Rhythm device

CN224792556UActive Publication Date: 2026-09-25XIAMEN RENHE SPORTS EQUIP CO LTD
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Patent Information

Application Number
CN202521982273.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-15
Publication Date
2026-09-25
Estimated Expiration
2035-09-15

AI Technical Summary

Technical Problem

[0004]当前律动装置中的运动平台通常为一体化成型结构,导致其维护成本较高且功能较为单一

Benefits of technology

提供了一种包括设备壳体、驱动组件和顶板组件的律动装置,驱动组件安装在设备壳体中,顶板组件位于设备壳体的顶部,顶板组件包括支撑板结构和面板结构,支撑板结构位于面板结构和设备壳体之间,支撑板结构与驱动组件连接,面板结构与支撑板结构可拆连接,驱动组件用于带动顶板组件上下律动或者抖动。通过将顶板组件分为可拆卸的支撑板结构和面板结构,使面板可单独更换以降低维护难度与成本;同时统一生产支撑板结构以保证传动稳定性,多样化的面板结构能够满足个性化需求并提升用户体验;此外,面板结构作为顶层屏障能够吸收磨损和冲击,从而保护内部结构并延长整机使用寿命。

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Abstract

The utility model discloses a kind of rhythmic devices, belong to fitness equipment field.The rhythmic device includes: equipment shell, drive assembly and top plate component, drive assembly is installed in equipment shell, top plate component is located at the top of equipment shell, top plate component includes support plate structure and panel structure, support plate structure is located between panel structure and equipment shell, support plate structure is connected with drive assembly, panel structure is detachably connected with support plate structure, drive assembly is used to drive top plate component up and down rhythmic or shaking.Through top plate component is divided into detachable support plate structure and panel structure, panel can be individually replaced to reduce maintenance difficulty and cost;While uniform production support plate structure to ensure transmission stability, diversified panel structure can satisfy individualized demand and improve user experience;In addition, panel structure as top barrier can absorb wear and impact, thereby protect internal structure and prolong the service life of whole machine.
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Description

Technical Field

[0001] This utility model relates to the field of fitness equipment, and in particular to a rhythmic device. Background Technology

[0002] With the fast pace of modern life and increasing work pressure, people are paying more and more attention to health and exercise. Rhythmic devices, as a new type of fitness equipment, are gradually gaining attention. A rhythmic device is a fitness machine that uses a lifting mechanism to achieve high-frequency lifting of the platform, simulating the natural vibrations of walking or running, allowing users to achieve the same level of exercise as running.

[0003] The rhythmic device mainly consists of a main unit and a motion platform. Its working principle is based on a motor-driven mechanical transmission mechanism within the main unit, which in turn drives the motion platform to perform periodic reciprocating vibrations, thereby generating a controllable mechanical vibration effect. The mechanical vibrations produced by this device can induce reflexive contractions of muscles throughout the body, simulating the mechanical stimulation of active exercise, thus achieving a combined effect similar to resistance training and endurance training. Studies have shown that this method has a positive impact on increasing bone density, enhancing muscle strength, and promoting blood circulation. Furthermore, by simulating the vertical vibration patterns of exercises such as rope skipping, the device can achieve coordinated vibration from the lower limbs to the whole body, effectively transferring vibrational energy, thereby providing multiple health benefits in areas such as bone strengthening, osteoporosis prevention, body fat control, and body shaping.

[0004] The motion platform in current rhythmic devices is usually a one-piece molded structure, which results in high maintenance costs and relatively limited functionality. Utility Model Content

[0005] This utility model provides a rhythmic device. The technical solution is as follows: A rhythmic device is provided, comprising: a device housing, a drive assembly, and a top plate assembly; The device housing has a receiving groove, and the drive assembly is installed in the receiving groove; The top plate assembly is located above the device housing. The top plate assembly includes a support plate structure and a panel structure. The support plate structure is located between the panel structure and the device housing. The support plate structure is connected to the drive assembly. The panel structure is detachably connected to the support plate structure.

[0006] Optionally, in a direction parallel to the panel surface of the panel structure, the size of the panel structure is larger than the size of the device housing; The support plate structure includes a first cover plate and multiple support beams. The first cover plate is located above the equipment housing and is connected to the equipment housing. The multiple support beams are arranged around the first cover plate and are fixedly connected to the first cover plate. In the direction perpendicular to the plate surface of the panel structure, the support beams are offset from the equipment housing and overlap with the panel structure. The extension direction of the support beams is parallel to the direction of the plate surface of the panel structure.

[0007] Optionally, the top panel assembly further includes a plurality of connectors, and the panel structure includes a wooden panel; The wooden panel is detachably connected to the support plate structure via the plurality of connectors.

[0008] Optionally, the top panel assembly further includes multiple connectors, and the panel structure includes a transition plate and a light-transmitting panel; The transition plate is located on the side of the support plate structure opposite to the equipment housing, and the transition plate is detachably connected to the support plate structure through the plurality of connectors; The light-transmitting panel is fixedly connected to the side of the transition plate opposite to the support plate structure.

[0009] Optionally, the panel structure further includes a light-emitting panel, and the transition plate has a mounting groove; The light-emitting panel is installed in the mounting groove, and the light-emitting panel has a light-emitting surface, which faces the light-transmitting panel.

[0010] Optionally, the light-transmitting panel includes a glass panel.

[0011] Optionally, the transition plate includes a second cover plate, an extension plate, a plurality of first reinforcing ribs, and a plurality of second reinforcing ribs; The second cover plate is located above the equipment housing, and the extension plate surrounds the second cover plate and is fixedly connected to the second cover plate; The plurality of first reinforcing ribs are located on the side of the second cover plate near the support plate structure and are fixedly connected to the second cover plate. The plurality of second reinforcing ribs are located on the side of the extension plate near the support plate structure and are fixedly connected to the extension plate. The height of the first reinforcing ribs is less than that of the second reinforcing ribs. Optionally, the panel structure further includes an adhesive layer located between the transition plate and the glass panel, wherein the transition plate is bonded to the glass panel via the adhesive layer.

