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    • 43. 发明授权
    • Shuttle and component feeding system
    • 穿梭和零件喂料系统
    • US08157485B2
    • 2012-04-17
    • US11995289
    • 2006-08-21
    • Aiden Robert Dear
    • Aiden Robert Dear
    • B65G51/18
    • B65G51/04B21J15/34B23P19/001B23P19/005Y10T29/5191
    • A shuttle (11) for feeding tubular rivets (12), which are of relatively short axial length compared with their head diameter, along a flexible hose (26) to a movable rivet-installation tool has an aperture (18) running parallel to its axis along its whole length. Through this aperture a rivet can be both inserted into, and removed from, the shuttle. It also enables the sideways removal from the shuttle of an elongated mandrel, over the end of which a rivet has been axially fed. The exterior of the shuttle (11) and the interior of the hose (26) have similar cross-sections, which are a sliding fit and which co-operate with each other to maintain the shuttle (11) in a pre-determined rotational relationship with the hose (26), to facilitate insertion and removal of the rivet as aforesaid.
    • 用于将柔性软管(26)与可移动铆钉安装工具相比,用于将与其头部直径相比较短轴向长度的管状铆钉(12)的梭子(11)具有平行于其的孔(18) 轴沿其整个长度。 通过这个孔可以将铆钉插入梭子,并将其从梭子上取下。 它还使得能够从细长心轴的梭子侧向移除,在其端部上已经轴向馈送铆钉。 梭子(11)的外部和软管(26)的内部具有类似的横截面,其是滑动配合并且彼此协作以将梭子(11)保持在预定的旋转关系 与软管(26),以便于如上所述插入和移除铆钉。
    • 46. 发明申请
    • Pipe Part For Conveying A Solid Particulate Material
    • 用于输送固体颗粒材料的管道部分
    • US20080031697A1
    • 2008-02-07
    • US11793082
    • 2005-12-14
    • Wouter Berggren
    • Wouter Berggren
    • B65G53/18B65G51/18F17D1/00F17D1/12
    • B65G53/52B65G53/521B65G53/58B65G2812/1658Y10T137/0318Y10T137/86292
    • A pipe part (100) for conveying a solid particulate material, comprising an outer tubular element (1) stretching along a longitudinal axis (A) and having first (9) and second (12) sections axially displaced from each other. An inner tubular element (20) is disposable inside the outer tubular element (1) and adapted for longitudinally conveying the solid particulate material from one end to another end. The inner tubular element (20) comprises an aeration-fluid-permeable wall part (23), and is sealingly connected with—and flexibly supported by—the first and second sections (9,12) to form an aeration fluid distribution chamber (40) between the first and second sections (9,12) and the inner (20) and outer (1) tubular elements. The aeration fluid distribution chamber (40) is provided with an aeration fluid inlet (15) to define an aeration fluid flow path (19) between the aeration fluid inlet (15) through the aeration-fluid-permeable wall part (23) via the aeration fluid distribution chamber (40).
    • 一种用于输送固体颗粒材料的管道部分(100),包括沿着纵向轴线(A)延伸并具有彼此轴向位移的第一(9)和第二(12)部分的外部管状元件(1)。 内部管状元件(20)在外部管状元件(1)内是一次性的,并且适于将固体颗粒材料从一端纵向输送到另一端。 内部管状元件(20)包括通气流体可渗透的壁部分(23),并且由第一和第二部分(9,12)密封地连接并且被柔性地支撑以形成曝气流体分配室(40) )在第一和第二部分(9,12)和内部(20)和外部(1)管状元件之间。 曝气流体分配室(40)设置有曝气流体入口(15),以在曝气流体入口(15)之间通过曝气流体可渗透壁部分(23)经由 曝气流体分配室(40)。
    • 47. 发明授权
    • Powder spray coating equipment
    • 粉末喷涂设备
    • US6155752A
    • 2000-12-05
    • US185595
    • 1998-11-04
    • Eugen Thomas Buhlmann
    • Eugen Thomas Buhlmann
    • B05B7/14B05C11/10B65G51/18B65G53/52
    • B05B7/1404B05B7/1472
    • The invention concerns powder spray coating equipment comprising an air divider (16) to adjustably divide a total-air flow (6, 14) into a conveying-air flow (54, 57, 70) and a supplemental-air flow (56, 84, 86) in such manner that, when adjusting for a larger flow of conveying air, the flow of supplemental air shall be reduced in a predetermined ratio, and vice versa; further comprising an injector (76) to aspirate and to pneumatically convey coating powder by means of the flow of conveying air; and a supplemental-air intake (89) into the air/powder path (76, 82). The conveying-air path (54, 57, 70) and the supplemental-air path (56, 84, 86) each are fitted with at least one throttling duct each constituted by at least one channel (40, 42) in a rotatable shaft (34, 36) and by a bearing surface (39) covering the channel. The channels (40, 42) run in the circumferential shaft direction and their cross-section decreases monotonely from a channel beginning (41, 43) as far as a channel end (45, 47) whereby, together with the bearing surface (39) they form an increasingly larger flow impedance. The total-air path (6, 12, 14) communicates with the channel beginnings (41, 43). A conveying-air discharge aperture (54) is present in the bearing surface (39) above the channel (40) of the conveying-air path, and a supplemental-air discharge aperture (56) is present above the channel (42) of the supplemental-air path in the bearing surface (39), said discharge apertures running only over a very short segment of the the length of the channels.
