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    • 3. 发明申请
    • Device for reading the rotational speed of a paint sprayer provided with a rotating bowl
    • 用于读取设置有旋转碗的喷漆器的转速的装置
    • US20040134424A1
    • 2004-07-15
    • US10474844
    • 2004-03-04
    • Flavien Dobrowolski
    • B05C005/00B05B003/00
    • B05B3/1085G01P3/486
    • The invention device measures the instantaneous rotation speed of a turbine (6) which is housed inside the body (3) of the paint sprayer (2) and which rotationally drives the rotating bowl (5) when the paint sprayer is mounted on the end of an arm (8) of a robot or an analogous multi-axis machine. A disk (10) which is disposed to the rear of the turbine (6) and which rotates therewith, cooperates with the front end (11a) of an optical-fiber-type light guide (11) which is interrupted (11b) at the rear (7) of the body (3) of the paint sprayer (2). Transmitting and receiving optoelectronic means are mounted on the end of the arm on the mounting pane (9) of the paint sprayer, opposite the rear end (11b) of the light guide (11). Said means covert a reflected optical signal which is carried by the optical guide (11) into an electronic signal which is carried by an electric cable (22) placed in the arm (8). The inventive device is suitable for use with machines on automatic painting lines for automotive vehicles.
    • 本发明装置测量容纳在喷漆机(2)的主体(3)内的涡轮机(6)的瞬时转速,并且当喷漆机安装在喷涂机(2)的末端时旋转地驱动旋转碗 机器人的臂(8)或类似的多轴机器。 配置在涡轮机(6)的后方并与其一起旋转的盘(10)与光纤型导光体(11)的前端(11a)配合,该导光体(11)在 喷漆机(2)的主体(3)的后部(7)。 发射和接收光电装置安装在喷漆机的安装面板(9)的臂的端部上,与光导(11)的后端(11b)相对。 所述装置将由光导(11)承载的反射光信号隐藏成由放置在臂(8)中的电缆(22)承载的电子信号。 本发明的装置适用于机动车用自动喷漆线上的机器。
    • 4. 发明申请
    • Device for gel-coating seeds
    • 用于凝胶涂覆种子的装置
    • US20040118340A1
    • 2004-06-24
    • US10643846
    • 2003-08-19
    • Kazushi Nakatsukasa
    • B05C005/00B05B007/06A62C002/08F23D011/38
    • A01C1/06
    • A device for gel-coating seeds includes: a plurality of nozzles into each of which a gelling agent is filled and a seed is charged and held in the gelling agent to form a gel-coated seed; a pair of upper and lower nozzle casings joined with each other through a joint surface; galleries for the gelling agent formed on the junction surface; and passages formed in the lower nozzle casing which extend from the respective galleries to the respective gel-filled portions of the nozzles below the galleries. The nozzles vertically penetrate the upper and lower nozzle casings which may be comprised of a bottom plate and nozzle sleeves. The joint surface is arranged higher than a gel-filled portion of each nozzle.
    • 用于凝胶涂覆种子的装置包括:多个喷嘴,其中填充有胶凝剂,并将种子装入并保持在胶凝剂中以形成凝胶涂覆的种子; 一对上下喷嘴壳体,通过接头表面相互连接; 在接合面上形成胶凝剂的画廊; 以及形成在下喷嘴壳体中的通道,其从各个画廊延伸到画廊下方的喷嘴的相应凝胶填充部分。 喷嘴垂直地穿过可由底板和喷嘴套组成的上部和下部喷嘴壳体。 接头表面的布置高于每个喷嘴的凝胶填充部分。
    • 5. 发明申请
    • System and method for vibration-assisted flow of encapsulating material in ignition coils
    • 点火线圈中封装材料振动辅助流动的系统和方法
    • US20040096573A1
    • 2004-05-20
    • US10295664
    • 2002-11-14
    • Larrie A. DavisGar P. Hoover
    • B05D005/12B05D003/12B05C005/00B05B007/00
    • B05D3/12H01F38/12H01F41/005
    • Method and system for encapsulating a coil are provided. In one exemplary embodiment, the method allows providing a chamber for performing at least one manufacturing operation in connection with at least one coil to be encapsulated. The method further allows providing a pallet for supporting the at least one coil to be encapsulated. The pallet may be mounted on a conveyor configured to move the pallet in the chamber proximate to a nozzle configured to dispense encapsulant to the at least one coil. A vibration generator may be mechanically coupled to the conveyor. The vibration generator is electrically responsive to command signals from a controller. The command signals may be based on a vibration profile configured to controllably vibrate the at least one coil so that the encapsulant may flow assisted by the vibration through passages in the coil notwithstanding of a dimensional tightness of the passages therein, and thereby reduce the possibility of faults that could otherwise develop due to poor flow of the encapsulant.
