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    • 4. 发明授权
    • Method and apparatus for manufacturing bobbins
    • 用于生产线轴的方法和装置
    • US5630971A
    • 1997-05-20
    • US248486
    • 1994-05-24
    • Zohar Ophir
    • Zohar Ophir
    • B29C45/14B29C70/36B65H75/50G02B6/44B29C45/02B29C45/73
    • B65H75/50B29C45/14631B29C70/36G02B6/4457B29L2031/704
    • A method of manufacturing a bobbin made essentially or partially of a curable resin comprises the steps of: a) providing a mold consisting of a male portion and of a female portion, the gap left between the said female and the male portions, in their operational mounted position, being of the shape and dimensions of the bobbin which it is desired to produce, the mold being provided with a resin inlet and vacuum port in communication with the gap; (b) laying on the surface of the male part of the mold, or winding thereon, any element or material which it is desired to embed within the resin; c) inserting the male part of the mold into the female part thereof and securely connecting the two parts, the two parts, when connected, being essentially sealed against pressure loss along their contact surfaces; d) causing a curable resin to flow into the gap through the resin inlet, while applying a vacuum at the vacuum port, until the empty space provided within the gap is substantially entirely filled with resin; e) allowing the resin to solidify; and f) opening the mold and removing the bobbin from the male part thereof.
    • 一种制造基本上或部分由可固化树脂制成的筒管的方法包括以下步骤:a)提供由雄性部分和雌性部分组成的模具,所述模具位于所述雌性部分和雄性部分之间,在其操作中 安装位置,其需要生产的筒管的形状和尺寸,模具设置有与间隙连通的树脂入口和真空口; (b)铺设在模具的阳部分的表面上或缠绕在其上期望嵌入树脂内的任何元件或材料; c)将模具的阳部分插入其阴部并牢固地连接两个部分,当连接时两个部分基本上被密封以抵抗沿其接触表面的压力损失; d)使可固化树脂通过树脂入口流入间隙,同时在真空口处施加真空,直到设置在间隙内的空间基本上完全充满树脂; e)使树脂固化; 以及f)打开所述模具并且从其阳部分取出所述线轴。
    • 10. 发明授权
    • Small arms ammunition inspection system
    • 小武器弹药检查系统
    • US4923066A
    • 1990-05-08
    • US105600
    • 1987-10-08
    • Zohar OphirMichael GolsteinMiriam Nagler
    • Zohar OphirMichael GolsteinMiriam Nagler
    • B07C5/342F42B35/00
    • F42B35/00B07C5/3422
    • An automatic visual inspection system for small arms ammunition which sorts visual surface flaws at high speed according to established standards which can be tailored to fit specific needs. The system employs advanced techniques for performing inspection independently of human inspectors and allows for quick changeovers in the type of ammunition to which it is applied. The system comprises interface apparatus for receiving a supply of ammunition cartridges and providing each cartridge with a predetermined orientation, conveying apparatus for locating each of the cartridges for inspection in at least one inspection station, apparatus for imaging selected areas of each cartridge to provide video surface feature data associated therewith, and apparatus for processing the video surface feature data to detect the presence of a predetermined set of characteristics and provide output signals in accordance therewith, the conveying apparatus being operated to sort each of the inspected cartridges in accordance with the output signals. A preferred embodiment comprises four subsystems, a feeding subsystem, an imaging and handling subsystem, an operation subsystem, and a computers subsystem. The imaging and handling subsystem provides each cartridge with the necessary orientation for inspection by a video camera feeding video surface feature data to an image processing computer. The image processing computer makes a very high speed computation based on image processing techniques to decide whether the cartridges have manufacturing defects for sorting purposes. Since many surface flaws look the same in two dimensions such as scratches and splits or acid holes and stains, special lighting of the cartridges is used so that discrimination between them can be achieved on the basis of off-specular reflections.
    • 一种用于小武器弹药的自动视觉检查系统,根据既定的标准高速分类视觉表面缺陷,可以根据具体需要进行调整。 该系统采用先进的技术,独立于人员检查员进行检查,并允许快速更换应用于其的弹药类型。 该系统包括用于接收弹药盒的供应并且为每个盒提供预定取向的接口装置,用于将每个盒定位用于在至少一个检验站中进行检查的输送装置,用于对每个盒的选定区域成像以提供视频表面的装置 与其相关联的特征数据,以及用于处理视频表面特征数据以检测预定特征集的存在并根据其提供输出信号的装置,所述输送装置被操作以根据输出信号对所检查的盒进行分类 。 优选实施例包括四个子系统,馈送子系统,成像和处理子系统,操作子系统和计算机子系统。 成像和处理子系统为每个墨盒提供必要的方向,以便通过摄像机将视频表面特征数据馈送到图像处理计算机进行检查。 图像处理计算机基于图像处理技术进行非常高速的计算,以确定盒是否具有用于分类目的的制造缺陷。 由于许多表面缺陷在两个维度上看起来相同,例如划痕和裂缝或酸性孔和污渍,因此使用墨盒的特殊照明,以便可以在镜面反射的基础上实现它们之间的区别。