Multifunctional vibrating platform with combined horizontal and vertical vibration
The multifunctional vibration platform addresses the limitation of single-direction movement by integrating motors and cams to achieve combined horizontal and vertical vibrations, providing a dynamic exercise experience.
Patent Information
- Application Number
- JP2025039266
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2024-07-23
- Filing Date
- 2025-03-12
- Publication Date
- 2026-02-04
Smart Images

Figure 2026017500000001_ABST
Abstract
Description
[Technical Field]
[0001] The present invention relates to the technical field of multi-function vibration platform, and more particularly to a multi-function vibration platform that combines horizontal vibration and vertical vibration. [Background technology]
[0002] In order to enable people to exercise and stay fit indoors, there are currently many types of indoor fitness equipment on the market. However, there are existing vibration machines on the market that help people stay fit. These vibration machines have a vibration base, a vibration platform, and an eccentric vibration motor, of which the vibration platform is covered by the vibration base, and the eccentric vibration motor is connected between the vibration base and the vibration platform. The eccentric vibration motor drives the vibration of the vibration platform relative to the vibration base. In a specific application of the existing vibration machine, a user stands on the vibration platform, and then controls the vibration magnitude of the eccentric vibration motor through a controller, causing the eccentric vibration motor to vibrate the user's body through the vibration platform, thereby enabling the user to achieve the effects of exercise and fitness.
[0003] However, existing vertical parallel rhythmic platforms often have many single functions when in use and can only achieve linear movement in limited directions. Although there may be movement in many directions when used by a user, the single-direction movement may not meet the user's needs.
[0004] In view of this, the present invention is proposed. Summary of the Invention [Means for solving the problem]
[0005] In order to solve the above technical problems, the present invention provides the following technical means: A multifunctional vibration platform combining horizontal and vertical vibrations, comprising a base and a vibration platform, the vibration platform being disposed above the base, two symmetrical first mounting plates being disposed between the base and the vibration platform, two symmetrical second mounting plates being disposed on opposing side walls of the two first mounting plates, the two first and second mounting plates being symmetrical to each other, a plurality of equally spaced fixing snaps being disposed between the two first and second mounting plates, each with a fixing bolt disposed in the internal cavity of the fixing snap, a transmission mechanism being disposed on the base, the transmission mechanism being used to move the vibration platform up and down and left and right, a first motor and a second motor being further disposed on the base, a belt being attached to the output end of the first motor, and a rotating shaft being connected to the other side of the belt. The operator activates the first motor 23, which rotates the rotating shaft via the belt. As the rotating shaft rotates, the rotating boss rotates. When the rotating boss operates, the entire rotating boss is driven by the conveyor belt to rotate the first and fourth rotating wheels. As the fourth rotating wheel rotates, it rotates the protruding block on the slide block via a link, thereby performing a reciprocating motion. Through the triangular cam, the first mounting plate, horizontal moving platform, and fixed snap 4 cooperate to perform a reciprocating motion of the vibration platform. When the second motor is activated, the rotary lever is operated to rotate the second motor, which moves the rotating wheel boss via the belt, which moves the rotating wheel boss and rotates it. The conveyor belt on the rotating wheel boss moves the eccentric wheel set and rotates it. As the eccentric wheel set rotates, the slide plate moves, causing the vibration platform to move horizontally and vertically. When the first and second motors are activated simultaneously, the vibration platform can move in a wave-like pattern during operation, thereby achieving a vibration vibration that combines horizontal and vertical directions.
[0006] In a preferred embodiment of the present invention, a protective plate is slidably mounted on each of the opposing side walls of the two second mounting plates, the two protective plates being symmetrical to each other, and a slide rail is opened on each side wall of the two second mounting plates adjacent to the protective plate, the slide rails being symmetrical to each other, and each slide rail including a slide groove, a ball and a protruding block. When the rotating boss is operated, it is driven by the conveyor belt, and the entire rotating boss can rotate the first rotating wheel and the fourth rotating wheel, and when the fourth rotating wheel rotates, the fourth rotating wheel can move the protruding block mounted on the slide block via a link to rotate.