[0012] Optionally, the drive assembly includes a control mechanism, a drive motor, a transmission mechanism, and an eccentric lifting assembly; The control mechanism and the drive motor are arranged along a first direction, and the drive motor and the eccentric lifting assembly are arranged along a second direction, wherein the first direction and the second direction intersect. The transmission mechanism is connected to the drive motor and the eccentric lifting assembly respectively.

[0013] Optionally, the eccentric lifting assembly includes an assembly, an eccentric wheel, a drive shaft, a through pin, and a connecting plate; The assembly has a first mounting hole and a second mounting hole, wherein the first mounting hole is located below the second mounting hole; The eccentric wheel is installed in the first mounting hole, and the drive shaft passes through the eccentric wheel; The connecting plate is L-shaped and has a third mounting hole on its side. The through-pin passes through the second mounting hole and the third mounting hole in sequence to hinge the connecting plate to the assembly. The connecting plate is fixedly connected to the support plate structure.

[0014] Optionally, the transmission mechanism includes a primary belt drive mechanism, an intermediate shaft, a secondary belt drive mechanism, and a support base; The primary belt drive mechanism is connected to the drive motor and the intermediate shaft respectively; The secondary belt drive mechanism is connected to the intermediate shaft drive mechanism; The support is located between the secondary belt drive mechanism and the eccentric lifting assembly, and the drive shaft passes through the support and is connected to the secondary belt drive mechanism.

[0015] Optionally, the drive motor includes a servo motor, and the drive assembly further includes a mounting base; The mounting base is fixedly connected to the bottom plate of the equipment housing, and the side of the drive motor is fixedly connected to the side of the mounting base.

[0016] Optionally, the rhythmic device further includes a plurality of support structures arranged around the device housing; Each of the support structures includes a suction cup portion and a connecting rod portion, wherein the connecting rod portion is fixedly connected to the device housing, and the suction cup portion is connected to the end of the connecting rod portion.

[0017] The equipment housing includes a metal housing, and the bottom of the equipment housing has at least one through hole. The secondary belt drive mechanism includes a second large wheel, a second drive belt, and a second small wheel. The support seat is located between the second large wheel and the eccentric lifting assembly. The second large wheel of the drive mechanism protrudes from one of the through holes. The assembly part protrudes from one of the through holes.

[0018] Optionally, the device housing also has a dust cover, which is installed on the outside of the through hole in the device housing.

[0019] The beneficial effects of the technical solution provided by this utility model embodiment include at least the following: A rhythmic device is provided, comprising a housing, a drive assembly, and a top plate assembly. The drive assembly is installed within the housing, and the top plate assembly is located on top of the housing. The top plate assembly includes a support plate structure and a panel structure. The support plate structure is located between the panel structure and the housing and is connected to the drive assembly. The panel structure is detachably connected to the support plate structure. The drive assembly drives the top plate assembly to rhythmically move up and down or vibrate. By dividing the top plate assembly into a detachable support plate structure and a panel structure, the panel can be replaced individually, reducing maintenance difficulty and cost. Simultaneously, standardized production of the support plate structure ensures transmission stability, while diverse panel structures can meet personalized needs and enhance user experience. Furthermore, the panel structure, acting as a top barrier, absorbs wear and impact, thereby protecting the internal structure and extending the overall service life of the device.

[0020] Furthermore, by using a larger panel structure to cover the device housing, gaps in movement are effectively concealed to reduce the risk of accidental limb entanglement, and a stable standing surface is provided to enhance the user's sense of security and stability during exercise. At the same time, increasing the standing area improves the user's freedom of movement and fault tolerance, thus enhancing the user experience. In addition, the cantilevered panel design also serves to shield against sweat and dust and cushion external impacts, protecting internal drive components and reducing the possibility of equipment damage, thereby improving the overall safety and durability of the device.

[0021] By employing a small servo motor as the drive source and positioning it and the control mechanism on opposite sides of the eccentric lifting assembly, a compact arrangement of the drive components within the equipment housing is achieved, contributing to equipment miniaturization. Simultaneously, the servo motor provides high-precision, programmable motion control, ensuring the accuracy of vibration frequency and amplitude output. The transmission mechanism utilizes a two-stage reduction design, converting the high-speed power of the drive motor into low-speed, high-torque power output to the eccentric wheel, thereby driving the device to achieve powerful reciprocating motion.

[0022] In addition, by setting multiple support structures around the device housing, each support structure consists of a connecting rod and a suction cup. The connecting rod is fixedly connected to the device housing to increase the support area, while the suction cup effectively suppresses the sliding and shaking of the rhythm device during operation through negative pressure adsorption, thereby improving the stability and safety of the rhythm device.

[0023] The panel structure can be made of wood, giving it good load-bearing strength and light weight, and making it easy to process and install. The panel structure can also include glass panels, which provide high hardness and scratch resistance, are easy to clean, and enhance the aesthetics of the panel structure. Attached Figure Description

[0024] To more clearly illustrate the technical solutions in the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0025] Figure 1 This is a schematic diagram of the structure of a rhythmic device provided in an embodiment of the present invention; Figure 2 yes Figure 1 A schematic diagram of an exploded structure of the rhythmic device shown; Figure 3 This is a schematic diagram of another rhythmic device provided in an embodiment of the present invention; Figure 4 yes Figure 3 A schematic diagram of the rhythmic device from another perspective; Figure 5 yes Figure 3 A schematic diagram of an exploded structure of the rhythmic device shown; Figure 6 This is an exploded structural diagram of another rhythmic device provided in this embodiment of the present invention; Figure 7 This is an exploded structural diagram of a light-emitting plate and a transition plate provided in an embodiment of this utility model; Figure 8 This is an exploded structural diagram of another rhythmic device provided in this embodiment of the present invention; Figure 9 This is a schematic diagram of the internal structure of a rhythmic device provided in an embodiment of the present invention; Figure 10 This is a schematic diagram of the internal structure of another rhythmic device provided in this embodiment of the present invention; Figure 11 This is a schematic diagram of the structure of an eccentric lifting assembly provided in an embodiment of this utility model; Figure 12 yes Figure 11 The exploded structural diagram of the eccentric lifting assembly is shown below; Figure 13 This is an exploded structural diagram of another rhythmic device provided in an embodiment of this utility model.

