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    • 1. 发明申请
    • ROTOR FOR A SYNCHRONOUS RELUCTANCE ELECTRIC MACHINE, AN ELECTRIC MACHINE, AND A MANUFACTURING METHOD OF A ROTOR
    • 同步电机的转子,电机和转子的制造方法
    • WO2018002057A1
    • 2018-01-04
    • PCT/EP2017/065866
    • 2017-06-27
    • ABB SCHWEIZ AG
    • KOLEHMAINEN, JereIKÄHEIMO, JouniHEIKFOLK, KariKÄNSÄKANGAS, Tero
    • H02K1/24H02K1/30
    • The invention relates to a rotor for a synchronous reluctance electric machine. It comprises a stack of consecutive magnetically conductive core elements (101-104); each core element (101-104) comprises at least two adjacent sectorial sections (SI-S4') with flux barriers (FB11- FB14, FB21-FB24, FB31-FB34, FB41-FB44) and a central area (CA) surrounding the rotational axis (RA). A binding structure comprises core end plates (PL1, PL2) which form together with interconnection casts (C1-C4) a unitary casted structure. The interconnection casts (C1-C4) are casted into channels (CH1-CH4) extending through the stack and which are located in an area defined by the flux barriers (FB11, FB21) of the adjacent sectorial sections (S1-S2, S2-S3, S3-S4, S4-S1) and the central area (CA) of each core element.
    • 同步磁阻电机的转子技术领域本发明涉及一种用于同步磁阻电机的转子。 它包括一堆连续的导磁芯元件(101-104); 每个铁芯元件(101-104)包括至少两个具有磁通屏障(FB11-FB14,FB21-FB24,FB31-FB34,FB41-FB44)的相邻扇形部分(SI-S4')和围绕 旋转轴(RA)。 结合结构包括与互连铸件(C1-C4)一起形成整体铸造结构的芯端板(PL1,PL2)。 互连铸件(C1-C4)被铸造成延伸穿过堆叠并且位于由相邻扇形段(S1-S2,S2-C4)的磁通屏障(FB11,FB21) S3,S3-S4,S4-S1)和每个核心元素的中心区域(CA)。
    • 4. 发明申请
    • ROTOR OF ELECTRIC MACHINE AND MANUFACTURING METHOD THEREOF
    • 电机的转子及其制造方法
    • WO2017071836A1
    • 2017-05-04
    • PCT/EP2016/065569
    • 2016-07-01
    • ABB SCHWEIZ AG
    • IKÄHEIMO, JouniKÄNSÄKANGAS, TeroKOLEHMAINEN, Jere
    • H02K1/24H02K1/28
    • H02K1/246H02K1/28H02K2201/06
    • A stack of a rotor comprises a plurality of stack elements (100A to 100L) which comprise material of first magnetic conductance. The rotor comprises sectorial sections (102A to 102F) distributed round a rotational axis (110) of the rotor. Each of the stack elements (100A to 100L) has an aperture (104) of second magnetic conductance in each of the sectorial sections (102A to 102F). Outer ends (108) of the apertures (104) are located at a rim (112) of the stack elements (100A to 100L) or at a bridge of the rim (112). The apertures (104) form channels (300) through the stack in a direction of a rotational axis (110) of the rotor. At least two of the apertures (104) of a common channel of the channels have the outer ends (108) at different radial distances from the rotational axis (110) of the rotor.
    • 转子的堆叠包括多个堆叠元件(100A至100L),所述堆叠元件(100A至100L)包括第一导磁率的材料。 转子包括围绕转子的旋转轴线(110)分布的扇形区段(102A至102F)。 堆叠元件(100A至100L)中的每一个在每个扇形部分(102A至102F)中具有第二磁导率的开口(104)。 孔(104)的外端(108)位于堆叠元件(100A至100L)的边缘(112)处或边缘(112)的桥边处。 孔(104)在转子的旋转轴线(110)的方向上形成通过堆叠的通道(300)。 通道的公共通道中的至少两个孔(104)具有与转子的旋转轴线(110)不同的径向距离的外端(108)。
    • 6. 发明申请
    • ROTOR FOR ELECTRIC MACHINE, AND MANUFACTURING METHOD OF ROTOR
    • 电机转子及转子制造方法
    • WO2017021078A1
    • 2017-02-09
    • PCT/EP2016/065574
    • 2016-07-01
    • ABB SCHWEIZ AG
    • KOLEHMAINEN, JereKÄNSÄKANGAS, Tero
    • H02K19/14H02K1/24
    • H02K1/246H02K19/14
    • A rotor for an electric machine, wherein the rotor comprises a plurality of stack elements (100, 100', 100", 100"') and each of the stack elements (100) comprises material of first magnetic conductance. Each of the stack elements (100, 100', 100", 100"') comprises a plurality of sectorial sections (102, 102', 102", 102"') distributed round a rotational axis (104) of the rotor. Each of the sectorial sections (102, 102', 102", 102"') comprises one or more flux barriers (106, 108, 110, 112). At least one of said one or more flux barriers (106, 108, 110, 112) has a difference associated with filling of an electrically conductive material of third magnetic conductance in different sectorial halves (102A, 102B) of a common sectorial section (102, 102', 102", 102"'), the first magnetic conductance being larger than the third magnetic conductance.
    • 一种用于电机的转子,其中转子包括多个堆叠元件(100,100',100“,100”'),并且每个堆叠元件(100)包括第一磁导率的材料。 每个堆叠元件(100,100',100“,100”')包括分布在转子的旋转轴线(104)周围的多个扇形部分(102,102',102“,102”')。 每个扇形部分(102,102',102“,102”')包括一个或多个通量屏障(106,108,110,112)。 所述一个或多个通量势垒(106,108,110,112)中的至少一个具有与公共扇形部分(102)的不同扇区半部(102A,102B)中的第三磁导电导体材料的填充有关的差异 ,102',102“,102”'),第一磁导率大于第三磁导率。