IP Library › Granted Patent US 11,110,016
Granted Patent B2
US 11,110,016 · App. 16/366,557 · Granted Sep 7, 2021

Drifting kart

Inventor: Ali Kermani (Huntington Beach, CA)
A61G5/1051A61G5/047A63G25/00B60K7/0007B62B5/0026B62D9/00B62D17/00B62D21/183B62D39/00B62D61/08B62D63/02B62K5/025
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Quick Facts
Patent No.
US 11,110,016
App. No.
16/366,557
Granted
Sep 7, 2021
Kind
B2
Abstract

Drifting karts in accordance with embodiments of the invention are described that include a front wheel drive train and rear caster wheels that can be dynamically engaged to induce and control drift during a turn. One embodiment of the invention includes a chassis to which a steering column is mounted, where the steering column includes at least one front steerable wheel configured to be driven by an electric motor, a battery housing mounted to the chassis, where the battery housing contains a controller and at least one battery, wiring configured to provide power from the at least one battery to the electric motor, two caster wheels mounted to the chassis, where each caster wheel is configured to rotate around a rotational axis and swivel around a swivel axis, and a hand lever configured to dynamically engage the caster wheels to induce and control drift during a turn.

Claims (54)

1. A ridable vehicle comprising:

a chassis;

a steering assembly comprising a steering wheel and a steering column;

a seat;

a front wheel;

a plurality of rear caster wheels, wherein each of the plurality of rear caster wheels is configured to rotate about a respective rotational axis and swivel about a respective swivel axis;

a motor configured to drive the front wheel; and

a hand lever configured to move between a raised position and a lowered position;

wherein the plurality of rear caster wheels are configured to move between a first position and a second position;

wherein when the hand lever is in the raised position, the plurality of rear caster wheels are in the first position; and

wherein when the hand lever is in the lowered position, the plurality of rear caster wheels are in the second position.

2. The ridable vehicle of claim 1 , wherein the hand lever is configured to dynamically engage the plurality of rear caster wheels to induce and control drift during a turn.

3. The ridable vehicle of claim 1 , wherein the plurality of rear caster wheels are coupled to the chassis via a rotatable member that is coupled to the hand lever.

4. The ridable vehicle of claim 1 , wherein when the plurality of rear caster wheels are in the first position, the rear caster wheels are aligned so that they are free to swivel about their swivel axes, and wherein when the plurality of rear caster wheels are in the second position, the rear caster wheels are aligned so that the weight on the rear caster wheels limits the ability of the rear caster wheels to swivel about their swivel axes.

5. The ridable vehicle of claim 1 , wherein the steering wheel is mounted to a zero camber zero rake fork.

6. The ridable vehicle of claim 1 , wherein the motor is a variable speed electric motor and the power delivered to the variable speed electric motor is controlled by a foot pedal.

7. The ridable vehicle of claim 1 , wherein the chassis is a hollow tube chassis.

8. A ridable vehicle comprising:

a chassis;

a steering assembly comprising a steering wheel and a steering column;

a seat;

a front wheel;

a plurality of rear caster wheels, wherein each of the plurality of rear caster wheels is configured to rotate about a respective rotational axis and swivel about a respective swivel axis, each of the swivel axes being disposed at an angle relative to vertical;

a motor configured to drive the front wheel; and

a hand lever configured to move between a first position and a second position;

wherein movement of the hand lever between the first position and the second position is configured to cause the angle of each of the swivel axes to change.

9. The ridable vehicle of claim 8 , wherein the hand lever is configured to dynamically engage the plurality of rear caster wheels to induce and control drift during a turn.

10. The ridable vehicle of claim 8 , wherein the plurality of rear caster wheels are coupled to the chassis via a rotatable member that is coupled to the hand lever.

11. The ridable vehicle of claim 8 , wherein the plurality of rear caster wheels are configured to move between a first position and a second position, wherein when the plurality of rear caster wheels are in the first position, the rear caster wheels are aligned so that they are free to swivel about their swivel axes, and wherein when the plurality of rear caster wheels are in the second position, the rear caster wheels are aligned so that the weight on the rear caster wheels limits the ability of the rear caster wheels to swivel about their swivel axes.

12. The ridable vehicle of claim 8 , wherein the steering wheel is mounted to a zero camber zero rake fork.

13. The ridable vehicle of claim 8 , wherein the motor is a variable speed electric motor and the power delivered to the variable speed electric motor is controlled by a foot pedal.

14. The ridable vehicle of claim 8 , wherein the chassis is a hollow tube chassis.

15. A ridable vehicle comprising:

a chassis;

a steering assembly comprising a steering wheel and a steering column;

a seat;

a front wheel;

a first and a second rear caster wheel, wherein each of the first and second rear caster wheels is configured to rotate about a respective rotational axis and swivel about a respective swivel axis;

a motor;

a hand lever, wherein the hand lever is configured to dynamically engage the first and second rear caster wheels to induce and control drift during a turn; and

a foot pedal connected to an accelerator, wherein the accelerator is configured to control the amount of power delivered to the motor.

16. The ridable vehicle of claim 15 , wherein the first and second rear caster wheels are coupled to the chassis via a rotatable member that is coupled to the hand lever.

17. The ridable vehicle of claim 15 , wherein the first and second rear caster wheels are configured to move between a first position and a second position, wherein when the first and second rear caster wheels are in the first position, the rear caster wheels are aligned so that they are free to swivel about their swivel axes, and wherein when the first and second rear caster wheels are in the second position, the rear caster wheels are aligned so that the weight on the rear caster wheels limits the ability of the rear caster wheels to swivel about their swivel axes.

18. The ridable vehicle of claim 15 , wherein the steering wheel is mounted to a zero camber zero rake fork.

19. The ridable vehicle of claim 15 , wherein the chassis is a hollow tube chassis.

20. A ridable vehicle comprising:

a chassis;

a steering assembly comprising a steering wheel and a steering column;

a seat;

a front wheel;

a first and a second rear caster wheel, wherein each of the first and second rear caster wheels is configured to rotate about a respective rotational axis and swivel about a respective swivel axis;

a motor; and

a foot pedal connected to an accelerator, wherein the accelerator is configured to control the amount of power delivered to the motor;

wherein the first and second rear caster wheels are configured to move between a first position and a second position, wherein when the first and second rear caster wheels are in the first position, the rear caster wheels are aligned so that they are free to swivel about their swivel axes, and wherein when the first and second rear caster wheels are in the second position, the rear caster wheels are aligned so that the weight on the rear caster wheels limits the ability of the rear caster wheels to swivel about their swivel axes.

Continuity (9)
Continuation 16112469 · Aug 24, 2018
Continuation 15352343 · Nov 15, 2016
Continuation 14821491 · Aug 7, 2015
Continuation 14531840 · Nov 3, 2014
Continuation 13745648 · Jan 18, 2013
Continuation 12888672 · Sep 23, 2010
Continuation 12505955 · Jul 20, 2009
Provisional Application 61082014 · Jul 18, 2008
Related Publication 20200022856A1 · Jan 23, 2020
Cited By (7)
US 1,063,715 US 1,078,549 US 1,115,352 US 1,115,625 US 12,186,245 US 12,440,404 US 12,497,114