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    • 3. 发明授权
    • Method for making a self-locking knot in a stator lacing machine
    • 在定子系带机上制作自锁结的方法
    • US06944932B2
    • 2005-09-20
    • US10091981
    • 2002-03-06
    • Giovanni Fortuna
    • Giovanni Fortuna
    • H02K15/00H02K15/14H02K15/16
    • H02K15/0043Y10T29/49009Y10T29/49073Y10T29/5141Y10T29/53074Y10T29/53143Y10T29/53157
    • A method and a corresponding apparatus provide for both the automatic lacing of a toroidal coil of a stator of a dynamo-electric machine, and the knotting of the end lacing terminal of the lacing cord, by using the same needle and the same thread-guide tube. The apparatus for lacing and knotting comprises an automatic control system that, accomplished the whole lacing operation on the coil, stops the rotation movement of the stator and drives the lacing needle according to a sequence of movements in order to form a plurality of linked rings closed one on the other for obtaining a closing chain on said end lacing terminal. A particular cutting system allows not generating scrap, i.e. undesired cord portions, accelerating the production process and increasing the system reliability.
    • 一种方法和相应的装置提供了一种发电机的定子的环形线圈的自动系带和通过使用相同的针和相同的导纱器打结系带线的末端系带端子 管。 用于系带和打结的装置包括自动控制系统,其实现了线圈上的整个系带操作,停止定子的旋转运动,并根据运动顺序驱动系带针,以形成多个连接的环闭合 另一个用于获得所述末端系带终端上的闭合链。 特定的切割系统允许不产生废料,即不期望的绳索部分,加速生产过程并提高系统的可靠性。
    • 7. 发明授权
    • Method for sliding a seal with a lip onto a shaft, method for uncurling the lip, and apparatus for sliding the seal thereonto
    • 用于将唇部密封件滑动到轴上的方法,用于使唇部起翘的方法,以及用于将密封件滑动到其上的装置
    • US06223424B1
    • 2001-05-01
    • US09255011
    • 1999-02-22
    • Mitsuru NakajimaMotoi Hiramatsu
    • Mitsuru NakajimaMotoi Hiramatsu
    • B23P2100
    • B23P19/084F16J15/3268Y10T29/4987Y10T29/53074Y10T29/53239Y10T29/53391Y10T29/53657Y10T29/53687
    • When a seal (10) with a lip (10A) is slid onto a shaft (14), the seal (10) is first slid from a D-cut portion (14C) to the end of a shaft body (14B) contiguous to the D-cut portion (14C), and then is slid at a first speed (at 40 mm/s) from this end to a position in which the seal (10) does not come into contact with a large-diameter portion (14A) of the shaft (14). Since there is a strong possibility that the lip (10A) of the seal (10) will have been completely curled at this time. the seal (10) is pulled out at a second speed (at 10 mm/s) on the shaft body (14B) from this position toward the D-cut portion (14C), and the seal (10) is again slid inward at a third speed (at 70 mm/s) from this position to an appropriate position. Thus, the seal (10) is slid without the lip (10A) being curled. The sliding operations at the second and third speeds may be performed a plurality of times. Another way of sliding the seal (10) without the lip (10A) being curled is to slide the seal (10) onto the shaft (14) while rotating the shaft (14) and the seal (10) relatively with each other. Additionally, if the shaft (14) and the seal (10) are rotated relatively with each other while positioning the seal (10) at the D-cut portion (14C), the lip (10A) can be uncurled.
