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    • 1. 发明申请
    • GEROTOR MECHANISM
    • 电机机构
    • WO2004020826A3
    • 2004-06-24
    • PCT/RU0300320
    • 2003-07-18
    • OTKRYTOE AKTSIONERNOE OBSCHESTBALDENKO DMITRII FEDOROVICHBALDENKO FEDOR DMITRIEVICHKOROTAEV IURII ARSENIEVICH
    • BALDENKO DMITRII FEDOROVICHBALDENKO FEDOR DMITRIEVICHKOROTAEV IURII ARSENIEVICH
    • E21B4/02F01C1/08F01C1/10F03C2/22F04C20060101F04C2/10F04C2/22F04C18/10F16H1/34
    • F01C1/084F01C1/10
    • The invention relates to internal gear gerotor mechanisms (GM) in which a tooth difference between the stator and rotor thereof is equal to one. The rotor axis of the planetary moving GM is offset at a distance of gear eccentricity with respect to the stator axis. The GM can be used for different branches of the mining industry and for general engineering in the form of working members of pumps, hydraulic engines, compressors, internal combustion engines and straight tooth and spiral tooth reduction gears. The novelty of said invention lies in the fact that the initial auxiliary circuit is embodied in the form of an ellipse and a proportionality factor k which defines the radius of a director circle is selected equal to half the required number of teeth z of a wheel (k=z/2). The optimal teeth shape is ensured by a rational combination of the shape factor of the ellipse lambda and an eccentricity factor of the auxiliary circuit, the shape factor of the ellipse lambda being equal to the semiaxis ratio thereof, and the eccentricity factor of the auxiliary circuit being equal to a ratio between the major semiaxis of the ellipse and the radius of a rolling circle. Internal and external profiles are embodied in the form of ellipsoidal profiles of the overall shape of the ellipse. Said invention simplifies the process of production of gerotor mechanisms and improves the design efficiency thereof.
    • 本发明涉及其中定子和转子之间的齿差等于1的内齿轮齿轮转子机构(GM)。 行星运动GM的转子轴相对于定子轴以齿轮偏心距离偏移。 通用汽车可用于采矿业的不同部门,也可用于泵,液压发动机,压缩机,内燃机和直齿和螺旋齿减速齿轮工作构件的一般工程。 所述发明的新颖之处在于,初始辅助电路以椭圆的形式实现,并且限定导向器圆的半径的比例系数k被选择为等于轮的所需齿数z的一半( K = Z / 2)。 通过椭圆形的形状因子与辅助电路的偏心因数的合理组合,椭圆形的拉伸倍数等于其半轴比,以及辅助电路的偏心率来确定最佳齿形 等于椭圆的主半轴与滚动圆的半径之比。 内部和外部轮廓以椭圆形的椭圆形轮廓的形式实现。 所述发明简化了摆线机构的制造工序,提高了设计效率。