Claims
- 1. A toy gun system comprising:
a toy gun having a housing with a nozzle, the toy water gun being adapted to discharge an output stream of liquid through the nozzle; a wheel fabricated from an absorbent material; and a support member mounted on the housing of the toy gun and having the wheel rotatably mounted thereon, the wheel being disposed proximate the nozzle of the toy gun and positioned such that at least a portion of the output stream of liquid impacts the at least a portion of the wheel to cause the wheel to rotate, wherein at least a portion of the liquid in the at least a portion of the output stream of liquid is absorbed into the at least a portion of the wheel impacted by the at least a portion of the output stream of liquid, and wherein the at least a portion of the liquid absorbed into the at least a portion of the wheel is projected outwardly from the at least a portion of the wheel by resultant forces of the rotation of the wheel, and wherein at least one of the toy gun, the wheel and the support member being adapted to cause a sound to be generated by the toy gun system when the at least a portion of the of the output stream of liquid impacts the at least a portion of the wheel to cause the wheel to rotate.
- 2. A toy gun system as defined in claim 1, wherein the support member is moveably mounted on the housing of the toy gun, the support member being adapted to move between a first operative position with the axis of rotation of the wheel disposed in a first direction and wherein the at least a portion of the output stream of liquid impacts the at least a portion of the wheel to cause the wheel to rotate, and an inoperative position wherein the wheel is not impacted by the output stream of liquid.
- 3. A toy gun system as defined in claim 2, wherein the support arm is rotatably mounted on the housing of the toy gun, and wherein the wheel moves through an arcuate path between the first operative position and the inoperative position.
- 4. A toy gun system as defined in claim 2, wherein the support member is adapted to facilitate moving the wheel to a second operative position with the axis of rotation of the wheel disposed in a second direction and wherein at least a portion of the output stream of liquid impacts at least a portion of the wheel to cause the wheel to rotate.
- 5. A toy gun system as defined in claim 2, wherein the housing of the toy gun comprises a first depression corresponding to the first operative position and a second depression corresponding to the inoperative position, and the support member comprises a detent member, wherein the detent member is disposed within the first depression when the wheel is in the first operative position, and the detent member is disposed within the second depression when the wheel is in the inoperative position.
- 6. A toy gun system as defined in claim 1, further comprising:
a bushing connected to the wheel; and a pivot pin connected to the bushing and to the support member, wherein the wheel and the bushing rotate about an axis defined by the pivot pin.
- 7. A toy gun system as defined in claim 6, wherein the bushing comprises a plurality of air intake ports extending outwardly from a surface of the bushing, the air intake ports being adapted to generate sound due to airflow at the air intake ports due to the rotation of the wheel.
- 8. A toy gun system as defined in claim 1, further comprising:
a sensor disposed proximate the wheel and being adapted to detect rotation of the wheel and to generate an output signal when the sensor detects rotation of the wheel; and a sound generator operatively couple to the sensor and being adapted to generate a sound when the sensor generates the output signal.
- 9. A toy gun system as defined in claim 1, further comprising:
a sensor disposed proximate the nozzle and being adapted to detect the discharge of the output stream of liquid at the nozzle and to generate an output signal when the sensor detects the discharge of the output stream of liquid at the nozzle; and a sound generator operatively couple to the sensor and being adapted to generate a sound when the sensor generates the output signal.
- 10. A toy gun system as defined in claim 1, wherein the toy gun comprises a trigger being adapted to cause the discharge of the output stream of liquid at the nozzle when the trigger moves to a discharge position, and wherein the toy gun further comprises:
a sensor disposed proximate the trigger and being adapted to detect the movement of the trigger to the discharge position and to generate an output signal when the sensor detects the movement of the trigger to the discharge position; and a sound generator operatively couple to the sensor and being adapted to generate a sound when the sensor generates the output signal.
