Folding elliptical lift assist system
09937379 ยท 2018-04-10
Assignee
Inventors
- Nathan Mortensen (Montpelier, ID, US)
- William T. Dalebout (North Logan, UT)
- Trenton Von Larsen (Hyrum, UT, US)
Cpc classification
A63B71/0619
HUMAN NECESSITIES
A63B2210/50
HUMAN NECESSITIES
A63B22/0012
HUMAN NECESSITIES
A63B22/04
HUMAN NECESSITIES
A63B2022/067
HUMAN NECESSITIES
International classification
A63B22/04
HUMAN NECESSITIES
A63B22/00
HUMAN NECESSITIES
A63B71/06
HUMAN NECESSITIES
Abstract
An elliptical exercise machine, in one embodiment, includes a first assembly pivotally coupled with a second assembly and at least one assist mechanism. The first assembly includes a first frame member, a rotational resistance mechanism associated with the first frame member, a first foot support member pivotally coupled to a portion of the rotational mechanism and a second foot support member pivotally coupled to another portion of the rotational mechanism. The second assembly includes a second frame member, a first reciprocating arm pivotally coupled with the second frame member, a second reciprocating arm pivotally coupled with the second frame member. In one embodiment, the assist mechanism may include a folding assist mechanism to provide resistance between the assemblies during a folding transition. In another embodiment, the assist mechanism may include a rotational assist mechanism to assist a user in transitioning the elliptical machine to an upright storage position.
Claims
1. An elliptical exercise machine comprising: a first assembly including a first frame member; a second assembly including a second frame member coupled with the first frame member; a rotational assist mechanism associated with the first assembly, the rotational assist mechanism including at least one lever arm configured to engage a ground on which the elliptical exercise machine rests and apply a moment to the first assembly when at least a portion of the elliptical exercise machine is being lifted.
2. The elliptical exercise machine of claim 1, further comprising a plurality of support structures configured to support the elliptical machine in an upright storage position wherein the first frame member extends in a substantially vertical direction.
3. The elliptical exercise machine of claim 2, wherein the first assembly includes a rear cross member coupled with the first frame member, wherein the plurality of supporting structures includes one or more support structures coupled with the rear cross member.
4. The elliptical exercise machine of claim 3, wherein the first assembly includes a front cross member coupled with the first frame member and a handle coupled with the front cross member.
5. The elliptical exercise machine of claim 1, wherein the first frame member is pivotally coupled with the second frame member such that the second assembly is pivotally displaceable relative to the first assembly from a first position to a second position.
6. The elliptical exercise machine of claim 5, further comprising a folding assist mechanism coupled between the first assembly and the second assembly, the folding assist mechanism being configured to provide resistance to the second assembly as the second assembly is displaced from the first position to the second position.
7. The elliptical exercise machine of claim 6, wherein the folding assist mechanism comprises at least one of a biasing member and a damping member.
8. The elliptical exercise machine of claim 1, further comprising a locking mechanism associated with the first assembly, wherein the locking mechanism is configured to selectively engage the rotational assist mechanism and prevent the at least one lever arm from engaging the ground.
9. The elliptical exercise machine of claim 1, further comprising a rotational resistance mechanism associated with the first frame member; at least one foot support member pivotally coupled to a portion of the rotational resistance mechanism; and at least one reciprocating arm pivotally coupled with the second frame member; wherein the at least one lever arm includes a first lever arm positioned on a first side of the rotational resistance mechanism and a second lever arm positioned on a second, opposing side of the rotational resistance mechanism.
10. An elliptical exercise machine comprising: a first assembly including a first frame member; a second assembly pivotally coupled with the first assembly, the second assembly including a second frame member; at least one folding assist mechanism coupled between the first assembly and the second assembly, the at least one folding assist mechanism being configured to provide resistance to the second assembly as the second assembly rotates relative to the first assembly between a first, operating position and a second, folded position; a rotational assist mechanism associated with the first assembly, the rotational assist mechanism including at least one lever arm configured to engage a ground and apply a moment to the elliptical exercise machine when at least a portion of the elliptical exercise machine is being lifted.
11. The elliptical exercise machine of claim 10, wherein the at least one folding assist mechanism includes a damping mechanism.
12. The elliptical exercise machine of claim 10, further comprising: a rotational resistance mechanism associated with the first frame member; at least one foot support member pivotally coupled to a portion of the rotational resistance mechanism; and at least one reciprocating arm pivotally coupled with the second frame member; wherein the at least one lever arm includes a first lever arm positioned on a first side of the resistance mechanism and a second lever arm positioned on a second, opposing side of the resistance mechanism; and wherein the at least one folding assist mechanism has a first end pivotally coupled with the first frame member and a second end pivotally coupled with the second frame member.