    • 提供封装线圈的方法和系统。 在一个示例性实施例中,该方法允许提供用于与要封装的至少一个线圈相关联地执行至少一个制造操作的室。 该方法还允许提供用于支撑待封装的至少一个线圈的托盘。 托盘可以安装在传送器上,该传送器构造成使托盘在腔室中移动,靠近喷嘴,该喷嘴被配置为将密封剂分配到至少一个线圈。 振动发生器可以机械地联接到输送机。 振动发生器对来自控制器的命令信号进行电响应。 命令信号可以基于被配置为可控制地振动至少一个线圈的振动轮廓,使得密封剂可以通过线圈中的通道的振动而流动,尽管其中的通道的尺寸紧密度,从而降低了可能性 否则由于密封剂流动不良导致的故障。
    • 6. 发明申请
    • System and method for coating a work piece
    • 用于涂覆工件的系统和方法
    • US20040083957A1
    • 2004-05-06
    • US10286244
    • 2002-11-01
    • Steven D. Latvis
    • B05C005/00
    • B05C9/14B05B13/0436
    • A method and apparatus for coating a work piece. The system comprising an applicator adapted to travel over a portion of the work piece. The system being operable to heat the work piece and/or apply a coating onto the work piece as the applicator travels over the work piece. The system may comprise an induction heating system to heat the work piece. The system may be adapted to apply a variety of coatings, such as a liquid coating and a dry powder coating. The applicator being operable to heat the work piece prior to applying the coating or heating the work piece after the coating has been applied. The applicator may also be adapted to apply heat to heat shrink a coating material onto the work piece.
    • 一种用于涂覆工件的方法和设备。 该系统包括适于在工件的一部分上行进的施加器。 该系统可操作以在涂抹器在工件上行进时加热工件和/或将涂层施加到工件上。 该系统可以包括用于加热工件的感应加热系统。 该系统可以适用于施加各种涂层,例如液体涂层和干粉末涂层。 施加器可操作以在施加涂层之前加热工件,或者在施加涂层之后加热工件。 施加器也可以适于施加热量以将涂层材料热收缩到工件上。
    • 7. 发明申请
    • Scanned focus deposition system
    • 扫描焦点沉积系统
    • US20040079281A1
    • 2004-04-29
    • US10298115
    • 2003-01-10
    • NEOCERA, INC.
    • Hans M. Christen
    • C23C014/00B05C005/00B05B005/025B05C009/08C23C016/00
    • C23C14/28
    • There is provided a deposition system (1) for yielding substantially uniform deposition of an evaporant material onto a substrate. The deposition system (1) comprises: a source (10) for generating a coherent energy beam; a substantially planar target (60) containing the evaporant material and disposed in spaced relation to the substrate; a focusing element (30) optically coupled to the source for focusing the coherent energy beam onto the target (60); and, an actuator (40) coupled to the focusing element (30) for reversibly translating the focusing element (30) along a scanning path directed substantially parallel to a target plane defined by the target (60). The focused coherent energy beam defines an impingement spot (14) on the target (60). The impingement spot (14) is displaced responsive to the translation of the focusing element (30) along the scanning path. The focus of the coherent energy beam on the target (60) thus remains substantially preserved.