[0026] Explanation of reference numerals in the attached figures: Equipment housing 11, hinge seat b4, through hole k4; dust cover 111; drive assembly 12, control mechanism 121, drive motor 122, transmission mechanism 123, primary belt drive mechanism 1231, intermediate shaft 1232, secondary belt drive mechanism 1233, support seat 1234, eccentric lifting assembly 124, assembly 1241, first mounting hole k1, second mounting hole k2, eccentric wheel 1242, drive shaft 1243, through pin 1244, connecting plate 1245, third mounting hole k3, mounting seat 125; One direction d1, the second direction d2; top plate assembly 13, support plate structure 131, first cover plate 1311, first plate body b1, edge part b2, connecting ear b3, clearance groove c2, clearance hole k5, support beam 1312, panel structure 132, transition plate 1321, mounting groove c1, glue application groove c3, second cover plate b5, extension plate b6, first reinforcing rib b7, second reinforcing rib b8, glass panel 1322, light-emitting plate 1324, connector 133; support structure 14, suction cup part 141, connecting rod part 142. Detailed Implementation

[0027] To make the objectives, technical solutions, and advantages of this utility model clearer, the embodiments of this utility model will be described in further detail below with reference to the accompanying drawings.

[0028] Although the present invention can be readily embodied in various forms, only some specific embodiments are shown in the accompanying drawings and will be described in detail in this specification. It is understood that this specification should be regarded as an exemplary illustration of the principles of the present invention and is not intended to limit the present invention to what is described herein.

[0029] Therefore, a feature pointed out in this specification is used to describe one feature of one embodiment of the present invention, and does not imply that every embodiment of the present invention must have the described feature. Furthermore, it should be noted that this specification describes many features. Although certain features may be combined to illustrate possible system designs, these features may also be used in other combinations not explicitly stated. Therefore, unless otherwise stated, the described combinations are not intended to be limiting.

[0030] In the embodiments shown in the accompanying drawings, the directional indications (such as up, down, left, right, front, and back) used to explain the structure and movement of the various elements of this invention are relative rather than absolute. These descriptions are appropriate when these elements are in the positions shown in the drawings. If the descriptions of the positions of these elements change, these directional indications also change accordingly.

[0031] Please refer to Figure 1 and Figure 2 , Figure 1 This is a schematic diagram of the structure of a rhythmic device provided in an embodiment of this utility model. Figure 2 yes Figure 1 The diagram shows an exploded structural representation of a rhythmic device, which may include: a housing 11, a drive assembly 12, and a top plate assembly 13.

[0032] The device housing 11 has a receiving groove in which the drive assembly 12 is installed; the receiving groove of the device housing 11 has an upward opening, and the top plate assembly 13 is located above the opening and is able to cover the opening.

[0033] The top plate assembly 13 is located on top of the device housing 11. The top plate assembly 13 includes a support plate structure 131 and a panel structure 132. The support plate structure 131 is located between the panel structure 132 and the device housing 11. The support plate structure 131 is connected to the drive assembly 12, and the panel structure 132 is detachably connected to the support plate structure 131. The drive assembly 12 is used to drive the top plate assembly 13 to move up and down rhythmically or shake. For example, the middle area of ​​the top plate assembly 13 can be hinged to the device housing 11, and the drive assembly 12 can be connected to one end of the top plate assembly 13 so that the drive assembly 12 drives the top plate assembly 13 to swing and shake. Alternatively, the rhythm device can also include a buffer structure. The top plate assembly 13 can be connected to the device housing 11 through the buffer structure, and the drive assembly 12 can be connected to the middle area of ​​the top plate so that the drive assembly 12 drives the top plate assembly 13 to move vertically rhythmically.

[0034] In this embodiment of the utility model, the top plate assembly 13 is divided into a support plate structure 131 and a panel structure 132, and the support plate structure 131 and the panel structure 132 are detachably connected. The rhythm device is easy to assemble, and if the panel structure 132 is worn, damaged or old during transportation or use, the staff or user only needs to disassemble and replace the panel structure 132. There is no need to replace the traditional plastic shell support plate structure 131 and drive assembly 12, which are more difficult to manufacture, thus reducing the maintenance difficulty of the rhythm device.

[0035] Furthermore, during the production process of the rhythm device, the rhythm device has diversified panels, that is, it can produce a variety of panel structures 132 made of different materials for users to choose from. The support plate structure 131 that plays a transmission function is produced uniformly. Thus, while ensuring the stability of the transmission function of the rhythm device, the functional modularity and personalized selection of the rhythm device can be realized, which can improve the applicability of the rhythm device.

[0036] For example, the panel structure 132 may include an anti-slip panel, a shock-absorbing panel, a temperature-sensitive panel, an easy-to-clean panel, or a high-strength panel. The anti-slip panel is suitable for high-amplitude movements, increasing the safety of the rhythmic device; the shock-absorbing panel can be a soft panel, providing a softer feel underfoot and reducing the impact on the user's joints; the temperature-sensitive panel can have a heating function for heat therapy or muscle relaxation; the easy-to-clean panel may have a smooth, dense surface structure, suitable for public places such as gyms, facilitating quick cleaning and disinfection; the high-strength panel is suitable for high-intensity movements, improving the reliability of the rhythmic device. In this way, the rhythmic device can meet the needs of multiple scenarios. During the production process, different panel structures 132 can be installed on the support plate structure 131 according to customer customization requirements, or users can choose multiple panels to meet the different exercise needs of different family members, thereby improving the user experience of the rhythmic device.

