格层,反射层和荧光层而构成。 反射层优选形成在荧光层的圆周的外侧。 在转印基板上,制备依次层叠至少荧光层,反射层和栅格层的转印箔,转印箔的栅格层侧被加热,按压并粘附到屏幕的内侧 剥离转印基板,并且转印由荧光层,反射层和栅格层构成的荧光屏。
    • 2. 发明授权
    • Flat cathode-ray tube including a transfer foil laminate adhered to a screen panel
    • 平板阴极射线管,其包括粘附到屏幕面板上的转印箔层压板
    • US07148617B2
    • 2006-12-12
    • US11099521
    • 2005-04-06
    • Jun MiuraKoichi Furui
    • Jun MiuraKoichi Furui
    • H01J31/00H01J29/10
    • H01J9/2277Y10T156/1705Y10T428/24802
    • A reflection type flat cathode-ray tube enhanced in quality of display image, and its manufacturing method are presented. A flat cathode-ray tube is composed by forming a grid layer, a reflective layer, and a fluorescent layer sequentially at the inner side of a screen panel. The reflective layer is preferably formed at the outer side of the circumference of the fluorescent layer. On a transfer substrate, a transfer foil laminating at least a fluorescent layer, a reflective layer, and a grid layer in this order is prepared, the grid layer side of the transfer foil is heated, pressed and adhered to the inner side of a screen panel, a transfer substrate is peeled off, and a fluorescent screen composed of the fluorescent layer, reflective layer, and grid layer is transferred.
    • 提出了一种提高显示图像质量的反射型平面阴极射线管及其制造方法。 平面阴极射线管通过在屏幕面板的内侧依次形成栅格层,反射层和荧光层而构成。 反射层优选形成在荧光层的圆周的外侧。 在转印基板上,制备依次层叠至少荧光层,反射层和栅格层的转印箔,转印箔的栅格层侧被加热,按压并粘附到屏幕的内侧 剥离转印基板,并且转印由荧光层,反射层和栅格层构成的荧光屏。
    • 5. 发明授权
    • Frit coating method, a frit coating apparatus, a sealing apparatus, and a sealing method for a flat-type cathode-ray tube
    • 玻璃料涂布方法,玻璃料涂布装置,密封装置和用于平板型阴极射线管的密封方法
    • US06742360B2
    • 2004-06-01
    • US09892668
    • 2001-06-28
    • Koichi FuruiJun Miura
    • Koichi FuruiJun Miura
    • C03C2700
    • H01J9/261H01J9/20
    • In a sealing apparatus used in a process for sealing a glass tube-assembly of a flat-type cathode-ray tube by frits, three of a front panel, a screen panel and a funnel can be sealed together, and the front panel can be prevented from being broken. The sealing apparatus includes a frame for properly positioning a combined assembly in which the front panel, the screen panel and the funnel are butted with each other by frits and the following sealing jig (41). The sealing jig (41) includes a holding means (42) for holding a front panel (2) and a screen panel (3) under the condition that joint surfaces of the front panel and the screen panel are butted with each other by frits. The holding means (42) is provided with a first resilient member (43) which is urged against the outer surface of the front panel (2) and a second resilient member (42) which is urged against the outer surface of the screen panel (3). A portion in which the first resilient member (43) is urged against the outer surface of the front panel (2) is provided with a member (45) whose hardness is selected to be less than that of a panel glass
    • 在用于通过玻璃料密封扁平型阴极射线管的玻璃管组件的方法中使用的密封装置中,可以将前面板,屏幕面板和漏斗中的三个密封在一起,并且前面板可以 防止被打破。 密封装置包括用于适当地定位组合组件的框架,其中前面板,屏幕面板和漏斗通过玻璃料彼此对接并且随后的密封夹具(41)。 密封夹具(41)包括用于在前面板和屏幕面板的接合表面通过玻璃料彼此对接的条件下用于保持前面板(2)和屏幕面板(3)的保持装置(42)。 保持装置(42)设置有抵靠前面板(2)的外表面的第一弹性构件(43)和抵靠屏幕面板的外表面的第二弹性构件(42) 3)。 其中第一弹性构件(43)被推靠在前面板(2)的外表面上的部分设置有一个部件(45),其硬度被选择为小于面板玻璃
    • 10. 发明授权
    • Method for handling an equipment inside a building by a crane installed outside
    • 通过安装在外部的起重机来处理建筑物内的设备的方法
    • US06308844B1
    • 2001-10-30
    • US09461727
    • 1999-12-16
    • Hisako OkadaHiroshi HasegawaJun MiuraRyohei MiyaharaKouichi Ushiroda
    • Hisako OkadaHiroshi HasegawaJun MiuraRyohei MiyaharaKouichi Ushiroda
    • B66C1346
    • B66C13/08B66C13/46
    • A method for handling an equipment inside a building by a crane installed outside; the method being employed when leading the wire hanging from the boom of a crane installed outside of a building (nuclear reactor containment vessel, into the building through an opening provided on the building, and lifting up or down an equipment inside said building by said wire. The said method includes a process for measuring by a three-dimensional measuring device which is positioned apart from the crane the shift of the boom caused by transfer of dead load of the equipment to the wire, in the course of transferring dead weight of the equipment between the wire and a structure inside the building, and correcting the position of the boom, by moving said boom up or down, back to a direction opposite to the shift so as to lift up the equipment vertically.
    • 一种通过安装在外部的起重机来处理建筑物内的设备的方法; 引导从安装在建筑物外部的起重机吊臂悬挂的电线(核反应堆安全壳,通过设置在建筑物上的开口进入建筑物),并通过所述电线提升或降低所述建筑物内的设备的方法 所述方法包括通过三维测量装置进行测量的过程,所述三维测量装置在将所述设备的静载荷转移到所述线的过程中,所述三维测量装置定位成与所述起重机分离, 电线和建筑物内的结构之间的设备,以及通过将所述悬臂上下移动回到与换档相反的方向来校正动臂的位置,以便垂直地提升设备。