升降底座及训练设备
By using an inverted electric lifting column and controller, the problems of cumbersome operation and high cost of existing medical training equipment bases are solved. This enables quick adjustment of the equipment when it is parked or moved, reducing costs and improving stability and ease of movement.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ANYANG XIANGYU MEDICAL EQUIP
- Filing Date
- 2025-08-25
- Publication Date
- 2026-07-17
AI Technical Summary
The existing adjustment methods for the base of medical training equipment are cumbersome and costly. Manual adjustment of the support legs requires tightening and loosening each one individually, and the multi-motor drive system has a complex structure and high cost.
It adopts a single electric lifting column, and through two or three telescopic columns installed inverted, combined with controller control, realizes automatic adjustment of the equipment when it is stationary and moving. The operation is simplified by switching between outriggers and casters.
It enables quick adjustment of the equipment when it is stationary or moving, reduces operating steps, lowers costs, improves stability and ease of movement, has a simple structure, wide applicability, and has a buffer and shock absorption function.
Smart Images

Figure CN224516438U_ABST
Abstract
Claims
1. A lifting pedestal, characterized in that, include: Lower plate (3), middle plate (2), upper plate (1), electric lifting column (4), caster (5), support leg (6), guide column (7), support frame (8) and support base (18); The upper plate (1), the middle plate (2), and the lower plate (3) are arranged in parallel from top to bottom; Casters (5) are provided at the four bottom corners of the middle plate (2), and support feet (6) are provided at the four bottom corners of the lower plate (3), with the four casters (5) located around the four support feet (6). The upper plate (1) has a first through hole (101) in the middle. The upper surface of the upper plate (1) and the outer periphery corresponding to the first through hole (101) are provided with the support frame (8). The electric lifting column (4) includes the outermost cylinder and a multi-section telescopic column located inside the cylinder, as well as a linear actuator for driving the telescopic column to extend and retract. The multi-section telescopic column includes at least a first telescopic column and a second telescopic column, and the size of the first telescopic column is smaller than the size of the second telescopic column. The electric lifting column (4) is installed upside down, and the first telescopic column is connected to the lower plate (3) through the support seat (18). The support seat (18) passes through the support frame (8), the first through hole (101) and the middle plate (2) from top to bottom. The second telescopic column is fixedly connected to the support frame (8). The upper plate (1) and the middle plate (2) are fixedly connected by multiple connectors (9), and multiple vertically arranged guide posts (7) are slidably connected between the upper plate (1) and the lower plate (3), with the guide posts (7) passing through the middle plate (2). The electric lifting column (4) is electrically connected to the controller, which can control the lifting of the first telescopic column and the second telescopic column.
2. The lift base of claim 1, wherein, The upper plate (1) is a square plate, and a second through hole (201) is provided in the middle of the middle plate (2) and at the position corresponding to the upper plate (1). The guide post (7) passes through the second through hole (201).
3. The lift base of claim 2, wherein, The four sides of the upper plate (1) are welded and fixed to the middle plate (2) by the connectors (9).
4. The lift base of claim 2, wherein, The guide posts (7) are respectively provided at the bottom of the four corners of the upper plate (1), and the mounting block (10) is provided at the top of the guide post (7). The mounting block (10) is welded and fixed to the guide post (7) or is an integral structure. The mounting block (10) is connected and fixed to the upper plate (1) by multiple bolts. The lower plate (3) has guide holes at the positions of the four guide posts (7), and the guide holes are respectively installed with flanges (11). The guide posts (7) pass through the inner hole of the flanges (11) and are slidably connected with the flanges (11).
5. The lift base of claim 4, wherein, The flange (11) and the lower plate (3) are fixed together by a plurality of bolts.
6. The lift base of claim 1, wherein, The four corners of the middle plate (2) are respectively provided with extension corner plates (202), and the bottom of the extension corner plates (202) is provided with casters (5).
7. The lift base of claim 2, wherein, The electric lifting column (4) is a two-section electric lifting column (4) or a three-section electric lifting column (4), and the horizontal cross section of the electric lifting column (4) is rectangular. The first through hole and the second through hole (201) are respectively set as rectangular through holes, and the support frame (8) is respectively set as a rectangular frame.
8. The lift base of claim 1, wherein, At least two elastic components are provided between the upper plate (1) and the lower plate (3). The elastic components include a support (13) and an elastic element (12). The support (13) is fixedly disposed on the top of the lower plate (3), and the bottom end of the elastic element (12) is installed on the support (13).
9. The lift base of claim 8, wherein, The elastic element (12) is a compression spring.
10. Training apparatus comprising an apparatus body (14), characterized in that It also includes the lifting base as described in any one of claims 1-9, wherein the device body (14) is disposed on the top of the electric lifting column (4).