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    • 2. 发明授权
    • System for forming a T-shaped tubular fitting
    • 用于形成T形管件的系统
    • US09586248B1
    • 2017-03-07
    • US15094999
    • 2016-04-08
    • KING SAUD UNIVERSITY
    • Atef Mohammed Abdo GhalebMohamed Ali Eissa SalehAdham Mohamed Azzat Ragab
    • B21C37/29B21D26/037
    • B21C37/29B21C37/292B21D26/037Y10T29/49442
    • The system for forming a T-shaped tubular fitting is configured for forming a T-shaped tubular part from an unbranched tubular part. The system includes an upper portion and a lower portion below the upper portion. A pushing block is disposed above the upper portion of the system. Compressible first and second side punches, respectively, extend from opposing sides of the upper portion. The upper portion includes a flat plate with a horizontal channel extending therethrough. The lower portion includes a housing with a vertical channel extending therethrough. The vertical channel extends normal to the horizontal channel. An insert can be disposed in the tubular part in alignment with the vertical channel. The horizontal channel and the vertical channel together define a T-shaped cavity. The T-shaped tubular fitting can be formed upon application of pressure to the pushing block.
    • 用于形成T形管状配件的系统构造成用于从未支撑的管状部件形成T形管状部件。 该系统包括在上部下方的上部和下部。 推动块设置在系统的上部上方。 可压缩的第一和第二侧面冲头分别从上部的相对侧延伸。 上部包括具有延伸穿过其中的水平通道的平板。 下部包括具有延伸穿过其中的垂直通道的壳体。 垂直通道垂直于水平通道延伸。 插入件可以设置在与垂直通道对准的管状部分中。 水平通道和垂直通道共同限定了T形腔。 T型管状配件可以在对推动块施加压力时形成。
    • 9. 发明授权
    • Manufacturing process of a fuel delivery rail assembly
    • 燃油输送轨道总成的制造过程
    • US5202543A
    • 1993-04-13
    • US783193
    • 1991-10-28
    • Toshiaki Yoshimura
    • Toshiaki Yoshimura
    • F02M55/02B21D28/28B21D53/84B23D21/02B23K11/11B23K11/14B23K33/00F02M69/46
    • B21D28/28B21D53/84B23D21/02B23K33/008F02M69/465Y10T29/49442
    • A manufacturing process of an offset-type fuel delivery rail assembly for an internal combustion engine. The offset-type assembly features offset distances between an axial centerline of an elongated conduit and those of tubular sockets for receiving fuel injectors. The process comprises the steps of clamping a conduit with a chucking tool, lowering a cutting blade onto the conduit to form arcuate edges corresponding to outside curvatures of tubular sockets, attaching the tubular sockets to the arcuate edges of the conduit by spot welding, and then brazing or welding around the arcuate edges to form an integral assembly. The cutting blade is formed into a solid circular configuration having an oblique plane. The cutting blade may be provided with a pair of longitudinal slots in order to form projections for concentrating electrical current during spot welding.
    • 用于内燃机的偏置型燃料输送轨道组件的制造过程。 偏移型组件在细长导管的轴向中心线与用于接收燃料喷射器的管状插座的偏心距之间具有偏移距离。 该过程包括以下步骤:用夹紧工具夹紧管道,将切割刀片降低到导管上以形成对应于管状插座的外部曲率的弧形边缘,通过点焊将管状插座连接到导管的弧形边缘,然后 围绕弓形边缘钎焊或焊接以形成整体组件。 切割刀片形成为具有倾斜平面的实心圆形构造。 切割刀片可以设置有一对纵向槽,以便在点焊期间形成用于集中电流的突起。
    • 10. 发明授权
    • Method for making a reinforced thermosetting resin structure with
integral unflanged nozzle
    • 制造具有整体无间距喷嘴的增强热固性树脂结构的方法
    • US4931119A
    • 1990-06-05
    • US212414
    • 1988-06-27
    • Richard L. T. Watkins
    • Richard L. T. Watkins
    • B29D23/00F16L47/26
    • B29D23/008F16L47/26Y10T29/49442
    • A method and apparatus for fabrication of nozzles on reinforced thermosetting resin structures, more particularly, a method and apparatus for fabricating nozzles on pipe headers. A main pipe section is provided with a through branch outlet, and a shaped mold is provided to fit through the outlet and to provide a form for molding of the desired nozzle. Parts of the main pipe section which are adjacent to the mold are chamfered on the outside. Resinous matrix laminates are then provided to cover the mold and adjacent parts of the main pipe section. The method provides a smooth corrosion resistant interior joint between the pipe header and the new nozzle, with a new primary laminate providing both corrosion resistance and strength properties comparable to preformed pipe parts of the same resinous matrix laminate materials.
    • 一种用于在增强的热固性树脂结构上制造喷嘴的方法和装置,更具体地说,一种用于在管头上制造喷嘴的方法和装置。 主管部分设置有直通分支出口,并且设置成形模具以穿过出口装配并提供用于模制所需喷嘴的形式。 与模具相邻的主管段的部分在外部被倒角。 然后提供树脂基质层压板以覆盖主管段的模具和相邻部分。 该方法提供管头和新喷嘴之间的光滑的耐腐蚀内部接头,新的初级层压板提供与相同树脂基层压材料的预成型管件相当的耐腐蚀性和强度性能。