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    • 26. 发明授权
    • Rotor assembly and method of making
    • 转子总成及制造方法
    • US06785951B2
    • 2004-09-07
    • US10703354
    • 2003-11-06
    • Ralph James Carl, Jr.Gerald Burt Kliman
    • Ralph James Carl, Jr.Gerald Burt Kliman
    • H02K1500
    • H02K1/2766H02K15/03Y10T29/49012
    • A rotor assembly is provided in which the rotor assembly includes a first core portion, wherein the first core portion has at least one first core protrusion, and a second core portion, wherein the second core portion has at least one second core protrusion. The first core portion and the second core portion are configured to be matingly coupled to each other so as to form an assembled rotor assembly. In addition, the rotor assembly includes a number of magnetizable members wherein respective ones of the magnetizable members are coupled to each of the first core protrusions and coupled to each of the second core protrusions. The magnetizable members are adapted to be coupled to a magnetizing fixture prior to mating the first and second core portions so as to magnetize the magnetizable members.
    • 提供了一种转子组件,其中转子组件包括第一芯部分,其中第一芯部分具有至少一个第一芯突起和第二芯部,其中第二芯部具有至少一个第二芯突起。 第一芯部分和第二芯部分构造成彼此配合地联接,以便形成组装的转子组件。 此外,转子组件包括多个可磁化构件,其中相应的可磁化构件联接到每个第一芯突起并且联接到每个第二芯突起。 可磁化构件适于在配合第一和第二芯部之前耦合到磁化固定装置,以便磁化可磁化构件。
    • 29. 发明授权
    • Claw pole stator structure
    • 爪极定子结构
    • US06320294B1
    • 2001-11-20
    • US09625210
    • 2000-07-24
    • Gerald Burt Kliman
    • Gerald Burt Kliman
    • H02K2906
    • H02K15/022Y10T29/49009Y10T29/49076
    • A multipole brushless DC motor stator is formed with a pair of complementary opposable claw pole stator structures in which each of the stator structures comprises a stator base formed of a plurality of stacked sheet metal laminations. A plurality of stator pole members extend from the stator base and are formed by compression molding of a ferromagnetic material. In one form, the ferromagnetic material is molded in situ on the stator base by positioning the stator base in a compression mold having the slots in which a powdered or flaked ferromagnetic material can be positioned and compressed by a die. In another form, the ferromagnetic pole members may be independently compression molded of powdered or flaked ferromagnetic material and then adhesively bonded to the stacked laminations forming the stator base. In either method, the stacked laminations are formed with a plurality of receptacles for receiving one end of each of the stator poles and holding the stator poles to the stator base.
    • 多极无刷直流电动机定子形成有一对互补的可对置爪极定子结构,其中每个定子结构包括由多个堆叠的金属板状叠片形成的定子基座。 多个定子极构件从定子基座延伸并且通过铁磁材料的压缩成型而形成。 在一种形式中,通过将定子基座定位在具有槽的压缩模具中,在定子基座上原位模制铁磁材料,其中粉末状或片状的铁磁材料可以由模具定位和压缩。 在另一种形式中,铁磁极构件可以由粉末状或片状的铁磁材料独立地压缩模制,然后粘合到形成定子基底的堆叠的叠片上。 在任一方法中,堆叠的叠片形成有多个接收器,用于接收每个定子极的一端并将定子极保持在定子基座上。
    • 30. 发明授权
    • System for removing spurious signatures in motor current signature analysis
    • 电动机电流特征分析中消除假信号的系统
    • US06199023B1
    • 2001-03-06
    • US09192241
    • 1998-11-16
    • Gerald Burt Kliman
    • Gerald Burt Kliman
    • G01R2300
    • G01R31/343
    • A method for removing spurious signals in a process of motor current signature analysis of an electric motor (24 or 33) includes creating an electronic model of the motor, acquiring simultaneous measurements of voltage and current at the motor, applying the voltage measurement to the motor model and determining an equivalent current produced in the motor model by the applied voltage, subtracting the equivalent current from the current measurement to produce a corrected motor current, and processing the corrected motor current through motor current signature analysis. For an ac motor (33), the method includes extracting signals corresponding to the fundamental excitation frequency from the voltage measurement to produce an interfering voltage, processing the interfering voltage through the motor model to produce a corresponding spurious current signal, and subtracting the spurious current signal from the measured current to produce the corrected motor current signal for analysis.
    • 一种用于在电动机(24或33)的电动机电流特征分析过程中去除杂散信号的方法包括:创建电动机的电子模型,同时测量电动机的电压和电流,将电压测量值应用于电动机 模拟并通过施加的电压确定在电动机模型中产生的等效电流,从当前测量中减去等效电流以产生校正的电动机电流,以及通过电动机电流特征分析处理校正的电动机电流。 对于交流电动机(33),该方法包括从电压测量中提取与基本激励频率相对应的信号以产生干扰电压,通过电动机模型处理干扰电压以产生相应的寄生电流信号,并减去杂散电流 信号从测量电流产生校正的电机电流信号进行分析。