This invention relates to a training device for exercising a user's abdominal muscles. In particular, it relates to such a device which enables the user to exercise in a standing position.
Known fitness equipment for training a user's abdominal muscles generally operates with the user in a supine body position. However, for users lacking mobility, such as those who are disabled, obese or elderly, it can be difficult comfortably to adopt the supine position, and even more difficult to return to a standing position afterwards. As a result, those users who are likely to benefit most from abdominal muscle training can find themselves excluded from performing such exercise.
Abdominal muscle training devices operable with the user in a seated position have also been proposed, but these too are not without their shortcomings. In particular, effective training of the abdominal muscles requires the performance of a range of different dynamic movements, working against an applied resistive load, and such a range of movements cannot practicably be achieved in either a seated or supine position.
Furthermore, in order to optimise the efficiency of muscle training, it is highly desirable that the training exercises performed should be specific to the task being trained for, and thus target the appropriate muscle groups. Most physically demanding tasks, whether occurring on the sports field or in everyday activities, are performed in an upright, standing position rather than in the supine or seated postures employed by known abdominal muscle training devices. The specificity and efficiency of muscle training exercises performed utilising such devices is therefore compromised.
The present invention seeks to address the above issues by providing a training device which allows the user to remain in a comfortable and convenient standing position whilst exercising the abdominal muscles. The device enables the user to perform a range of dynamic movements against an applied resistive load from this position, thus enhancing the efficiency and specificity of the exercise.
According to the present invention there is provided a training device for exercising a user's abdominal muscles, comprising a base portion adapted to support a user in a standing position, a resistance member generally upstanding from the base portion, and a plunger adapted for vertical downward motion against the resistance member upon the manual application of a force.
The term “plunger” is used herein to refer to any component adapted to be manually depressed by a user against a resistive load provided by the resistance member.
The present invention may be constructed in a wide range of different configurations, and comprising various kinds of resistance member. However, it is currently preferred that the resistance member comprises a spring mounted within a generally tubular housing upstanding from the base portion, said housing being adapted also to accommodate a lower part of the plunger when a downwardly directed force is applied thereto.
The spring is secured at its lower end to the base portion and preferably comprises a head element at its upper end, for engaging with the lower end of the plunger. The spring is biased normally to urge the plunger upwards out of the top of the housing. The user must therefore work against the resistance of the spring by manually applying a force to the plunger to urge it downwards into the housing, thus compressing the spring. Releasing the applied force from the plunger releases the compression in the spring, thus urging the plunger back upwards to its initial rest position.
The sequence of manually applying a force to the plunger and subsequently releasing it requires the user's abdominal muscles to contract and expand—the plunger being depressed when the abdominal muscles work to overcome the resistance of the spring. The sequence will typically be repeated many times by the user during the performance of abdominal muscle training exercise.
The housing preferably has an annular cap provided at its upper end, which serves both to permit the sliding motion of the lower part of the plunger into and out of the housing, and also to retain the spring within the housing. A retaining element is preferably provided adjacent the lower end of the plunger, said retaining element being adapted to prevent inadvertent removal of the plunger from the housing, by bearing against the annular cap of the housing. The annular cap may desirably be provided with one or more bearings to facilitate the motion of the plunger into and out of the housing.
The lower end of the plunger is preferably further adapted to engage with the upper end of the spring. This is most preferably achieved by providing a threaded portion at the lower end of the plunger, said threaded portion being adapted to engage with a complementary threaded aperture in the head element at the upper end of the spring. The complementary threaded engagement of the head element and the plunger enables the resistive load presented by the spring to be adjusted. This is done by rotating the plunger relative to the housing, thereby varying the separation between the head element and the retaining element.
In order that the training device of the present invention may enable the user to perform a range of abdominal muscle training exercises, the base portion preferably comprises an upper footplate mounted for rotation on a fixed lower section. This allows the user to perform torso twisting exercises in addition to the basic abdominal contraction exercises associated with depressing and releasing the plunger. These torso twists may be performed either independently of the basic abdominal exercise or simultaneously therewith.