    • 当具有唇缘(10A)的密封件(10)滑动到轴(14)上时,密封件(10)首先从D切割部分(14C)滑动到轴体(14B)的与 D切割部分(14C),然后以该端部的第一速度(40mm / s)滑动到密封件(10)不与大直径部分(14A)接触的位置 )的轴(14)。 由于密封(10)的唇部(10A)在此时将完全卷曲的可能性很大。 在该主体(14B)上以第二速度(10mm / s)从该位置向D切割部分(14C)拉出密封件(10),并且密封件(10)再次向内滑动 从该位置到适当位置的第三速度(70mm / s)。 因此,密封件(10)在唇部(10A)不卷曲的情况下滑动。 第二速度和第三速度下的滑动操作可以进行多次。 在不使唇部(10A)卷曲的情况下滑动密封件(10)的另一种方式是在将轴(14)和密封件(10)彼此相对旋转的同时将密封件(10)滑动到轴(14)上。 此外,如果在将密封件(10)定位在D切割部分(14C)的同时使轴(14)和密封件(10)相对旋转,则唇部(10A)可以被拉开。
    • 8. 发明授权
    • Method for sliding a seal with a lip onto a shaft, method for uncurling the lip, and apparatus for sliding the seal thereonto
    • 用于将唇部密封件滑动到轴上的方法,用于使唇部起翘的方法,以及用于将密封件滑动到其上的装置
    • US06212754B1
    • 2001-04-10
    • US09255012
    • 1999-02-22
    • Mitsuru NakajimaMotoi Hiramatsu
    • Mitsuru NakajimaMotoi Hiramatsu
    • B23P1102
    • B23P19/084F16J15/3268Y10T29/4987Y10T29/53074Y10T29/53239Y10T29/53391Y10T29/53657Y10T29/53687
    • When a seal (10) with a lip (10A) is slid onto a shaft (14), the seal (10) is first slid from a D-cut portion (14C) to the end of a shaft body (14B) contiguous to the D-cut portion (14C), and then is slid at a first speed (at 40 mm/s) from this end to a position in which the seal (10) does not come into contact with a large-diameter portion (14A) of the shaft (14). Since there is a strong possibility that the lip (10A) of the seal (10) will have been completely curled at this time, the seal (10) is pulled out at a second speed (at 10 mm/s) on the shaft body (14B) from this position toward the D-cut portion (14C), and the seal (10) is again slid inward at a third speed (at 70 mm/s) from this position to an appropriate position. Thus, the seal (10) is slid without the lip (10A) being curled. The sliding operations at the second and third speeds may be performed a plurality of times. Another way of sliding the seal (10) without the lip (10A) being curled is to slide the seal (10) onto the shaft (14) while rotating the shaft (14) and the seal (10) relatively with each other. Additionally, if the shaft (14) and the seal (10) are rotated relatively with each other while positioning the seal (10) at the D-cut portion (14C), the lip (10A) can be uncurled.
    • 当具有唇缘(10A)的密封件(10)滑动到轴(14)上时,密封件(10)首先从D切割部分(14C)滑动到轴体(14B)的与 D切割部分(14C),然后以该端部的第一速度(40mm / s)滑动到密封件(10)不与大直径部分(14A)接触的位置 )的轴(14)。 由于此时密封件10的唇部10A完全卷曲的可能性很大,所以密封件10以轴体的第二速度(10mm / s)拉出 (14B)从该位置朝向D切割部(14C),并且密封件(10)再次以从该位置到适当位置的第三速度(以70mm / s)向内滑动。 因此,密封件(10)在唇部(10A)不卷曲的情况下滑动。 第二速度和第三速度下的滑动操作可以进行多次。 在不使唇部(10A)卷曲的情况下滑动密封件(10)的另一种方式是在将轴(14)和密封件(10)彼此相对旋转的同时将密封件(10)滑动到轴(14)上。 此外,如果在将密封件(10)定位在D切割部分(14C)的同时使轴(14)和密封件(10)相对旋转,则唇部(10A)可以被拉开。
    • 10. 发明授权
    • Automatic tire valve insertion apparatus for tubeless tire
    • 无内胎轮胎自动轮胎插入装置
    • US5749141A
    • 1998-05-12
    • US580329
    • 1995-12-28
    • Shinji Matsumoto
    • Shinji Matsumoto
    • B23P19/02B23P19/04B60C25/18B23P19/00
    • B23P19/02B23P19/04B60C25/18Y10T29/49769Y10T29/49771Y10T29/53061Y10T29/53074Y10T29/53591
    • Provided is an automatic tire valve insertion apparatus for tubeless tire, in which a tire valve can be smoothly inserted into a valve hole of a wheel without entailing damage to the tire valve, wheel, push rod, etc. even though the position of the valve hole varies in the radial and width directions of the wheel. In the tire valve insertion apparatus, the valve hole of the wheel being rotated is detected, the wheel is stopped at a predetermined position by braking, and the tire valve is inserted into the valve hole by means of the push rod of a valve press-fitting device. A light emitting element for emitting a detection light to be transmitted through the valve hole and a light sensing element for receiving the detection light are arranged facing each other across the rotating wheel. The light emitting and sensing ranges of these elements are elongated in a direction perpendicular to a circular path of movement of the valve hole.
    • 本发明提供一种无内胎轮胎的自动轮胎气门插入装置,其中轮胎气门能平滑地插入车轮的阀孔中,而不会对轮胎气门,车轮,推杆等造成损害,即使阀的位置 孔在轮的径向和宽度方向上变化。 在轮胎插入装置中,检测到转动的车轮的阀孔,通过制动将车轮停在预定位置,并且利用压力传感器的推杆将轮胎阀插入到阀孔中, 装配装置。 用于发射通过阀孔透射的检测光的发光元件和用于接收检测光的光感测元件跨越旋转轮彼此面对。 这些元件的发光和感测范围在垂直于阀孔的圆周运动路径的方向上是细长的。