The present disclosure relates to an axial flux motor drive unit for an automobile. More particularly, the present disclosure relates to an axial flux motor drive unit having two independent rotors sharing a stator, where each rotor is operable independent of the remaining rotor.
Electric motors are increasingly being used to power vehicles, such as automobiles. It is to be appreciated that electric propulsion offers opportunities to increase automobile performance and control of vehicle dynamics, both by operating wheels individually and by adding aerodynamic forces to improve or to assist wheel traction. Specifically, in order to increase vehicle efficiency and dynamics, an electric motor is designed to be as compact as possible and have a relatively low weight. Axial flux motors, which offer excellent torque and power densities especially for short length applications, may be particularly suitable for powering a vehicle. Specifically, axial flux motors produce flux that runs parallel to the axis of the output shaft, and therefore are referred to as axial. In contrast, radial flux motors produce flux radially with respect to the output shaft, and therefore are referred to as radial. The resulting packaging space required for an axial flux motor is disc-shaped. The disc-shaped packaging space includes a relatively short and compact profile, thereby making axial flux motors potential candidates for use in cramped quarters. In addition to vehicles, axial flux motors may be used in other applications as well, such as aerial vehicles.
Thus, while axial flux motors achieve their intended purpose, there is a need in the art for an axial motor with improved reliability that provides high efficiency.
According to several aspects, an axial flux motor drive unit for an automobile is disclosed. The axial flux motor drive unit includes a stator defining a core, an output defining an axis of rotation, a first rotor, a second rotor, and a thrust bearing. The first rotor is rotatable about the axis of rotation and is coupled to the output. The first rotor is disposed relative to the stator to create a first air gap between the stator and the first rotor. The second rotor is rotatable about the axis of rotation and coupled to the output. The second rotor is disposed relative to the stator to create a second air gap between the stator and the second rotor. The thrust bearing is coupled to the output for supporting axial loads that are substantially parallel to the axis of rotation, where the first rotor is still rotatable about the axis of rotation when the second rotor is inoperable, and where the second rotor is still rotatable when the first rotor is inoperable.
In another aspect, the stator further includes a first plurality of windings that are wound around a first portion of the core.
In yet another aspect, a first magnetic flux is generated within the first air gap in response to the first plurality of windings being supplied with alternating current (AC) power.
In still another aspect, the axial flux drive motor unit further comprises a first invertor that supplies AC power to the first plurality of windings.
In another aspect, the stator further includes a second plurality of windings that are wound around a second portion of the core.
In yet another aspect, a second magnetic flux is generated within the second air gap in response to the second plurality of windings being supplied with AC power.
In still another aspect, a second invertor that supplies AC power to the second plurality of windings.
In another aspect, the axial flux drive motor unit further comprises a first planetary gearset coupled to a first end of the output, where the first planetary gearset includes a first sun gear, a first plurality of carriers, and a first ring gear.
In yet another aspect, the first sun gear is a helical gear including a plurality of teeth oriented at a first selected helix angle.
In still another aspect, the axial flux drive motor unit further comprises a second planetary gearset coupled to a second end of the output, where the second planetary gearset includes a second sun gear, a second plurality of carriers, and a second ring gear.
In another aspect, the second sun gear is a helical gear including a plurality of teeth oriented at a second selected helix angle.
In an aspect, a first output of the first planetary gearset rotates in a first direction and a second output of the second planetary gearset rotates in a second direction that is opposite to the first direction.
In yet another aspect, the axial flux drive motor unit further comprises a one-way clutch coupled to both the first rotor and the second rotor.
In one aspect, an axial flux motor drive unit for an automobile is disclosed. The axial flux motor drive unit includes a stator defining a core. The stator includes a first plurality of windings that are wound around a first portion of the core and a second plurality of windings that are wound around a second portion of the core. The axial flux drive motor unit also includes a first invertor supplying AC power to the first plurality of windings and a second invertor suppling AC power to the second plurality of windings. The axial flux motor drive unit also includes an output defining an axis of rotation and a first rotor rotatable about the axis of rotation and coupled to the output. The first rotor is disposed relative to the stator to create a first air gap between the stator and the first rotor, where a first magnetic flux is generated within the first air gap in response to the first plurality of windings being supplied with AC power. The axial flux drive motor unit also includes a second rotor rotatable about the axis of rotation and coupled to the output. The second rotor is disposed relative to the stator to create a second air gap between the stator and the second rotor, where a second magnetic flux is generated within second first air gap in response to the second plurality of windings being supplied with AC power. The axial flux motor drive unit also includes a thrust bearing coupled to the output for supporting axial loads that are substantially parallel to the axis of rotation, where the first rotor is still rotatable about the axis of rotation when the second rotor is inoperable, and where the second rotor is still rotatable when the first rotor is inoperable.