    • 提供了一种沉积系统(1),用于将蒸发剂材料基本均匀地沉积到基底上。 沉积系统(1)包括:用于产生相干能量束的源(10); 包含所述蒸发材料并以与所述基板隔开的关系设置的基本平坦的靶(60); 光学耦合到所述源的聚焦元件(30),用于将所述相干能量束聚焦到所述目标(60)上; 以及耦合到所述聚焦元件(30)的致动器(40),用于沿着基本上平行于由所述目标(60)限定的目标平面指向的扫描路径可逆地平移所述聚焦元件(30)。 聚焦的相干能量束限定靶(60)上的冲击点(14)。 响应于沿着扫描路径的聚焦元件(30)的平移,冲击点(14)移位。 目标(60)上的相干能量束的焦点因此保持基本保持。
    • 8. 发明申请
    • Mouthpiece and device and method for applying coating fluid
    • 用于涂布液的涂嘴和装置及方法
    • US20040065254A1
    • 2004-04-08
    • US10451771
    • 2003-06-24
    • Hideki IkeuchiTakashi YoshiyamaYoshihisa HigashidaMasanori UedaYasuki Shimizu
    • B05C005/00
    • H01J9/227
    • A die, having multiple discharge orifices arrayed in a generally straight line for applying an application fluid to an object of application, and an internal application fluid reservoir, wherein braces are provided in the application fluid reservoir and extending in a direction generally orthogonal to the direction of the array of the discharge orifices. Also, an application apparatus and method for application fluid, for relatively moving a base material wherein stripe-shaped vertical barrier ribs are formed on the surface of the base material and horizontal barrier ribs having a height equal to or lower than the vertical barrier ribs are formed in a direction generally orthogonal to the vertical barrier ribs, and a die provided facing the base material, while discharging application fluid from multiple discharge orifices provided on the die, thereby applying application fluid to selected grooves between the vertical barrier ribs of the base material.
    • 具有排列成大致直线的多个排放孔以将施用流体施加到施用对象的模具和内部施用流体储存器,其中,支架设置在施加流体储存器中并且沿大致正交于方向的方向延伸 排放孔阵列。 此外,为了相对移动基材的基体材料的应用装置和方法,其中在基材的表面上形成有条状的垂直隔壁和具有等于或低于垂直隔板的高度的水平隔壁, 形成在大致垂直于垂直隔壁的方向上,以及模具,其面向基材设置,同时从设置在模具上的多个排出孔排放施加流体,从而将施加流体施加到基材的垂直隔壁之间的选定槽 。
    • 10. 发明申请
    • Device for applying adhesive to a workpiece
    • 用于将粘合剂施加到工件上的装置
    • US20040011284A1
    • 2004-01-22
    • US10381950
    • 2003-06-30
    • Josef Schucker
    • B05C005/00
    • G05B19/4189B05C5/0216B25J9/1684B25J9/1697B25J19/02B25J19/023G05B2219/37048G05B2219/37217G05B2219/45065G05B2219/45238Y02P90/28
    • The invention relates to an adhesive robot, comprising a device for applying adhesive to a workpiece. The adhesive robot has a nozzle head (18), which has an application nozzle (24) and can be supplied with a pressurized viscous adhesive, the nozzle head (18) and the workpiece (14) being displaceable in relation to one another. The adhesive which is issued from the application nozzle (24) in a spray jet (28) is applied to a workpiece (14) along a predefined line of application (36) in the form of a strip of adhesive (40). To facilitate the adjustment and re-calibration process, the system comprises at least one camera unit (42), which is located on the nozzle head (18) and whose leans is directed towards the spray jet (28) or the adhesive strip (40). The output of said camera unit is connected to an image evaluation unit (45). The image data (40) recorded by the camera unit (42) is buffered and compared with predetermined image values (40). The decisive control parameters for the system can be calibrated and tracked either automatically or by remote control, on the basis of deviations in the image data that have been determined along the line of application (36).
    • 本发明涉及粘合机器人,其包括用于将粘合剂施加到工件上的装置。 粘合机器人具有喷嘴头(18),其具有施加喷嘴(24)并且可以供应加压粘性粘合剂,喷嘴头(18)和工件(14)可相对于彼此移位。 以喷射射流(28)从施用喷嘴(24)发出的粘合剂以预定的施加线(36)以粘合剂条(40)的形式施加到工件(14)上。 为了便于调整和重新校准过程,系统包括位于喷嘴头(18)上的至少一个相机单元(42),并且其倾斜指向喷雾器(28)或粘合带(40) )。 所述相机单元的输出连接到图像评估单元(45)。 由相机单元(42)记录的图像数据(40)被缓冲并与预定图像值(40)进行比较。 根据沿着应用线(36)确定的图像数据的偏差,可以自动或通过远程控制来校准和跟踪系统的决定性控制参数。