- 11. A liquid distribution assembly for a toy gun having a housing with a nozzle, the toy water gun being adapted to discharge an output stream of liquid through the nozzle, the liquid distribution assembly comprising:
a wheel fabricated from an absorbent material; and a support member mounted on the housing of the toy gun and having the wheel rotatably mounted thereon, the wheel being disposed proximate the nozzle of the toy gun and positioned such that at least a portion of the output stream of liquid impacts the at least a portion of the wheel to cause the wheel to rotate; wherein at least a portion of the liquid in the at least a portion of the output stream of liquid is absorbed into the at least a portion of the wheel impacted by the at least a portion of the output stream of liquid, and wherein the at least a portion of the liquid absorbed into the at least a portion of the wheel is projected outwardly from the at least a portion of the wheel by resultant forces of the rotation of the wheel; and a sound generation mechanism mounted on at least one of the toy water gun, the wheel and the support member, the sound generation mechanism being adapted to generate a sound when the at least a portion of the of the output stream of liquid impacts the at least a portion of the wheel to cause the wheel to rotate.
- 12. A liquid distribution assembly as defined in claim 11, wherein the support member is moveably mounted on the housing of the toy gun, the support member being adapted to move between a first operative position with the axis of rotation of the wheel disposed in a first direction and wherein the at least a portion of the output stream of liquid impacts the at least a portion of the wheel to cause the wheel to rotate, and an inoperative position wherein the wheel is not impacted by the output stream of liquid.
- 13. A liquid distribution assembly as defined in claim 12, wherein the support arm is rotatably mounted on the housing of the toy gun, and wherein the wheel moves through an arcuate path between the first operative position and the inoperative position.
- 14. A liquid distribution assembly as defined in claim 12, wherein the support member is adapted to facilitate moving the wheel to a second operative position with the axis of rotation of the wheel disposed in a second direction and wherein at least a portion of the output stream of liquid impacts at least a portion of the wheel to cause the wheel to rotate.
- 15. A liquid distribution assembly as defined in claim 12, wherein the housing of the toy gun has a first depression corresponding to the first operative position of the wheel and a second depression corresponding to the inoperative position of the wheel, the support member comprises a detent member, the support member being adapted such that the detent member is disposed within the first depression when the wheel is in the first operative position, and the detent member is disposed within the second depression when the wheel is in the inoperative position.
- 16. A liquid distribution assembly as defined in claim 11, further comprising:
a bushing connected to the wheel; and a pivot pin connected to the bushing and to the support member, wherein the wheel and the bushing rotate about an axis defined by the pivot pin.
- 17. A liquid distribution assembly as defined in claim 16, wherein the sound generation mechanism comprises a plurality of air intake ports extending outwardly from a surface of the bushing, the air intake ports being adapted to generate sound due to airflow at the air intake ports due to the rotation of the wheel.
- 18. A liquid distribution assembly as defined in claim 10, wherein the sound generation mechanism comprises:
a sensor disposed proximate the wheel and being adapted to detect rotation of the wheel and to generate an output signal when the sensor detects rotation of the wheel; and a sound generator operatively couple to the sensor and being adapted to generate a sound when the sensor generates the output signal.
- 19. A liquid distribution assembly as defined in claim 10, wherein the sound generation mechanism comprises:
a sensor disposed proximate the nozzle and being adapted to detect the discharge of the output stream of liquid at the nozzle and to generate an output signal when the sensor detects the discharge of the output stream of liquid at the nozzle; and a sound generator operatively couple to the sensor and being adapted to generate a sound when the sensor generates the output signal.
- 20. A liquid distribution assembly as defined in claim 10, wherein the toy gun comprises a trigger being adapted to cause the discharge of the output stream of liquid at the nozzle when the trigger moves to a discharge position, and wherein the sound generation mechanism comprises:
a sensor disposed proximate the trigger and being adapted to detect the movement of the trigger to the discharge position and to generate an output signal when the sensor detects the movement of the trigger to the discharge position; and a sound generator operatively couple to the sensor and being adapted to generate a sound when the sensor generates the output signal.
REFERENCE TO RELATED APPLICATION
[0001] This is a continuation-in-part of U.S. patent application Ser. No. ______/______,______, filed Feb. 10, 2003 by Fred D. Eddins, Robert L. Brown and Walter Bezaniuk.