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    • 71. 发明申请
    • METHOD OF WELDING COIL END OF STATOR OF ELECTRIC ROTATING MACHINE
    • 电动旋转机定子线圈焊接方法
    • US20110259863A1
    • 2011-10-27
    • US13091430
    • 2011-04-21
    • Ryosuke UTAKAAtsuo Ishizuka
    • Ryosuke UTAKAAtsuo Ishizuka
    • B23K9/00
    • B23K9/0026B23K9/167B23K2101/38
    • A method of welding a plurality of conductors to form a winding extending through an annular stator core. The conductors are inserted into slots formed in the stator core to have coil ends extending outside an end surface of the stator core. A plurality of pairs of the coil ends are arranged in diagonal arrays extending diagonally with respect to a radial direction of the stator core. The method inserts a first electrode into a gap between adjacent two of the diagonal arrays and then brings a second electrode close to one of the adjacent two of the diagonal arrays to arc-weld, the pairs of the coil ends. This welding method enables the welding of the coil ends arrayed in the above layout efficiently while keeping the electrical insulation between the pairs of the coil ends.
    • 焊接多个导体以形成延伸穿过环形定子芯的绕组的方法。 将导体插入到形成在定子芯中的槽中,以使线圈端部延伸到定子芯的端表面之外。 多对线圈端部以相对于定子芯的径向方向对角地延伸的对角阵列布置。 该方法将第一电极插入相邻两个对角线阵列之间的间隙中,然后使第二电极靠近相邻的两个对角线阵列中的一个以弧焊,线圈端对。 这种焊接方法能够在保持线圈端对之间的电绝缘的同时有效地焊接以上述布局排列的线圈端部。
    • 72. 发明申请
    • Method of Welding Circuit Conductor and Terminal of Control Apparatus
    • 焊接电路导体和控制装置端子的方法
    • US20110062122A1
    • 2011-03-17
    • US12880779
    • 2010-09-13
    • Masao FUJIMOTO
    • Masao FUJIMOTO
    • B23K9/16
    • B23K9/167B23K37/0443B23K2101/38
    • A method of welding a circuit conductor and one of a plurality of terminals of an electronic component of a control apparatus by melting and joining by a welding arc from a first electrode of a micromini TIG welder, the method includes: using the electronic component including the terminals which are apart from each other; and arc-welding while only the one of the plurality of the terminals of the electronic component of the control apparatus which is to be welded and the circuit conductor to be welded are sandwiched by an earth clamp jig serving as a second electrode so that the one of the plurality of the terminals of the electronic component of the control apparatus which is to be welded and the circuit conductor to be welded are grounded.
    • 一种焊接电路导体和控制装置的电子部件的多个端子中的一个端子的方法,其特征在于,所述方法包括:使用包括所述电子部件的所述电子部件的电子部件,所述电子部件通过焊接电弧从微型TIG焊机的第一电极熔化并接合, 彼此分开的端子; 并且电弧焊接,而只有待焊接的控制装置的电子部件的多个端子中的一个端子和待焊接的电路导体被用作第二电极的接地夹具夹持,使得一个 被焊接的控制装置的电子部件的多个端子和待焊接的电路导体接地。
    • 77. 发明申请
    • Insertion element, gas lens with such an insertion element, and welding torch with such a gas lens
    • 插入元件,具有这种插入元件的气体透镜,以及具有这种气体透镜的焊枪
    • US20090277878A1
    • 2009-11-12
    • US12311480
    • 2007-08-22
    • Jochen FesslMelanie GebesmairJosef Leeb
    • Jochen FesslMelanie GebesmairJosef Leeb
    • B23K9/29
    • B23K9/167B23K9/24B23K9/285B23K9/29B23K9/291B23K9/296
    • The invention relates to an insertion element (17) for a gas lens (4) of a WIG/TIG welding torch (1), to a gas lens (4) for a WIG/TIG welding torch (1), and to a WIG/TIG welding torch (1). To improve gas distribution across the cross-section of the gas lens (4) and/or the gas nozzle (9), and to provide for as small a size and as low a weight of the components as possible, an insertion element (17) with a bore (23) in the center through which an electrode (12) is to be guided is arranged, with fan-shaped flow elements (24) being positioned around the bore (23) and twisted relative to the plane of the bore (23) so as to provide for radial deviation of a gas (7, 27) flowing therethrough. The gas lens (4) consists of a base body (10) having a gas-distribution channel (15) with at least one gas-lens filter (20), with an above-described insertion element (17) being arranged in the gas-distribution channel (15), and with a gas-lens filter (20), seen in the out-flow direction of the gas, being arranged downstream of the insertion element (17).
    • 本发明涉及一种用于WIG / TIG焊枪(1)的气体透镜(4)的插入元件(17),用于WIG / TIG焊枪(1)的气体透镜(4)和WIG / TIG焊枪(1)。 为了改善在气体透镜(4)和/或气体喷嘴(9)的横截面上的气体分布,并且为了提供尽可能小的尺寸和尽可能小的部件的重量,插入元件(17 ),其中布置有用于引导电极(12)的中心处的孔(23),其中扇形流动元件(24)围绕孔(23)定位并相对于孔的平面扭曲 (23),以便提供流过其中的气体(7,27)的径向偏差。 气体透镜(4)由具有至少一个气体透镜过滤器(20)的气体分配通道(15)的基体(10)组成,上述插入元件(17)布置在气体 分布通道(15)和在气体的流出方向上看到的气体透镜滤光器(20)布置在插入元件(17)的下游。