A new type of vibration standing rehabilitation bed

CN224655596UActive Publication Date: 2026-08-21王雨强
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Patent Information

Application Number
CN202520346854.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-28
Publication Date
2026-08-21
Estimated Expiration
2035-02-28

AI Technical Summary

Technical Problem

[0004]上述方案在一定程度上解决了肢体康复理疗的问题,但是该方案依然存在着诸多不足,例如肌肉刺激效果好等问题

Benefits of technology

[0016] Compared with existing technologies, the advantages of this invention are as follows: it uses a voice coil motor to provide vibration force, and the position adjustment component can be used to flexibly adjust the stimulation position, thereby achieving a better deep muscle stimulation therapy effect; the lifting component can adjust the height of the vibration platform, and the vibration platform can be folded, thus having good adaptability; the position adjustment component at the lower end of the vibration platform has good adjustment flexibility and can be automatically moved in conjunction with the control panel.

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Abstract

The utility model provides a novel vibration standing rehabilitation bed, it has solved physiotherapy bed muscle stimulation insufficient and so on problem, it includes the standing bed, the standing bed upper end is installed with vibration platform and ankle foot fixing frame, vibration platform lower extreme with standing bed between installation has the vibration source and vibration source is by voice coil motor drive, vibration source and vibration platform between installation has the azimuth adjustment subassembly, vibration source and azimuth adjustment subassembly and standing bed on control panel connection. The utility model has good physiotherapy effect, convenient operation and the like advantages.
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Description

Technical Field

[0001] This utility model belongs to the field of rehabilitation and physiotherapy technology, specifically relating to a novel vibrating standing rehabilitation bed. Background Technology

[0002] Existing rehabilitation therapy beds can be divided into cervical traction beds and lumbar traction beds, etc. They can use mechanical transmission to traction the cervical or lumbar spine, stretch the intervertebral space, reduce the pressure of the intervertebral disc on the nerves, and relieve pain. Some can also perform whole-body traction to help correct deformed joints and promote the activation of muscle fiber cells. However, traditional standing rehabilitation equipment has limited functions and cannot provide deep muscle stimulation, so its therapeutic effect is limited.

[0003] To address the shortcomings of existing technologies, people have conducted long-term explorations and proposed various solutions. For example, Chinese patent literature discloses a rehabilitation bed [201310437683.2], which includes a mattress and a base. The mattress is connected to a support frame, and a lifter is connected to the lower part of the support frame. The lifter is fixed to the base. The support frame consists of eight independent supports corresponding to different parts of the body: a head support, a left upper limb support, a right upper limb support, a torso support, a left thigh support, a right thigh support, a left calf support, and a right calf support. Each independent support frame has eight independent sub-mattresses. A face mattress is embedded in the middle of the head mattress among the eight independent sub-mattresses. When using the bed, the patient's head, left and right hands, torso, left and right thighs, and calves are moved as needed by the actuators of the independent supports, thereby providing the patient with forced rehabilitation training.

[0004] The above-mentioned approach has solved the problem of limb rehabilitation physiotherapy to a certain extent, but it still has many shortcomings, such as poor muscle stimulation effect. Summary of the Invention

[0005] The purpose of this invention is to address the above-mentioned problems by providing a novel vibrating standing rehabilitation bed with a reasonable design and good muscle stimulation effect.

[0006] To achieve the above objectives, the present invention adopts the following technical solution: a novel vibrating standing rehabilitation bed, comprising a standing bed, a vibration platform and an ankle and foot fixation frame installed at the upper end of the standing bed, a vibration source installed between the lower end of the vibration platform and the standing bed and driven by a voice coil motor, an orientation adjustment component installed between the vibration source and the vibration platform, and the vibration source and the orientation adjustment component connected to the control panel on the standing bed.

[0007] In the aforementioned novel vibration standing rehabilitation bed, the standing bed includes a bed frame, a shock-absorbing component is provided between the bed frame and the ground, casters are movably installed at the lower end of the bed frame, and a lifting component is provided between the casters and the bed frame.

[0008] In the aforementioned novel vibration standing rehabilitation bed, the shock absorption assembly includes bed rods mounted on the bed frame, the bed rods having several nested shock absorption sleeves, damping elements installed between adjacent shock absorption sleeves, and a shock absorption pad made of elastic material placed between the bed frame and the vibration platform.