In one aspect, the axial flux drive motor unit further comprises a first planetary gearset coupled to a first end of the output, where the first planetary gearset includes a first sun gear, a first plurality of carriers, and a first ring gear.
In yet another aspect, the first sun gear is a helical gear including a plurality of teeth oriented at a first selected helix angle.
In still another aspect, the axial flux drive motor unit further comprises a second planetary gearset coupled to a second end of the output, where the second planetary gearset includes a second sun gear, a second plurality of carriers, and a second ring gear.
In another aspect, the second sun gear is a helical gear including a plurality of teeth oriented at a second selected helix angle.
In yet another aspect, a first output of the first planetary gearset rotates in a first direction and a second output of the second planetary gearset rotates in a second direction that is opposite to the first direction.
In another aspect, the axial flux drive motor unit further comprises a one-way clutch coupled to both the first rotor and the second rotor.
Further areas of applicability will become apparent from the description provided herein. It should be understood that the description and specific examples are intended for purposes of illustration only and are not intended to limit the scope of the present disclosure.
The drawings described herein are for illustration purposes only and are not intended to limit the scope of the present disclosure in any way.
The following description is merely exemplary in nature and is not intended to limit the present disclosure, application, or uses.
Referring to
In the embodiment as shown in
Continuing to refer to
Continuing to refer to
The axial flux motor drive unit 10 further includes a first plurality of windings 50, a second plurality of windings 52, a first invertor 60, and a second invertor 62. The first plurality of windings 50 are wound around a first portion 56 of the core 36 of the stator 20, and the second plurality of windings 52 are wound around a second portion 58 of the stator 20. The first invertor 60 is electrically coupled to and provides alternating current (AC) power to the first plurality of windings 50. As seen in
The first plurality of windings 50 and the first invertor 60 are electrically separate from the second plurality of windings 52 and the second invertor 62. That is, the stator windings 50, 52 are split into two electrically separate systems that are powered by two separate invertors 60, 62. Accordingly, if the first plurality of windings 50 or the first invertor 60 are non-operational, the second rotor 24 may still operate. Similarly, if the second plurality of windings 52 or the second invertor 62 are non-operational, then the first rotor 22 may still operate.
In the embodiment as shown in
In the non-limiting embodiment as shown, the plurality of carriers 82 are fixed, and the first output 46 is connected to the first ring gear 84, and the second ring gear 94 is fixed and the second plurality of carriers 92 are connected to the second output 48. Thus, the planetary gearsets 70, 74 allow for the first output 46 of the first planetary gearset 70 to rotate in a first direction and the second output 48 of the second planetary gearset 74 to rotate in a second direction that is opposite to the first direction. Although
Referring to
In an embodiment, the second sun gear 90 is a helical gear 98 and includes the plurality of teeth 100 oriented at a second selected helix angle β2, where the second selected helix angle β2 is selected to generate an axial force that offsets a magnetic force between the second rotor 24 and the stator 20.
As seen in
Referring generally to the figures, the disclosed axial flux motor drive unit includes various technical effects and benefits. Specifically, the axial flux motor drive unit has a relatively short and compact profile and includes two rotors that operate independently of one another. Thus, if one of the rotors are non-operational, the other rotor is still able to operate. The axial flux motor drive unit also includes electrically separate windings and invertors as well, which also allow one of the rotors to operate in the event of a short-circuit or open-circuit condition with one of the invertors or windings. Finally, if the axial flux drive unit includes one or more planetary gearsets, the sun gear may include a selected helix angle that support some or all of the thrust loads that occur during operation, which in turns improves reliability.
The description of the present disclosure is merely exemplary in nature and variations that do not depart from the gist of the present disclosure are intended to be within the scope of the present disclosure. Such variations are not to be regarded as a departure from the spirit and scope of the present disclosure.