This invention relates generally to devices for use as an amusement or during physical exercise, and more specifically to devices for wheel guiding and methods for controlling wheel movement thereof.
In the past, various distractions have been available for people seeking an amusement or wanting to exercise and maintain a degree of less boredom. For example, head set radios and CD players are both commonly used by walkers and joggers, and free these people from the routine involved in their exercise. People commonly play games such as football, baseball, tennis and racquetball for physical exercise.
Currently, most joggers, walkers and runners do not include games during their activity. As a result, motivation for performing their activity is weakened. People, rather than going along paths may use relatively expensive exercise machines. It is desirable to have less expensive devices for exercise purposes that will engage the interest of people. A portable exercise device that can be adjusted for use by children or adults of various heights is also desirable.
In addition, people do not take advantage of other possibilities such as improving their hand and eye coordination, while continuing to maintain their physical activity. While sports activities provide the advantage of hand and eye coordination, they also require a level of skill that reduces the desirability of some people to pursue those sports. Therefore, there is a need for a product that can amuse people and can help people with lower degrees of skill and the desire to exercise without using exercise machines to do so and develop their motor skills.
For many people, exercise is a boring activity that becomes a task rather than being fun. Again, a device that provides the ability to engage people in mentally challenging activities, provide fun and promote physical activity would be of great benefit to many people. Chasing a wheel provides such an activity.
For the foregoing reasons, there is a need to provide devices for wheel guiding and methods for controlling wheel movement thereof.
Accordingly, it is an object of this invention to provide improved devices for wheel guiding.
It is a further object of this invention to provide improving devices for wheel guiding that are adjustable in dimension for use by people of different heights.
It is a further object of this invention to provide improving methods for controlling wheel movement with wheel-guiding devices.
In accordance with one embodiment of this invention, a wheel-guiding device comprises in combination a handle and a U-shaped member connected to the handle for guiding motion of a wheel. The U-shaped member is preferably in the form of a U-shaped frame. The handle has an extension portion for adjusting the length of the wheel-guiding device. The handle is at an angle to a plane of the U-shaped member. The handle is at a right angle to a plane of the U-shaped frame. The wheel-guiding device further comprises a wheel coupled to the U-shaped member to control movement of the wheel. The wheel has a rim portion and an opening located within the rim portion.
In accordance with a second embodiment of this invention, a method of controlling movement of a wheel comprises providing a handle and a U-shaped member connected to the handle; and contacting a portion of the wheel with the U-shaped member for guiding motion of the wheel. The method further comprises the step of pushing an outer surface of the wheel with a portion of the U-shaped member to cause rotation and directional motion of the wheel. The method further comprises the step of surrounding the wheel with the U-shaped member for allowing free directional motion of the wheel. The method further comprises the steps of providing a hollow wheel; turning the handle to cause the U-shaped member to turn; inserting a portion of the U-shaped member inside the hollow wheel; and pushing the outer surface of the hollow wheel with a portion of the U-shaped member that is outside of the hollow wheel.
In accordance with a third embodiment of this invention, a method of controlling movement of a wheel comprises providing a handle and a U-shaped member connected to the handle; and contacting a portion of the wheel with the U-shaped member for guiding motion of the wheel. The method further comprises the steps of providing a hollow wheel; pushing an inner surface of the hollow wheel with a portion of the U-shaped member to cause rotation and directional motion of the hollow wheel. The method further comprises the steps of providing a hollow wheel; turning the handle to cause the U-shaped member to turn; and inserting the U-shaped member inside the hollow wheel. The method further comprises the step of looping a portion of the U-shaped member around the hollow wheel so that an inner portion of the U-shaped member remains inside the hollow wheel for pushing the inner surface of the hollow wheel.
In accordance with a fourth embodiment of this invention, a method of controlling movement of a wheel comprises providing a handle and a U-shaped member connected to the handle; and contacting a portion of the wheel with the U-shaped member for guiding motion of the wheel. The method further comprises the step of pulling on a portion of an outer surface of the wheel with a portion of the U-shaped member to cease wheel rotation. The method further comprises the steps of turning the handle to cause the U-shaped member to turn; and surrounding the wheel with the U-shaped member to both stop and pull the wheel. The method further comprises providing a hollow wheel; turning the handle to cause the U-shaped member to turn; inserting a portion of the U-shaped member inside the wheel; contacting a portion of an inner surface of the hollow wheel with the portion of the U-shaped member; and lifting the hollow wheel with the portion of the U-shaped member.
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In summary, the present invention is directed to a wheel-guiding device. A number of embodiments showing methods of controlling motion in various directions and stopping motion of the hollow wheel with wheel-guiding devices are described.
While the invention has been particularly shown and described with reference to preferred embodiments thereof, it will be understood by those skilled in the art that the foregoing and other changes in form and details may be made therein without departing from the spirit and scope of the invention.
For example, there are alternative methods by which the telescoping effect can be accomplished. The handle can be of fixed length and the wheel-guiding device would then be available in different fixed lengths. The materials of construction of the wheel-guiding device may be metals or plastics. The hollow wheel and the knob may be made of plastics or rubbers. Plastic materials may include those, which glow in the dark as a safety precaution. A small light may be attached to the wheel-guiding device as a safety precaution. Dimensions of components of the U-shaped frame may be altered to accommodate different hollow wheels. The methods of causing hollow wheels to move may differ. Hollow wheels may be replaced by solid wheels or other essentially round structures.
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Number | Date | Country | |
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20040214695 A1 | Oct 2004 | US |