[0037] In addition, the panel structure 132, as the top layer barrier to receive external impacts, can absorb most of the wear and impact during use, thereby protecting the support plate structure 131 and drive assembly 12 below and extending the service life of the whole machine.

[0038] In summary, this utility model embodiment provides a rhythmic device including a housing 11, a drive assembly 12, and a top plate assembly 13. The drive assembly 12 is installed in the housing 11, and the top plate assembly 13 is located on top of the housing 11. The top plate assembly 13 includes a support plate structure 131 and a panel structure 132. The support plate structure 131 is located between the panel structure 132 and the housing 11. The support plate structure 131 is connected to the drive assembly 12, and the panel structure 132 is detachably connected to the support plate structure 131. The drive assembly 12 is used to drive the top plate assembly 13 to rhythmically move up and down or vibrate. By dividing the top plate assembly 13 into a detachable support plate structure 131 and a panel structure 132, the panel can be replaced separately to reduce maintenance difficulty and cost. At the same time, the support plate structure 131 is uniformly produced to ensure transmission stability, and the diverse panel structures 132 can meet personalized needs and improve user experience. In addition, the panel structure 132, as a top barrier, can absorb wear and impact, thereby protecting the internal structure and extending the service life of the entire machine.

[0039] Please refer to Figure 3 , Figure 4 and Figure 5 , Figure 3 This is a schematic diagram of another rhythmic device provided in an embodiment of the present invention. Figure 4 yes Figure 3 A schematic diagram of the rhythmic device from another perspective. Figure 5 yes Figure 3 The diagram shows an exploded structure of a rhythmic device. Figure 4 yes Figure 3 The bottom view of the rhythmic device shown, in an optional embodiment, indicates that the dimensions of the panel structure 132 are larger than the dimensions of the device housing 11 in a direction parallel to the surface of the panel structure 132. For example... Figure 4 As shown, the orthographic projection of the device housing 11 on the first plane lies within the orthographic projection of the panel structure 132 on the first plane. The first plane can be a virtual plane parallel to the surface of the panel structure 132. Thus, the panel structure 132 can include a central region and a peripheral region, wherein the orthographic projection of the central region can coincide with the orthographic projection of the device housing 11, while the orthographic projection of the peripheral region does not overlap with the orthographic projection of the device housing 11. Please refer to... Figure 2 and Figure 5 The support plate structure 131 may include a first cover plate 1311 and a plurality of support beams 1312. The first cover plate 1311 is located above and connected to the equipment housing 11. The plurality of support beams 1312 are arranged around and fixedly connected to the first cover plate 1311. In a direction perpendicular to the surface of the panel structure 132, the support beams 1312 are offset from the equipment housing 11 and overlap with the panel structure 132. The extending direction of the support beams 1312 may be parallel to the surface of the panel structure 132.

[0040] The support beam 1312 can support the outer area of ​​the panel structure 132 to increase the overall strength of the top plate assembly 13. In the direction of extension from the inside to the outside of the support beam 1312, the thickness of the support beam 1312 gradually decreases, so as to reduce the impact of the support beam 1312 on the aesthetics of the top plate assembly 13.

[0041] The first cover plate 1311 may include a first plate body b1 and an edge portion b2 surrounding the first plate body b1. The edge portion b2 may be perpendicular to the first plate body b1. The edge portion b2 may be fixedly connected to the first plate body b1 (e.g., welded) or may be an integral structure with the first plate body b1. The first plate body b1 may be located above the opening of the receiving groove of the device housing 11. The edge portion b2 may cover the opening of the receiving groove from the side to improve the appearance integrity of the rhythm device and avoid large side gaps at the connection between the device housing 11 and the top plate assembly 13.

[0042] In this embodiment of the invention, the large panel structure 132 covering the device housing 11 provides better physical protection for the device housing 11 and the connection between the device housing 11 and the top plate assembly 13, thereby reducing the risk of toes or limbs accidentally getting caught in the movement gap between the device housing 11 and the top plate assembly 13. Simultaneously, the relatively large panel provides a stable standing surface for the user, improving the safety of the rhythmic device and enhancing the user's sense of stability and security during movement.

[0043] Furthermore, the larger panel structure 132 increases the effective standing area, allowing users more freedom in foot placement and greater tolerance, thus improving the user experience. The cantilevered panel structure 132 acts like an eave, preventing sweat, water, or dust from entering the device housing 11, helping to protect the drive components 12 inside the housing. In addition, when the rhythm device is impacted, the panel structure 132 absorbs the impact first, thus providing a certain degree of cushioning and reducing the possibility of damage to the device housing 11 and surrounding components.

[0044] Please refer to Figure 2 In one exemplary embodiment, the first cover plate 1311 further includes two connecting ears b3, which are symmetrically arranged on both sides of the middle of the first cover plate 1311. The device housing 11 has symmetrically arranged hinge seats b4, and the two connecting ears b3 are respectively hinged to the two hinge seats b4 on the device housing 11 by bolts. The drive assembly 12 can drive the top plate assembly 13 to reciprocate around the connecting ears b3.

