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The present invention relates generally to a motorized wheel assembly, and more specifically to an electric motorized wheel assembly adaptable to the front deck of a common four-wheel skateboard.
Motorized skateboards and scooters have gained popularity, ranging from casual commuter riders to those in the extreme end of the action sports community. Many contemporary motorized skateboards and scooters typically are powered by a motor and power supply mounted to the underside of a skateboard or scooter deck. The motor is mechanically linked to a selected one of the rear pair of skateboard wheels or a rear scooter wheel. Other motorized skateboards or scooters use a separate power wheel located between the wheels of the skateboard or scooter.
Disadvantages of the present state of the art include: 1) the motor and battery greatly reduce clearance under the board or scooter deck causing unintentional scraping of components when riding over obstacles or uneven surfaces and thus limiting the use of these assemblies to well paved surfaces; 2) the motor and battery pack require protective shielding against unintentional and harsh bumping and scraping; and 3) all the motor elements are pre-integrated into the structure of the board or scooter which limits usage to a single board or scooter.
Therefore, there is a need in the art for an improved motorized wheel assembly with an adaptable weight transfer assembly for use with skateboards in comparison to the prior art.
Accordingly, there is a need for an improved motorized wheel assembly combined with an adaptable weight transfer assembly that provides for a front mounted wheel which improves the ability to pull the skateboard over rough or uneven surfaces.
Similarly, there is a need for an improved motorized wheel assembly combined with an adaptable weight transfer assembly that adapt to existing skateboards as an after-market accessory, providing the use of the assembly on multiple such user owned transport or sporting devices.
There is likewise a need for an improved motorized wheel assembly combined with an adaptable weight transfer assembly that are easily attached or removed from skateboards.
Furthermore, what is needed is an improved motorized wheel assembly combined with an adaptable weight transfer assembly that can be adapted to existing skateboard deck and truck designs such these utilities can be added to the existing characteristics of the rider's favorite skateboard design.
Various aspects of the motorized wheel assembly address these needs, as are discussed in more detail below.
The motorized wheel assembly combined with an adaptable weight transfer assembly is used to motorize a common skateboard using a separate motorized wheel. The motorized front wheel assembly is self-contained with battery pack, electric motor, control electronics, charging port, handle bars, braking system, and the weight transfer assembly required to attach to a skateboard. The motorized wheel assembly construction does not have to be as heavy-duty as those used for electric skateboards in the art. For example, the motorized wheel assembly attached to a skateboard, carries only a fraction of rider's weight since the existing skateboard wheels bear the direct weight of the rider due to their position under the skateboard. Furthermore, for an embodiment of the motorized wheel assembly, the rider's weight transfer to the motorized wheel assembly is through embodiments of the weight transfer assembly providing at least one compression spring. The skateboard rider's weight is transferred to, and distributed among, the skateboard wheels and the motorized wheel to establish motorized wheel traction. Thus, the motorized wheel assembly can use light duty components for normal rider usage, which reduces weight and cost. Similar weight transfer dynamics are presented by alternate embodiments having at least one shock absorber to provide a range of motion for the front end of the skateboard once it is attached to the motorized wheel assembly.
An essential part of the motorized wheel assembly is a mechanism by which a portion of the rider's weight is transferred to the front wheel. The placement of weight on the motorized front wheel generates surface friction with ground which is essential to propel the skateboard and the rider in forward or reverse direction.
Placement of the motorized wheel in front of the skateboard allows usage of a larger wheel which improves the ability to pull the skateboard over uneven or higher surfaces.
The motorized wheel assembly when mounted on skateboard elevates the two front wheels when rider's weight is not impressed upon the top of skateboard. Once rider's weight is placed onto the skateboard, a portion of rider's weight is transferred through the compression elements to the motorized front wheel while lowering the front two wheels of skateboard to the ground. This constitutes the normal riding position with all four wheels of skateboard in touch with ground surface and with the motorized wheel having enough traction with ground surface to propel the rider forward or backward.
The compression elements (springs, air shock, other elastic bodies) can get integrated into the motorized wheel assembly at different locations within the weight transfer assembly. One embodiment of the weight transfer is the hinge-spring mechanism. The hinge-spring mechanism is integrated into the mounting plate of the motorized wheel assembly, see e.g.,
Alternatively, the weight transfer mechanism can be integrated into the wheel fork as a shock element. Three different embodiments of weight transfer using shock are shown with the compression elements in fork, see e.g.,
The motorized wheel assembly attached to a skateboard, carries only a fraction of rider's weight since the existing skateboard wheels bear the direct weight of the rider due to the skateboard wheels' position under the skateboard. Furthermore, the rider's weight transfer to provide traction for the motorized wheel assembly is through the weight transfer assembly.
These and other features, aspects, and advantages of embodiments of the apparatus for a motorized wheel assembly will become better understood regarding the following description, appended claims, and accompanying drawings as further described.
