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Armature winding machine for dynamoelectric machine
Armature winding machine for dynamoelectric machine
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机译:发电机用电枢绕线机
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978,620. Winding armatures. JOSEPH LUCAS (INDUSTRIES) Ltd. June 19, 1963, No. 24434/63. Heading B3A. A method of winding armatures on a machine comprising a plurality of radial wire guides, a reciprocable and angularly movable headstock spindle, means at one end of the headstock spindle for gripping an armature spindle and means at the said end of the headstock spindle for gripping wires located in the guides, comprises the steps of gripping the wires relative to the headstock spindle, winding a number of turns less than the full number of turns on to the armature, inserting the wire portions adjacent the gripped ends into the commutator slots and at the same time severing the gripped ends of the wire, winding the remainder of the turns on to the armature, regripping the wire relative to the headstock spindle and at the same time inserting the free ends of the winding into the commutator slots. A machine for carrying out the method comprises a bed a, and a two-part headstock comprising a lower part c slidable on the bed and an upper part b slidable on the lower part and actuated by a fluid cylinder g. The lower part is reciprocated by a cam d. In the headstock is an angularly movable hollow spindle 60 which is fixed axially and at one end is rotatably supported in a flanged member 63, itself angularly movable relative to the headstock. Journalled in the spindle is a shaft 61 which is angularly moved by a rack q actuated by a cam s. External teeth on the member 63 engage a rack 64 actuated by a fluid cylinder, and dog-teeth in the endface engage with complementary teeth formed on a part 66 non- rotatably mounted on the spindle 60. On the opposite end of the part 66 are further dog teeth adapted to engage complementary teeth 67 on a part 68 secured to the shaft 61. The part 66 is moved axially by a fluid cylinder 69. At the other end of the spindle is a gripper 71 including a collet 79a, an inner part 72 and an outer part 73 splined to the inner part. The inner part 72 has a flange which has as many slots 84a, defining tongues 85, as there are commutator segments, and the adjacent face of the outer part 73 is also slotted to define tongues 87. The spline 74 positions the parts so that the tongues 85 and 87 are aligned. The wire feed mechanism comprises a fixed body 88, a flanged ring 89 and an actuating ring 90, mounted in bearings 91 and having peripheral teeth engaged by a fluid-operated rack 92. Also formed on the ring 91 are teeth which engage with a plurality of pinions 93 pivotally mounted on the flanged ring 89 and driving angularly movable guide tubes 94 disposed in the flanged ring 89. Movement of the rack 92 rotates the guide tubes through 90 degrees and each tube has two holes 95 through which the wires pass. Adjacent each tube 94 are two pairs of cutters radially movable in the flanged ring 89 and disposed so that when the holes 95 are circumferentially aligned a pair of cutters 98a and 98b is longitudinally aligned with each orifice. The cutters are mounted on slides 99 operated by the pistons 100 of fluid cylinders and co-operate with cutting edges within the slots 84a in the part 72. Cycle of operation.-The operating cycle is started manually and thereafter controlled by a camshaft. An armature is loaded into the machine and the spindle thereof is gripped by the collet 79a and the machine started. The armature is drawn away from the wire feed mechanism so that the wires from the guide tubes are hooked round the tongues 85 and laid in the slots 84a. The armature is then rotated through 90 degrees, and the guide tubes 94 are rotated through 90 degrees so that the holes 95 are longitudinally aligned. Two turns of wire are laid in the armature slots and then the spindle 60 is locked to the member 63 by operation of the cylinder 69 thereby aligning slots in the commutator with the cutters 98b which then operate to sever the wires and force them into the commutator slots. The cutters are withdrawn, the spindle 60 re-engaged with the shaft 61 and the full number of turns wound on the armature. At the end of the winding the armature is rotated 90 degrees to its original angular position, the spindle is locked to the member 63 and is moved angularly in the reverse direction an amount equal to the pitch angle of the commutator segments. The guide tubes 94 are rotated through 90 degrees and by operation of the cylinder g the wires from the guide tubes are drawn through the slots 84a, and by operation of the rack 64, are hooked around the tongues 85 and then gripped between the inner and outer parts 72 and 73 of the gripper. The cutters 98a are then operated to sever the wires and insert them into the commutator slots. The cutters 98a are of such a width that a portion of the walls of the slots will be peened over to retain the wires. Specification 656,594 is referred to.