[0009] In the aforementioned novel vibration standing rehabilitation bed, the lifting assembly includes a lifting cylinder rotatably connected to casters, a lifting cylinder slidably connected to the bed frame, a synchronizing rod rotatably connected between adjacent lifting cylinders, a linkage gear set between the synchronizing rods, a lifting handwheel extending to the outside of the lifting cylinder being driven by the linkage gear set, and a gear rack being driven by the linkage gear set and the bed frame.

[0010] In the aforementioned novel vibrating standing rehabilitation bed, the vibration source includes a conduction disk attached to the lower end of the vibration platform, the output end of a voice coil motor is connected to the conduction disk, and the lower end of the vibration platform is covered with a sound-absorbing cotton pad.

[0011] In the aforementioned novel vibration standing rehabilitation bed, the orientation adjustment component includes an adjustment beam movably installed at the lower end of the vibration platform. The two ends of the adjustment beam are slidably connected to the vibration platform via adjustment guide rails, and an adjustment screw is transmitted between the adjustment guide rails and the adjustment beam.

[0012] In the aforementioned novel vibration standing rehabilitation bed, an adjustment groove is provided on the adjustment beam, and an adjustment base is slidably installed in the adjustment groove. A voice coil motor is installed on the adjustment base, and a translation screw is used for transmission between the adjustment base and the adjustment beam.

[0013] In the aforementioned novel vibrating standing rehabilitation bed, the vibration platform includes a front platform and a rear platform that are hinged to each other. A hydraulic or electric tilting push rod is installed between the front platform and the standing bed, and a tilting motor that adjusts the relative angle between the rear platform and the front platform is connected by a transmission.

[0014] In the aforementioned novel vibration standing rehabilitation bed, a headrest is provided at the front end of the vibration platform, and the headrest has a built-in speaker.

[0015] In the aforementioned novel vibration standing rehabilitation bed, the vibration platform and the standing bed are made of aluminum alloy.

[0016] Compared with existing technologies, the advantages of this invention are as follows: it uses a voice coil motor to provide vibration force, and the position adjustment component can be used to flexibly adjust the stimulation position, thereby achieving a better deep muscle stimulation therapy effect; the lifting component can adjust the height of the vibration platform, and the vibration platform can be folded, thus having good adaptability; the position adjustment component at the lower end of the vibration platform has good adjustment flexibility and can be automatically moved in conjunction with the control panel. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is another structural schematic diagram of the present invention; Figure 3 This is another structural schematic diagram of the present invention; In the diagram, the components are: 1. Bed frame; 11. Casters; 12. Bed rods; 13. Shock-absorbing sleeves; 14. Damping elements; 15. Vibration damping pads; 16. Vibration platform; 2. Front platform; 21. Rear platform; 22. Tilting push rod; 23. Headrest; 24. Tilting motor; 25. Ankle and foot fixing bracket; 3. Vibration source; 4. Conducting disc; 41. Sound-absorbing cotton pad; 42. Voice coil motor; 5. Orientation adjustment assembly; 6. Adjusting beam; 61. Adjusting guide rail; 62. Adjusting screw; 63. Adjusting slide; 64. Adjusting base; 65. Translation screw; 66. Lifting assembly; 7. Lifting cylinder; 71. Synchronizing rod; 72. Linkage gear set; 73. Lifting handwheel; 74. Gear rack; 75. Detailed Implementation

[0018] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0019] like Figure 1-3 As shown, a novel vibrating standing rehabilitation bed includes an adjustable standing bed 1. A vibration platform 2 and an ankle-foot fixation frame 3 are mounted on the upper end of the standing bed 1. The vibration platform 2 is in direct contact with the user. A vibration source 4, driven by a voice coil motor 5, is installed between the lower end of the vibration platform 2 and the standing bed 1. When the voice coil motor 5 is activated, the vibration source 4 applies vibration to the vibration platform 2, providing deep stimulation to the user's local muscles. A position adjustment component 6 is installed between the vibration source 4 and the vibration platform 2. The vibration source 4 and the position adjustment component 6 are connected to a control panel on the standing bed 1. The control panel controls the amplitude and frequency of the voice coil motor 5 as needed, thereby providing low-to-medium frequency amplitude stimulation to the user.

[0020] Specifically, the standing bed 1 includes a bed frame 11, with a shock-absorbing component between the bed frame 11 and the ground. To improve the flexibility of movement and adjustment, casters 12 are movably installed at the lower end of the bed frame 11, and a lifting component 7 is provided between the casters 12 and the bed frame 11. The casters 12 are typically swivel casters with a self-locking function.

