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    • 71. 发明申请
    • SHEARER LOADER FOR UNDERGROUND MINING WITH BEARING UNITS WITHIN MAINFRAME
    • 用于在MAINFRAME内的轴承单元进行地下采矿的剪切装载机
    • WO2015117729A1
    • 2015-08-13
    • PCT/EP2015/000121
    • 2015-01-22
    • CATERPILLAR GLOBAL MINING EUROPE GMBH
    • THOMSON, John
    • E21C27/02E21C31/12
    • E21C27/02E21C29/02E21C35/12
    • The present disclosure refers to a shearer loader (10) for underground mining. A shearer loader (10) may comprise a mainframe (15) extending in a longitudinal axis and having a first end portion (30) and a second end portion (35) opposite the first end portion (30). A ranging arm (20, 25) may be swivel-mounted at least at one of the first and second end portions (30, 35) of the mainframe (15), the ranging arm (20, 25) being provided with at least one cutting drum (40, 45) pivot-mounted at the ranging arm (20, 25). At least one shearer loader component (100) may be configured to be mounted to the mainframe (15) in a removable manner, but fixedly mounted to the mainframe (15) during operation of the shearer loader (10). At least one bearing unit (1 15) might be arranged at the mainframe (15) at such a position that the at least one bearing unit (115) supports the at least one shearer loader component (100) when it is moved with respect to the mainframe (15) during assembly or disassembly.
    • 本公开涉及用于地下采矿的采煤机(10)。 采煤机装载机(10)可以包括在纵向轴线上延伸并具有与第一端部(30)相对的第一端部(30)和第二端部(35)的主框架(15)。 测距臂(20,25)可以至少在主机(15)的第一和第二端部(30,35)中的一个处旋转安装,测距臂(20,25)设置有至少一个 切割滚筒(40,45)枢转安装在测距臂(20,25)处。 至少一个采煤机装载机部件(100)可构造成以可移除方式安装到主机(15),但是在采煤机装载机(10)的操作期间固定地安装到主机(15)。 至少一个轴承单元(115)可以布置在主框架(15)处,使得当至少一个轴承单元(115)相对于 组装或拆卸时的主机(15)。
    • 75. 发明公开
    • ROTATING ELECTRIC MACHINE ROTOR
    • EP4443707A1
    • 2024-10-09
    • EP23780455.4
    • 2023-03-28
    • AISIN CORPORATION
    • IIJIMA AmiIDEUE ShigekiKIDO YushiTSUDA Teppei
    • H02K1/276
    • H02K1/276
    • A rotor for a rotating electrical machine is disclosed that includes: a rotor core having a radially outer first magnet hole and a radially inner second magnet hole; a first permanent magnet in the first magnet hole; and a second permanent magnet in the second magnet hole. The rotor core includes a first portion located radially outward of the first magnet hole, a second portion located between the first magnet hole and the second magnet hole, a third portion located radially inward of the second magnet hole, and bridge portions connecting the third portion and the second portion. A separation distance of the second permanent magnet from the first permanent magnet is smaller at a position closer to the bridge portion in a circumferential direction than at a position farther from the bridge portion in the circumferential direction along a side of the second permanent magnet that faces the first permanent magnet, as viewed in an axial direction. At least one of the plurality of bridge portions extends radially inward beyond a radially inner edge of a circumferential end of the second permanent magnet facing the at least one bridge portion in the circumferential direction.