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    • 51. 发明授权
    • Device for transferring flat objects with an injector comprising elastically deformable wheels
    • 用于用包括弹性变形轮的喷射器传送平坦物体的装置
    • US06644461B1
    • 2003-11-11
    • US10009901
    • 2002-06-03
    • Denis ImbertRobert VivantFrancois Chaume
    • Denis ImbertRobert VivantFrancois Chaume
    • B65G4726
    • B65H29/12B07C1/04B07C3/082B65H2301/321B65H2301/4474B65H2301/4476B65H2404/1122B65H2404/14B65H2513/104B65H2513/20B65H2701/1916B65H2220/01B65H2220/02
    • The device for individually transferring flat objects from an entry conveyor (2) on which the objects travel in series edge-on in a first direction (A), into buckets (6) of an exit conveyor (5), comprises an intermediate conveyor (7) arranged in the continuation of the entry conveyor above the exit conveyor and equipped with receptacles (9) which, over at least part of their path, can move in a second direction (B) perpendicular to said first direction, each flat object leaving the entry conveyor being injected edge-on into a receptacle of the intermediate conveyor which comes up to face the exit of the entry conveyor so as to be transferred edge-on into a bucket of the exit conveyor. It further comprises an injection system (14) comprising elastically deformable wheels (15) at the exit end of the entry conveyor and designed to accelerate and then retard the movement of each flat object in said first direction before injecting it into a receptacle of the intermediate conveyor.
    • 用于将物体从入口传送器(2)单独地传送到其上的物品沿着第一方向(A)串联地沿着第一方向(A)移动到出口传送器(5)的桶(6)中的装置包括中间输送器 7),其布置在出口输送机上方的连续输送机上并且配备有容纳器(9),容器(9)在其至少部分路径中可沿垂直于所述第一方向的第二方向(B)移动,每个平面物体离开 入口输送机被边缘注入到中间输送机的接收器中,该中间输送机的入口面向入口输送机的出口,以便被边缘地输送到出口输送机的桶中。 它还包括注射系统(14),该注射系统(14)包括在入口输送机的出口端处的弹性变形的轮(15),并被设计成在将其注入中间体的容器之前加速然后阻止每个平面物体在所述第一方向上的移动 输送带。
    • 52. 发明授权
    • Method and device for splitting-up a stream of piece goods
    • 拆分物品流的方法和装置
    • US06581752B2
    • 2003-06-24
    • US09859153
    • 2001-05-16
    • Hans Frei
    • Hans Frei
    • B65G4726
    • B65H29/60B65H29/02B65H29/6672B65H2301/4455B65H2301/4471B65H2301/44732B65H2405/55B65H2405/551B65H2220/01B65H2220/02
    • For splitting-up a supply stream (2) of piece goods into a plurality of conveying away streams, the supplied objects (3) are guided onto a plurality of conveying away paths (4.1, 4.2, 4.3) in a predetermined splitting-up sequence. The device includes a supply device for serially supplying objects (3) to a split-up point (1) and for positioning the objects (3) for being taken over by holding device (6.1, 6.2, 6.3) in the split-up point (1). The device also has a plurality of conveying away systems, each one of which defines one of the conveying away paths. Of the conveying away systems advantageously each one has a closed-loop rail track (5.1, 5.2, 5.3) and holding devices (6.1, 6.2, 6.3) movable along the rail track independently of one another and with variable distances between one another. The rail tracks (5.1, 5.2, 5.3) of the conveying away systems converge toward the split-up point (1), run through the split-up point (1) parallel to one another, and diverge after the split-up point (1). The conveying away systems also have buffers that retain the holding devices upstream of the split-up point (1) and devices for releasing the holding devices from the buffers (7.1, 7.2, 7.3) in a controlled manner. The conveying away systems also have devices for conveying the holding devices (6.1, 6.2, 6.3) through the split-up point (1) in a controlled manner and for activating the holding devices in the split-up point. A serial stream of holding devices through the split-up point (1) is produced by controlled release of holding devices (6.1, 6.2, 6.3) from the buffers (7.1, 7.2, 7.3) so that holding devices belonging to different conveying away systems are arranged in a sequence corresponding to the splitting-up sequence for the objects (3).