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机译:978,620。绕组电枢。 JOSEPH LUCAS(INDUSTRIES)Ltd.1963年6月19日,编号24434/63。标题B3A。一种将电枢缠绕在机器上的方法,该机器包括:多个径向线引导件,可往复运动且可成角度地移动的主轴箱主轴;在主轴箱主轴的一端处用于夹持电枢主轴的装置;以及在主轴箱主轴的所述端部处用于夹持电线的装置。位于导向器中的步骤包括以下步骤:相对于主轴箱主轴夹持电线;将小于总匝数的匝数缠绕到电枢上;将与夹持端部相邻的电线部分插入换向器槽中并位于同时切断导线的夹紧端,将其余匝缠绕到电枢上,相对于主轴箱主轴重新夹紧导线,同时将绕组的自由端插入换向器槽中。用于执行该方法的机器包括床a和两部分式床头柜,其包括可在床上滑动的下部c和可在下部滑动并由液压缸g致动的上部b。下部由凸轮d往复运动。在主轴箱中有一个可轴向移动的有角度的空心主轴60,该空心主轴在轴向上固定,并且一端可旋转地支撑在一个法兰构件63中,该法兰构件63本身可以相对于主轴箱成角度地运动。轴61在主轴上轴颈,该轴61通过由凸轮s致动的齿条q成角度地运动。构件63上的外齿接合由液压缸致动的齿条64,并且端面上的狗齿与形成在不可旋转地安装在心轴60上的部件66上的互补齿接合。在部件66的相对端是另外的卡齿适于与固定在轴61上的零件68上的互补齿67啮合。零件66通过液压缸69轴向移动。在主轴的另一端是抓爪71,其包括夹头79a,内部72和外部花键连接到内部。内部部分72具有凸缘,该凸缘具有与换向器段一样多的,限定舌片85的狭槽84a,并且外部部分73的相邻面也开槽以限定舌片87。花键74定位这些部分,使得舌片85和87对齐。送丝机构包括固定体88,凸缘环89和致动环90,其安装在轴承91中并且具有通过流体操作的齿条92接合的外围齿。在齿环91上还形成有与多个齿接合的齿。小齿轮93枢转地安装在法兰环89上,并驱动设置在法兰环89上的可角度移动的导管94。齿条92的运动使导管旋转90度,并且每根导管具有两个孔95,导线穿过该孔95。在每个管子94附近有两对切刀,它们可在法兰环89中径向移动,并设置成使得当孔95在圆周方向上对准时,一对切刀98a和98b与每个孔口在纵向上对准。切割器被安装在由液压缸的活塞100操作的滑动件99上,并且与部件72中的狭槽84a内的切削刃配合。操作循环-手动地开始操作循环,然后由凸轮轴控制。电枢被加载到机器中,并且其主轴被夹头79a夹紧并且机器被启动。将电枢从焊丝进给机构上拉开,以使来自导管的焊丝钩在舌片85周围,并放置在槽84a中。然后将电枢旋转90度,并将导管94旋转90度,以使孔95纵向对齐。将两匝电线放在电枢槽中,然后通过气缸69的操作将主轴60锁定在部件63上,从而使换向器中的槽与切刀98b对准,然后切刀98b切断电线并迫使它们进入换向器插槽。退刀,主轴60重新与轴61啮合,整匝数缠绕在电枢上。在绕组结束时,电枢旋转90度到其原始角度位置,心轴锁定在部件63上,并在反向方向上成角度地移动等于换向器扇形节距角的量。引导管94旋转90度,并且通过缸g的操作,来自引导管的电线被拉出穿过狭槽84a,并且通过齿条64的操作被钩挂在舌片85周围,然后被夹持在内部和内部之间。抓爪的外部72和73。然后操作切割器98a以切断导线并将它们插入换向器槽中。切割器98a的宽度使得槽口的壁的一部分将被硬化以保持电线。参考规范656,594。
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