Regulation mechanism capable of dynamically adjusting balance of tension of two sides of multi-groove transmission belt between driving wheel and driven wheel
10619713 ยท 2020-04-14
Assignee
Inventors
Cpc classification
F16H2007/0895
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2007/0874
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H7/1281
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2007/0897
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2007/0842
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H7/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2007/0865
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2007/0893
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H2007/0806
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16H7/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16H7/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The present invention is to provide a regulation mechanism capable of dynamically adjusting balance of tension on two sides of a multi-groove transmission belt between a driving wheel and a driven wheel, which includes a pivot balance plate pivotally connected to a transmission mechanism; two smooth idlers and a multi-groove idler pivotally connected on the pivot balance plate respectively and spaced apart from each other by a first gap and a second gap respectively; and a tension regulating rod rotatably disposed between the transmission mechanism and the pivot balance plate for dynamically adjusting balance of tension on the two sides of the multi-groove transmission belt, such that the multi-groove transmission belt can pass these gaps sequentially to wind on the driving wheel and the driven wheel, thereby the outer and inner side surfaces thereof are abutted with the smooth idlers and the multi-groove idler respectively.
Claims
1. A regulation mechanism, applied to a transmission mechanism comprising a driving wheel, a driven wheel and a damper, wherein the driving wheel and the driven wheel are pivotally connected to a main structure of the transmission mechanism, and the driving wheel and the driven wheel are connected with each other through a multi-groove transmission belt, and the damper is movably disposed on an axle of the driven wheel, and when the driving wheel is driven to rotate the driven wheel through the multi-groove transmission belt, the damper is rotated with rotation of the driven wheel to provide the transmission mechanism with a preset damping function, and the regulation mechanism comprises: a pivot balance plate comprising a near-center part pivotally connected to the main structure of the transmission mechanism adjacent to the driving wheel; two smooth idlers pivotally connected to a near-top part and a near-bottom part of the pivot balance plate, respectively, and spaced apart from each other by a first gap, wherein the multi-groove transmission belt is wound on the driving wheel and passed through the first gap and then wound on the driven wheel, and smooth surfaces of the two smooth idlers are abutted with upper and lower outer side surfaces of the multi-groove transmission belt, respectively; a multi-groove idler pivotally connected to an end part of the pivot balance plate adjacent to the driven wheel, and spaced apart from each of the two smooth idlers by a second gap, wherein the multi-groove transmission belt wound on the driving wheel is passed through the first gap and the second gaps in sequential order, and wound on the driven wheel, and a surface of the multi-groove idler is abutted with an inner side surface of the multi-groove transmission belt, and a plurality of convex sections of the multi-groove idler are engaged into a plurality of grooves recessed on the inner side surface of the multi-groove transmission belt, one by one; and a tension regulating rod comprising an end rotatably disposed on the main structure of the transmission mechanism, and other end pivotally connected to the pivot balance plate adjacent to a top part of the pivot balance plate, and the tension regulating rod configured to regulate a position of the top part of the pivot balance plate when being rotated, thereby regulating a force which is applied to the outer side and inner side surfaces of the multi-groove transmission belt by the two smooth idlers and the multi-groove idler, to dynamically adjusting balance of tension on two sides of the multi-groove transmission belt between the driving wheel and the driven wheel.
2. The regulation mechanism according to claim 1, wherein the tension regulating rod comprises: a screw comprising an end disposed on the main structure of the transmission mechanism, wherein a stop plate is movably mounted with a middle section of the screw , and a regulation nut is screwed with the screw adjacent to other end of the screw; an adjustment spring mounted on the screw, and comprising two ends respectively abutted with the main structure and the stop plate, wherein the stop plate is pushed to the regulation nut by a resilient recovering force of the adjustment spring; and a sleeve mounted on the screw adjacent to the other end of the screw, and comprising an end abutted with the regulation nut and other end pivotally connected to the pivot balance plate adjacent to the top part of the pivot balance plate, wherein when the regulation nut is rotated to move along the screw, other end of the sleeve is moved close to or away from the stop plate, thereby regulating the position of the top part of the pivot balance plate.
3. The regulation mechanism according to claim 2, wherein the main structure of the transmission mechanism comprises a mounting groove formed adjacent to the driving wheel, and the regulation mechanism comprises an ancillary balance plate, and a pivot pin penetrates through near-center parts of the ancillary balance plate and the pivot balance plate to pivotally connect to the mounting groove, and the ancillary balance plate and the pivot balance plate are pivotally connected to two opposite side surfaces of the twos smooth idler and the multi-groove idlers, respectively; wherein the sleeve comprises two pivoting parts respectively extended from two opposite part of other end thereof, and the pivoting parts are pivotally connected to the pivot balance plate and the ancillary balance plate adjacent to the top parts of the pivot balance plate and the ancillary balance plate, respectively.
4. The regulation mechanism according to claim 3, wherein the main structure of the transmission mechanism comprises a mounting groove formed adjacent to the driving wheel, and the regulation mechanism is mounted in the mounting groove.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The structure, operating principle and effects of the present disclosure will be described in detail by way of various embodiments which are illustrated in the accompanying drawings.
