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    • 2. 发明授权
    • Corrugated tubing perforating machine
    • 波纹管穿孔机
    • US3957386A
    • 1976-05-18
    • US550458
    • 1975-02-18
    • Manfred A. A. Lupke
    • Manfred A. A. Lupke
    • B23D21/00B23C3/34B23D45/10B23D45/12B23D61/02B26F1/00B29C17/10B23C1/14B26D3/06
    • B26F1/0023B23D45/105B23D45/122B23D61/02B26F1/003Y10T408/3833Y10T409/307784Y10T409/308792Y10T83/0596Y10T83/4455Y10T83/4493Y10T83/4645
    • A machine for perforating corrugated tubing at accurately spaced locations includes a double chain conveyor which positively engages the tubing and is driven intermittently to advance the tubing in steps of equal length. Upon completion of each step a pair of clamping members are actuated to engage the tubing, the clamping faces of the members being shaped so as to locate the tubing positively while it is stationary. When the tubing is so located, accurately positioned sets of cutters are brought into operation so as to cut slots or holes in the tubing at the desired locations. Upon completion of the cutting stroke, the clamping members are automatically released and the conveyor advances the tubing by another step. The sequence of operations in each cycle is controlled by limit switches responsive to the positions of the conveyor, the clamping means and the cutters. The cutters may be rotary saws or rotary drills.
    • 用于在精确间隔的位置穿孔波纹管的机器包括双链输送机,该双链输送机主动地接合管道并间歇地驱动以使管道以相等长度的步长推进。 在每个步骤完成之后,一对夹紧构件被致动以接合管道,构件的夹紧面被成形为在固定的同时正确地定位管道。 当管道如此定位时,精确定位的刀具组被运行,以在期望的位置切割管道中的槽或孔。 在完成切割行程时,夹紧构件自动释放,并且输送机将管道推进另一步骤。 每个循环中的操作顺序由响应于输送机,夹紧装置和切割器的位置的限位开关控制。 切割机可以是旋转锯或旋转钻。
    • 3. 发明申请
    • ANNULAR CUTTER
    • 环形切割机
    • US20160354846A1
    • 2016-12-08
    • US15171219
    • 2016-06-02
    • NLB Engineering Limited
    • John Francis Steeple Heffernan
    • B23B51/04
    • B23B51/0406B23B2215/72B23B2222/84B23B2226/61B23B2251/085B23B2251/14B23B2251/285B23B2251/408B26D1/44B26D2001/006B26F1/003B26F1/16
    • An annular cutter comprising: a body including a peripheral annular wall having a leading end defining a cutting surface, the cutting surface being configured to rotate about a central longitudinal axis of the body as the annular cutter is advanced along the longitudinal axis in a cutter advancement direction; wherein the cutting surface includes: a plurality of circumferentially spaced scalloped blade portions and a plurality of recessed regions, each of the plurality of recessed regions being provided circumferentially between a respective pair of the plurality of circumferentially spaced scalloped blade portions and aligned along the longitudinal axis with at least a part of at least one scalloped blade portion of the plurality of circumferentially spaced scalloped blade portions.
    • 一种环形切割器,包括:主体,其包括具有限定切割表面的前端的周边环形壁,所述切割表面被构造成围绕所述主体的中心纵向轴线旋转,因为所述环形切割器在切割器前进中沿着所述纵向轴线前进 方向; 其中所述切割表面包括:多个周向间隔开的扇形叶片部分和多个凹陷区域,所述多个凹陷区域中的每一个周向地设置在相应的一对周向间隔开的扇形叶片部分之间,并且沿纵向轴线 其中所述多个周向间隔开的扇形叶片部分中的至少一个扇形叶片部分的至少一部分。
    • 6. 发明授权
    • Method of making and processing corrugated plastic pipe
    • 制造和加工腐蚀性塑料管的方法
    • US3819778A
    • 1974-06-25
    • US26219272
    • 1972-06-13
    • PLASTIC TUBING
    • MAROSCHAK E
    • B26D3/16B26F1/00E02B11/00B29C17/07B29C17/10
    • E02B11/005B26D3/16B26F1/003Y10S264/52
    • A method of making plastic corrugated pipe which includes the steps of extruding a hot plastic material into a blow molding zone defined by a series of cooperating pairs of moving die blocks to form a pipe having annular corrugations of alternating ribs and valleys thereon during forward movement of the pipe through the blow molding zone, delivering the corrugated pipe from the blow molding zone at a predetermined speed, feeding the corrugated pipe delivered from the blow molding zone successively through drilling and cutting stations by meshingly engaging corrugations of the pipe with a plurality of forwardly moving teeth with successive teeth entering successive valleys and pushing forwardly against the successive ribs of the corrugated pipe, drilling holes in the pipe as it passes through the drilling station, cutting the drilled pipe into predetermined lengths as it passes through the cutting station, and sensing variations in tension in the corrugated pipe being fed and in response thereto varying the rate of movement of the forwardly moving teeth to compensatively vary the rate of feed of the pipe to substantially accord with the rate of delivery of the pipe from the blow molding zone to avoid undesirable stretching or longitudinal compression of the pipe and to thereby obtain a pipe with a substantially uniform number of ribs and valley portions per unit of length thereof.