Lifting type master console of anti-gravity treadmill
The lifting main control panel structure solves the problem of the inability to adjust the height of the handrails, and enables the handrails and the inflatable cushion to be raised and lowered synchronously, adapting to the needs of users of different heights and improving the applicability and safety of the anti-gravity running platform.
Patent Information
- Application Number
- CN202423255937.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-29
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2034-12-29
AI Technical Summary
The existing anti-gravity treadmills have handrails that cannot be flexibly adjusted in height, making them unsuitable for users of different heights, and the inflatable cushions cannot adjust automatically with the height of the handrails.
A lifting main control panel structure was designed. The height of the handrail can be adjusted by the cooperation of the rotating shaft, connecting rod and locking pin. The inflatable cushion is fixed to the frame, so that the inflatable cushion can adjust itself according to the height of the handrail.
The armrest height is flexibly adjustable to accommodate users of different heights, and the inflatable cushion rises and falls synchronously with the armrest, providing a better user experience and safety.
Smart Images

Figure CN223831745U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical rehabilitation equipment, specifically to an anti-gravity treadmill. Background Technology
[0002] An anti-gravity treadmill uses an inflatable mat to help exercisers reduce their weight, thus preventing injuries during physical training. Anti-gravity treadmills are primarily used for early postoperative rehabilitation training of orthopedic and neurological patients, postoperative rehabilitation training for obesity, diabetes, and lower limb diseases in the elderly, joint-free cardiopulmonary muscle function training for athletes, aerobic training conditioning, and recovery training for age-related diseases.
[0003] The main structure of the anti-gravity treadmill includes a pair of uprights, a treadmill connected to the pair of uprights, handrails mounted on the pair of uprights, and an inflatable cushion located above the treadmill. To accommodate users of different heights, a locking mechanism is provided between the handrails and the uprights. When unlocked, the handrails can move up and down along the pair of uprights; when locked, the handrails are stable on the pair of uprights. Utility Model Content
[0004] The technical problem solved by this utility model is to provide a main control console structure that can move up and down along a column.
[0005] To solve the above-mentioned technical problems, this utility model provides the following technical solution: a lifting main control panel for an anti-gravity running platform, including a handrail frame and a pair of handrails welded to the handrail frame. The handrail frame is provided with a locking pin structure, which includes a rotating shaft pivotally connected to the handrail frame, a connecting rod connected to the rotating shaft, and a locking pin hinged to the connecting rod. The locking pin is movably inserted into the side wall of the handrail frame and can protrude outward from the side wall of the handrail frame. The rotating shaft is connected to a swing frame. An inflatable cushion fixing frame is installed at the bottom of the handrail frame and the handrails. The inflatable cushion fixing frame is U-shaped and connected to the inflatable cushion.
[0006] The lifting main control console is connected to a pair of columns on the anti-gravity running platform at both ends. The user rotates the swing frame, driving the rotating shaft to rotate. The rotating shaft, via a connecting rod, drives the locking pin forward or backward. When the locking pin retracts, it disengages from the locking hole on the column, allowing the lifting main control console to rise and fall along the column to adjust the handrail height. Once the height is suitable, the swing frame is activated, causing the locking pin to advance and insert into the locking hole, locking the lifting main control console in position on the column. During the lifting process, the inflatable cushion rises and falls accordingly due to the connecting effect of the fixed frame, allowing the inflatable cushion to automatically adjust to the height of the handrail.
[0007] The inflatable cushion's fixing frame includes a pair of side rods and a cylindrical rod connecting the side rods. The side rods have a square cross-section. A pair of U-shaped pressure blocks are fixedly installed at the bottom of the handrail frame. The cylindrical rod is movably fitted into the U-shaped openings of the pair of U-shaped pressure blocks. The pair of side rods are detachably connected to the handrail. When the user enters the center of the inflatable cushion, the cushion is first lowered. At this time, the pair of side rods detach from the handrail and swing downwards around the cylindrical rod as a rotation axis. After the user enters the center of the inflatable cushion, the pair of side rods are then raised, connecting them to the handrail. Afterwards, the inflatable cushion inflates, buoying the user.
[0008] As an option, the bottom of the armrest is fixedly equipped with Velcro and a retaining clip, and the side rail is equipped with Velcro that works in conjunction with the Velcro on the armrest. The retaining clip is U-shaped, and the side rail is positioned within the U-shaped opening of the retaining clip. Alternatively, the bottom of the armrest is fixedly equipped with a magnet and a retaining clip, and the side rail is equipped with a magnet that works in conjunction with the magnet on the armrest. The retaining clip is U-shaped, and the side rail is positioned within the U-shaped opening of the retaining clip. Both Velcro and magnets allow for a detachable connection between the side rail and the armrest.
