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    • 12. 发明授权
    • Gripper for tufting machine
    • 簇绒机
    • US07562632B2
    • 2009-07-21
    • US11907033
    • 2007-10-09
    • Bernd HillenbrandTimo KaasAndrea MauteKlaus Kirchmair
    • Bernd HillenbrandTimo KaasAndrea MauteKlaus Kirchmair
    • D05C15/24D05C15/00
    • D05C15/22D05C15/36
    • A gripper (3) for tufting machines comprising a slider (18) that is supported in a gripper body to be movable in longitudinal direction and that is arranged in a slider receiving space (17) which, preferably, is configured as a slit. The slit extends from the lower narrow side (12) of the gripper body (4) into the gripper body. The slit is limited by two thin walls (19, 20) or, alternatively, by only one thin wall (20). A cutting edge insert receiving space 39 is provided above the slider receiving space (17), with the receiving space (39) extending from the flat side (9) end being recessed in the gripper body (4). Between the cutting edge insert receiving space (39) and the slider receiving space (17), a strip (40) is provided that preferably extends in longitudinal direction of the gripper body (4) and separates the receiving spaces (39, 17) from each other.
    • 一种用于簇绒机的夹持器(3),包括:滑块(18),其被支撑在夹持器主体中以在纵向方向上可移动,并且布置在优选地被配置为狭缝的滑块容纳空间(17)中。 狭缝从夹持器主体(4)的下窄侧(12)延伸到夹持器主体中。 狭缝被两个薄壁(19,20)限制,或者仅由一个薄壁(20)限制。 在滑块接收空间17的上方设置切削刃插入件容纳空间39,从平坦侧(9)端部延伸的收纳空间39凹入到夹持器本体4中。 在切削刃插入件接收空间(39)和滑块容纳空间(17)之间设置有优选地在夹持器主体(4)的纵向方向上延伸的条带(40),并将接收空间(39,17)从 彼此。
    • 13. 发明申请
    • Gripper for tufting machine
    • 簇绒机
    • US20080083359A1
    • 2008-04-10
    • US11907033
    • 2007-10-09
    • Bernd HillenbrandTimo KaasAndrea MauteKlaus Kirchmair
    • Bernd HillenbrandTimo KaasAndrea MauteKlaus Kirchmair
    • D05C15/22
    • D05C15/22D05C15/36
    • The new gripper design provides a gripper (3) for tufting machines, said gripper comprising a slider (18) that is supported so as to be movable in longitudinal direction. This slider is arranged in a slider receiving space (17) which, preferably, is configured as a slit. The slit extends from the lower narrow side (12) of the gripper body (4) into said gripper body. Said slit is limited by two thin walls (19, 20) or, alternatively, by only one thin wall (20). A cutting edge insert receiving space 39 is provided above the slider receiving space (17), said receiving space (39) extending from the flat side (9) and being recessed in the gripper body (4). Between the cutting edge insert receiving space (39) and the slider receiving space (17), a strip (40) is provided that preferably extends in longitudinal direction of the gripper body (4) and separates the receiving spaces (39, 17) from each other. This design is suitable for the creation of very narrow grippers (3) that permit a division of less than 1/10 Inch.
    • 新的夹持器设计提供了用于簇绒机器的夹持器(3),所述夹持器包括被支撑以可沿纵向移动的滑块(18)。 该滑块布置在优选地被配置为狭缝的滑块接收空间(17)中。 狭缝从夹持器主体(4)的下窄侧(12)延伸到所述夹持器主体中。 所述狭缝由两个薄壁(19,20)限制,或者仅由一个薄壁(20)限制。 切削刃插入物容纳空间39设置在滑块容纳空间17的上方,所述容纳空间39从平坦侧面9延伸并且被凹进到夹持器本体4中。 在切削刃插入件接收空间(39)和滑块容纳空间(17)之间设置有优选地在夹持器主体(4)的纵向方向上延伸的条带(40),并将接收空间(39,17)从 彼此。 该设计适用于创建非常狭窄的夹具(3),允许分割小于1/10英寸。
    • 16. 发明授权
    • Compound needle with flanged slider channel
    • 复合针带法兰滑块通道
    • US07555920B2
    • 2009-07-07
    • US12213169
    • 2008-06-16
    • Frank WeihingKlaus Kirchmair
    • Frank WeihingKlaus Kirchmair
    • D04B35/06
    • D04B35/06
    • A compound needle (1) having a slider channel (5) that is delimited by two lateral walls (8, 9). At least one of the lateral walls (8, 9) has, in its upper edge region (11, 12), a reduced thickness (d1). The edge (11) of the lateral wall (8) is bent, respectively, toward the other lateral wall (9). Due to the reduced thickness (d1), a narrow bending radius can be achieved, as a result of which the needle channel (5) can be better approximated—in cross-section—to a rectangular form than was possible until now. This allows the slider (4) to better utilize the clearance height of the slider channel (5).
    • 具有由两个侧壁(8,9)限定的滑块通道(5)的复合针(1)。 至少一个侧壁(8,9)在其上边缘区域(11,12)中具有减小的厚度(d1)。 侧壁(8)的边缘(11)分别弯曲到另一个侧壁(9)。 由于减小的厚度(d1),可以实现窄的弯曲半径,由此可以将针通道(5)的横截面更好地近似为直到现在为止的矩形形状。 这允许滑块(4)更好地利用滑块通道(5)的间隙高度。