The present invention relates to elliptical machine technology and more particularly, to an elliptical machine that can realize three-dimensional pedaling training.
An elliptical machine is a kind of cardio-pulmonary training equipment developed in recent years. It mainly allows the user to step on the left and right pedals to move along an approximately elliptical trajectory to achieve simulated walking, running or stair climbing. Since the trajectory of the pedals of conventional elliptical machines is mostly fixed, the whole process will be tedious, and the leg muscles of other parts will not be trained.
The present invention has been accomplished under the circumstances in view. It is the main object of the present invention to provide an elliptical machine, which can realize three-dimensional pedaling training.
To achieve this and other objects of the present invention, an elliptical machine in accordance with the present invention comprises a machine frame, two pedal units, two handlebars, and a flywheel set. Each pedal unit comprises a vertical arm, a driving main arm, a pedal mount, a slanting rod, a pedal and a rocking link. The vertical arm has a top end thereof pivotally connected to the machine frame and swingable back and forth relative to the machine frame. The driving main arm has a front end thereof pivotally connected to a bottom side of the vertical arm and swingable up and down relative to the machine frame. The pedal mount has a front end thereof pivotally connected to an opposing rear end of the driving main arm and swingable left and right relative to the driving main arm. The pedal is pivoted to an opposing rear end of the pedal mount and swingable left and right relative to the pedal mount. The slanting rod has a front end thereof pivotally connected to the vertical arm in a vertically swingable manner and located above the front end of the driving main arm, and an opposing rear end thereof pivotally connected to the front end of the pedal mount in a universally rotatable manner. The rocking link has a front end thereof pivotally connected to the rear end of the driving main arm and swingable back and forth and up and down relative to the driving main arm, and an opposing rear end thereof pivotally connected to the pedal in a universally rotatable manner. The two handlebars are located on opposing left and right sides of the machine frame, each having a bottom end thereof respectively pivotally connected to the center of the respective driving main arms and swingable back and forth relative to the respective driving main arms. The flywheel set comprises two flywheels and two crankshafts. The two flywheels are respectively pivotally mounted on the left and right sides of the machine frame in a rotatable manner. The crankshafts have respective one ends thereof respectively connected to the flywheels and respective opposite ends thereof respectively connected to the driving main arms so that the crankshafts can be driven by the driving main arms to rotate the flywheels.
It can be seen from the above that the elliptical machine of the present invention utilizes the multi-link design of the two pedal units, so that the user presents a three-dimensional motion mode of swinging left and right along the elliptical trajectory when stepping on the two left and right pedals. Thus, the leg muscles of different parts can be trained, and the whole pedaling process is more interesting and challenging.
Preferably, the elliptical machine further comprises a step length adjustment unit. The step length adjustment unit comprises a motor, a lead screw, an internally-threaded tube and a slide. The motor is mounted on the machine frame. The lead screw has one end thereof connected to the motor. The internally-threaded tube is threaded onto the lead screw and drivable by the lead screw to move along the axial direction of the lead screw. The slide is connected to the internally-threaded tube and the top ends of the vertical arms of the two pedal units so that the slide can be driven by the internally-threaded tube to move the vertical arms of the two pedal units forward or backward. This allows the user to adjust the step length according to actual needs.
Preferably, the step length adjustment unit further comprises two guide rails disposed on opposing left and right sides, and the slide comprises two guide wheels respectively disposed on opposing left and right sides thereof and respectively rotatably mounted in the guide rails to increase the stability and smoothness during the operation.
Preferably, the machine frame comprises a casing. The casing covers the step length adjustment unit, having two position-limiting slots respectively located on opposing left and right sides thereof. Each position-limiting slot is covered by a respective shutter. The extending direction of each position-limiting slot is parallel to the axial direction of the lead screw. The top ends of the two vertical arms are pivotally connected to a front axle. The front axle is located inside the casing and has two opposite ends thereof respectively connected to the two shutters. The slide comprises a transmission tube and two end caps. The transmission tube is coaxially sleeved over the front axle and maintained at a predetermined interval from the front axle. The two end caps are respectively disposed in two opposite ends of the transmission tube and tightly disposed on the front axle so that the slide can carry the two vertical arms to move with the internally-threaded tube. Thereby, the slide uses the transmission tube and the end caps to drive the front axle while moving, and then the front axle drives the two vertical arms to move forward or backward together to achieve the effect of adjusting the step length.