[0045] Please refer to Figure 2 In an optional embodiment, the top panel assembly 13 may further include multiple connectors 133, and the panel structure 132 includes a wooden panel; the wooden panel is detachably connected to the support plate structure 131 via the multiple connectors 133. The multiple connectors 133 may be multiple connecting bolts, the support plate structure 131 may have multiple mounting through holes, and the wooden panel may have multiple mounting countersunk holes. The connecting bolts may be sequentially inserted into the mounting through holes and mounting countersunk holes to connect the support plate structure 131 and the wooden panel. Please refer to [reference needed]. Figure 2 and Figure 5 In the direction perpendicular to the panel surface of the panel structure 132, multiple connectors 133 are offset from the equipment housing 11. That is, multiple connectors 133 are located outside the equipment housing 11. Thus, when installing or disassembling the panel structure 132, it is not necessary to disassemble the equipment housing 11, which can reduce the difficulty of replacing or repairing the panel structure 132.

[0046] In this embodiment, a wooden panel is used as the panel structure of the rhythmic device. Since wooden panels can have high strength while having low density, a lightweight design of the panel structure can be achieved while ensuring the load-bearing strength and rigidity of the panel structure. Furthermore, wooden panels are easy to process; irregular shapes, holes, and grooves can be machined using CNC machining, resulting in good assembly compatibility and reducing the manufacturing difficulty of the rhythmic device.

[0047] For example, the wood panel may include plywood or solid wood. Plywood has a cross-laminated structure with uniform internal stress, making it less prone to warping and deformation, and providing good impact resistance. The top surface of the wood panel may have anti-slip textures to improve user safety when using the kinetic device.

[0048] Please refer to Figure 6 , Figure 6 This is an exploded structural diagram of another rhythmic device provided in an embodiment of the present invention. In an optional embodiment, the top plate assembly 13 may further include multiple connectors 133, and the panel structure 132 includes a transition plate 1321 and a light-transmitting panel 1322. The transition plate 1321 is located on the side of the support plate structure 131 away from the device housing 11, and the transition plate 1321 is detachably connected to the support plate structure 131 through multiple connectors 133. The light-transmitting panel 1322 is fixedly connected to the side of the transition plate 1321 away from the support plate structure 131.

[0049] The top plate assembly 13 employs a layered structure consisting of a support plate structure 131, a transition plate 1321, and a light-transmitting panel 1322. The transition plate 1321, serving as both a load-bearing and connecting layer, is detachably fixed to the support plate structure 131, bearing the main installation stress and being replaceable. This protects the overall strength of the light-transmitting panel 1322 while reducing maintenance difficulty. The outer light-transmitting panel 1322 is firmly bonded to the transition plate 1321, providing a good aesthetic texture and easy-to-clean surface while forming an effective protective layer with dust and moisture-proof functions. This enhances the aesthetics, practicality, and protection of the rhythmic device. The light-transmitting panel 1322 may have anti-slip textures to improve user safety.

[0050] Furthermore, custom patterns, displays, or ambient lighting can be installed between the light-transmitting panel 1322 and the transition plate 1321. For example, text or patterns can be printed on the transition plate, and the light-transmitting panel can encapsulate and protect the text or patterns. Alternatively, a display device can be installed between the light-transmitting panel 1322 and the transition plate 1321. The fixed connection between the light-transmitting panel 1322 and the transition plate 1321 can form a sealed whole, which can effectively prevent dust and moisture from entering the display screen or electronic components below the light-transmitting panel 1322 from the front, ensuring the long-term stable operation of the internal core components.

[0051] Please refer to Figure 6 and Figure 7 , Figure 7This is an exploded structural diagram of a light-emitting plate 1324 and a transition plate 1321 provided in an embodiment of this utility model. In an optional embodiment, the panel structure 132 may further include a light-emitting plate 1324, and the transition plate 1321 has a mounting groove c1. The light-emitting plate 1324 is installed in the mounting groove c1 and has a light-emitting surface facing the light-transmitting panel 1322. The light emitted by the light-emitting plate 1324 can pass through the light-transmitting panel 1322 to achieve the function of backlighting or ambient lighting. For example, a logo, time, or other images can be displayed through the light-emitting plate 1324. Thus, the concealed light source design can enrich the visual interactive functions of the panel structure 132 and also make the rhythm device have a simple appearance.

[0052] Optionally, the light-transmitting panel 1322 may include a glass panel, which, for example, may include tempered glass. The glass panel has good light transmittance, effectively showcasing the display effect of the lower light-emitting panel 1324; furthermore, the tempered glass panel surface has high hardness and scratch resistance, resisting wear and impact during daily use; its good load-bearing capacity and structural stability also ensure that the glass panel is not easily deformed during long-term use. In addition, tempered glass has a safe self-explosion characteristic; even if it breaks under extreme conditions, it will decompose into small particles without sharp edges, reducing the risk of accidental injury and improving the safety of the rhythmic device. At the same time, the glass material is easy to clean and maintain, keeping the rhythmic device clean and bright, enhancing its aesthetic appeal.

[0053] In one exemplary embodiment, the light-emitting panel 1324 may include an OLED display, an LED display, or an EL cold light panel, wherein the EL cold light panel is capable of emitting light uniformly throughout and has flexible and bendable characteristics.

[0054] Please refer to Figure 8 , Figure 8 This is an exploded structural diagram of another rhythmic device provided in an embodiment of the present invention. In an optional embodiment, the transition plate 1321 includes a second cover plate b5, an extension plate b6, a plurality of first reinforcing ribs b7 and a plurality of second reinforcing ribs b8; the second cover plate b5 is located above the device housing 11, the extension plate b6 surrounds the second cover plate b5 and is fixedly connected to the second cover plate b5; the plurality of first reinforcing ribs b7 are located on the side of the second cover plate b5 near the support plate structure 131 and are fixedly connected to the second cover plate b5, and the plurality of second reinforcing ribs b8 are located on the side of the extension plate b6 near the support plate structure 131 and are fixedly connected to the extension plate b6, and the height of the first reinforcing ribs b7 is less than the height of the second reinforcing ribs b8.

