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    • 1. 发明授权
    • Guide conveyor having a laterally adjustable deflector roller at the end
    • 导向输送机在端部具有可横向调节的偏转辊
    • US06488193B1
    • 2002-12-03
    • US09554251
    • 2000-05-11
    • Raymond Patrick EckmanGary Robert BurgMark Daniel Banas
    • Raymond Patrick EckmanGary Robert BurgMark Daniel Banas
    • B65H2600
    • B29D30/3007B29D2030/4406B29D2030/4418B29L2030/002B65G21/2072
    • A method and apparatus for conveying and applying a strip component (11) such as a tire tread is disclosed. The method includes the steps of placing the strip component on a belt conveyer (16), determining a guideline (52) of the strip component (11) at an exit end (20) of the belt conveyor (16), and laterally adjusting the exist end (20) of the belt conveyor (16) to align the guideline (52) of the strip component (11) with a predetermined guideline such as the guideline of a tire building drum (12). The apparatus includes a belt support transverse housing (76) which is laterally moveable by a motion controller (64) in response to a sensor (58) which detects the guideline (52) of the strip component (11). Guides on the transverse housing (76) move the belts of the conveyor (16) on slider plates without physically touching the conveyed strip component (11), thereby preventing damage to the component material. The invention described above may be utilized in a single conveyor, or in multiple conveyor apparatus where the conveyors may be keyed together for synchronized transmission of the components.
    • 公开了用于输送和施加诸如轮胎胎面的条带部件(11)的方法和装置。 该方法包括以下步骤:将带状部件放置在带式输送机(16)上,确定带状部件(11)在带式输送机(16)的出口端(20)处的准线(52),并横向调整 存在带式输送机(16)的端部(20),以使带状部件(11)的引导线(52)与诸如轮胎成型鼓(12)的引导线的预定准则对齐。 该装置包括一个皮带支承横向壳体76,响应传感器58检测出带状部件11的导向件52,该支承件横向壳体76可由运动控制器64横向运动。 横向壳体(76)上的引导件将传送器(16)的皮带移动到滑动板上,而不会物理地接触传送的带状部件(11),从而防止对部件材料的损坏。 上述发明可以用在单个输送机中,或者在多个输送设备中,其中输送机可以键合在一起以便部件的同步传输。
    • 2. 发明授权
    • Process and device for laterally positioning a material web
    • 用于横向定位材料网的工艺和装置
    • US06641017B2
    • 2003-11-04
    • US10093462
    • 2002-03-11
    • Günther HüttelmaierJürgen BirkReinhard Faix
    • Günther HüttelmaierJürgen BirkReinhard Faix
    • B65H2600
    • D21F1/30B65H23/032D21F1/36
    • Process for handling a material web that includes moving the material web along with at least one circulating endless belt in a circulation direction, monitoring movement of an edge of said at least one circulating endless belt, and monitoring a position of said at least one circulating endless belt in a transverse direction by way of at least one belt travel sensor. The at least one belt travel sensor has a belt engaging surface which engages the edge of the at least one circulating endless belt. The process further includes driving repeatedly the at least one circulating endless belt in a direction generally transverse to the circulation direction utilizing the at least one belt travel sensor to generate linear transverse movement of the at least one circulating endless belt.
    • 一种用于处理材料幅材的方法,包括沿循环方向移动材料幅材与至少一个循环环形带,监测所述至少一个循环环形带的边缘的运动,以及监测所述至少一个循环环形带的位置 通过至少一个皮带行程传感器沿横向方向传送带。 所述至少一个带行进传感器具有接合所述至少一个循环环形带的边缘的带接合表面。 该方法还包括利用至少一个带行进传感器在大致横向于循环方向的方向上重复地驱动至少一个循环环形带,以产生至少一个循环环形带的线性横向移动。
    • 4. 发明授权
    • Empty package detector for labeling apparatus
    • 用于标签装置的空包检测器
    • US06543505B1
    • 2003-04-08
    • US09553837
    • 2000-04-21
    • James R. Harte
    • James R. Harte
    • B65H2600
    • B65C1/02B65C9/1884B65C9/42Y10T156/1705Y10T156/1744
    • A method and apparatus for communicating with a multiple lane labeling machine such that the labeling machine will only dispense and place labels on packaged articles. The present invention comprises a labeling machine having sensors positioned in front of the label transport, which positions the labels on the packaged articles. These sensors are preferably positioned directly in front of the label transport over the row of articles preceding the transporter and operate to detect the presence and absence of packaged articles and their content. Thus, if a package is absent from a row or does not contain product the sensors alert the labeling machine of the absence of an article so that the labeler does not dispense a label for a missing article or empty package.