To provide a resistive load for the user to work against during the performance of the torso twisting exercises, the rotatable footplate is preferably linked to the fixed lower section by a further resistive element. Said further resistive element may be either an elastic resistance element or a frictional resistance element. The base portion may additionally comprise a locking mechanism temporarily to prevent rotation of the footplate. This option is provided in order that newcomers to abdominal muscle training may begin by performing the basic abdominal contraction exercises before moving on to incorporate torso twisting exercise into their training regime.
The base portion preferably further comprises a roughened upper surface to provide grip for the user's feet. This facilitates the transfer of torque from the user's twisting motion to overcome the resistance provided by the further resistive element in the base portion.
For the comfort of the user, and to enable both one-handed and two-handed operation, the plunger is preferably generally T-shaped having an upper horizontally disposed handle section and a lower vertically disposed shaft section.
In order that the training device of the present invention may conveniently be folded up for transport or storage when not in use, the housing is preferably hingedly mounted on the base portion. The housing, spring and plunger assembly may thus be folded down to lie co-planar with the base portion.
In order that the present invention may be fully understood, a preferred embodiment will now be described in detail, though only by way of example, with reference to the accompanying drawings, in which:
a and 3b form an illustrative sequence showing a user performing a basic abdominal muscle training exercise using the training device of
a and 4b form an illustrative sequence showing a user performing an alternative abdominal muscle training exercise using the training device of
a and 5b form an illustrative sequence showing a user performing a further alternative abdominal muscle training exercise using the training device of
a and 6b form an illustrative sequence showing a user performing a compound abdominal muscle training exercise using the training device of
Referring first to
The base portion 11 comprises a fixed lower section 17, and an upper footplate 18 rotatably mounted on said lower section, as indicated by arrow b. An extension of the fixed lower section 17 forms a base 19 for the upstanding housing 12. The extension 19 is hingedly mounted on the lower section 17 to enable the plunger 13 and housing 12 assembly to be folded down to overlie the base portion 11 when the training device 10 is not in use.
Referring now to
The spring 21 is biased normally to urge the head element 22 upwards, thus in turn urging the plunger 13 to a rest position wherein nearly the entire length of the shaft 15 lies outside the housing 12. When in this rest position, as shown in
In use, the plunger 13 is subjected to the manual application of a force, by the user (not shown in
Upon releasing the manually-applied force from the handlebar 14, the compression in the spring 21 is released, which urges the head element 22 upwards, thus in turn urging the plunger 13 back up to its rest position. The sequence of manually applying a downwardly-directed force to the handlebar 14 and subsequently releasing that force, will typically be repeated many times during the performance of abdominal muscle training exercise.
In addition to, or as an alternative to, the operation of the plunger 13 as described above, the user also has the option of exercising using the rotatable footplate 18, as will be described in more detail below with reference to
Referring now to
As can be seen from
Referring now to
Keeping his arms 41, 42 and legs 43, 44 straight, the user 30 then rotates his hips 46, exerting a rotational force (torque) on the footplate 18, as indicated by arrow d. The footplate 18 is caused to rotate relative to the fixed lower section 17 of the base portion 11, working against the resistance provided by the further resistive element (not shown) until the position shown in
As can be seen from
Referring now to
Keeping his legs 43, 44 and right arm 42 straight, and with his left arm 41 free, the user 30 then exerts a downward force c on the plunger 13, urging it into the housing 12. The work required to overcome the resistance in the spring 21 (not visible) is done by the user's oblique (side) abdominal muscles, generally indicated 50, on his right hand side 32. As can be seen in
Referring finally to
Keeping his arms 41, 42 and left leg 43 straight, the user 30 then exerts a downwardly directed force c on the plunger 13, whilst simultaneously rotating his hips 46 to the left to exert a rotational force d on the footplate 18. The user's abdominal muscles 40 thus work to overcome both the resistance in the spring 21 (not visible) and the further resistive element (not shown) between the footplate 18 and the fixed lower section 17 of the base portion 11.
As shown in
Upon the user 30 releasing the downwardly directed force c and the rotational force d, the spring 21 and the resistive element in the base portion 11 urge the plunger 13 and the footplate 18 respectively, back to their rest position as shown in
Number | Date | Country | Kind |
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0517689.6 | Aug 2005 | GB | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/GB2006/050264 | 8/30/2006 | WO | 00 | 2/27/2008 |