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    • 1. 发明申请
    • WARP OR YARN BEAM INSTALLATION WITH A DEVICE FOR MAINTAINING A REQUIRED FIBRE TENSION
    • 用于维护所需纤维张力的装置的波纹或纱线束安装
    • WO1987001141A1
    • 1987-02-26
    • PCT/DE1986000338
    • 1986-08-20
    • LIBA MASCHINENFABRIK GMBHDENZLER, KarlBÖHM, AlfredWIRTH, Alfred
    • LIBA MASCHINENFABRIK GMBH
    • D02H03/00
    • D02H3/00D02H5/00D02H13/04
    • Warp or yarn beam installation with a device for maintaining the required tension in a fibre beam, with rolls (7, 8; 34, 35, 36) over which the beam passes following an S-like path during continuous operation and which are entrained thereby slip-free, the rolls being located parallel to one another and assuming a driven position. In this device, when the installation is stopped, brakes (30) are actuated thereby operating on the loom beam and simultaneously one of the rolls (7, 35) is shifted radially from its driven position (51) in the direction of the yarn beam, whereby the shifting movement ends in a slipping position (37) which can be varied at will in respect of the degree of shift with the aid of an adjuster (38). The fibre guide assumes a shape which, in the region of the rolls (7, 8; 34, 35, 36) that are braked by the shift, allows the slippage of the fibre beam (5) in relation to the rolls (7, 8; 34, 35, 36), this shape being elongated compared with the S-shape.
    • 经纱或纱线束装置用于在纤维束中保持所需张力的装置,其中辊(7,8; 34,35,36)在连续操作期间沿着S形路径通过,并且由此夹带 无滑动,辊彼此平行并且假定为驱动位置。 在该装置中,当安装停止时,制动器(30)被致动,从而在织机梁上操作,并且同时一个辊(7,35)沿着纱线束的方向从其从动位置(51)径向偏移 ,由此换档运动以滑动位置(37)结束,滑动位置(37)可以借助于调节器(38)在任意位置上相对于换档程度而变化。 纤维引导件呈现一种形状,在通过移位制动的辊(7,8; 34,35,36)的区域中,纤维束(5)相对于辊(7, 8; 34,35,36),与S形相比,该形状是细长的。
    • 2. 发明申请
    • METHOD AND DEVICE FOR WARPING WITH A CONE SECTIONAL WARPER
    • 方法和设备对于圆锥SCHAR机ARCHIPELAGO
    • WO1998021388A1
    • 1998-05-22
    • PCT/EP1997006157
    • 1997-11-06
    • SUCKER-MÜLLER-HACOBA GMBH & CO.KREMER, Hubert
    • SUCKER-MÜLLER-HACOBA GMBH & CO.
    • D02H03/00
    • D02H3/02
    • Method for warping using a cone sectional warper, which winds up yarns (10) in bands on a sectional warping drum (11), in which a support (12) for a yarn guide is displaced parallely by a forward feed drive depending on the increasing thickness of the wind and on predetermined warping data regarding the sectional warping drum (11), wherein the first band is felt under contact pressure by a roll (15) during a measuring phase and the felt displacement travel is registered depending on the number of rotations of the sectional warping drum (11) and wherein the roll is drawn back after the measuring phase during subsequent winding according to a mean value obtained during the measuring phase and presses the wind lap. In order to even out the formation of the wind, the pressure of the roll on the wind lap is continuously measured and monitored during the measuring phase and/or during subsequent winding or copying and the displacement of the support is corrected in case monitoring results differ from a predetermined set value.
    • 一种用于与锥形截面整经机整经方法,在带螺纹(10)上的整经滚筒,其中一个支撑件(12),用于根据所述增加风厚度的导纱器梳的和预定的翘曲相对数据到整经滚筒(11)(11)的风通过供给驱动平行移动 其中,在由辊的测量相位的第一容积(15)的接触压力下扫描,并在所述整经滚筒的转数依赖所感测的位移路径(11)被注册,并且其中在进一步按照与测量相绕组测量阶段后的辊, 获得的平均值被取出并按压绕组。 为了均衡绕组结构移动,使得上和/或期间在测量阶段的卷绕辊的压力的进一步卷绕或复印连续地被测量监测和针对VOOR的监视结果的偏差的情况下的支撑前馈的校正来确定目标值 ,
    • 4. 发明申请
    • THREAD WARPING PROCESS AND MACHINE
    • 方法列岛线程和列岛机
    • WO1994025652A2
    • 1994-11-10
    • PCT/EP1994000826
    • 1994-03-16
    • HERGETH HOLLINGSWORTH GMBHLENZEN, JosefWISNIEWSKI, HerbertHEUERMANN, Josef
    • HERGETH HOLLINGSWORTH GMBH
    • D02H03/00
    • D02H13/12D02H3/02
    • A process is disclosed for warping threads on a warping drum (2) of a warping machine. Once a temporary feed speed for a warping reed (25) is set in synchronism with the speed of rotation of the warping drum (2), the winding thickness of the warp lap is detected several times and the feed speed is corrected depending on the number of revolutions of the warping drum (2) and the winding thickness that results therefrom. The warp lap is then completely wound at said corrected feed speed. During a starting phase, a theoretically correct feed speed for at least the first revolution of the warping drum (2) is derived from warp parameters, such as the total number of threads, the width of the warp and the yarn count. The winding thickness of the first warp section is continuously and contactlessly measured during a learning phase that follows the starting phase, or during the starting phase. For that purpose, a winding thickness measurement arrangement (55) is held at a predetermined, substantially constant distance from the surface of the warp layer that has just been wound. The winding thickness is determined from the signals produced by the winding thickness measurement arrangement (55) and the feed speed is regulated on the basis of the winding thickness on the second revolution of the warping drum (2) at the earliest from. After the learning phase is finished, the regulated feed speed is stabilised in a working phase and a constant feed speed for the rest of the warping process is determined from the latest data obtained.