The present invention relates to an insertable drive modal for replacing an existing electric motor and drive configuration in an electric vehicle or for converting an internal combustion vehicle to an electric vehicle with a new electric motor and drive configuration.
Currently, electric vehicle motor systems use electric motors to simply replace internal combustion engines in a conventional drivetrain configuration, see
Accordingly, it is an object of the present invention to provide a simplified drive modal for electric vehicles that reduces the complexity of the steering and propulsion system.
The above objectives are accomplished according to the present invention by providing an insertable drive modal. The drive modal includes a first electric motor engaged with a first tire, at least one second electric motor engaged with a second tire. The first electric motor effects movement of the first tire without a gear differential and the second electric motor effects movement of the second tire without a gear differential. The first electric motor effects movement of the first tire without a transmission disposed between the first electric motor and the first tire and the at least one second electric motor effects movement of the second tire without a transmission disposed between the at least one second electric motor and the second tire. Further, the first electric motor and the second electric motor turn the first tire and the second tire in torque mode to simulate a positive traction integrated steering rack. Still further, the modal has a rack and pinion steering system. Even further, independent suspension is provided for each wheel. Still yet further, the first and at least one second electric motor engage with the same frame, brakes, and steering configuration of an existing vehicle. Further, equal torque is provided to each tire. Additionally, a smart communications link is established between the first electric motor and the at least one second electric motor. Further yet, a second drive modal is used in association with the first drive modal to control at least a third tire and at least a fourth tire. Further still, the second drive modal lacks motors, sprockets and half shafts. Even further, the first drive modal has a rack and pinion steering mechanism and the second drive modal has a tie link toe adjustment.
In another embodiment, a method for converting an internal combustion vehicle to an electric vehicle is provided. The method includes inserting a drive modal into an existing chassis of an existing vehicle. The drive modal includes a first electric motor engaged with a first tire, at least one second electric motor engaged with a second tire, the first electric motor effects movement of the first tire without a gear differential and the second electric motor effects movement of the second tire without a gear differential, and the first electric motor effects movement of the first tire without a transmission disposed between the first electric motor and the first tire and the at least one second electric motor effects movement of the second tire without a transmission disposed between the at least one second electric motor and the second tire. Further, the drive modal is inserted into the existing chassis at a front of the vehicle to provide four by two front wheel drive. Still further, the drive modal is inserted into the existing chassis at a rear of a vehicle to provide four by two rear wheel drive. Even further, a second drive modal is inserted into the vehicle to provide four by four wheel drive. Still even further, the first and at least one second electric motor engage with the same frame, brakes, and steering configuration of an existing vehicle. Even further yet, independent suspension is provided for each wheel. Still yet further, the first and at least one second electric motor engage with the same frame, brakes, and steering configuration of an existing vehicle. Further yet, equal torque is provided to each tire. Yet further still, the second drive modal is a non-steering unit and a rack of the existing vehicle may be replaced with toe links.
The construction designed to carry out the invention will hereinafter be described, together with other features thereof. The invention will be more readily understood from a reading of the following specification and by reference to the accompanying drawings forming a part thereof, wherein an example of the invention is shown and wherein:
It will be understood by those skilled in the art that one or more aspects of this invention can meet certain objectives, while one or more other aspects can meet certain other objectives. Each objective may not apply equally, in all its respects, to every aspect of this invention. As such, the preceding objects can be viewed in the alternative with respect to any one aspect of this invention. These and other objects and features of the invention will become more fully apparent when the following detailed description is read in conjunction with the accompanying figures and examples. However, it is to be understood that both the foregoing summary of the invention and the following detailed description are of a preferred embodiment and not restrictive of the invention or other alternate embodiments of the invention. In particular, while the invention is described herein with reference to a number of specific embodiments, it will be appreciated that the description is illustrative of the invention and is not constructed as limiting of the invention. Various modifications and applications may occur to those who are skilled in the art, without departing from the spirit and the scope of the invention, as described by the appended claims Likewise, other objects, features, benefits and advantages of the present invention will be apparent from this summary and certain embodiments described below, and will be readily apparent to those skilled in the art. Such objects, features, benefits and advantages will be apparent from the above in conjunction with the accompanying examples, data, figures and all reasonable inferences to be drawn therefrom, alone or with consideration of the references incorporated herein.
With reference to the drawings, the invention will now be described in more detail. Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood to one of ordinary skill in the art to which the presently disclosed subject matter belongs. Although any methods, devices, and materials similar or equivalent to those described herein can be used in the practice or testing of the presently disclosed subject matter, representative methods, devices, and materials are herein described.
Unless specifically stated, terms and phrases used in this document, and variations thereof, unless otherwise expressly stated, should be construed as open ended as opposed to limiting. Likewise, a group of items linked with the conjunction “and” should not be read as requiring that each and every one of those items be present in the grouping, but rather should be read as “and/or” unless expressly stated otherwise. Similarly, a group of items linked with the conjunction “or” should not be read as requiring mutual exclusivity among that group, but rather should also be read as “and/or” unless expressly stated otherwise.
Furthermore, although items, elements or components of the disclosure may be described or claimed in the singular, the plural is contemplated to be within the scope thereof unless limitation to the singular is explicitly stated. The presence of broadening words and phrases such as “one or more,” “at least,” “but not limited to” or other like phrases in some instances shall not be read to mean that the narrower case is intended or required in instances where such broadening phrases may be absent.
The drive modal of the current disclosure removes the drive axle, differentials and transmission from existing vehicles by replacing these with the drive modal of the current disclosure. The drive modal may be inserted into a vehicle after market and may even employ the same frame, same brakes, same arms, same coil springs, same hydraulic dampers, same wheel bearings, and same steering parts as the original vehicle. Further, the current disclosure provides equal torque to the drive wheels, as well as fully independent suspension with relation to the four wheels.
In a further embodiment, a smart communications link may be established between motors 12 and 14, controllers and a dash display 60, see
There are four different message types (or “frames”) on a CAN bus: the Data Frame, the Remote Frame, the Error Frame, and the Overload Frame.
CAN buss allows the vehicles to communication through a simple (low cost) system. The system will support internet updates, download battery stasis, user data, runtime data, and software updates. Also the system will new equipment added to the system very quickly and simply.
While the present subject matter has been described in detail with respect to specific exemplary embodiments and methods thereof, it will be appreciated that those skilled in the art, upon attaining an understanding of the foregoing may readily produce alterations to, variations of, and equivalents to such embodiments. Accordingly, the scope of the present disclosure is by way of example rather than by way of limitation, and the subject disclosure does not preclude inclusion of such modifications, variations and/or additions to the present subject matter as would be readily apparent to one of ordinary skill in the art using the teachings disclosed herein.
Number | Date | Country | |
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62503980 | May 2017 | US |