This invention relates generally to a stationary exercise bicycle for human exercise to condition muscles and specifically to a stationary exercise bicycle that includes laterally adjustable pedals that can be individually positioned during a workout to increase the number of different muscle groups being conditioned.
The use of stationary exercise bicycles is well known in the prior art. Typically such an exercising device includes many parts that are similar to a regular bicycle including a pair of rotatable pedals that may be connected to a sprocket like device that applies tension or back force against the pedaling effort to enhance muscle conditioning. Many of the stationary exercise bicycles also includes seats and handlebar like supports for grasping with the hands during the exercise period.
One of the drawbacks of the stationary exercise bicycle is that the pedals that provide the resistance used for muscle conditioning and muscle toning are located in a fixed position relative to a user who may be sitting or standing while rotating the pedals against resistance. This means that the same muscle groups are being conditioned during each use of the stationary exercise bicycle. While this is very beneficial to the particular muscle groups that are being conditioned, it would be more beneficial to the user that during a particular exercise workout period, the user could have the benefit of conditioning and toning many different muscle groups.
The invention described herein provides a device that does allow increasing the number of different muscles and muscle groups that can be conditioned using a stationary exercise bicycle. This is accomplished by the user manually adjusting the lateral position of each pedal, i.e. the left pedal and the right pedal, at any time during an exercise workout period to different lateral positions. Changing the distance laterally of each pedal from the pedal arm causes the user's legs to change positions relative to each other and the centerline of the exercise bicycle, thereby stimulating different muscle groups, each one of which is dependent on the specific location of the pedal relative to the pedal shaft and distance from the centerline of the exercise bicycle.
Disclosed is a stationary exercise bicycle including a support frame and stabilizing stationary base, a hand gripping support device connected to the frame, a rotatable tensioning device having a left pedal and a right pedal connected to the frame, the rotatable tensioning device including a rotatable frame axle, a left pedal extension arm and a right pedal extension arm each connected to said frame axle, a left pedal support shaft and a right pedal support shaft, each connected to the left and right pedal extension arms respectively. Each pedal is rotatable as mounted on its own rigid elongated support shaft. Each pedal support shaft has an extended length and is elongated so that the pedal support shaft length can exceed the length of each pedal by at least a factor of two or more pedal lengths.
Also mounted on each side of each pedal on the pedal shaft are a pair of adjustable pedal stops that hold the pedal at a desired but changeable lateral position relative to the pedal support shaft. In some embodiments, the pair of adjustable pedal stops for each pedal can be ring fasteners that engage the pedal support shaft with set screws. In other embodiments, the adjustable pedal stops may comprise ring fasteners that engage the pedal support shaft with thumb screws, wing bolts, or other manually adjustable fastening means. Each pedal can rotate about the pedal support shaft but cannot move laterally once the pedal stops are fastened with the set screws.
To operate the stationary exercise bicycle utilizing the invention described herein, the user would determine initially at the beginning of an exercise period the specific location of the left pedal and the right pedal relative to the pedal support shaft laterally for the specific exercise time period. After exercising for a time, the user would stop and change the lateral position of each pedal on the pedal support shafts using the adjustable pedal stops. Once a new lateral position of each pedal has been established, the user can then continue the exercise for a specific time. Because the pedal locations have been changed, the user will experience a different muscle group that is being conditioned because the user's legs are spaced apart differently from the initial exercise pattern. The manual change of pedal location laterally can be continued throughout the entire exercise regime to ensure that different muscle groups are conditioned during each exercise complete routine. The user's legs and feet are being spaced apart for different exercise time periods to change muscle groups.
In an alternate embodiment, adjustable spring-activated pedal stops that are manually movable can be used to expedite the lateral positioning of each pedal during the entire exercise routine. To that end, the set screw or manually operable fastener means can be replaced with a spring loaded pin stop. The pedal support shaft can have surface grooves or apertures spaced laterally which receive a spring loaded pin within the pedal stop.
In accordance with the foregoing, it is an object of this invention to provide an improved stationary exercise bicycle that allows a user to increase the number of different muscle groups to be conditioned during a single exercise routine by the user changing the lateral spacing of each pedal of the exercise bicycle along an elongated pedal support shaft which changes the physical position of the person exercising to ensure different muscle groups are conditioned.
Referring now to
The person exercising can at various time periods during the exercise routine stop pedaling and manually loosen set screws 16a and 18a which allow the cylindrical ring stops 16 and 18 and the pedal 14 to be adjusted laterally along the shaft 12. Accordingly, the pedal 14 is selectively positionable along the length of the pedal support shaft 12. When the person exercising has moved pedal 14 to a new location between the driven arm 20 and the shaft proximal end 12a, the person exercising can then tighten screws 16a and 18a in the new position, thereby affixing the pedal 14 to a desired position on along the pedal support shaft 12, effectively changing the lateral location of pedal 14 during an exercise routine.
Although in
The length of elongated rigid pedal support shaft is made to greatly exceed pedal 14 length to allow extended pedal locations. By changing the pedal 14 locations laterally along the extra-long shaft 12 which can be up to three or four times in length relative to the length of the pedal 14 allows for a larger number of different positions for each pedal 14 during an exercise routine. Spreading the legs and feet apart of the user with the pedal positions at different distances conditions different muscle groups. Accordingly, the purpose of the invention is to allow a person using an bicycle to vary the activation of muscle groups and exercise more muscle groups during a single routine by changing the lateral displacement of each pedal (left and right pedal) on an stationary exercise bicycle at different time periods in the single routine causing the user's legs to be spread further apart or closer together causing different muscle groups to be stimulated during the exercise routine. Additionally, the activation of muscle groups can be further varied by adjusting the angle of the pedal bracket 30 with respect to the shaft 12. The angle of the pedal bracket 30 may also be varied in order to enhance comfort depending on the desired location of the pedal 14 on shaft 12, i.e. if the pedal 14 is in an outer position, it may desired to angle the pedal bracket 30 slightly outward as shown in
It is appreciated that the present pedal system 10 can be utilized in connection with a plurality of bicycle and bicycle-like systems including traditional mobile bicycles, recumbent bicycles, stationary upright bicycles, stationary recumbent bicycles, hand-bicycles, and various other human-powered mobile and stationary exercise equipment. To that end, the design of the pedal system 10 is not to be construed as limited to any particularly engagement or orientation with the crank or other rotary means of the device to which it is attached. Additionally, the size, shape and materials used for the various components of the present invention can vary as would be appreciated by one with skill in the art.
While specific embodiments have been described in detail in the foregoing detailed description and illustrated in the accompanying drawings, those with ordinary skill in the art will appreciate that various modifications and alternatives to those details could be developed in light of the overall teaching of the disclosure. Accordingly, the particular arrangements disclosed are meant to be illustrative only and not limiting as to the scope of the invention, which is to be given the full breadth of the appended claims in any and all equivalents thereof.
This application also claims priority to U.S. Provisional Application 62/020,637 filed on Jul. 3, 2014.
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Number | Date | Country | |
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62020637 | Jul 2014 | US |