ULTRASONIC WELDING DEVICE AND ULTRASONIC WELDING METHOD FOR CONTROLLING CONTINUOUS ULTRASONIC WELDING PROCESSES
    32.
    发明申请
    ULTRASONIC WELDING DEVICE AND ULTRASONIC WELDING METHOD FOR CONTROLLING CONTINUOUS ULTRASONIC WELDING PROCESSES 有权
    超声波焊接设备和超声波焊接方法用于控制连续超声波焊接工艺

    公开(公告)号:US20150158247A1

    公开(公告)日:2015-06-11

    申请号:US14561666

    申请日:2014-12-05

    发明人: Christian Heeg

    IPC分类号: B29C65/00 B29C65/08

    摘要: An ultrasonic processing method and an ultrasonic processing device may include a controlling/regulating module, preferably a digital controlling/regulating module, which is integrated into a signal processing of the ultrasonic generator so that a plurality of generator data with respect to the ultrasonic generator are processible in the ultrasonic generator. At this, a power actual value Pist is compared with a power reference value Psoll of the ultrasonic generator via a gap regulator in the controlling/regulating module to specify a position reference value POSsoll of the sonotrode relative to the roll for adjustment of the power reference value Psoll of the ultrasonic generator, and/or a power actual value Pist is compared with a power reference value Psoll of the ultrasonic generator via an amplitude regulator in the controlling/regulating module to specify an amplitude reference value Asoll to the ultrasonic generator for adjustment of the power reference value Psoll.

    摘要翻译: 超声波处理方法和超声波处理装置可以包括集成到超声波发生器的信号处理中的控制/调节模块,优选数字控制/调节模块,使得相对于超声波发生器的多个发生器数据为 可在超声波发生器中加工。 在此,通过控制/调节模块中的间隙调节器将功率实际值Pist与超声波发生器的功率基准值Psol1进行比较,以指定超声波发生器相对于辊的位置参考值POSsol1,以调整功率基准 将超声波发生器的值Psol1和/或功率实际值Pist经由控制/调节模块中的振幅调节器与超声波发生器的功率基准值Psol1进行比较,以指定用于调节的超声波发生器的幅度参考值Asoll 的功率参考值Psoll。

    Traction Means Tensioner, Vibration Welding Device Having A Traction Means Tensioner As Well As Production Method For A Traction Means Tensioner
    33.
    发明申请
    Traction Means Tensioner, Vibration Welding Device Having A Traction Means Tensioner As Well As Production Method For A Traction Means Tensioner 有权
    牵引装置张紧器,具有牵引装置张紧器的振动焊接装置以及牵引装置张紧器的制造方法

    公开(公告)号:US20150059983A1

    公开(公告)日:2015-03-05

    申请号:US14471155

    申请日:2014-08-28

    发明人: Zbynèk Lukes

    IPC分类号: F16H19/06 B29C65/78

    摘要: With the traction means tensioner, a traction means having at least two ends is tensionable. The traction means tensioner comprises a first fastening means, a second fastening means and a coupling means. The first fastening means has a first fastening portion at which the first end of the traction means as fastenable. The second fastening means has a second fastening portion at which the second end of the traction means is fastenable. The coupling means couples the first and the second fastening means to each other so that the first and the second fastening means are movable with respect to each other and their movability is at least restricted on one side. Further, the first and the second fastening means are pre-tensionable with respect to each other via at least one spring element.

    摘要翻译: 利用牵引装置张紧器,具有至少两个端部的牵引装置可张紧。 牵引装置张紧器包括第一紧固装置,第二紧固装置和联接装置。 第一紧固装置具有第一紧固部分,牵引装置的第一端可紧固在该第一紧固部分。 第二紧固装置具有第二紧固部分,牵引装置的第二端可紧固在该第二紧固部分。 联接装置将第一和第二紧固装置彼此联接,使得第一和第二紧固装置可相对于彼此移动,并且其移动性至少在一侧被限制。 此外,第一和第二紧固装置经由至少一个弹簧元件相对于彼此预张紧。

    CONTROL METHOD OF A WELDING DEVICE, AN ELASTIC GUIDING SYSTEM, A WELDING DEVICE POSITIONING ARRANGEMENT AND A WELDING DEVICE

    公开(公告)号:US20240198461A1

    公开(公告)日:2024-06-20

    申请号:US18543778

    申请日:2023-12-18

    发明人: Michal MOTOVSKY

    IPC分类号: B23K37/02

    CPC分类号: B23K37/0258 B23K37/0247

    摘要: Control method of a welding device having an upper tool, lower tool, control unit and welding device positioning arrangement for a drive system having no or little mechanical losses. In the method, the lower and upper tools are moved relative to each other, the drive system of the positioning arrangement presses first and second components against each other and, during the actuating of the drive system, a force is measured at a static first section (and/or a position of a movable second section of the positioning arrangement relative to the static first section). The measured force and/or position is compared with a predetermined force and/or position, and actuating is stopped after the predetermined force and/or position has been reached. Subsequently, the first and second components are welded to each other, the drive system is actuated, and the lower and upper tools are moved relative to each other.

    Spring package for a vibration welding device and respective vibration welding device

    公开(公告)号:US11059124B2

    公开(公告)日:2021-07-13

    申请号:US16850247

    申请日:2020-04-16

    IPC分类号: B23K20/00 B23K20/10 B23C3/16

    摘要: A spring package for a vibration welding device includes a first longitudinal bar for a fixed connection to a frame of the vibration welding device and a second longitudinal bar parallel to and movable with respect to the first longitudinal bar as well as for connection to a tool. A first axis of the spring package extends halfway between and parallel to the longitudinal axis of the first and second longitudinal bar. A plurality of leaf springs are further provided, each connected with a first end to the first longitudinal bar and with a second end to the second longitudinal bar, wherein a second axis of the spring package extends perpendicular to the first axis as well as, in an inactive state of the spring package, parallel to the plurality of leaf springs so that a spring center line extends, in an inactive state of the spring package, parallel to the second axis in the middle of the leaf spring. Each of the plurality of leaf springs includes a first portion adjacent to the first and/or second longitudinal bar, the first portion consisting of at least one radius so that the first portion is formed concave with respect to the spring center line. The first portion transitions continuously into a second portion which is formed convex with respect to the spring center line, and the second portion transitions continuously into a center portion adjacently arranged relative to the first axis so that a thickness of the respective leaf spring is at the lowest in the center portion, especially at the first axis.