    • 一种用于与多车道标签机进行通信的方法和装置,使得贴标机只能分配并在包装的物品上放置标签。 本发明包括具有位于标签传送器前面的传感器的贴标机,其将标签定位在包装物品上。 这些传感器优选地直接位于标签传送机构前面的物品行前面,并运行以检测包装物品及其内容的存在与否。 因此,如果包装不在一行或不包含产品,则传感器警告贴标机没有物品,使得贴标机不分配缺少的物品或空包装的标签。
    • 6. 发明授权
    • Position and direction sensing system for an inspection and handling system
    • 检测和处理系统的位置和方向检测系统
    • US06311886B1
    • 2001-11-06
    • US09434116
    • 1999-11-04
    • Steven J. AlexanderJon Ubert
    • Steven J. AlexanderJon Ubert
    • B65H2600
    • B65H23/046B65H20/20B65H2701/1942
    • The invention provides a pick and place system having a taper module that determines both placement and direction of the carrier tape by optically counting sprocket holes as they move in either direction. Compartments in a carrier tape are serially spaced along the longitudinal axis of the tape. The tape also includes a plurality of sprocket holes serially spaced along a line that is parallel to the longitudinal axis of the tape. The distance between compartments corresponds to a predetermined number of sprocket holes. Two optical couplers are set at a predetermined distance smaller than the s pacing between consecutive sprocket holes. Signals from the couplers will have a unique sequence depending on the direction of the tape. By using direction and number of sprocket holes, the exact position of the tape can be determined.
    • 本发明提供了一种具有锥形模块的拾取和放置系统,该锥形模块通过在链轮沿任一方向移动时光学计算链轮孔来确定载带的位置和方向。 载带中的隔室沿着带的纵向轴线间隔开。 该带还包括沿着平行于带的纵向轴线的线串联间隔的多个链轮孔。 隔间之间的距离对应于预定数量的链轮孔。 两个光耦合器被设置在比连续的链轮孔之间的s起搏小的预定距离处。 来自耦合器的信号将根据磁带的方向具有唯一的顺序。 通过使用链轮的方向和数量,可以确定胶带的确切位置。
    • 7. 发明授权
    • Apparatus and methods usable in connection with dispensing flexible sheet material from a roll
    • 可用于从卷筒分配柔性片材的设备和方法
    • US06830210B2
    • 2004-12-14
    • US10211334
    • 2002-08-05
    • John S. FormonAndrew R. MorrisMichael A. Susi
    • John S. FormonAndrew R. MorrisMichael A. Susi
    • B65H2600
    • B65H35/10A47K10/36A47K10/3612A47K10/3625A47K2010/3668A47K2010/3881H03K2017/9606Y10T83/541Y10T83/8822Y10T83/889Y10T83/896Y10T225/12Y10T225/205Y10T225/209Y10T225/232Y10T225/238Y10T225/268Y10T225/30
    • A powered dispenser for dispensing individual sheet segments from a continuous roll of sheet material provided with spaced tear lines comprises a powered feed mechanism, a releasable, powered drive mechanism, a powered transfer mechanism, a pair of web sensing sensors, a capacitive sensing system providing automatic sensitivity adjustment, and control circuitry. A dual power supply system provides a mechanical lock-out functionality, and the control system is protected from electrostatic build-up on the surface of the feed roller. The web sensor, and an antenna plate of the capacitive sensing system, are provided on respective printed circuit boards mounted in overlying relation. Utilizing signals received from the pair of web sensors and the capacitive sensing system, the control circuitry senses the presence of a user to activate the powered drive mechanism, and prevents further dispensing of the sheet material until a previously dispensed segment is separated from the roll. The web sensors detection of a leading edge of the sheet material initiates a predetermined interval of sheet material advancement providing a proper placement of successive tear lines. Various approaches may be utilized to accommodate inadvertent sheet “tabbing” scenarios. The web sensors, together with the control circuitry, are also used to detect the depletion, or absence, of a working roll of sheet material, whereupon the control circuitry controls the powered transfer mechanism to automatically transfer the web feed supply from a depleted working roll to a reserve roll. The powered transfer mechanism may include a motor driven transfer bar, or provide motor driven release of a spring biased transfer bar. Another arrangement allows for ready release of a roll core, and drop of the same into an open dispenser cover for removal.