13. The elliptical exercise machine of claim 10, wherein the folding assist mechanism includes at least one of a biasing member and a damping member.
14. A method of operating an elliptical exercise machine, comprising: biasing a front portion of an elliptical exercise machine with a rotational assist mechanism that is incorporated into a rear portion of the elliptical exercise machine; and lifting a front portion of the elliptical exercise machine into an upright position while the rotational assist mechanism applies a force that provides a torque about a pivot point of the rear portion such that the provided torque assists with lifting the front portion of the elliptical exercise machine.
15. The method of claim 14, wherein the rotational assist mechanism comprises a lever arm connected to the pivot point.
16. The method of claim 15, wherein biasing the front portion comprises releasing the lever arm from a locking mechanism so that the lever arm rotates into an engagement with a floor to provide the force.
17. The method of claim 15, further comprising rotating the lever arm back into a locked position after the elliptical exercise machine is in the upright position.
18. The method of claim 14, further comprising lowering the front portion of the elliptical exercise machine while the rotational assist mechanism applies the force.
19. The method of claim 18, wherein the rotational assist mechanism comprises a lever arm connected to the pivot point.
20. The method of claim 14, further comprising providing stability to the elliptical exercise machine in the upright position by leaving the rotational assist mechanism engaged.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The accompanying drawings illustrate various embodiments of the present methods and systems and are a part of the specification. The illustrated embodiments are merely examples of the present systems and methods and do not limit the scope thereof.
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(15) Throughout the drawings, identical reference numbers designate similar, but not necessarily identical, elements.
DETAILED DESCRIPTION
(16) Referring to
(17) The lower assembly 102 further includes a first reciprocating foot support 114 and a second reciprocating foot support 116. The first foot support 114 has a first end 118 and a second end 120, the second end 120 being pivotally coupled with the rear mechanism 112 such that the second end 120 of the foot support 114 travels in a substantially circular path during operation of the elliptical machine 100. A foot pad 122 is disposed on the first foot support at a location between the first end 118 and the second end 120. The foot pad 122 is sized and configured to receive and support a foot of a user and may either be integrally formed with the foot support 114 or formed as a separate component and coupled with the foot support 114 (e.g., by fasteners, adhesive, or other mechanical or material techniques). The second reciprocating foot support 116 likewise includes a first end 124 and a second end 126, with the second end 126 being pivotally coupled with the rear mechanism 112 such that the second end 126 of the foot support 116 travels in a substantially circular path during operation of the elliptical machine 100. A second foot pad 128 is disposed on the second foot support 116 at a location between the first end 124 and the second end 126.
(18) The first and second reciprocating foot supports 114 and 116 are laterally spaced apart from one another such that each of the corresponding foot pads 122 and 128 receive the right and left feet, respectively, of a user for facilitating a striding motion with the user during use of the machine 100. The foot pads 122 and 128 may be configured with surface features (e.g., ribs, grooves, knobs, etc) to provide traction to the foot of a user. In other embodiments, while the foot pads may not necessarily include surface features, they may include a non-slip material to provide traction to the foot of a user. The foot pads 122 and 128 may be adjustable relative to their associated foot supports 114 and 116 such that they may be positioned at different locations along the lengths of the foot supports 114 and 116 to accommodate the preferences of different users.
(19) The first assembly 102 may include a number of additional components or features. For example, a handle 130 may be coupled with front cross member 108 to assist in lifting or moving the elliptical machine 100. Additional handles may be coupled to other portions of the elliptical machine 100 to further enable a user to more easily lift or move the elliptical machine 100. One or more wheels 132 may be coupled to the rear cross member 110 to enable a user to more easily move the elliptical machine 100 from one location to another by, for example, lifting on the front handle 130 and rolling the elliptical machine 100 across the floor. Additionally, feet or support pads 134 may be coupled to various portions of the first assembly 102 and may be configured to engage the floor or a supporting surface. The support pads 134 may be adjustable so that the elliptical machine 100 may be leveled on a given surface prior to operation by a user. It is noted that in one embodiment, the under surface of the cross members 108 and 110 may serve as support pads. In another embodiment, caps positioned over the ends of the cross members 108 and 110 may serve as support pads.
(20) The second assembly 104 includes an upright frame member 140 with a control panel 142 coupled therewith. The control panel 142 may include a variety of input devices 144 (e.g., switches, buttons, touch pads) and output devices 146 (e.g., graphic displays, lights, audio speakers) to facilitate control of the elliptical machine 100. The input devices 144 may be used to turn the elliptical machine 100 on or off, to control the amount of resistance being applied to the flywheel of the rear mechanism 112, to enable preset exercise programs, or to otherwise control the operation of the elliptical machine. The various output devices 146 may be used to provide a user with an indication of the operating status of the elliptical machine 100 and to provide other information (e.g., time exercised, calories burned, etc.) to the user.