Referring more specifically to the drawings, for illustrative purposes embodiments of the apparatus for motorized wheel assembly 10 are more completely set forth in
An embodiment of the motorized wheel assembly 10 adaptable to the front deck 302 of a skateboard 300 having front wheels 304 and rear wheels 308 provides a wheel 60 and axel 62,
Other embodiments of motorized wheel assembly 10 adaptable to a skateboard 300 having front wheels 304 and rear wheels 308 provide a drive motor assembly integral to a wheel 40 and axel 42,
Embodiments of the motorized wheel assembly 10 further include a power supply 13 connected to a throttle control assembly providing a motor controller element 14 and a throttle grip handle 26,
All embodiments of the motorized wheel assembly 10 provide a weight transfer assembly 200 which includes a first attachment assembly communicating with the wheel fork assembly 12. This first attachment assembly is affixed to the head tube 20 which provides a handle bar tube 18 and a handle bar assembly 22,
For some embodiments of the motorized wheel assembly 10, the first attachment assembly 222 is welded to the head tube 20,
For an embodiment of the motorized wheel assembly 10, the element connecting the first attachment assembly communicating with the head tube 20 and the second attachment assembly communicating with the skateboard deck 302 front end comprises a pivot hinge assembly. For this embodiment, the elastic, resilient element controlling a range of motion between the first attachment assembly pivoting plate 222 welded to the head tube 20 and the second attachment assembly pivoting plate 218 or 220 attached to the skateboard deck 302 front end includes at least one compression spring 226 affixed by fasteners 234 on one side of the head tube 20 through corresponding apertures in the first attachment assembly 218 and corresponding apertures in the second attachment assembly 222.
Another embodiment of the motorized wheel assembly 10 provides equal sized dual compression springs 226,
For an embodiment of the motorized wheel assembly 10, the elastic, resilient element is provided by the weight transfer assembly 200 is a dual shock assembly 214 affixed to the fork stem and to a wheel axel,
For an embodiment of the motorized wheel assembly 10, the elastic, resilient element is provided by the weight transfer assembly 200 is a shock assembly affixed to the fork stem and to a wheel axel,
For an embodiment of the motorized wheel assembly 10, the elastic, resilient element is provided by the weight transfer assembly 200 is head shock assembly disposed within the head tube 20 tube assembly above the wheel fork element
For an embodiment of the motorized wheel assembly 10, the power supply 13 includes an interchangeable and rechargeable battery pack.
For an embodiment of the motorized wheel assembly, the braking assembly includes a disc brake assembly 16 and a hand brake lever 24 attached to the handle bar assembly 22,
For embodiments of the motorized wheel assembly 10, the second attachment assembly communicating with the skateboard deck 302 front end includes a receiving slot element 228 affixed to the skateboard deck 302 front end by fasteners connecting the front skateboard truck 306 to the skateboard deck 302 and a tongue element 230 affixed to the head tube 20 sized to be fixedly clipped into and held by the receiving slot element 228 or releasably withdrawn from the receiving slot element 228,
In yet other embodiments of the motorized wheel assembly 10, the bottom plate 218 of the pivot hinge assembly is welded to the top of the tongue element 230 while allowing sufficient space on either side of the tongue element 230 to be fixedly clipped into and held by the receiving slot element 228 or releasably withdrawn from the receiving slot element 228,
While the motorized wheel assembly 10 has been described with reference to the embodiments described above, it will be appreciated that the configuration of the motorized wheel assembly 10 can be varied and that the scope of the motorized wheel assembly 10 is defined by the following claims.
Number | Name | Date | Kind |
---|---|---|---|
4186934 | Collings | Feb 1980 | A |
5695021 | Schaffner | Dec 1997 | A |
6095267 | Goodman | Aug 2000 | A |
6338393 | Martin | Jan 2002 | B1 |
6394213 | Tsai | May 2002 | B1 |
6942053 | Hinton | Sep 2005 | B2 |
20020079855 | Parks | Jun 2002 | A1 |
20020117341 | Lan | Aug 2002 | A1 |
20020124764 | Coveyou | Sep 2002 | A1 |
20020148663 | Chang | Oct 2002 | A1 |
20030024752 | Mayer | Feb 2003 | A1 |
20030037980 | Chen | Feb 2003 | A1 |
20030042058 | Chen | Mar 2003 | A1 |
20050139406 | McLeese | Jun 2005 | A1 |
20070045022 | Greig | Mar 2007 | A1 |
20070187164 | Yang | Aug 2007 | A1 |
20110127734 | Epstein | Jun 2011 | A1 |
20160059108 | Demolder | Mar 2016 | A1 |
20160213999 | Treadway | Jul 2016 | A1 |
20170190365 | Campbell | Jul 2017 | A1 |
20170217511 | Orlovskiy | Aug 2017 | A1 |