    • 本发明涉及粉末喷涂设备,其包括空气分配器(16),以将总气流(6,14)可调节地分成输送空气流(54,57,70)和补充气流(56,84 ,86),使得当调节较大的输送空气流量时,补充空气的流量应以预定的比例减小,反之亦然; 还包括通过输送空气流吸入和气动输送涂料粉末的喷射器(76) 和空气/粉末通道(76,82)中的补充空气入口(89)。 输送空气路径(54,57,70)和补充空气路径(56,84,86)各自配有至少一个节流管道,每个节流管道由可旋转轴中的至少一个通道(40,42)构成, (34,36)以及覆盖所述通道的支承表面(39)。 通道(40,42)在周向轴方向上延伸,并且它们的横截面从通道开始(41,43)到通道端部(45,47)单调减小,由此与轴承表面(39)一起, 它们形成越来越大的流阻。 总空气路径(6,12,14)与通道开始(41,43)通信。 在输送空气路径的通道(40)上方的轴承表面(39)中存在输送空气排放孔(54),并且在通道(42)的上方存在补充空气排放孔(56) 所述补充空气路径在所述支承表面(39)中,所述排出孔仅在所述通道的长度的非常短的段上延伸。
    • 48. 发明授权
    • Swirl chamber in pneumatic forwarding tube systems
    • 气动转运管系统中的旋流室
    • US6012876A
    • 2000-01-11
    • US855855
    • 1997-05-12
    • Ajaya Kumar
    • Ajaya Kumar
    • B65G51/18
    • B65G51/18
    • A swirl or pitch changing chamber (16) is interposed at the convergence of a plurality of divergent pneumatic forwarding tubes (11, 12) and communicates with the tubes (11, 12). In the chamber (16), a transporter capsule (15) is caused to perform a complex motion, the motion being predominantly a pitch changing translation, by use of mechanical, electromagnetic, magnetic and/or pneumatic forces caused to act on the capsule (15), thereby accomplishing a desired change in the direction of longitudinal travel of the capsule (15). The chamber (16) is defined by an enlargement in the transverse dimension of the tubes (11, 12), the dimensions of the chamber (16) being sufficient to accommodate the complex motion.
    • 涡流或变桨室(16)插入在多个发散的气动前进管(11,12)的会聚处,并与管(11,12)连通。 在腔室(16)中,通过使用导致作用在胶囊上的机械,电磁,磁力和/或空气力使运动胶囊(15)进行复杂的运动,运动主要是俯仰变换平移 15),从而实现胶囊(15)的纵向行进方向的期望变化。 腔室(16)由管(11,12)的横向尺寸的增大限定,腔室(16)的尺寸足以适应复合运动。
    • 49. 发明授权
    • Conveyor system
    • 输送系统
    • US4457423A
    • 1984-07-03
    • US264528
    • 1981-05-18
    • Kurt Stoll
    • Kurt Stoll
    • B65G51/18B65G51/01B65G51/04B65G54/02F15B15/08F15B15/14B61B13/12B65G19/18B65G35/00
    • B65G54/025F15B15/086
    • A conveyor system is designed for moving loads along a curved path and takes the form of a guide pipe having within it a piston-like driver which may be shuttled from one end to the other thereof by forcing driving fluid, as for example water and oil, into the one end or the other end of the pipe. A sleeve-like runner is placed on the outside of the pipe and is joined up with the driver by a magnet system which may take the form of a magnetic driving part on the driver and so placed thereon as to be radially spaced from the inner wall face of the pipe. The driver within the pipe and the runner on the pipe, together with any magnet system on them, have outer and inner forms taking into account the curved forms of the pipe.
    • 输送机系统被设计用于沿弯曲路径移动载荷并且采取导管的形式,其中具有活塞式驱动器,该驱动器可以通过迫使驱动流体(例如水和油)从一端往另一端穿梭 ,进入管道的一端或另一端。 套筒状的流道放置在管道的外侧,并通过磁体系统与驱动器连接,该磁体系统可以在驱动器上采取磁性驱动部件的形式并且放置在其上以与内壁径向间隔开 管的面。 管道内的驱动器和管道上的转子以及其上的任何磁体系统都具有外部和内部形式,考虑到管道的弯曲形式。