[0055] The second cover plate b5 can be located above the first cover plate 1311, or the second cover plate b5 can be nested outside the first cover plate 1311 and bolted to the first cover plate 1311. The extension plate b6 can be located above the plurality of support beams 1312 and bolted to the support beams 1312. The second cover plate b5 and the extension plate b6 can be welded together, or the second cover plate b5 and the extension plate b6 can be an integral structure.

[0056] Since the first cover plate 1311 is nested below the second cover plate b5, the first cover plate 1311 can provide support for the second cover plate b5 and make the space between the second cover plate b5 and the first cover plate 1311 smaller. Therefore, the first reinforcing rib b7 adopts a lower height to avoid assembly interference and optimize the spatial layout. Meanwhile, the extension plate b6 area provides stronger bending and torsional stiffness through the higher second reinforcing rib b8, effectively transferring and dispersing stress.

[0057] In an alternative embodiment, the panel structure 132 may further include an adhesive layer (not shown) located between the transition plate 1321 and the glass panel 1322, wherein the transition plate 1321 is bonded to the glass panel 1322 via the adhesive layer.

[0058] Please refer to Figure 6 and Figure 7 The transition plate 1321 may also have a glue applicator groove c3. The adhesive layer includes an adhesive layer formed by adhesive liquid. The glue applicator groove c3 is used to accommodate the adhesive layer, which can improve the reliability, uniformity and efficiency of the bonding between the transition plate 1321 and the glass panel 1322. The glue applicator groove c3 enhances the bonding force by increasing the adhesion area of ​​the adhesive liquid, and ensures that the adhesive layer is evenly distributed by guiding and accommodating the adhesive liquid, avoiding localized glue shortages. At the same time, the glue applicator groove c3 also helps to control the amount of adhesive applied, reduce glue overflow, and inhibit the shrinkage of the adhesive layer during the curing process, thereby effectively reducing internal stress and preventing delamination or deformation, thus achieving a more stable and durable structural connection.

[0059] Please refer to Figure 9 , Figure 9This is a schematic diagram of the internal structure of a rhythmic device provided in an embodiment of the present invention. In an optional embodiment, the driving component 12 may include a control mechanism 121, a drive motor 122, a transmission mechanism 123, and an eccentric lifting component 124. The control mechanism 121 and the drive motor 122 are arranged along a first direction d1, and the drive motor 122 and the eccentric lifting component 124 are arranged along a second direction d2, with the first direction d1 and the second direction d2 intersecting. The transmission mechanism 123 is connected to both the drive motor 122 and the eccentric lifting component 124. The control mechanism 121 may include a control board and a power switch, and can be electrically connected to the drive motor 122. The drive motor 122 can drive the eccentric lifting component 124 to reciprocate through the transmission mechanism 123, thereby causing the panel assembly to generate rhythmic motion. The control mechanism 121 may also include a remote control, which can be wirelessly connected to the control board to adjust the speed of the drive motor 122, thereby controlling the vibration frequency and rhythm of the eccentric lifting component 124.

[0060] In this embodiment of the present invention, the drive motor 122 may include a servo motor. Since the servo motor is small in size, by setting the drive motor 122 on one side of the eccentric lifting assembly 124 and setting the control mechanism 121 on the other side of the eccentric lifting assembly 124, the arrangement of the drive assembly 12 in the device housing 11 can be more compact, thereby realizing the miniaturization of the device housing 11.

[0061] Please refer to Figure 10 , Figure 11 and Figure 12 , Figure 10 This is a schematic diagram of the internal structure of another rhythmic device provided in an embodiment of this utility model. Figure 11 This is a schematic diagram of the structure of an eccentric lifting assembly 124 provided in an embodiment of the present invention. Figure 12 yes Figure 11 The exploded structural diagram of the eccentric lifting assembly 124 shown is illustrated in one optional embodiment. The eccentric lifting assembly 124 may include a fitting 1241, an eccentric wheel 1242, a drive shaft 1243, a through-shaft pin 1244, and a connecting plate 1245. The fitting 1241 has a first mounting hole k1 and a second mounting hole k2, with the first mounting hole k1 located below the second mounting hole k2. The eccentric wheel 1242 is installed in the first mounting hole k1, and the drive shaft 1243 passes through the eccentric wheel 1242. The connecting plate 1245 is L-shaped, and its side has a third mounting hole k3. The through-shaft pin 1244 passes sequentially through the second mounting hole k2 and the third mounting hole k3 to hinge the connecting plate 1245 to the fitting 1241. The connecting plate 1245 is fixedly connected to the support plate structure 131.

[0062] The through-pin 1244 may include a top and a rod. The rod can sequentially pass through the second mounting hole k2 and the third mounting hole k3, with one end of the rod extending out of the third mounting hole k3. The top can be located outside the second mounting hole k2. The eccentric lifting assembly 124 may also include a locking bolt, which can be threaded to one end of the rod to lock the connecting plate 1245 and the through-pin 1244 onto the top of the assembly 1241, thus simplifying the installation process of the connecting plate 1245. The connecting plate 1245 and the support plate structure 131 can be connected by bolts or welding.

[0063] In one exemplary embodiment, when the drive assembly 12 drives the transmission shaft 1243 to rotate, the eccentric wheel 1242 rotates accordingly, causing the lower part of the assembly 1241 to move up and down and back and forth along the radial plane of the transmission shaft 1243. At the same time, since the horizontal movement of the connecting plate 1245 and the support plate structure 131 is restricted to a certain extent, the horizontal movement of the through pin 1244 locked with the connecting plate 1245 is also restricted, so that the through pin 1244 and the connecting plate 1245 can be driven by the eccentric wheel 1242 to move up and down reciprocally, thereby causing the top plate assembly 13 to swing back and forth relative to the equipment housing 11.

[0064] In one exemplary embodiment, a bearing is provided in the first mounting hole k1, and the through pin 1244 is inserted into the bearing, which can improve the rotational stability of the through pin 1244 and prevent jamming during reciprocating motion.