[0021] In detail, similar to existing damping and vibration reduction systems, the vibration reduction assembly in this embodiment includes a bed rod 13 mounted on the bed frame 11. The bed rod 13 has several nested damping sleeves 14, and damping elements 15 are installed between adjacent damping sleeves 14. An elastic damping pad 16 is provided between the bed frame 11 and the vibration platform 2. The damping elements 15 and the damping pad 16 buffer and reduce noise, reducing the vibration transmitted to the ground when the vibration source 4 is activated.

[0022] Furthermore, the lifting assembly 7 enables the overall vertical lifting of the vibration platform 2. It includes a lifting cylinder 71 rotatably connected to casters 12, a sliding connection between the lifting cylinder 71 and the bed frame 11, and rotatably connected synchronizer rods 72 between adjacent lifting cylinders 71. A linkage gear set 73 is provided between the synchronizer rods 72, and the linkage gear set 73 is driven by a lifting handwheel 74 extending to the outside of the lifting cylinder 71. A gear rack 75 is driven between the linkage gear set 73 and the bed frame 11. The lifting handwheel 74 is manually rotated, and the synchronizer rods 72 and the linkage gear set 73 are synchronously driven, maintaining the lifting balance of the vibration platform 2.

[0023] Furthermore, the vibration source 4 includes a conduction disk 41 attached to the lower end of the vibration platform 2, the output end of the voice coil motor 5 is connected to the conduction disk 41, and the lower end of the vibration platform 2 is covered with a sound-absorbing cotton pad 42. The conduction disk 41 concentrates the vibration force output by the voice coil motor 5, ensuring that a larger amplitude is obtained in a local position of the vibration platform 2.

[0024] In addition, since different users need to adjust the position of the vibration source 4 in a timely manner, the orientation adjustment component 6 includes an adjustment beam 61 movably mounted on the lower end of the vibration platform 2. The two ends of the adjustment beam 61 are slidably connected to the vibration platform 2 via adjustment guide rails 62. An adjustment screw 63 is driven between the adjustment guide rails 62 and the adjustment beam 61. An adjustment groove 64 is opened on the adjustment beam 61, and an adjustment base 65 is slidably installed within the adjustment groove 64. The voice coil motor 5 is mounted on the adjustment base 65, and a translation screw 66 is driven between the adjustment base 65 and the adjustment beam 61. The adjustment screw 63 and the translation screw 66 cooperate to adjust the plane orientation of the adjustment base 65. The adjustment screw 63 and the translation screw 66 are connected to the control panel and are independently driven and controlled, and are also equipped with a displacement sensor for feedback adjustment.

[0025] As can be seen, to meet the user's standing needs, the vibration platform 2 includes a front platform 21 and a rear platform 22 that are hinged together. A hydraulic or electric tilting push rod 23 is installed between the front platform 21 and the standing bed 1. The front platform 21 is tilted using a hydraulic or electric method, thereby helping the user maintain a standing position. A tilting motor 25 is connected to the rear platform 22 and the front platform 21 to adjust their relative angle. As needed, the rear platform 22 and the front platform 21 are adjusted to a perpendicular state to ensure stable contact between the user's feet and the rear platform 22, thus ensuring the user's standing stability.

[0026] It is evident that the front end of the vibration platform 2 is equipped with a headrest 24, which has a built-in speaker. This speaker can use voice to remind the user to adjust the bed and exercise the muscles in a timely manner.

[0027] Preferably, the vibration platform 2 and the lifting bed 1 are made of aluminum alloy, which takes into account both structural strength and lightweight. At the same time, the inner side of the lifting bed 1 is also provided with other reinforcing structures to maintain structural stability.

[0028] In summary, the principle of this embodiment is as follows: the vibration platform 2 at the upper end of the standing bed 1 is provided with vibration force by the vibration source 4, wherein the voice coil motor 5 is adjusted by the control panel 8 to adjust the amplitude and frequency, and the orientation adjustment component 6 realizes the adjustment of the vibration position, thereby obtaining the best muscle stimulation effect.

[0029] The specific embodiments described herein are merely illustrative examples illustrating the spirit of this utility model. Those skilled in the art to which this utility model pertains may make various modifications or additions to the described specific embodiments or use similar methods to substitute them, without departing from the spirit of this utility model or exceeding the scope defined by the appended claims.

