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    • 1. 发明申请
    • MAGNETIC COIL SYSTEM COMPRISING A COIL SYSTEM AND A POSITIONING SYSTEM
    • 有导航系统和螺旋跟踪系统电磁线圈系统
    • WO2008098856A3
    • 2008-11-20
    • PCT/EP2008051376
    • 2008-02-05
    • SIEMENS AGREINSCHKE JOHANNESSCHMIDT WOLFGANGSCHLEICHER KLAUS
    • REINSCHKE JOHANNESSCHMIDT WOLFGANGSCHLEICHER KLAUS
    • A61B19/00A61B5/07G01R33/385H02K3/24H02K41/00
    • H02K41/00A61B1/00158A61B1/041A61B5/062A61B34/20A61B34/70A61B34/73A61B2034/2051A61B2034/732G01R33/3856H02K3/24
    • The invention relates to a magnetic coil system for the contactless displacement of a magnetic body in a working volume (B). Said magnetic coil system comprises a navigation coil system which at least partially surrounds an inner area (A) containing the working volume (B), and several navigation coils (102). Said magnetic coil also comprises a positioning device for determining spatial coordinates of a magnetic body (201). Said positioning system comprises at least one emitting coil (301) that is disposed in the inner area (A) and a capturing device (302). Said magnetic coil further comprises a cooling system for cooling at least one additional navigation coil (3102) comprising several winding layers (304). Said cooling system comprises at least one first planar heat sink (307) that is in thermal contact on a large part of the surface with the navigation coil (102) and are formed respectively from cooling pipe parts (309) made of an electrically conductive material. When seen in the cross-section, the cooling pipe parts (309) form a plurality of cooling channels (312) that are arranged adjacent to each other. Said cooling pipe parts (309) are arranged on top of each other between the insulating means (310) for electric insulation. The first heat sink (307) comprising the navigation coil (102) is connected to the outer side that faces away from the inner area (A) or is arranged between two adjacent winding layers (304) of the navigation coil (102).
    • 对于磁性体的工作体积(B)的非接触式运动磁铁线圈系统。 磁线圈系统包括至少部分地包围的内部空间中,包含工作体积(B)(A)和包括多个导航线圈(102)的导航线圈系统。 此外,磁体线圈系统包括用于确定磁性体(201)的空间坐标的定位系统。 该定位系统包括至少一个在内部(A)布置在所述发射器线圈(301)和接收装置(302)。 此外,磁体线圈系统用于冷却多个绕组层(304),其具有线圈导航(102)中的至少一个的冷却系统。 所述冷却系统包括至少一个第一平面的散热器(307),其是使用在热接触导航线圈(102)和每个冷却管道部件的(309)的大面积的导电材料形成。 在横截面中看到的那样,冷却管部(309)形成多个相邻布置的冷却通道(312)的。 用于冷却管道部件(309)彼此电绝缘的绝缘装置(310)之间。 第一散热器(307)被连接到导航线圈(102),面向远离所述内部空间(A)的外部或导航线圈(102)的两个相邻绕组层(304)布置之间。
    • 3. 发明申请
    • WINDING OVERHANG SUPPORT FOR A STATOR OF AN ELECTRICAL MACHINE
    • 卷绕头支持用于电机的定子
    • WO2012175476A3
    • 2013-08-01
    • PCT/EP2012061665
    • 2012-06-19
    • SIEMENS AGKLOEPZIG MARKUSMUELLER HARALDSCHLEICHER KLAUSSCHRAMM MARCOSCHROETER ANDREAS
    • KLOEPZIG MARKUSMUELLER HARALDSCHLEICHER KLAUSSCHRAMM MARCOSCHROETER ANDREAS
    • H02K3/52H02K3/32
    • H02K3/522H02K3/325
    • The invention relates to a winding overhang support (14) for a stator of an electrical machine provided for a single-tooth winding. According to the invention, said winding overhang support likewise has teeth (16) that have notches (37) or structures that allow reliable guidance of a winding wire (39). Guiding wedges (40), wire inlet grooves (26), wire outlet grooves (27) and square pin grooves (29) simplify the production and guidance of the winding wire (3) such that the winding wire can be reliably wound on the winding overhang support and the corresponding laminated stator core (not represented), thereby allowing for reliable heat transfer. The guiding elements in the form of notches (37) also allow higher bending radii of the single-tooth winding in the section of the winding overhangs extending around the winding overhead support of the single-tooth winding, thereby advantageously reducing the risk of damages to the winding wire insulation.
    • 本发明涉及用于电机,其被设置用于一个齿线圈绕组的定子的绕组支承件(14)。 根据本发明,提供(16),该卷绕头载体也齿与设置凹口(37)或基台,其允许可靠引导绕组线(39)。 此外,导向楔(40),Drahteinlaufnuten(26)Drahtauslaufnuten(27)和Formstiftnuten可以(29),以简化绕组线(39)的制造和管理,使得在绕组支撑绕组线和相关联的定子叠片有利(的可靠的安装未示出 可以做到)。 这提供了可靠的热传递得到了保证。 此外,齿线圈在齿线圈绕组的绕组头部支撑圆周绕组的区域绕组的更大的弯曲半径可以通过在凹口的形式(37),这有利地减少了绕组线的绝缘损坏的风险引导元件来实现。
    • 6. 发明申请
    • ROTOR FOR A PERMANENT-MAGNET MACHINE
    • 转子永磁机
    • WO2012171894A2
    • 2012-12-20
    • PCT/EP2012061071
    • 2012-06-12
    • SIEMENS AGKLOEPZIG MARKUSROTHFISCHER JOHANNSCHLEICHER KLAUS
    • KLOEPZIG MARKUSROTHFISCHER JOHANNSCHLEICHER KLAUS
    • H02K1/276H02K1/278
    • The invention relates to a rotor (16) for a permanent-magnet machine having at least two permanent magnets having different polarizations, characterized in that the rotor is provided with at least two layers (1, 11); in that a first layer is made of a magnetically conductive material and a second layer (11) is made of a magnetically non-conductive material; in that the first and second layers are arranged in the manner of a multilayer packet and form two receiving areas (3, 12), which are laterally bound by retaining bars (7, 3) of the respective layer (1, 11); in that the permanent magnets (4) are arranged in the receiving areas (3, 12); in that the first and the second permanent magnet (4) is magnetic-conductively connected to the first layer (1); and in that the retaining bars (7) of the magnetically conductive first layer (1) are made of a non-magnetic material.
    • 本发明涉及的转子(16),用于永磁电机,包括至少两个不同地极化的永磁体,其特征在于,所述转子的至少两个层(1,11),在该磁导电材料和第二层的第一层(11 )由非导磁材料形成,所述第一和第二层被布置在层包的形式,以及两个接收部(3,12)形成支撑腹板7的侧面(3)的各个层的(1,11) 被限制,以使得在所述接收部分中的永久磁铁(4)(3,12)被布置成使得所述第一和第二永久磁体(4)与所述第一层(1)是导磁的方式,并且,所述保持腹板(7)的 包括由非磁性材料制成的导磁第一层(1)。