[0065] Please refer to Figure 9 and Figure 10 In one optional embodiment, the transmission mechanism 123 includes a primary belt drive mechanism 1231, an intermediate shaft 1232, a secondary belt drive mechanism 1233, and a support seat 1234. The primary belt drive mechanism 1231 is connected to both the drive motor 122 and the intermediate shaft 1232. The secondary belt drive mechanism 1233 is connected to the intermediate shaft 1232. The support seat 1234 is located between the secondary belt drive mechanism 1233 and the eccentric lifting assembly 124, and the transmission shaft 1243 passes through the support seat 1234 and is connected to the secondary belt drive mechanism 1233. The support seat 1234 includes a seat body and a bearing disposed within the seat body, and the transmission shaft 1243 passes through the bearing, enabling the transmission shaft 1243 to rotate stably and smoothly.

[0066] In one exemplary embodiment, the primary belt drive mechanism 1231 may include a first small pulley, a first transmission belt, and a first large pulley, while the secondary belt drive mechanism 1233 may include a second large pulley, a second transmission belt, and a second small pulley. This forms a two-stage reduction transmission mechanism 123. The first-stage reduction mechanism includes: a first small pulley mounted on the output shaft of the drive motor 122 driving the first large pulley via the first transmission belt; the second-stage reduction mechanism includes: a second small pulley coaxial with the first large pulley driving the second large pulley connected to the eccentric pulley 1242 via the second transmission belt. This allows the high-speed power output from the drive motor 122 to be reduced by these two stages of belt drive mechanisms 123, becoming low-speed, high-torque power on the eccentric pulley 1242, thereby driving the device to perform powerful up-and-down reciprocating motion.

[0067] Please refer to Figure 9 and Figure 10 In one optional embodiment, the drive motor 122 may include a servo motor, and the drive assembly 12 may also include a mounting base 125; the mounting base 125 is fixedly connected to the bottom plate of the device housing 11, and the side of the drive motor 122 is fixedly connected to the side of the mounting base 125. In this embodiment of the present invention, a servo motor is used as the drive source. The servo motor can provide high-precision, programmable motion control, thereby ensuring the accuracy of vibration frequency and amplitude output; and by fixing the motor laterally, the motor mounting direction is parallel to the length direction of the rotation shaft, which can enhance the stability of the drive motor 122 during operation.

[0068] Please refer to Figure 13 , Figure 13 This is an exploded structural diagram of another rhythmic device provided in an embodiment of the present invention. In an optional embodiment, the rhythmic device may further include multiple support structures 14, which are arranged around the device housing 11. Each support structure 14 includes a suction cup portion 141 and a connecting rod portion 142. The connecting rod portion 142 is fixedly connected to the device housing 11, and the suction cup portion 141 is connected to the end of the connecting rod portion 142. The connecting rod portion 142 can increase the support area of ​​the support structure 14, and the negative pressure adsorption of the suction cup portion 141 can suppress the sliding and shaking of the rhythmic device during operation, thereby improving the stability and safety of the rhythmic device.

[0069] In one exemplary embodiment, the panel assembly may be rectangular, the device housing 11 may be cuboid, the number of support beams 1312 in the support plate structure 131 is four, the four support beams 1312 are respectively connected to the four corners of the first cover plate 1311, the number of support structures 14 is also four, the four support structures 14 are respectively connected to the four corners of the device housing 11.

[0070] Please refer to Figure 13In one alternative embodiment, the device housing 11 may include a metal housing, which has high strength. For example, the material of the device housing 11 may include stainless steel or aluminum alloy. The material of the support plate structure 131 may also include metal. For example, the material of the support plate structure 131 may be stainless steel or aluminum alloy.

[0071] The bottom of the equipment housing 11 has at least one through hole k4, through which at least a portion of the transmission mechanism 123 and the assembly 1241 are exposed. The second large wheel of the transmission mechanism 123 is exposed through one through hole k4; the assembly 1241 is partially exposed through one through hole k4. It is understood that when the bottom of the equipment housing 11 has one through hole k4, the second large wheel and the assembly 1241 can be exposed from the same through hole k4; when the bottom of the equipment housing 11 has two through holes k4, the second large wheel and the assembly 1241 can be exposed from two separate through holes k4.

[0072] The through hole k4 can provide clearance for the movement of large internal structures in the equipment housing 11, prevent the moving parts from interfering with or colliding with the equipment housing 11 during their travel, and also make the equipment housing 11 lighter and thinner.

[0073] In an optional embodiment, the device housing 11 may also have a dust cover 111, which is installed outside the through hole k4 of the device housing 11. The dust cover 111 prevents external contaminants such as dust, hair, and moisture from entering the interior of the device housing 11 through the through hole k4 by means of a physical barrier.

[0074] Please refer to Figure 2 In one exemplary embodiment, the first cover plate 1311 has a clearance groove c2 and a clearance hole k5 located at the bottom of the clearance groove c2. The top of the fitting 1241 can be exposed through the clearance hole k5. The bottom of the clearance groove c2 also has two first connecting through holes. The connecting plate 1245 has two second connecting through holes corresponding to the two first connecting through holes respectively. The connecting bolt can pass through the first connecting through hole and the second connecting through hole sequentially from the top of the first cover plate 1311 to fix the first cover plate 1311 and the connecting plate 1245.

[0075] In one exemplary embodiment, the rhythm device may further include a cooling fan and a battery located in the device housing 11, with the battery located between the control mechanism 121 and the transmission mechanism 123, and the cooling fan located on one side of the drive motor 122.