[0030] Although this article frequently uses terms such as 1. bed frame, 11. casters, 12. bed rods, 13. shock-absorbing sleeves, 14. damping elements, 15. vibration-damping pads, 16. vibration platform, 2. front platform, 21. rear platform, 22. tilting push rod, 23. headrest, 24. tilting motor, 25. ankle and foot fixing bracket, 3. vibration source, 4. conduction plate, 41. sound-absorbing cotton pad, 42. voice coil motor, 5. orientation adjustment assembly, 6. adjusting beam, 61. adjusting guide rail, 62. adjusting screw, 63. adjusting slide, 64. adjusting base, 65. translation screw, 66. lifting assembly, 7. lifting cylinder, 71. synchronizing rod, 72. linkage gear set, 73. lifting handwheel, 74. gear rack, etc., the possibility of using other terms is not excluded. The use of these terms is merely for the convenience of describing and explaining the essence of this utility model; interpreting them as any additional limitation would contradict the spirit of this utility model.

Claims

1. A novel vibration standing rehabilitation bed, comprising a standing bed (1), wherein a vibration platform (2) and an ankle and foot fixation frame (3) are installed on the upper end of the standing bed (1), characterized in that, A vibration source (4) is installed between the lower end of the vibration platform (2) and the erecting bed (1), and the vibration source (4) is driven by a voice coil motor (5). An orientation adjustment component (6) is installed between the vibration source (4) and the vibration platform (2). The vibration source (4) and the orientation adjustment component (6) are connected to the control panel on the erecting bed (1).

2. The novel vibration standing rehabilitation bed according to claim 1, characterized in that, The standing bed (1) includes a bed frame (11), a shock-absorbing component is provided between the bed frame (11) and the ground, a caster (12) is movably installed at the lower end of the bed frame (11), and a lifting component (7) is provided between the caster (12) and the bed frame (11).

3. The novel vibration standing rehabilitation bed according to claim 2, characterized in that, The shock absorption assembly includes a bed rod (13) mounted on the bed frame (11), the bed rod (13) having a plurality of nested shock absorption sleeves (14), a damping element (15) installed between adjacent shock absorption sleeves (14), and a shock absorption pad (16) of elastic material between the bed frame (11) and the vibration platform (2).

4. The novel vibration standing rehabilitation bed according to claim 2, characterized in that, The lifting assembly (7) includes a lifting cylinder (71) rotatably connected to a caster (12), the lifting cylinder (71) is slidably connected to the bed frame (11), a synchronizing rod (72) is rotatably connected between adjacent lifting cylinders (71), a linkage gear set (73) is provided between the synchronizing rods (72), the linkage gear set (73) is driven by a lifting handwheel (74) extending to the outside of the lifting cylinder (71), and a gear rack (75) is driven between the linkage gear set (73) and the bed frame (11).

5. The novel vibration standing rehabilitation bed according to claim 1, characterized in that, The vibration source (4) includes a conduction disk (41) attached to the lower end of the vibration platform (2), the output end of the voice coil motor (5) is connected to the conduction disk (41), and the lower end of the vibration platform (2) is covered with a sound-absorbing cotton pad (42).

6. A novel vibration standing rehabilitation bed according to claim 5, characterized in that, The orientation adjustment component (6) includes an adjustment beam (61) movably installed at the lower end of the vibration platform (2). The two ends of the adjustment beam (61) are slidably connected to the vibration platform (2) through the adjustment guide rail (62). An adjustment screw (63) is connected between the adjustment guide rail (62) and the adjustment beam (61).

7. A novel vibration standing rehabilitation bed according to claim 6, characterized in that, The adjusting beam (61) has an adjusting groove (64), and an adjusting base (65) is slidably installed in the adjusting groove (64). The voice coil motor (5) is installed on the adjusting base (65), and a translation screw (66) is connected between the adjusting base (65) and the adjusting beam (61).

8. The novel vibration standing rehabilitation bed according to claim 1, characterized in that, The vibration platform (2) includes a front platform (21) and a rear platform (22) that are hinged to each other. A hydraulic or electric tilting push rod (23) is installed between the front platform (21) and the erecting bed (1). A tilting motor (25) that adjusts the relative angle between the rear platform (22) and the front platform (21) is connected by a transmission.

9. A novel vibration standing rehabilitation bed according to claim 1, characterized in that, The vibration platform (2) is provided with a headrest (24) at the front end, and the headrest (24) has a built-in speaker.

10. A novel vibration standing rehabilitation bed according to claim 1, characterized in that, The vibration platform (2) and the erecting bed (1) are made of aluminum alloy.

Citation Information

Patent Citations

  • Rehabilitation bed

    CN103462782A