    • 为了将零件的供应流(2)分成多个输送流,将所提供的物体(3)以预定的分离顺序被引导到多个输送路径(4.1,4.2,4.3)上 。 该装置包括供给装置,用于将对象(3)串行地提供给分割点(1),并用于定位物体(3),以便通过保持装置(6.1,6.2,6.3)在拆分点 (1)。 该装置还具有多个输送系统,每个系统限定输送远离路径中的一个。 在传送远离系统中,有利地每个具有闭环轨道(5.1,5.2,5.3)和保持装置(6.1,6.2,6.3),其可沿着轨道轨道彼此独立移动并且彼此之间具有可变的距离。 输送系统的轨道(5.1,5.2,5.3)朝向分割点(1)收敛,穿过彼此平行的分割点(1),并在分割点之后发散 1)。 输送系统还具有将保持装置保持在分割点(1)上游的缓冲器和用于以受控方式从缓冲器(7.1,7.2,7.3)释放保持装置的装置。 输送系统还具有用于以受控的方式通过分割点(1)输送保持装置(6.1,6.2,6.3)并且用于启动分割点中的保持装置的装置。 通过分离点(1)的保持装置的串联流通过从缓冲器(7.1,7.2,7.3)中控制释放保持装置(6.1,6.2,6.3)而产生,使得属于不同输送系统的保持装置 以对应于对象(3)的分割序列的顺序排列。
    • 54. 发明授权
    • Article conveyance having line and/or spacing adjustment
    • 具有行和/或间距调整的物品输送
    • US06523670B1
    • 2003-02-25
    • US09858828
    • 2001-05-17
    • Donald J. Simkowski
    • Donald J. Simkowski
    • B65G4726
    • B65G47/32B65G47/71B65G47/848
    • Conveying apparatus and method are disclosed for receiving articles, such as cans, adjusting, or rearranging, the received articles between single and multiple lines during conveyance, and/or adjusting the spacing between the articles so that the articles are spaced from one another a preselected distance, including, if needed, equal spacing between the articles in the single and multiple lines. Rearrangement of the articles in single to multiple line mode (or, alternately, in multiple to single line mode) and/or control of spacing of the articles are/is effected by conveyance of the articles to and between a plurality of article actuators, each including a rotatable disk having negative pressure thereat for selectively establishing and maintaining engagement of the articles with the peripheral portions of the disks. The apparatus and method are also useful in conveying articles in article non-contact relationship with handling of the articles and line and/or spacing adjustment being effected within a limited area.
    • 公开了用于在输送期间接收单个和多个线之间的物品,诸如罐,调整或重新排列物品的输送设备和方法,和/或调整物品之间的间隔,使得物品彼此间隔开预选 距离,包括如果需要,单行和多行之间的物品间距相等。 通过将物品输送到多个制品致动器之间并且在多个制品致动器之间,通过将物品重新排列成单个到多个线路模式(或者以多个到多个单行模式)和/或物品的间隔的控制, 包括具有负压的可旋转盘,用于选择性地建立并保持物品与盘的周边部分的接合。 该设备和方法还可用于在物品的非接触关系中输送物品,并且在有限的区域内进行线条和/或间距调整。
    • 56. 发明授权
    • Device for transporting bottles
    • 运输瓶装置
    • US06516939B1
    • 2003-02-11
    • US09806217
    • 2001-06-01
    • Andreas SchmidtThomas Niehr
    • Andreas SchmidtThomas Niehr
    • B65G4726
    • B65G47/53B65G47/5104B65G2201/0244B67C3/242
    • For transporting bottles with a carrying ring in the neck region, particularly PET bottles, along a specified path of motion through processing stations (2, 3, 4, 5, 6), of a processing installation particularly a bottle-filling installation, in each case a number of bottles (8), grouped in a row (9) transversely to the direction of transport (20), is transported by a carrier (13) and positioned relative to the latter. The carriers (13) can be moved by conveying chains (11) or similar driving means at uniform intervals consecutively from a bottle feeding station (1) past at least one processing station, especially a filling station, to a bottle delivery station (7) and, from there, empty back to the bottle feeding station. As carrier for a row (9) of bottles (8), a cellular board-like flat carrying strip (13) is provided. Each bottle (8) is supported suspended with its neck (25) in an opening (16; 30) of the carrying strip (13), the carrying ring (24), at the neck (25) of the bottles (8) overlapping the edge of the opening (16; 30) in the carrying strip (13). Above the plane of motion (15) of the carrying strips (13) on their way between the bottle feeding station (1) and the bottle delivery station (7), guiding strips (21, 22) are provided, which are disposed parallel next to one another, are parallel to the plane of motion (15) and, between themselves, form the boundaries of the guiding paths (23) for the necks parts (25) of the bottles (8), which protrude over the carrying strips (13) and extend between the guiding strips (21), (22).