(21) A variety of additional components may also be coupled with the frame member 140. For example, a tray 148, which may include a cup holder or other structure, may be coupled with the frame member 140. Also, a pair of stationary hand grips 150 may be coupled with the upright frame member 140. While not specifically shown, other components, such as a fan, may also be coupled with the frame member 140 as will be recognized by those of ordinary skill in the art.
(22) The second assembly 104 also includes a first reciprocating arm 152 and second reciprocating arm 154. The first reciprocating arm 152 includes a first end 156 and a second end 158. Similarly, the second reciprocating arm 154 includes a first end 160 and a second end 162. Upper portions of the reciprocating arms 152 and 154 near the first ends 156 and 160 are configured as grips or handles for a user to grasp with their hands while exercising. The second ends 158 and 162 of the reciprocating arms 152 and 154 are pivotally coupled with the first ends 118 and 124 of the foot support members. Each of the reciprocating arms 152 and 154 are pivotally coupled to the frame member 140 through associated pivoting structures 164. The pivoting structures 164 may include, for example, a bearing member that enables the reciprocating arms to pivot back and forth along an axis of rotation 166 in a reciprocating fashion.
(23) During operation of the elliptical machine 100, a user places their feet on the foot pads 122 and 128 and applies a force in order to motivate the foot supports 114 and 116 to move through their defined looping pathways. The pathway of the foot supports 114 and 116 (and thus the foot pads 122 and 128) is defined in part by the connection of the foot supports 114 and 116 with the rear mechanism 112 and in part by the connection of the foot supports 114 and 116 with the reciprocating arms 152 and 154.
(24) In addition to the two assemblies 102 and 104 being connected by way of the pivoting connection of the foot supports 114 and 116 with associated reciprocating arms 152 and 154, the longitudinal frame member 106 is pivotally coupled with the upright frame member 140 by a pivoting structure 170. Again, the pivoting structure 170 may include a bearing component (e.g., a sleeve bearing, a roller bearing, or other appropriate structure) to accommodate pivoting movement of the upright frame member 140 relative to the longitudinal frame member 106. Associated with the pivoting structure 170, a locking or coupling mechanism 172 may be used to affirmatively maintain the frame members 106 and 140 (and, thus, the assemblies 102 and 104) in their operating positions as shown in
(25) Referring briefly to
(26) Referring now to
(27) Referring briefly to
(28) Referring to
(29) It is noted that the upright arm 140 of the second assembly 104 is configured such that it does not interfere with the post 194 or plate 196 (or other similar structure) when rotating between an operational position and a collapsed position. For example, if the upright arm 140 is formed from structural tubing (e.g., with a square or rectangular cross-section), a portion of the tubing may be removed, as shown in
(30) While not specifically shown, a mechanism or structure may be also be provided to lock the first and second assemblies 102 and 104 in a collapsed position so that, for example, if an individual desires to move the elliptical machine 100 (or 180) while it is in the collapsed position, the first and second assemblies 102 and 104 will maintain their positions relative to each other.
(31) Referring now to
(32) As seen in
(33) While three distinct support surfaces are shown in the presently depicted embodiment, a configuration may be employed where a different number of support surfaces are used, with each lying substantially within a common plane such that the elliptical machine may be support in an upright manner. Additionally, the support structures may be located at different positions than shown in the drawings, and/or associated with different components than shown in the drawings if desired.
(34) As seen in
(35) In one embodiment, the support surfaces 200A-200C may be formed from a relatively rigid material including, for example, a plastic, a metal or a metal alloy material. In another embodiment, the body of the support surface may be formed of a relatively rigid material, while the surface that engages the ground is formed from somewhat less rigid material (e.g., a coating formed of a rubber or polymer material) so that the support surfaces 200A-200C may engage a hard floor (e.g., wood or tile) without marring the floor. In yet another embodiment, the support surfaces 200A-200C may be formed of a relatively rigid material, and a removable cap may be formed of a different material (e.g., a softer or less rigid material) may be fitted over the ends of the support surfaces 200A-200C that will engage the floor when in an upright position.
