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    • 1. 发明授权
    • Method of grinding the teeth of spiral-toothed bevel gear wheels
    • 螺旋齿锥齿轮磨齿的方法
    • US6050883A
    • 2000-04-18
    • US945716
    • 1997-11-05
    • Dieter Wiener
    • Dieter Wiener
    • B23F9/02B24B1/00
    • B23F9/025
    • Disclosed is a method of grinding bevel gear teeth in an intermittent indexing process using a single grinding wheel provided with different bevel angles (.alpha.) to produce the desired grinding wheel radii (R): one flank is machined during grinding in downward generation as far as a first turning point, another flank is produced in upward generation as far as a second turning point, and machine settings are so adjusted in the turning points as to ensure a correct pressure angle and correct flank topography during the generating process, irrespective of the different bevel angles (.alpha.). The process combines the advantages of the known completing process, by which both flanks can be ground at the same time at the cost of imposing a particular wheel body geometry with conical teeth, with those of the known two-track process for grinding both flanks with a double grinding head, by which various additional correction factors can be introduced to optimize the flank shape for convex and concave flanks.
    • PCT No.PCT / EP96 / 02020 Sec。 371日期:1997年11月5日 102(e)日期1997年11月5日PCT提交1997年5月10日PCT公布。 公开号WO96 / 35541 日期1996年11月14日公开是使用具有不同斜角(α)的单个砂轮在间歇分度过程中研磨锥齿轮齿的方法,以产生所需的砂轮半径(R):在磨削过程中加工一个侧面 向下生成直到第一转折点,另一个侧面产生向上生成直到第二转折点,并且机器设置在转弯点被如此调节以确保正确的压力角并且在生成过程期间校正侧面形貌 ,而不考虑不同的斜角(α)。 该方法结合了已知完成过程的优点,通过该优点可以同时磨削两个侧面,代价是将具有锥形齿​​的特定轮体几何形状与已知的双轨道工艺相结合,用于磨削两侧面 双磨头,可以引入各种附加的校正因子以优化凸面和凹面的侧面形状。
    • 2. 发明授权
    • Method for grinding pregeared bevel gears
    • 磨削预齿锥齿轮的方法
    • US4765095A
    • 1988-08-23
    • US920770
    • 1986-10-20
    • Dieter Wiener
    • Dieter Wiener
    • B23F9/02B23F17/00B23F23/12B24B19/00
    • B23F17/005B23F23/1225B23F9/025
    • A method and device for grinding pregeared bevel gears in which the grinding of both flanks of the tooth gap is performed in a single setting and by a single tool in a hobbing process. The grinding machine is provided with a truing device which is rigidly connected to a stationary part of the machine and in which a truing tool is pivotable relative to a grinding wheel to adjust the engagement of the grinding wheel and gear to be treated. A radial movement is imparted to the grinding tool and a compensating movement in a direction perpendicular to that of the radial movement is also imparted to the grinding tool, whereby the grinding of pregeared bevel gears having any profile is possible.
    • 一种用于研磨预齿锥齿轮的方法和装置,其中在单个设置中执行齿间隙的两个侧面的磨削以及在滚齿过程中通过单个工具。 研磨机设置有修整装置,其刚性地连接到机器的静止部分,并且其中修整工具相对于砂轮可枢转,以调节待处理的砂轮和齿轮的接合。 径向移动被赋予到研磨工具,并且在垂直于径向运动的方向上的补偿运动也被赋予到研磨工具,由此可以磨削具有任何轮廓的预加工的锥齿轮。
    • 3. 发明授权
    • Method of and means for grinding pairs of gear wheels as spiral or
curved toothed bevel gear wheels
    • 用于将成对的齿轮作为螺旋或弯曲的齿形伞齿轮研磨的方法和装置
    • US4378660A
    • 1983-04-05
    • US205252
    • 1980-11-10
    • Dieter Wiener
    • Dieter Wiener
    • B23F9/02B23F17/00B23F19/00B23F21/02B23F23/12B24B19/00
    • B23F21/023B23F17/001B23F19/005B23F23/1268B23F9/025Y10T409/108268
    • A method and apparatus for grinding pairs of gear wheels such as spiral or curved tooth bevel gear wheels whereby a first wheel is ground with a male cup-type grinding tool and a second, counter wheel is ground with a female cup-type grinding wheel with an additional eccentric cyclic motion being applied to one of said wheels. In accordance with a preferred feature of the invention, the grinding tools utilized are not exactly complementarily congruent, the female tool differing by an amount that is equal to the amount of the additional eccentric cyclic motion that is effective in the direction of the tooth normal. The additional eccentric motion is preferably elliptical and in accordance with an apparatus aspect of the invention a drive is provided for achieving such elliptical supplementary motion. This drive is preferably characterized by a rod of specific length that is swingably borne and rotatably driveable at one end, about a rod axis that is stationary on the device (corresponding to the grinding axis when there is no supplementary motion), while at the other end of the rod there is a pivot arm of specific pivot length that is swingably and rotatably borne about a pivot axis (that consequently moves with reference to the machine frame), the grinding axis being guided by the free end of the pivot arm.