[0007] In a preferred embodiment of the present invention, a rotating boss is slidably mounted on each of the slide rails, the rotating bosses are symmetrical to each other, a triangular cam is provided between each of the rotating bosses, a rotation shaft is fixedly connected to each of the triangular cams, a first rotating wheel and a fourth rotating wheel are provided at the center of each of the rotating bosses, the first rotating wheel and the fourth rotating wheel are connected to each other via a conveyor belt, a connecting rod is fixed to the center of each of the first rotating wheels, and the other end of the connecting rod is connected to a ball provided on the slide rail. When the rotating boss is operated, it is driven by the conveyor belt to rotate the first rotating wheel and the fourth rotating wheel as a whole, and when the fourth rotating wheel rotates, it moves a protruding block provided on the slide block via a link to rotate the fourth rotating wheel.
[0008] In a preferred embodiment of the present invention, a plurality of horizontal moving platforms are provided on the opposing side walls of each of the protection plates and the second mounting plate, and a third rotating wheel and a fixed wheel are provided on both ends of the horizontal moving platform, and the fixed wheels are fixedly connected to the first mounting plate and the second mounting plate. When the rotating boss is operated, it is driven by the conveyor belt and the entire rotating boss can rotate the first rotating wheel and the fourth rotating wheel, and when the fourth rotating wheel rotates, it can move the protruding block provided on the slide block via the link to rotate it.
[0009] In a preferred embodiment of the present invention, the output end of the second motor is connected to a rotating lever, a belt is provided on the rotating lever, the belt is connected to a rotating wheel hub, a conveyor belt is provided on the rotating wheel hub, and the other end of the conveyor belt is connected to an eccentric wheel set. When the second motor is started, the rotating lever is rotated, and the rotating wheel hub is rotated via the belt, and the eccentric wheel set is rotated via the conveyor belt provided on the rotating wheel hub.
[0010] In a preferred embodiment of the present invention, two symmetrical slide plates are provided above the eccentric wheel set 10, and the two slide plates are slidingly connected to the bottom of the vibration platform. When the eccentric wheel set 10 rotates, it moves the slide plates 26, allowing the vibration platform 2 to move horizontally and vertically.
[0011] In a preferred embodiment of the present invention, a threaded hole is provided in the center of the rotating wheel boss, a threaded rod is engaged with the threaded hole, a circular notch is opened at the other end of the threaded rod, an insertion rod is inserted into the internal cavity of the circular notch, and the other end of the insertion rod is fixedly connected to the first rotating wheel. [Effects of the Invention]
[0012] The present invention has the following advantageous effects compared to the prior art: The operator starts the first motor, which rotates the rotating shaft via the conveyor belt. As the rotating shaft rotates, the rotating boss rotates. When the rotating boss operates, the entire rotating boss is driven by the conveyor belt to rotate the first rotating wheel and the fourth rotating wheel. When the fourth rotating wheel rotates, the fourth rotating wheel rotates the protruding block on the slide block via a link, thereby performing a reciprocating motion. Through the triangular cam, the first mounting plate, the horizontal moving platform, and the fixed snap are coordinated to perform a reciprocating motion of the vibration platform. When the second motor is started, the rotating lever is operated to rotate the second motor, which moves the rotating wheel boss via the conveyor belt. The eccentric wheel set on the first rotating wheel is moved and rotated via the conveyor belt. As the eccentric wheel set rotates, the slide plate is moved, causing the vibration platform to move horizontally and vertically. When the first and second motors are started simultaneously, the vibration platform can move in a wave pattern during operation, thereby achieving a horizontal and vertical vibration vibration combination.
