A bicycle training device known as “bicycle rollers” has been available for over one hundred years. This device consists of three rollers supported by a frame. In use, the rear wheel of a bicycle is brought to rest on two, relatively closely spaced (by about 20 cm) bracketing rollers and the front wheel is balanced on top of the third roller. This device permits a user to balance and steer the bicycle (within a range) and to pedal at any speed desired. Unfortunately, users are constrained as to how aggressively they can exercise since rapid changes in pedaling speed and rider position can easily cause the rear wheel to pop out of its bracketing rollers. Additionally, a bicycle which is rigidly constrained acts to discourage the rider's natural movement and is somewhat uncomfortable to ride. It is a principle object of this invention to provide an additional degree of motion to more closely duplicate the natural feel of outdoor cycling.
The following embodiments and aspects thereof are described and illustrated in conjunction with systems, tools and methods which are meant to be exemplary and illustrative, not limiting in scope. In various embodiments, one or more of the above-described problems have been reduced or eliminated, while other embodiments are directed to other improvements.
In a first separate aspect, the present invention may take the form of a bicycle exercise assembly adapted to be mounted on a supporting surface and that includes a bicycle trainer device, adapted to operatively support an exercising person. Also, a relative motion-permitting assembly is adapted to be supported by the surface and to support the bicycle trainer device and to permit relative motion between the bicycle trainer device and the surface.
In a second separate aspect, the present invention may take the form of bicycle rollers that include a frame and front and rear rollers mounted in the frame, each having two lateral ends. Also, a pair of bumper/rollers are mounted on the frame adjacent both sides of the front roller. They are mounted so as to be horizontally rotatable, thereby acting to constrain a wheel of a bicycle supported by the front roller from moving laterally off the roller, while not stopping rotation of the bicycle wheel.
In a third separate aspect, the present invention may take the form of bicycle rollers that include a frame and front and rear rollers mounted in the frame. Also, a first rotatable bumper/roller is mounted on the frame, in front of and above the front roller and a second rotatable bumper/roller is mounted on the frame, in back of and above the pair of rear rollers. The first and second rotatable bumper/rollers act to constrain a bicycle wheel that has moved for or aft from its intended position, without braking the rotation of the bicycle wheel.
In addition to the exemplary aspects and embodiments described above, further aspects and embodiments will become apparent by reference to the drawings and by study of the following detailed descriptions.
Exemplary embodiments are illustrated in referenced figures of the drawings. It is intended that the embodiments and figures disclosed herein are to be considered illustrative rather than restrictive.
Referring to
In an alternative preferred embodiment a stationary exercise bicycle is mounted so that fore and aft movement relative to a supporting surface is permitted during use. In the context of this application the term “bicycle-utilizing bicycle trainer” is any device into which an actual bicycle is placed, prior to use. This includes both bicycle rollers and plain or basic trainers, but not exercise bicycles.
Providing a frame 20 into which the bicycle training device, such as bicycle rollers 12 is set, provides a smooth, hard surface for wheels 16 to rotate and permits the tethering of a spring that gently moves rollers 12 back to the center of frame 20 when the bicycle rider's motion has pulled rollers 12 for or aft. In an alternative preferred embodiment, however, frame 20 is not present and bicycle rollers 12, equipped with wheels 16, is set onto a hard smooth surface, such as a concrete or cement surface. If wheels 16 are made of polymeric material, rollers 12 can even be set onto a wooden floor without damaging the floor. In addition, wheels 16 may be adapted for their intended use. For example, pneumatic tires can be used for use of rollers 12 on an asphalt surface. Although in this embodiment springs are not present to return rollers 12 to their starting position, in practice there is not a great deal of movement and a paved area that is only slightly larger than rollers 12 can accommodate a bicycle rider training on the wheeled rollers 12.
The front wheel 28 of the bicycle mounted on rollers 12 is prevented from slipping off rollers 12 by a pair of horizontally mounted and rotating rollers 30. Because they are rotatable, rollers 30 constrain front wheel 28 without stopping its braking its rotation, which could cause an accident, potentially injuring the bicycle rider. Likewise for and aft rotatable roller/bumpers 32 prevent further movement when front and rear bicycle wheels 28 and 26 move fore or aft from the intended position on rollers 12. Roller/bumpers 32 act to gently return wheels 28 and 26 to their intended position.
In alternative preferred embodiments, wheels 16 are replaced by some other relative motion permitting assembly adapted to permit for and aft motion between the rider and the surface upon which assembly 10 or other similar assembly is resting. These preferred embodiments include the case in which frame 20 is not provided and wheels 16 rest on some available surface such as a floor or a patio. In this embodiment wheels 16 may be enlarged and/or fitted with pneumatic tires. Other embodiments include cases in which the relative motion permitting assembly includes a frame, such as frame 20, but where wheels 16 are mounted upwardly on frame 20 rather than downwardly on trainer device 12. Alternatively, sliding surfaces on 20 and 12 could provide relative motion, or ball bearings, possibly in races, could provide the relative motion between a frame, such as frame 20 and a trainer device, such as trainer device 12.
In an alternative preferred embodiment of a training assembly 110, a basic trainer 112 is placed on wheels 116 and set into a frame 120 to travel on tracks 122 and is returned to center by springs 124. Trainer 112 keeps bicycle 126 laterally upright and provides resistance to rear wheel 130. A stool 140 is provided for front wheel 128, which does not rotate and will translate in the same constrained manner as rear wheel 130.
While a number of exemplary aspects and embodiments have been discussed above, those possessed of skill in the art will recognize certain modifications, permutations, additions and sub-combinations thereof. It is therefore intended that the following appended claims and claims hereafter introduced are interpreted to include all such modifications, permutations, additions and sub-combinations as are within their true spirit and scope.
This application claims priority from provisional application Ser. No. 60/716,852 filed Sep. 14, 2005.
Number | Name | Date | Kind |
---|---|---|---|
2498047 | Myers | Feb 1950 | A |
4779863 | Yang | Oct 1988 | A |
5492516 | Trotter | Feb 1996 | A |
6056672 | Carbonell Tendero | May 2000 | A |
7060009 | Greenleaf | Jun 2006 | B2 |
20020055422 | Airmet et al. | May 2002 | A1 |
20040053751 | Pizolato | Mar 2004 | A1 |
20040077465 | Schmidt | Apr 2004 | A1 |
20050209064 | Peterson et al. | Sep 2005 | A1 |
Number | Date | Country |
---|---|---|
2657024 | Jul 1991 | FR |
WO 9423807 | Apr 1994 | WO |
PCTNZ9400030 | Oct 1994 | WO |
Number | Date | Country | |
---|---|---|---|
20070060453 A1 | Mar 2007 | US |
Number | Date | Country | |
---|---|---|---|
60716852 | Sep 2005 | US |