    • 一种用于研磨成对的齿轮的方法和装置,例如螺旋或弯曲的齿锥齿轮,由此第一轮用阳杯式研磨工具研磨,而第二轮的计数轮用雌杯式砂轮研磨, 附加的偏心循环运动被施加到所述车轮之一。 根据本发明的优选特征,所使用的研磨工具不是完全相互一致的,所述阴工具的数量等于在牙齿法线方向上有效的附加的偏心循环运动的量。 附加的偏心运动优选地是椭圆形的,并且根据本发明的装置方面,提供用于实现这种椭圆形补充运动的驱动器。 该驱动器的特征在于具有特定长度的杆,其一端可旋转地支承并可旋转地驱动,围绕固定在装置上的杆轴线(当不存在辅助运动时对应于磨削轴线),而在另一端 杆的端部具有特定枢转长度的枢转臂,其可绕枢转轴线(从而相对于机架移动)可摆动和可旋转地承载,磨削轴线由枢转臂的自由端引导。
    • 10. 发明授权
    • Method of finishing the hardened teeth of a bevel gear wheel
    • 完成锥齿轮硬化齿的方法
    • US6033287A
    • 2000-03-07
    • US945715
    • 1997-11-05
    • Dieter WienerGerhard Russeler
    • Dieter WienerGerhard Russeler
    • B23F9/02B23F17/00B23F19/05B24B49/00
    • B23F17/006B23F19/05B23F9/025
    • In a process for finishing the hardened teeth of a bevel gear wheel by grinding after hardening, the ground teeth are fine- honed, this procedure being carried out in the same chucking as the preceding grinding. A machine especially suitable for this procedure has a chucking device for the bevel gear wheel (12) and a double machining head for mounting two machining tools, namely a grinding wheel (26) and a honing wheel (28). The bevel gear wheel (12) to be machined is preferably a pinion, and accordingly the honing wheel (28) is a bevel gear-type machining tool. Pairing the ground and honed pinion (12) with a bevel gear which has been only ground results in a good noise standard, and the lapping required for hypoid gears manufactured in the traditional way, with its associated drawbacks, is unnecessary.
    • PCT No.PCT / EP96 / 02019 Sec。 371日期:1997年11月5日 102(e)日期1997年11月5日PCT提交1996年5月10日PCT公布。 公开号WO96 / 35543 日期1996年11月14日在硬化后通过研磨精加工锥齿轮的硬化牙齿的过程中,磨齿被精细化,该过程在与前述研磨相同的夹紧中进行。 尤其适用于该方法的机器具有用于锥齿轮(12)的夹紧装置和用于安装两个加工工具的双重加工头,即砂轮(26)和珩磨轮(28)。 要加工的锥齿轮(12)优选为小齿轮,因此珩磨轮(28)是锥齿轮型加工工具。 将地面和珩磨小齿轮(12)与仅被磨碎的锥齿轮配对导致良好的噪声标准,并且不需要以传统方式制造的准双曲面齿轮所需的研磨及其相关缺点。