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(6) The following embodiments of the present invention are herein described in detail with reference to the accompanying drawings. These drawings show specific examples of the embodiments of the present invention. It is to be understood that these embodiments are exemplary implementations and are not to be construed as limiting the scope of the present invention in any way. Further modifications to the disclosed embodiments, as well as other embodiments, are also included within the scope of the appended claims. These embodiments are provided so that this disclosure is thorough and complete, and fully conveys the inventive concept to those skilled in the art. Regarding the drawings, the relative proportions and ratios of elements in the drawings may be exaggerated or diminished in size for the sake of clarity and convenience. Such arbitrary proportions are only illustrative and not limiting in any way. The same reference numbers are used in the drawings and description to refer to the same or like parts.
(7) It is to be understood that, although the terms first, second, third, and so on, may be used herein to describe various elements, these elements should not be limited by these terms. These terms are used only for the purpose of distinguishing one component from another component. Thus, a first element discussed herein could be termed a second element without altering the description of the present invention. As used herein, the term or includes any and all combinations of one or more of the associated listed items.
(8) Please refer to
(9) The damper 13 is movably disposed on an axle 120 of the driven wheel 12, and when the driving wheel 11 is driven, the driven wheel 12 is simultaneously driven, through the multi-groove transmission belt 14, to rotate, so that the damper 13 can be rotated with the rotation of the driven wheel 12, to provide the transmission mechanism 10 with a preset damping function. Preferably, the damper 13 can be implemented by a hydraulic damper, but the present disclosure is not limited thereto.
(10) Please refer to
(11) The multi-groove idler 23 is pivotally connected on an end portion of the pivot balance plate 21 adjacent to the driven wheel 12, and the multi-groove idler 23 is spaced apart from each of the smooth idlers 22 by a second gap, so that the multi-groove transmission belt 14 wound on the driving wheel 11 can pass the first gap and the second gap in sequential order, to wind on the driven wheel 12, and a surface of the multi-groove idler 23 can be abutted with an inner side surface of the multi-groove transmission belt 14, and a plurality of convex sections 231 protruded on the wheel face of the multi-groove idler 23 can be engaged with a plurality of grooves 141 recessed on the inner side surface of the multi-groove transmission belt 14 one by one. As a result, tension of the multi-groove transmission belt 14 can be effectively maintained by the multi-groove idler 23 and the two smooth idlers 22, thereby ensuring a reliable operation of the transmission mechanism 10.
(12) The tension regulating rod 30 has an end rotatably fastened on the main structure of the transmission mechanism 10, for example, by a screwing manner; and other end pivotally connected to the near-top part of the pivot balance plate 21. When the tension regulating rod 30 is rotated, the other end of the tension regulating rod 30 can pull or push the pivot balance plate 21 to regulate a position of the top part of the pivot balance plate 21, so as to regulate the force applied on the outer and inner side surfaces of the multi-groove transmission belt 14 by the smooth idlers 22 and the multi-groove idler 23, and further dynamically adjust balance of tension on two sides of the multi-groove transmission belt 14 between the driving wheel 11 and the driven wheel 12.
(13) As a result, by means of operating the tension regulating rod 30, the plurality of convex sections of the multi-groove idler 23, the driving wheel 11 and the driven wheel 12 protruded on wheel faces thereof can be always precisely engaged with the plurality of grooves 141 (as shown in
(14) The tension regulating rod 30 can be rotated to change the position of the top part of the pivot balance plate 21, thereby adjusting the tension on the multi-groove transmission belt 14. Preferably, the structure and members of the tension regulating rod 30 can be adjusted, changed upon demand. The main technical key point of the present disclosure is the tension regulating concept of using the regulation mechanism 20; in actual application, the tension regulating rod 30 can regulate the tension of the multi-groove transmission belt 14 by a manner of changing rotation angle, displacement, or changing length. Please refer to
(15) The adjustment spring 32 is mounted on the screw 31, and two ends of the adjustment spring 32 are respectively abutted with the retaining plate 102 and the stop plate 311, so that the stop plate 311 can be pushed to the regulation nut 312 by a resilient recovering force of the adjustment spring 32. The sleeve 33 is mounted on the screw 31 adjacent to the other end of the screw 31, and has an end abutted with the regulation nut 312 and other end pivotally connected to the pivot balance plate 21 adjacent to the top part of the pivot balance plate 21. After the user rotates the regulation nut 312 to move the regulation nut 312 along the screw 31, the other end of sleeve 33 can be moved close to or away from the stop plate 311, to regulate the position of the top part of the pivot balance plate 21 (for example, the pivot balance plate 21 is pushed or pulled), thereby ensuring balance of the tension on two sides of the multi-groove transmission belt 14 between the driving wheel 11 and the driven wheel 12.
(16) Please refer back to
(17) The transmission mechanism 10 can be applicable to various kinds of exercise devices, for example, handles can be disposed on the axle 111 of the driving wheel 11, so that a user can rotate the handle by hand, leg or foot, and at this time, the user's force drives the driving wheel 11, and then drives the damper 13 through the multi-groove transmission belt 14 and the driven wheel 12, thereby training the user's muscular endurance. The manner of operating the exercise machine is well known in the art, so its description is not repeated in the present disclosure.
(18) The present disclosure disclosed herein has been described by means of specific embodiments. However, numerous modifications, variations and enhancements can be made thereto by those skilled in the art without departing from the scope of the invention set forth in the claims.