(36) Referring now to
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(39) It is noted that, in other embodiments, it is possible, for example, for the wheel 132 to remain in contact with the ground simultaneously with the support pad 134 while the elliptical machine 100 is in a position for user or operation by a user. Additionally, or alternatively, it is possible for the wheel 132 to remain engaged with the ground simultaneously with the support structure 200B while the elliptical machine 100 is in an upright position such as shown in
(40) Referring briefly to
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(42) In one embodiment, the folding assist mechanism 260 may include, for example a biasing member such as a coil spring. In another embodiment, the folding assist mechanism 260 may include a gas charged cylinder or other damping mechanism to provide resistance to the transition of the second assembly 104 from an upright position to a folded position. In yet another embodiment, the folding assist mechanism 260 may include both a biasing member and a damping member.
(43) As also seen in
(44) Referring to
(45) When a user desires to rotate the elliptical machine back from an upright position, the user may cause the lever arm 272 to engage the ground (as shown in
INDUSTRIAL APPLICABILITY
(46) Elliptical exercise machines, while popular for residential use, inherently take up a substantial amount of space in a user's home or apartment. For example, in one embodiment, an elliptical machine may be approximately 24 to 30 inches in width, approximately 76 to 84 inches in length and approximately 62 to 70 inches in height. Some users may not desire to permanently dedicate so much space in their residence to an exercise machine. The elliptical machines described herein provide the ability to place the machine in a collapsed position or state when not in use so that the elliptical machine may be stored or more easily maneuvered and transported.
(47) One of the advantages of the described embodiments above is that the elliptical machine is configured in two assemblies, which may be referred to as an upper assembly and a lower assembly, wherein the upper assembly pivots and folds down on to (or adjacent to) the lower assembly without the need to disassemble or otherwise any of the operational components such as the foot supports or the reciprocating arms. In various prior art devices, in order to collapse or fold into a storage condition. For example, some prior art devices required a break-away joint in the foot supports or the reciprocating arms, such that a user would have to disassemble such joints in order to facilitate the folding or collapsing, and then reassemble such joints when the elliptical machine was unfolded or expanded and prior to using the exercise machine again. Moreover, the present design eliminates the possibility of someone trying to use an elliptical machine prior to reassembly of such components, which could possibly result in damage to the machine or injury to the user.
(48) Similarly, folding or collapsing of the assemblies in the elliptical machines described herein does not require the adjustment of any operative components such as the foot supports or reciprocating arms. For example, as previously noted, PCT Patent Application Publication No. WO2008138124 describes a machine wherein the reciprocating arms require adjustment between the operative condition and the stored condition. The present invention does not require any adjustment of the reciprocating arms or the foot supports to in transitioning from the operable condition to the stored condition. Rather, the components of the first assembly all maintain their operational relationship to one another and all the components of the second assembly maintain their operational relationship to one another before and after the folding or unfolding of the elliptical machine. Such a configuration enables very simple folding and deployment of the elliptical machine by a user since they don't have to adjust any critical components (e.g., foot supports or reciprocating arms) and ensures that the elliptical machine is in a ready immediately after unfolding.
(49) The ability to fold or collapse the elliptical machine further provides advantages in moving or transporting the machine when not in use. Besides taking up less space when in a folded state, the elliptical machine is much easier to handle or transport when in the folder state since it is more compact and its center of gravity is more amenable to lifting and maneuvering making it less likely to tip or fall. Furthermore, the ability to fold and unfold the elliptical machine makes it easier to ship or transport in a small package while not requiring assembly after shipping or purchase by the end user.
(50) When rotated into an upright position such that the elliptical machine is supported by the support structures (such as shown in
(51) The configuration of support structures with anti-slip features additional help to stabilize the elliptical machine while it is in an upright, stored position. In embodiments where removable covers may be placed on the support structures, such provides a user the ability to choose the type of engagement surface depending, for example, on the type of floor on which the elliptical machine will be stored. In one embodiment, a more rigid support structure may be used when the floor or support surface is, for example, carpet or an exercise mat of some sort. On the other hand, a relatively softer cover may be used if the support surface is a fairly hard and slick surface such as wood or tile.
(52) An elliptical machine having a rear cross member with the various components described herein (such as a foot, wheel and support structure) also provides for a stable structure in both operational and storage positions, while also providing flexibility in being able to maneuver the elliptical machine from one location to another.
(53) An elliptical machine having a folding assist mechanism provides assistance to a user to fold and unfold the various assemblies of the elliptical machine with relative ease. Additionally, the reduction of the possibility of one assembly falling and slamming into the other assembly improves the safety of the device and decreases the risk of damage to the device during the folding and unfolding operations.
(54) An elliptical machine having a rotational assist mechanism also provide assistance to a user in rotating the elliptical machine to or from an upright storage position such that smaller users that might not otherwise have adequate strength to perform such an operation may do so. Furthermore, the rotational assist mechanism may improve the safety of rotating the elliptical machine into and out of an upright storage position by reducing the likelihood of the elliptical machine being dropped inadvertently.