[0009] A shelf is welded between a pair of handrails, and the shelf is close to the handrail frame.
[0010] A control panel frame is welded onto the handrail frame, and a fixing plate is welded into the control panel frame. The control panel is fitted into the control panel frame and fixedly installed on the fixing plate.
[0011] The back of the handrail is equipped with a removable back panel with a clearance groove. The swing frame includes a pair of side plates and a connector connecting the pair of side plates. The side plates have a bending structure with a handle. The side plates are fixedly connected to the rotating shaft and fit into the clearance groove. When the swing frame swings up and down, the side plates swing in the clearance groove.
[0012] The handrail is equipped with sliders at both ends, which cooperate with the guide rails of the uprights to achieve a movable connection between the handrail and the uprights.
[0013] This utility model provides a main control panel structure, which has basic lifting function, as well as the function of accommodating the control screen. In addition, it also has the functions of placing items, connecting to the inflatable mat, and facilitating user access to the inflatable mat. Attached Figure Description
[0014] The present invention will be further described below with reference to the accompanying drawings:
[0015] Figure 1 A schematic diagram of the lifting main control console of the anti-gravity running platform;
[0016] Figure 2 for Figure 1 Enlarged view of point A in the middle;
[0017] Figure 3 for Figure 1 Exploded view;
[0018] Figure 4 A schematic diagram of the lifting main control console of the anti-gravity treadmill from another perspective;
[0019] Figure 5 This is a schematic diagram showing the lifting control console of the anti-gravity treadmill from below.
[0020] Explanation of symbols in the diagram:
[0021] 10. Handrail frame; 11. Handrail; 12. Shelf; 13. Control panel frame; 14. Fixing plate; 15. Back panel; 150. Clearance groove; 16. Slider;
[0022] 20. Rotating shaft; 21. Connecting rod; 22. Locking pin; 23. Swing frame; 231. Side plate; 232. Connecting piece; 233. Bending structure; 234. Handle;
[0023] 31. Side bar; 32. Cylindrical bar; 33. U-shaped pressure block; 34. Velcro; 35. Limiting clip;
[0024] 40. Control panel. Detailed Implementation
[0025] Combination Figure 1 , Figure 2 , Figure 5 The lifting main control panel of the anti-gravity running platform includes a handrail frame 10 and a pair of handrails 11 welded to the handrail frame. The handrail frame is provided with a locking pin structure, which includes a rotating shaft 20 pivotally connected to the handrail frame, a connecting rod 21 connected to the rotating shaft, and a locking pin 22 hinged to the connecting rod. The locking pin is movably inserted into the side wall of the handrail frame and can protrude outward from the side wall of the handrail frame. The rotating shaft is connected to the swing frame 23. An inflatable cushion fixing frame is installed at the bottom of the handrail frame and the handrails. The inflatable cushion fixing frame is U-shaped and connected to the inflatable cushion.
[0026] like Figure 5 The inflatable cushion fixing frame includes a pair of side rods 31 and a cylindrical rod 32 connecting the pair of side rods. The side rods have a square cross-section. A pair of U-shaped pressure blocks 33 are fixedly installed at the bottom of the handrail frame 10. The cylindrical rod is movably fitted in the U-shaped opening of the pair of U-shaped pressure blocks. The pair of side rods are detachably connected to the handrail 11.
[0027] The bottom of the handrail 11 is fixedly equipped with Velcro 34 and a limiting clip 35. The side bar 31 is equipped with Velcro that works with the Velcro on the handrail. The limiting clip is U-shaped and the side bar is positioned in the U-shaped opening of the limiting clip.
[0028] like Figure 1 A shelf 12 is welded between a pair of handrails 11, and the shelf is close to the handrail frame 10.
[0029] Combination Figure 1 , Figure 3 A control panel frame 13 is welded onto the handrail frame 10. A fixing plate 14 is welded into the control panel frame. The control panel 40 is fitted into the control panel frame and fixedly installed on the fixing plate.
[0030] like Figure 4 The back of the handrail 10 is equipped with a detachable back plate 15, and the back plate is provided with a relief groove 150. The swing frame 23 includes a pair of side plates 231 and a connector 232 connecting the pair of side plates. The side plates are provided with a bending structure 233 and a handle 234 on the bending structure. The side plates are fixedly connected to the rotating shaft and fit in the relief groove.