[0013] Hereinafter, specific embodiments of the present invention will be described in more detail with reference to the accompanying drawings. [Brief explanation of the drawings]
[0014] [Figure 1] 1 is a schematic diagram of the three-dimensional structure of the present invention. [Figure 2] 1 is a structural schematic diagram of the vibration platform of the present invention; [Figure 3] 1 is a schematic diagram of the structure of the vibration platform and the base of the present invention; FIG. [Figure 4] 2 is a schematic diagram showing the structure of the vibration platform and the base of the present invention; FIG. [Figure 5] 1 is a schematic diagram of the structure of the vibration platform and the base of the present invention, showing the opposing side (3); [Figure 6] 4 is a schematic diagram of the structure of the vibration platform and the base of the present invention; FIG. [Figure 7] 5 is a schematic diagram of the structure of the vibration platform and the base of the present invention; FIG. [Figure 8] 6 is a schematic diagram of the structure of the vibration platform and the base of the present invention. FIG. DETAILED DESCRIPTION OF THE INVENTION
[0015] In order to enable those skilled in the art to better understand the technical aspects of the present invention, the present invention will now be described in more detail in combination with drawings and specific embodiments.
[0016] As shown in Figures 1 to 8, this is a multi-functional vibration platform that combines horizontal and vertical vibrations, and includes a base 1 and a vibration platform 2. The vibration platform 2 is installed above the base 1. Two symmetrical first mounting plates 3 are installed between the base 1 and the vibration platform 2. Two symmetrical second mounting plates 6 are installed on opposing side walls of the two first mounting plates 3. The two first mounting plates 3 and the second mounting plates 6 are symmetrical to each other. A plurality of equally spaced fixing snaps 4 are installed between the two first mounting plates 3 and the second mounting plates 6. Each fixing snap 4 has a fixing bolt 5 installed in its internal cavity. The base 1 is equipped with a transmission mechanism that is used to move the vibration platform 2 up and down and left and right. The base 1 is further equipped with a first motor 23 and a second motor 24. A belt is installed at the output end of the first motor 23, and a rotating shaft 13 is connected to the other side of the belt. The worker starts the first motor 23, which rotates the rotary shaft 13 via the belt. When the rotary shaft 13 rotates, the rotary boss 8 rotates. When the rotary boss 8 starts, it is driven by the conveyor belt, causing the entire rotary boss 8 to rotate the first rotary wheel 20 and the fourth rotary wheel 21. When the fourth rotary wheel 21 rotates, the fourth rotary wheel 21 can rotate the protrusion block provided on the slide block via the link, thereby performing a reciprocating motion. This causes the first mounting plate 3, the horizontally moving platform, and the fixed snap 4 to cooperate via the triangular cam 25, causing the vibration platform 2 to perform a reciprocating motion. When the second motor 24 is started, the rotary lever can be moved to rotate, and the rotary wheel boss 22 can be moved and rotated through the belt, and the eccentric wheel set 10 can be moved and rotated through the conveyor belt 14 attached to the rotary wheel boss 22. When the eccentric wheel set 10 rotates, the slide plate 26 can be moved to move, so that the vibration platform 2 can move horizontally and vertically. When the first motor 23 and the second motor 24 are started at the same time, the vibration platform 2 can move in a wave-like manner during operation, so that vibration vibration combining the horizontal and vertical directions can be realized.
[0017] In a specific embodiment, protective plates 7 are slidably mounted on both opposing side walls of the two second mounting plates 6, and the two protective plates 7 are symmetrical to each other. A slide rail 15 is opened on one side wall of each of the two second mounting plates 6 adjacent to the protective plate 7, and each slide rail 15 is symmetrical to each other and includes a slide groove, a ball and a protruding block. In the present invention, when the rotating boss 8 is operated, it is driven by the conveyor belt, and the entire rotating boss 8 can rotate the first rotating wheel 20 and the fourth rotating wheel 21. When the fourth rotating wheel 21 rotates, the fourth rotating wheel 21 can move the protruding block mounted on the slide block via a link to rotate it.