Preferably, each said handlebar comprises an upper tube and a lower tube. The upper tube has a top end thereof configured for grasping by the user's hand, and an opposing bottom end thereof pivotally connected with a top end of the lower tube to the casing of the machine frame in a forward-backward swingable manner. The lower tube has an opposing bottom end thereof pivotally connected to a top end of a hanging tube in a forward-backward swingable manner. The hanging tube has an opposing bottom end thereof pivotally connected to the top end of one driving main arm in a forward-backward swingable manner. In this way, the two handlebars can swing back and forth along with the two driving main arms.
Other advantages and features of the present invention will be fully understood by reference to the following specification in conjunction with the accompanying drawings, in which like reference signs denote like components of structure.
The applicant first describes here, and in the entire specification, including the embodiment described below and the claims of the patent application, the directional terms are based on the directions in the drawings. Secondly, in the preferred embodiment and the drawings, the same reference numerals are used to refer to the same or similar elements or structural features thereof.
Referring to
The machine frame 20 comprises a base 21, an upright post 22, a front bracket 23, and a casing 24. The upright post 22 has the bottom end thereof connected to the center of the base 21 and the opposing top end thereof provided with a control panel 80. The front bracket 23 is connected between the lower half of the upright post 22 and the front half of the base 21. The casing 24 is placed between the lower half of the upright post 22 and the front half of the base 21. In addition, the opposing left and right sides of the casing 24 respectively have a position-limiting slot 25, and the position-limiting slot 25 is covered by a shutter 26.
The two pedal units 30 are located on the left and right sides of the machine frame 20. Each pedal unit 30 comprises a vertical arm 31, a driving main arm 33, a pedal mount 34, a slanting rod 38, a pedal 40 and a rocking link 42.
As shown in
The pedal mount 34 comprises a first adapter plate 35 and a support rod 37. As shown in
As shown in
The top surface of the pedal 40 is used to receive the user's sole, and the bottom surface of the pedal 40 is locked with a bottom plate 41 using fastening members such as screws. As shown in
The front end of the rocking link 42 is pivotally mounted to a second adapter plate 43 and swingable left and right relative to the second adapter plate 43. As shown in
Two handlebars 50 are located on the left and right sides of the machine frame 20. As shown in
The flywheel set 60 comprises two flywheels 61 and two crankshafts 62. As shown in
In another aspect, the present invention further provides a step length adjustment unit 70. As shown in
The motor 71 can be pivoted up and down on the front side of the upright post 22 of the machine frame 20.
The axial direction of the lead screw 72 is parallel to the extending direction of the left and right position-limiting slots 25 of the casing 24. One end of the lead screw 72 is connected to the motor 71 through a reducer 79, so that the lead screw 72 can be rotated by the motor 71.
The internally-threaded tube 73 is threaded onto the lead screw 72 so that the internally-threaded tube 73 can be driven by the lead screw 72 to move forward or backward along the axial direction of the lead screw 72.
The two guide rails 74 are disposed opposite each other on the front bracket 23 of the machine frame 20.
The top of the slide 75 is locked to the front end of the internally-threaded tube 73 with a fixing element such as a bolt, so that the slide 75 can move back and forth along with the internally-threaded tube 73. Each of the left and right sides of the slide 75 is provided with a pair of guide wheels 76, and the slide 75 is provided on the two guide rails 74 by the two pairs guide wheels 76 to increase the stability and smoothness during the operation. In addition, as shown in
In this way, the slide 75 can drive the left and right vertical arms 31 to move back and forth with the intermediate-threaded tube 73 through the front axle 32.
Once the front and rear positions of the vertical arms 31 have changed, you can change the driving angle of driving main arms 33, slanting rods 38, pedal mounts 34, pedals 40 and rocking links 42 to achieve the effect of adjusting the step length. Further, as shown in
However, no matter which step length mode is switched to, when the user steps on the left and right pedals 40, subject to the multi-link design of the pedal units 30 (as shown in
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108132650 | Sep 2019 | TW | national |
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