Elliptic-orbit treadmill
09630052 ยท 2017-04-25
Assignee
Inventors
Cpc classification
A63B2022/0676
HUMAN NECESSITIES
A63B22/0012
HUMAN NECESSITIES
A63B21/0125
HUMAN NECESSITIES
A63B2022/0682
HUMAN NECESSITIES
A63B22/0046
HUMAN NECESSITIES
A63B22/001
HUMAN NECESSITIES
A63B21/015
HUMAN NECESSITIES
International classification
A63B71/00
HUMAN NECESSITIES
A63B22/06
HUMAN NECESSITIES
A63B22/00
HUMAN NECESSITIES
Abstract
An elliptic-orbit treadmill has a front-end drive portion and a middle drive portion configured on the front end of the pedal, the middle drive portion being pivotally linked to the bottom end of the handle bar on the same side. Each transmission bar set includes a transverse connecting rod and a vertical connecting rod pivotally connected to each other in an elbow style, the rear end of the transverse connecting rod being pivotally connected to the middle section of the handle bar on the same side, while the bottom end of the vertical connecting rod being pivotally connected to the front-end drive portion of the pedal on the same side. The crank provided on the transverse driven shaft at the center of the flywheel is pivotally connected to the middle section of the transverse connecting rod provided on the transmission bar set on the same side.
Claims
1. An elliptic-orbit treadmill, comprising a base, a front standing frame, two handle bars provided on the left and right sides, two pedals, two transmission bar sets and a damping mechanism; wherein, the front standing frame is vertically configured on the front end of the base, the damping mechanism is provided at a specific height of the front standing frame, including a flywheel and a resistance regulation wheel that are connected to each other through a drive component, wherein the center of the flywheel has a transverse driven shaft, and the left and right side ends of the transverse driven shaft are configured with two cranks with opposite bending directions; the upper portions of the two handle bars are connected to the front standing frame in a pair at a specific height, and in a state that they can swing vertically; the two pedals are suspended in a pair above the base at spaced heights, the front ends of the two pedals are configured with a front-end drive portion and a middle drive portion spaced at an interval, wherein the middle drive portion is pivotally connected to the bottom end of the handle bar on the same side; each transmission bar set includes a transverse connecting rod and a vertical connecting rod that are pivotally connected to each other in an elbow style, wherein the rear end of the transverse connecting rod is pivotally connected to the middle portion of the handle bar on the same side, the bottom end of the vertical connecting rod is pivotally connected to the front-end drive portion of the pedal on the same side; furthermore, the crank configured on the transverse driven shaft at the center of the flywheel is pivotally connected to the middle portion of the transverse connecting rod provided on the transmission bar set on the same side.
2. The structure defined in claim 1, wherein, at the height of the front standing frame for configuration of the damping mechanism, there is a configuration of a tilted frame section that tilts toward the backside, so that the flywheel of the damping mechanism can be assembled on the tilted frame section, and the front standing frame below the tilted frame section at an interval is transversely configured with a lower support frame that protrudes backward, so that the resistance regulation wheel can be assembled on the lower support frame; in this way, the flywheel and resistance regulation wheel are in an up-down configuration.
3. The structure defined in claim 2, wherein, in the damping mechanism, the drive component to drive the flywheel and resistance regulation wheel can be a belt.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
(7) A preferred embodiment of the present invention of an elliptic-orbit treadmill is disclosed in
(8) In particular, at the height of the front standing frame 20 for configuration of the damping mechanism 60, there is a configuration of a tilted frame section 21 that tilts toward the backside, so that the flywheel 62 of the damping mechanism 60 can be assembled on the tilted frame section 21, and the front standing frame 20 below the tilted frame section 21 at an interval is transversely configured with a lower support frame 22 that protrudes backward, so that the resistance regulation wheel 63 can be assembled on the lower support frame 22. In this way, the flywheel 62 and resistance regulation wheel 63 are in an up-down configuration.
(9) In particular, in the damping mechanism 60, the drive component 61 to drive the flywheel 62 and resistance regulation wheel 63 can be a belt (see
(10) Based on the design constituted by the above-mentioned structure, the usage and operational condition of the present invention is as described below: in the structure of the elliptic-orbit treadmill A disclosed in the present invention, the components including the handle bar 30, the transverse connecting rod 51 and the vertical connecting rod 52 of the transmission bar set 50, the front-end drive portion 41 and the middle drive portion 42 of the pedal 40 form a four-link mechanism. In this way, the two pedals 40 are supported and suspended above the base 10 at spaced heights; the working status of the structure is shown in
(11) In short, the motion transmission structure of the elliptic-orbit treadmill disclosed in the present invention is an integration of a four-link mechanism (i.e., the structure formed by linkage between the handle bar 30, transmission bar set 50, and pedal 40) and a crank mechanism (i.e., the cranks 65 provided on the two sides of the transverse driven shaft 64 of the flywheel 62), and its crank 65 is directly linked to the transverse connecting rod 51 of the transmission bar set 50. In this way, the transmission is simple and direct. The space occupied by the components can be minimized, and the material, production and assembly costs can be reduced substantially.