[0018] Furthermore, a rotating boss 8 is slidably mounted on each slide rail 15, and each rotating boss 8 is symmetrical to the other. A triangular cam 25 is provided between each rotating boss 8, and a rotating shaft 13 is fixedly connected to each triangular cam 25. A first rotating wheel 20 and a fourth rotating wheel 21 are provided at the center of each rotating boss 8, and each of the first rotating wheels 20 and the fourth rotating wheel 21 is connected via a conveyor belt. A connecting rod is fixed to the center of each first rotating wheel 20, and the other end of the connecting rod is connected to a ball provided on the slide rail 15. In the present invention, when the rotating boss 8 operates, it is driven by the conveyor belt to rotate the third rotating wheel 20 and the fourth rotating wheel 21 as a whole. When the fourth rotating wheel 21 rotates, the fourth rotating wheel 21 moves a protruding block provided on the slide block via a link, causing it to rotate.
[0019] Furthermore, a plurality of horizontal moving platforms 9 are provided on the opposing side walls of each protection plate 7 and second mounting plate 6, and a third rotating wheel 18 and a fixed wheel 19 are provided on both ends of each horizontal moving platform 9, and the fixed wheels 19 are fixedly connected to the first mounting plate 3 and second mounting plate 6. In the present invention, when the rotating boss 8 operates, it is driven by the conveyor belt, and the entire rotating boss 8 can rotate the first rotating wheel 20 and the fourth rotating wheel 21, and when the fourth rotating wheel 21 rotates, the fourth rotating wheel 21 can move and rotate the protruding block provided on the slide block via a link.
[0020] Furthermore, a rotating lever is connected to the output end of the second motor 24, and a belt is provided on the rotating lever, and the belt is transmitted and connected to the rotating wheel boss 22, and the conveyor belt 14 is provided on the rotating wheel boss 22, and the other end of the conveyor belt 14 is connected to the eccentric wheel set 10. When the second motor 24 is started, the rotating lever can be rotated, and the rotating wheel boss 22 can be rotated via the belt, and the eccentric wheel set 10 can be rotated via the conveyor belt 14 provided on the rotating wheel boss 22.
[0021] Furthermore, two symmetrical slide plates 26 are provided above the eccentric wheel set 10, and the two slide plates 26 are slidably connected to the bottom of the vibration platform 2. In the present invention, when the eccentric wheel set 10 rotates, the slide plates 26 are moved and displaced, allowing the vibration platform 2 to move horizontally and vertically.
[0022] Furthermore, a threaded hole is provided in the center of the rotating wheel boss 22, and the threaded rod 12 is engaged with the threaded hole. A circular notch is opened at the other end of the threaded rod 12, and an insertion rod is inserted into the internal cavity of the circular notch, and the other end of the insertion rod is fixedly connected to the third rotating wheel 18.
[0023] The implementation principle of the multi-function vibration platform combining horizontal and vertical vibrations in this embodiment is as follows: The worker starts the first motor 23, which rotates the rotary shaft 13 via the belt. When the rotary shaft 13 rotates, the rotary boss 8 rotates. When the rotary boss 8 starts, it is driven by the conveyor belt, causing the entire rotary boss 8 to rotate the first rotary wheel 20 and the fourth rotary wheel 21. When the fourth rotary wheel 21 rotates, the fourth rotary wheel 21 can rotate the protrusion block provided on the slide block via the link, thereby performing a reciprocating motion. This causes the first mounting plate 3, the horizontally moving platform, and the fixed snap 4 to cooperate via the triangular cam 25, causing the vibration platform 2 to perform a reciprocating motion. When the second motor 24 is started, the rotary lever can be moved to rotate, and the rotary wheel boss 22 can be moved and rotated through the belt, and the eccentric wheel set 10 can be moved and rotated through the conveyor belt 14 attached to the rotary wheel boss 22. When the eccentric wheel set 10 rotates, the slide plate 26 can be moved to move, so that the vibration platform 2 can move horizontally and vertically. When the first motor 23 and the second motor 24 are started at the same time, the vibration platform 2 can move in a wave-like manner during operation, so that vibration vibration combining the horizontal and vertical directions can be realized. [Explanation of symbols]
[0024] 1. Base; 2. Vibration platform; 3. First mounting plate; 4. Fixing snap; 5. Fixing bolt; 6. Second mounting plate; 7. Protective plate; 8. Rotating boss; 9. Horizontal moving platform; 10. Eccentric wheel set; 12. Threaded rod; 13. Rotating shaft; 14. Conveyor belt; 15. Slide rail; 18. Third rotating wheel; 19. Fixed wheel; 20. First rotating wheel; 21. Fourth rotating wheel; 22. Rotating wheel boss; 23. First motor; 24. Second motor; 25. Triangular cam; 26. Slide plate.