    • 用于从设置有间隔开的撕裂线的连续的片材卷分配单个片段的动力分配器包括动力供给机构,可释放的动力驱动机构,动力传递机构,一对腹板感测传感器,提供 自动灵敏度调节和控制电路。 双电源系统提供机械锁定功能,并且防止控制系统在进料辊表面上的静电积聚。 网状传感器和电容式感测系统的天线板设置在以相互重叠的方式安装的各个印刷电路板上。 控制电路利用从一对网络传感器和电容感测系统接收到的信号,感测到用户的存在以激活动力驱动机构,并且防止片材的进一步分配,直到预先分配的片段与卷分离。 纸张传感器检测片材的前缘开始预定间隔的片材进给,提供连续撕裂线的适当放置。 可以使用各种方法来适应无意的片材“制表”场景。 纸幅传感器与控制电路一起也用于检测工作辊的片材的耗尽或不存在,于是控制电路控制动力传送机构以自动地从耗尽的工作辊传送纸幅供给源 到保留卷。 动力传递机构可以包括马达驱动的转移杆,或者提供弹簧偏置转移杆的马达驱动释放。 另一种布置允许将卷芯预先释放,并将其一滴放入打开的分配器盖中用于移除。
    • 9. 发明授权
    • Device for detecting remaining quantity of rolled papers
    • 用于检测卷纸的剩余量的装置
    • US06502784B1
    • 2003-01-07
    • US09599830
    • 2000-06-23
    • Hitoshi Sato
    • Hitoshi Sato
    • B65H2600
    • B65H26/08B65H2511/114
    • A device for detecting remaining quantity of rolled papers has housing having a bottom for supporting a rolled paper. Optical detectors are provided for detecting a peripheral position of the rolled paper supported on the bottom when the peripheral position approaches an inner end of the paper and for generating an output signal. A positioning lever is provided for positioning the detectors at a position dependent on a radius of a core of the rolled paper. A control circuit responds to the output signal for informing that the rolled paper reaches the inner end.
    • 用于检测卷纸的剩余量的装置具有用于支撑卷纸的底部的壳体。 光学检测器被设置用于当周边位置接近纸张的内端并产生输出信号时,检测支撑在底部上的卷筒纸的周边位置。 提供定位杆,用于将检测器定位在取决于卷纸的芯的半径的位置。 控制电路响应输出信号以通知卷纸到达内端。
    • 10. 发明授权
    • Process and device for handling a material web
    • 用于处理材料网的处理和装置
    • US06402005B1
    • 2002-06-11
    • US09427442
    • 1999-11-08
    • Günther HüttelmaierJürgen BirkReinhard Faix
    • Günther HüttelmaierJürgen BirkReinhard Faix
    • B65H2600
    • D21F1/30B65H23/032D21F1/36
    • Process and device for handling a material web. The process includes moving the material web, at least in stretches, along with at least one circulating endless belt in a circulation direction and monitoring the movement of the edge of the at least one circulating endless belt. The process further includes driving repeatedly the circulating endless belt in a direction generally transverse to the circulation direction. The device includes at least one circulating endless belt for moving the material web along, at least in stretches, in a circular direction, and a master control unit for determining the transverse movement of the circulating endless belt. Additionally, the device includes at least one belt travel sensor for monitoring the position of the at least one circulating endless belt and repeatedly moving, in cooperation with the master control unit, the at least one circulating endless belt generally transverse to the circulation direction, and an activation device, for moving the sensor. The device further includes an associated control device, further comprising a pressure regulator and associated motorized adjustment device, for actuating the activation device. Sensor signals are generated by the at least one belt travel sensor, the signals being fed to the master control unit for determining the transverse movement of the at least one circulating endless belt.
    • 用于处理材料网的处理和装置。 该过程包括至少沿着循环方向与至少一个循环环形带一起移动材料网,并且监测至少一个循环环形带的边缘的运动。 该方法还包括在大致横向于循环方向的方向上重复地循环循环的环形带。 该装置包括至少一个用于沿着圆周方向至少沿拉伸方向移动材料幅材的循环环形带,以及用于确定循环环形带的横向移动的主控制单元。 另外,该装置包括至少一个带行进传感器,用于监测至少一个循环环形带的位置,并且与主控制单元协作地重复地移动至少一个循环环形带大致横向于循环方向,以及 激活装置,用于移动传感器。 该装置还包括相关联的控制装置,还包括用于致动激活装置的压力调节器和相关联的电动调节装置。 传感器信号由至少一个带行进传感器产生,信号被馈送到主控制单元以确定至少一个循环环形带的横向移动。