    • 为了在颈部区域运送具有携带环的瓶子,特别是在每个处理装置(2,3,4,5,6)中沿着指定的运动路径运送具有携带环的瓶子,特别是处理装置,特别是灌瓶设备 情况下,横向于运输方向(20)的排列(9)的多个瓶子(8)由托架(13)运输并相对于其运送。 运送链条(11)或类似的驱动装置可以通过至少一个处理站,特别是加油站,连续从输送站(1)输送链条(11)或类似的驱动装置到瓶子送出站(7) 并从那里空回到送瓶站。 作为瓶(8)的一排(9)的载体,提供了一种蜂窝板状扁平携带条(13)。 每个瓶(8)被支撑在其颈部(25)上悬挂在承载条(13)的开口(16; 30)中,在瓶(8)的颈部(25)处的承载环(24)重叠 所述输送带(13)中的所述开口(16; 30)的边缘。 在进料台(1)和送瓶站(7)之间的方式上,承载带(13)的运动平面(15)上方设有引导条(21,22) 彼此之间平行于运动平面(15),并且在它们之间形成用于瓶子(8)的颈部(25)的引导路径(23)的边界,其突出在承载条上 (21),(22)之间延伸。
    • 57. 发明授权
    • Device and method for producing, portioning and reloading a stack
    • 用于生成,分配和重新加载堆栈的设备和方法
    • US06508352B1
    • 2003-01-21
    • US09857597
    • 2001-07-27
    • Peter EnenkelArmin ZimmermannDirk Nolte
    • Peter EnenkelArmin ZimmermannDirk Nolte
    • B65G4726
    • B07C3/008B65H31/06B65H33/08B65H2301/42242B65H2301/422548B65H2701/1916
    • The stack of flat mail pieces that are arranged adjacent to one another on a support can be portioned with the aid of at least one displaceable holding support containing a conveyor belt because the support is divided into a horizontally oriented, stationary section and an adjacent section that can be pivoted about a pivoting axis positioned at the end of the pivotable section in the stacking direction. During the portioning process, the pivotable section extending downward at an angle from the stationary section is pivoted downward into a horizontal position. A holding support with a conveyor belt that is driven downward during the pivoting process is arranged underneath the stationary section at its border with the pivotable section. An additional support is arranged on the frame of the pivotable section of the support above the mail pieces. This additional support holds the stack remaining on the stationary section of the support. The portioned and subsequently compressed stack is positioned between the holding supports that contain conveyor belts and the stack is reloaded by driving these conveyor belts.
    • 借助于包含输送带的至少一个可移动的保持支撑件,可以在支撑件上彼此相邻布置的扁平邮​​件堆叠被分割,因为支撑件被分成水平定向的静止部分和相邻的部分, 可围绕位于可枢转部分的端部处的堆叠方向的枢转轴线枢转。 在分割过程中,与固定部分成一定角度向下延伸的可枢转部分向下枢转到水平位置。 具有在枢转过程中向下驱动的传送带的保持支架设置在与可枢转部分的边界处的固定部分下方。 在邮件上方的支撑件的可枢转部分的框架上布置了另外的支撑件。 这个额外的支持保持堆栈在支架的固定部分上。 分段和随后压缩的堆叠位于包含输送带的保持支撑件之间,并且通过驱动这些输送带来重新装载该堆叠。
    • 58. 发明授权
    • Flip-flop assembly for conveyor system
    • 输送机系统的触发器组件
    • US06439369B1
    • 2002-08-27
    • US09769589
    • 2001-01-25
    • Edmund W. Brown
    • Edmund W. Brown
    • B65G4726
    • B65G47/647
    • A conveyor system is provided for controlling the flow of a plurality of containers therealong. The conveyor system includes a conveyor having first and second opposite ends and an upwardly facing surface for slidably receiving the plurality of containers thereon. A flip-flop assembly has first and second opposite ends and is pivotably mounted to the conveyor. The flip-flop assembly is movable between a first stopping position wherein the first end of the flip-flop assembly extends from the upwardly facing surface of the conveyor so as to prevent flow of the plurality of containers therepast and a second position allowing the flow of the plurality of containers therepast.