Claims
1. A multi-function vibration platform combining horizontal and vertical vibration, comprising a base (1) and a vibration platform (2), a vibration platform (2) mounted above the base (1); two mutually symmetrical first mounting plates (3) provided between the base (1) and the vibration platform (2); two mutually symmetrical second mounting plates (6) provided on opposing side walls of the two first mounting plates (3); the two first mounting plates (3) and the second mounting plates (6) are symmetrical to each other; a plurality of equally spaced fixing snaps (4) are provided between the two first mounting plates (3) and the second mounting plates (6), each with a fixing bolt (5) in its internal cavity; a transmission mechanism provided on the base (1), which is used to move the vibration platform (2) up and down and left and right; a first motor (23) and a second motor (24) further provided on the base (1); a belt is provided at the output end of the first motor (23), and a rotating shaft (13) is connected to the other end of the belt.
2. 2. The multifunctional vibration platform combining horizontal and vertical vibrations as claimed in claim 1, characterized in that: a protective plate (7) is slidably mounted on each of the opposing side walls of the two second mounting plates (6), the two protective plates (7) are symmetrical to each other; a slide rail (15) is opened on each side wall of the two second mounting plates (6) adjacent to the protective plate (7), each slide rail (15) is symmetrical to each other, and each slide rail (15) includes a slide groove, a ball and a protruding block.
3. 3. The multifunctional vibration platform combining horizontal and vertical vibrations according to claim 2, wherein a rotating boss (8) is slidably mounted on each of the slide rails (15), the rotating bosses (8) are symmetrical to each other, a triangular cam (25) is provided between each of the rotating bosses (8), a rotating shaft (13) is fixedly connected to each of the triangular cams (25), a first rotating wheel (20) and a fourth rotating wheel (21) are respectively provided at the center of each of the rotating bosses (8), the first rotating wheels (20) and the fourth rotating wheels (21) are connected to each other via a conveyor belt, a connecting rod is fixed at the center of each of the first rotating wheels (20), and the other end of the connecting rod is connected to a ball provided on the slide rail (15).
4. The multi-functional vibration platform combining horizontal and vertical vibrations as claimed in claim 2, characterized in that the opposing side walls of each of the protective plates (7) and the second mounting plate (6) are each provided with a plurality of horizontal moving platforms (9), and both ends of each of the horizontal moving platforms (9) are each provided with a third rotating wheel (18) and a fixed wheel (19), and the fixed wheel (19) is fixedly connected to the first mounting plate (3) and the second mounting plate (6).
5. The multi-functional vibration platform combining horizontal and vertical vibrations as claimed in claim 1, characterized in that a rotating lever is connected to the output end of the second motor (24), a belt is provided on the rotating lever, and the belt is connected to a rotating wheel hub (22), and a conveyor belt (14) is provided on the rotating wheel hub (22), and the other end of the conveyor belt (14) is connected to an eccentric wheel set (10).
6. The multi-functional vibration platform combining horizontal and vertical vibrations as claimed in claim 5, characterized in that there are two symmetrical slide plates (26) provided above the eccentric wheel set (10), and the two slide plates (26) are slidingly connected to the bottom of the vibration platform.
7. 2. The multi-function vibration platform combining horizontal and vertical vibrations as claimed in claim 1, characterized in that the central part of the rotating wheel boss (22) is provided with a threaded hole, into which a threaded rod (12) is engaged, the other end of the threaded rod (12) is provided with a circular notch, and an insert rod is inserted into the internal cavity of the circular notch, and the other end of the insert rod is fixedly connected to the third rotating wheel (18).
Citation Information
Patent Citations
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Balance training apparatus for slide and swing exercise and method
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