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    • 1. 发明授权
    • Machine knitting needle
    • 机织针
    • US07469562B2
    • 2008-12-30
    • US11979786
    • 2007-11-08
    • Albert BauschJorg Sauter
    • Albert BauschJorg Sauter
    • D04B35/04
    • D04B35/04
    • In order to reduce the impact speed of a latch (4) of a needle (1) in back position by reducing the acceleration effect originating from a half stitch (19), the upward jaw slope (8) of the needle (1) is subdivided into different regions. A first section (12) ascends at a relatively large acute angle γ of, for example, up to 20°, preferably 16°. Just after the half stitch (19) has contacted the inside (14) of the latch (4), said half stitch arrives on a second section (16) of the upward jaw slope (8). The second section (16) is a straight section which ascends at a smaller acute angle β of, for example, only 14° or less. Consequently, an acceleration effect from the half stitch (19) on the latch (4) is avoided over a wide pivot range of said latch. Preferably, this acceleration-free pivot range is at least 90°, preferably greater than 110°.
    • 为了通过减少源自半针(19)的加速度效应来降低针(1)的锁(4)的冲击速度,针(1)的上颚斜面(8)为 细分为不同地区。 第一部分(12)以相对较大的锐角γ上升,例如高达20°,优选16°。 在半针(19)接触到闩锁(4)的内部(14)之后,所述半针到达上颚斜坡(8)的第二部分(16)。 第二部分(16)是以例如仅为14°或更小的较小锐角β上升的直线部分。 因此,在所述闩锁的宽的枢轴范围内避免了来自半针(19)对闩锁(4)的加速效应。 优选地,该无加速度枢转范围为至少90°,优选大于110°。
    • 3. 发明申请
    • Machine knitting needle
    • 机织针
    • US20080141730A1
    • 2008-06-19
    • US11979786
    • 2007-11-08
    • Albert BauschJorg Sauter
    • Albert BauschJorg Sauter
    • D04B35/04
    • D04B35/04
    • In order to reduce the impact speed of a latch (4) of a needle (1) in back position by reducing the acceleration effect originating from a half stitch (19), the upward jaw slope (8) of the needle (1) is subdivided into different regions. A first section (12) ascends at a relatively large acute angle γ of, for example, up to 20°, preferably 16°. Just after the half stitch (19) has contacted the inside (14) of the latch (4), said half stitch arrives on a second section (16) of the upward jaw slope (8). The second section (16) is a straight section which ascends at a smaller acute angle β of, for example, only 14° or less. Consequently, an acceleration effect from the half stitch (19) on the latch (4) is avoided over a wide pivot range of said latch. Preferably, this acceleration-free pivot range is at least 90°, preferably greater than 110°.
    • 为了通过减少源自半针(19)的加速度效应来降低针(1)的锁(4)的冲击速度,针(1)的上颚斜面(8)为 细分为不同地区。 第一部分(12)以相对较大的锐角γ上升,例如高达20°,优选16°。 在半针(19)接触到闩锁(4)的内部(14)之后,所述半针到达上颚斜坡(8)的第二部分(16)。 第二部分(16)是以例如仅为14°或更小的较小锐角β上升的直线部分。 因此,在所述闩锁的宽的枢轴范围内避免了来自半针(19)对闩锁(4)的加速效应。 优选地,该无加速度枢转范围为至少90°,优选大于110°。
    • 4. 发明授权
    • Knitting system with flattened guide channels
    • 针织系统具有平坦的导向通道
    • US08438877B2
    • 2013-05-14
    • US13170831
    • 2011-06-28
    • Hans-Jurgen HaugEric JurgensJohannes BruskeJorg SauterMartin WornleFrank DurstEckard Fehrenbacher
    • Hans-Jurgen HaugEric JurgensJohannes BruskeJorg SauterMartin WornleFrank DurstEckard Fehrenbacher
    • D05B15/10
    • D04B15/14D04B35/02D04B35/04
    • A knitting device (10) comprising a needle bed (12) and knitting tools (16), wherein the needle bed (12) is designed so as to be without joints and seams in view of the configuration of its channel walls (18, 19) as well as perpendicularly to the floor (23) of the channel through the base body (20) of the needle bed (12). The channel depth of the individual guide channels (13, 14, 15) is preferably less than three times the channel width. Consequently, in particular in the case of extremely fine needle divisions, the resultant channel walls (18, 19) are robust and stable and can be subjected to a hardening or coating treatment. The reduced overall weight, the smaller friction surfaces, and the sturdier design of the knitting device enable the operation at greater knitting speeds and with greater rotational accelerations, in particular in reciprocating mode, and an overall savings of lubricants and energy.
    • 一种针织装置(10),包括针床(12)和针织工具(16),其中针床(12)被设计成在其通道壁(18,19)的形状方面没有接缝​​和接缝 )以及垂直于通道的地板(23)穿过针床(12)的基体(20)。 各个引导通道(13,14,15)的通道深度优选小于通道宽度的三倍。 因此,特别是在极细针分割的情况下,所得通道壁(18,19)坚固且稳定,并且可进行硬化或涂层处理。 减小的总重量,较小的摩擦表面以及针织装置的更坚固的设计使得能够以更大的编织速度和更大的旋转加速度,特别是往复运动模式下的操作,以及润滑剂和能量的总体节省。