    • 提供一种用于控制多个容器的流动的输送机系统。 输送机系统包括具有第一和第二相对端部和向上表面的输送机,用于可滑动地容纳多个容器。 触发器组件具有第一和第二相对端并且可枢转地安装到输送机。 触发器组件可在第一停止位置之间移动,其中触发器组件的第一端从输送机的面向上的表面延伸,以便防止多个容器在其上流动,并且允许第二位置允许 多个集装箱。
    • 59. 发明授权
    • Apparatus for correcting the position of flat objects conveyed in an overlapping stream
    • 用于校正在重叠流中输送的平坦物体的位置的装置
    • US06302260B1
    • 2001-10-16
    • US09584289
    • 2000-05-31
    • Egon Hänsch
    • Egon Hänsch
    • B65G4726
    • B65H29/6654B65H2511/22
    • The apparatus has a first conveyor 10 and a second conveyor 16 mounted immediately downstream thereof. Arranged above the first conveyor 10 is a position changing device 50, whose displacement elements 68 are intended to strike the trailing edge 22′ of fed objects 22 and to feed them to the second conveyor at the correct phase angle. Arranged at the end of the first conveyor 10 is a restraining device 34, whose restraining element 46 projects into the movement path of the leading edges 22′ of the objects 22 and in each case is briefly withdrawn from this restraining position into a release position outside the movement path of the leading edges 22′ when a displacement element 68 is moving an object 22 past it into the delivery nip 30. The restraining device 34 prevents too many objects arriving being fed to the second conveyor 16 out of synchronism.
    • 该设备具有第一输送机10和紧靠其下游安装的第二输送机16。 布置在第一输送机10上方的是位置改变装置50,其位移元件68旨在撞击进给物体22的后缘22'并以正确的相位角将其输送到第二输送机。 在第一输送机10的端部排列有限制装置34,其限制元件46伸入到物体22的前缘22'的移动路径中,并且在每种情况下都从该限制位置短暂地退出到外部的释放位置 当位移元件68将物体22移动到输送夹持部30中时,前缘22'的移动路径。限制装置34防止太多物体到达不同步地被馈送到第二传送器16。
    • 60. 发明授权
    • Sequential release control for a zoned conveyor system
    • 分区输送机系统的顺序释放控制
    • US06253906B1
    • 2001-07-03
    • US09080514
    • 1998-05-18
    • David V. Hall
    • David V. Hall
    • B65G4726
    • B65G43/10B65G47/261B65G47/31
    • An accumulating conveyor system for transporting a series of loads includes a series of conveyor zones, including at least an upstream conveyor zone and a downstream conveyor zone. Each conveyor zone includes a drive arrangement for operating the conveyor zone to advance loads therealong. A control is interconnected with each drive arrangement. The control is operable to sequentially initiate operation of adjacent conveyor zones by delaying initiation of operation of an upstream conveyor zone for a predetermined time period after initiation of operation of a downstream conveyor zone. In this manner, operation of a series of adjacent conveyor zones is initiated in a sequential or wave-type manner, which avoids thrust loading of the conveyor system and minimizes electrical surges which otherwise would occur if operation of all zones were initiated simultaneously. Each zone includes a sensor at its downstream end, and, when it is desired to stop operation of the conveyor zones to maintain loads stationary thereon, operation is suspended when the leading edge of each load reaches the downstream sensor of the conveyor zone. In this manner, the adjacent zones also stop operation in a sequential manner since the spacing between adjacent loads increases upon sequential release of the loads at start-up.
    • 用于运输一系列负载的累积输送机系统包括一系列输送区,包括至少上游输送区和下游输送区。 每个传送带包括驱动装置,用于操作传送带以在其上推进载荷。 控制器与每个驱动装置互连。 控制可操作以通过在开始下游输送区域的操作之后延迟上游输送区域的操作达预定时间段来依次启动相邻输送机区域的操作。 以这种方式,一系列相邻的传送带的操作以顺序或波型方式启动,这避免了传送系统的推力加载,并且最小化如果同时启动所有区域的操作将另外发生的电涌。 每个区域在其下游端包括传感器,并且当需要停止输送区域的操作以保持其上固定的载荷时,当每个负载的前缘到达传送带的下游传感器时,停止操作。 以这种方式,相邻的区域也以顺序的方式停止操作,因为相邻负载之间的间隔在起动时顺序释放负载时增加。