IP Library Granted Patent US 9,296,443
Granted Patent B2
US 9,296,443 · App. 14/645,735 · Granted Mar 29, 2016

Three-wheeled rear-steering scooter

Inventor: Bradley E. Wernli (Oceanside, CA)
Assignee: SBYKE USA LLC
B62K5/08B62K3/002B62K5/02
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Quick Facts
Patent No.
US 9,296,443
App. No.
14/645,735
Granted
Mar 29, 2016
Kind
B2
Abstract

A three wheeled scooter comprises a chassis having forward and aft ends with a front wheel non-pivotally mounted to the forward end and a pair of rear wheels coaxially mounted to the aft end. The chassis defines a longitudinal axis and includes a support assembly and a handle assembly extending upwardly from the support assembly. The rear wheels are configured to be angularly yawable relative to the longitudinal axis between a neutral position and a yawed position. Steering of the scooter is thereby effectuated by angular yawing of the rear wheels relative to the longitudinal axis such as by asymmetric loading of one of opposing sides of the support assembly.

Claims (36)

1. A three-wheeled scooter, comprising;

a chassis having forward and aft ends and defining a longitudinal axis, the chassis including a support assembly;

a front wheel non-pivotally mounted to the forward end; and

a pair of rear wheels coaxially mounted to the aft end and being yawable relative to the longitudinal axis between a neutral position and a yawed position;

wherein:

steering of the scooter is effectuated by angular yawing of the rear wheels relative to the longitudinal axis.

2. The scooter of claim 1 wherein the support assembly is configured such that lateral rolling thereof effectuates angular yawing of the rear wheels.

3. The scooter of claim 1 further including a handle assembly rigidly connected to the support assembly such that lateral movement of the handle assembly facilitates yawing of the rear wheels.

4. The scooter of claim 1 further including:

a trunnion comprising a rear axle and a pivot shaft extending outwardly from the rear axle, the pivot shaft pivotally interconnecting the rear axle to the support assembly;

wherein:

the rear wheels are mounted on opposing ends of the rear axle;

the pivot shaft being oriented such that pivoting of the rear axle thereabout causes yawing of the rear wheels relative to the longitudinal axis.

5. The scooter of claim 4 wherein the trunnion is configured such that the yawing capability of the rear axle relative to the longitudinal axis is a half-angle of at least about 45 degrees.

6. The scooter of claim 4 wherein the pivot shaft defines a pivot axis being inclined relative to the longitudinal axis.

7. The scooter of claim 6 wherein the pivot axis is oriented downwardly along a direction from the aft end toward the forward end.

8. The scooter of claim 6 wherein:

the chassis includes a handle assembly and having an articulated joint interconnecting the support assembly to the handle assembly;

the articulated joint being configured to allow lateral rolling of the support assembly relative to the handle assembly.

9. The scooter of claim 4 further including a biasing member operatively connected to the trunnion and being configured to bias the rear axle toward the neutral position.

10. The scooter of claim 1 wherein:

each of the rear wheels is independently pivotally mounted to the support assembly;

the rear wheels being mechanically coupled to one another to angularly yaw in unison.

11. The scooter of claim 10 further including:

a pair of spindles and a linkage;

wherein:

each one of the spindles is configured to pivotally mount a corresponding one of the rear wheels to the support assembly;

the linkage being configured to mechanically couple the rear wheels.

12. The scooter of claim 1 wherein the front wheel diameter is between about six to ten times the rear wheel diameter.

13. The scooter of claim 1 wherein the support assembly includes a foot support for supporting an operator standing thereupon.

14. The scooter of claim 1 wherein the chassis further includes a perch portion extending laterally outwardly from the chassis and being configured to support an operator sitting thereupon.

15. The scooter of claim 14 wherein the perch portion is configured to be pivotally foldable generally parallel to the handle assembly.

16. The scooter of claim 1 further including a motor drivingly coupled to at least one of the front and rear wheels and being configured to impart rotational motion thereto for propelling the scooter.

17. The scooter of claim 1 further including a suspension system operatively coupled to at least one of the front and rear wheels and being configured to allow for vertical deflection thereof relative to the chassis.

18. The scooter of claim 1 wherein the chassis includes a handle assembly located forward of and extending upwardly from the support assembly and having a vertical arm member for gripping by an operator.

19. The scooter of claim 18 wherein the handle assembly further includes a pair of opposing lateral arm members extending outwardly from the vertical arm member for gripping by the operator.

Continuity (5)
Continuation 14072449 · Nov 5, 2013
Continuation 13633242 · Oct 2, 2012
Continuation 12397145 · Mar 3, 2009
Continuation 11713947 · Mar 5, 2007
Related Publication 20150183483A1 · Jul 2, 2015