[0031] like Figure 1 The handrail 10 has sliders 16 installed at both ends, and the sliders cooperate with the guide rails of the column.
[0032] The two ends of the lifting main control console are connected to a pair of columns of the anti-gravity running platform via sliders 16 and guide rails. The user rotates the swing frame 23, driving the rotating shaft 20 to rotate. The rotating shaft, through a connecting rod 21, drives the locking pin 22 forward or backward. When the locking pin 22 retracts, it disengages from the locking hole on the column, allowing the lifting main control console to rise and fall along the column to adjust the handrail height. Once the height is suitable, the swing frame 23 is activated, causing the locking pin 22 to advance and insert into the locking hole, locking the lifting main control console in position on the column. During the lifting process, the inflatable cushion rises and falls accordingly due to the connecting effect of the fixed frame, allowing the inflatable cushion to automatically adjust to the height of the handrail.
[0033] Before the user enters the center of the inflatable cushion, the cushion is lowered. At this time, a pair of side rods 31 detach from the handrail 11 and swing downwards around the cylindrical rod 32 as the axis of rotation. After the user enters the center of the inflatable cushion, the pair of side rods 31 are then raised to connect with the handrail 11. After that, the inflatable cushion inflates and floats the user.
[0034] The above description is only a preferred embodiment of this utility model. For those skilled in the art, there will be changes in the specific implementation and application scope based on the idea of this utility model. The content of this specification should not be construed as a limitation of this utility model.
Claims
1. A lifting main control panel for an anti-gravity treadmill, comprising a handrail frame (10) and a pair of handrails (11) welded to the handrail frame, wherein the handrail frame is provided with a locking pin structure, the locking pin structure comprising a rotating shaft (20) pivotally connected to the handrail frame, a connecting rod (21) connected to the rotating shaft, and a locking pin (22) hinged to the connecting rod, the locking pin being movably inserted into the side wall of the handrail frame and capable of protruding outward from the side wall of the handrail frame, wherein the rotating shaft is connected to a swing frame (23), characterized in that: An inflatable cushion fixing frame is installed at the bottom of the handrail and the handrail. The inflatable cushion fixing frame is U-shaped and is connected to the inflatable cushion.
2. The lifting main control console of the anti-gravity treadmill as described in claim 1, characterized in that: The inflatable cushion fixing frame includes a pair of side rods (31) and a cylindrical rod (32) connecting the pair of side rods. The side rods have a square cross-section. A pair of U-shaped pressure blocks (33) are fixedly installed at the bottom of the handrail frame (10). The cylindrical rod is movably fitted in the U-shaped opening of the pair of U-shaped pressure blocks. The pair of side rods are detachably connected to the handrail (11).
3. The lifting main control console of the anti-gravity treadmill as described in claim 2, characterized in that: The bottom of the armrest (11) is fixedly equipped with Velcro (34) and a limiting clip (35). The side bar (31) is equipped with Velcro that works with the Velcro on the armrest. The limiting clip is U-shaped and the side bar is positioned in the U-shaped opening of the limiting clip.
4. The lifting main control console of the anti-gravity treadmill as described in claim 2, characterized in that: A magnet and a limiting clamp are fixedly installed at the bottom of the handrail (11), and a magnet that works with the magnet on the handrail is installed on the side bar. The limiting clamp is U-shaped, and the side bar is positioned in the U-shaped opening of the limiting clamp.
5. The lifting main control console of the anti-gravity treadmill as described in claim 1, characterized in that: A shelf (12) is welded between a pair of handrails (11), and the shelf is close to the handrail frame (10).
6. The lifting main control console of the anti-gravity treadmill as described in claim 1, characterized in that: A control panel frame (13) is welded onto the handrail frame (10). A fixing plate (14) is welded into the control panel frame. The control panel (40) is fitted into the control panel frame and fixedly installed on the fixing plate.
7. The lifting main control console of the anti-gravity treadmill as described in claim 1, characterized in that: The back of the handrail (10) is equipped with a detachable back plate (15), the back plate is provided with a relief groove (150), the swing frame (23) includes a pair of side plates (231) and a connector (232) connecting the pair of side plates. The side plates are provided with a bending structure (233) and a handle (234) on the bending structure. The side plates are fixedly connected to the rotating shaft and fit in the relief groove.
8. The lifting main control console of the anti-gravity treadmill as described in claim 1, characterized in that: The handrail (10) has sliders (16) installed at both ends.