[0076] It should be noted that the dimensions of the areas may have been exaggerated in the accompanying drawings for clarity. Furthermore, it is understood that when an element is referred to as "on top of" another element, it can be directly on the other element, or there may be intermediate elements. Additionally, it is understood that when an element is referred to as "below" another element, it can be directly below the other element, or there may be more than one intermediate element. Furthermore, it is also understood that when an element is referred to as "between" two elements, it can be the only layer between the two elements, or there may be more than one intermediate element. Similar reference numerals throughout indicate similar elements.

[0077] In this invention, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance. The term "multiple" refers to two or more unless otherwise expressly defined.

[0078] The above description is only an optional embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A rhythmic device, characterized in that, include: Equipment housing, drive assembly, and top plate assembly; The device housing has a receiving groove, and the drive assembly is installed in the receiving groove; The top plate assembly is located above the device housing. The top plate assembly includes a support plate structure and a panel structure. The support plate structure is located between the panel structure and the device housing. The support plate structure is connected to the drive assembly. The panel structure is detachably connected to the support plate structure.

2. The rhythmic device according to claim 1, characterized in that, In a direction parallel to the surface of the panel structure, the dimensions of the panel structure are larger than the dimensions of the device housing; The support plate structure includes a first cover plate and multiple support beams. The first cover plate is located above the equipment housing and is connected to the equipment housing. The multiple support beams are arranged around the first cover plate and are fixedly connected to the first cover plate. In the direction perpendicular to the plate surface of the panel structure, the support beams are offset from the equipment housing and overlap with the panel structure. The extension direction of the support beams is parallel to the direction of the plate surface of the panel structure.

3. The rhythmic device according to claim 1, characterized in that, The top panel assembly also includes multiple connectors, and the panel structure includes a wooden panel; The wooden panel is detachably connected to the support plate structure via the plurality of connectors.

4. The rhythmic device according to claim 1, characterized in that, The top panel assembly also includes multiple connectors, and the panel structure includes a transition plate and a light-transmitting panel; The transition plate is located on the side of the support plate structure opposite to the equipment housing, and the transition plate is detachably connected to the support plate structure through the plurality of connectors; The light-transmitting panel is fixedly connected to the side of the transition plate opposite to the support plate structure.

5. The rhythmic device according to claim 4, characterized in that, The panel structure also includes a light-emitting panel, and the transition plate has a mounting groove; The light-emitting panel is installed in the mounting groove, and the light-emitting panel has a light-emitting surface, which faces the light-transmitting panel.

6. The rhythmic device according to claim 4, characterized in that, The light-transmitting panel includes a glass panel.

7. The rhythmic device according to claim 4, characterized in that, The transition plate includes a second cover plate, an extension plate, a plurality of first reinforcing ribs, and a plurality of second reinforcing ribs; The second cover plate is located above the equipment housing, and the extension plate surrounds the second cover plate and is fixedly connected to the second cover plate; The plurality of first reinforcing ribs are located on the side of the second cover plate near the support plate structure and are fixedly connected to the second cover plate. The plurality of second reinforcing ribs are located on the side of the extension plate near the support plate structure and are fixedly connected to the extension plate. The height of the first reinforcing ribs is less than the height of the second reinforcing ribs.

8. The rhythmic device according to claim 6, characterized in that, The panel structure also includes an adhesive layer located between the transition plate and the glass panel, wherein the transition plate is bonded to the glass panel via the adhesive layer.

9. The rhythmic device according to claim 1, characterized in that, The drive assembly includes a control mechanism, a drive motor, a transmission mechanism, and an eccentric lifting assembly; The control mechanism and the drive motor are arranged along a first direction, and the drive motor and the eccentric lifting assembly are arranged along a second direction, wherein the first direction and the second direction intersect. The transmission mechanism is connected to the drive motor and the eccentric lifting assembly respectively.

10. The rhythmic device according to claim 9, characterized in that, The eccentric lifting assembly includes an assembly, an eccentric wheel, a drive shaft, a through-shaft pin, and a connecting plate; The assembly has a first mounting hole and a second mounting hole, wherein the first mounting hole is located below the second mounting hole; The eccentric wheel is installed in the first mounting hole, and the drive shaft passes through the eccentric wheel; The connecting plate is L-shaped and has a third mounting hole on its side. The through-pin passes through the second mounting hole and the third mounting hole in sequence to hinge the connecting plate to the assembly. The connecting plate is fixedly connected to the support plate structure.

11. The rhythmic device according to claim 10, characterized in that, The transmission mechanism includes a primary belt drive mechanism, an intermediate shaft, a secondary belt drive mechanism, and a support base; The primary belt drive mechanism is connected to the drive motor and the intermediate shaft respectively; The secondary belt drive mechanism is connected to the intermediate shaft drive mechanism; The support is located between the secondary belt drive mechanism and the eccentric lifting assembly, and the drive shaft passes through the support and is connected to the secondary belt drive mechanism.

12. The rhythmic device according to claim 9, characterized in that, The drive motor includes a servo motor, and the drive assembly also includes a mounting base; The mounting base is fixedly connected to the bottom plate of the equipment housing, and the side of the drive motor is fixedly connected to the side of the mounting base.

13. The rhythmic device according to claim 1, characterized in that, The rhythmic device also includes multiple support structures arranged around the device housing; Each of the support structures includes a suction cup portion and a connecting rod portion, wherein the connecting rod portion is fixedly connected to the device housing, and the suction cup portion is connected to the end of the connecting rod portion.

14. The rhythmic device according to claim 11, characterized in that, The equipment housing includes a metal housing, and the bottom of the equipment housing has at least one through hole. The secondary belt drive mechanism includes a second large wheel, a second drive belt, and a second small wheel. The support seat is located between the second large wheel and the eccentric lifting assembly. The second large wheel of the drive mechanism protrudes from one of the through holes. The assembly part protrudes from one of the through holes.

15. The rhythmic device according to claim 13, characterized in that, The device housing also has a dust cover, which is installed on the outside of the through hole in the device housing.