一种动力回转升降台
By introducing vertical and horizontal drive mechanisms into the power rotary lifting platform, multi-dimensional movements are achieved, solving the problems of single movement dimensions and low automation of the power rotary lifting platform. This improves the adjustment efficiency and automation level of the equipment, and the structure is strong and easy to maintain.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- YANGZHOU JINYUAN ROBOTICS AUTOMATION
- Filing Date
- 2025-07-11
- Publication Date
- 2026-07-17
AI Technical Summary
The existing power rotary lifting platform has a single dimension of motion, low degree of automation, requires step-by-step operation, and is prone to positioning inaccuracies.
Design a power rotary lifting platform that combines a vertical drive mechanism and a horizontal drive mechanism to enable flexible operation and precise positioning of the active claw in the vertical plane of the production line. The platform includes a support frame, a lifting platform, a transverse platform, and a drive motor, which improves the degree of automation through multi-dimensional movements.
It improves adjustment efficiency and automation, can accurately match the requirements of input terminals of production lines of different heights, enhances the adaptability and flexibility of the equipment, has high structural strength, and is easy to install, debug and maintain.
Smart Images

Figure CN224520851U_ABST
Abstract
Claims
1. A power slewing lift characterized by, include: Supporting framework; The lifting platform is vertically slidably installed within the supporting frame; A vertical drive mechanism is installed on the support frame and is connected to the lifting platform for driving the lifting platform to move up and down in the vertical direction; A horizontal sliding platform is installed on the lifting platform. A horizontal drive mechanism is installed on the lifting platform and is connected to the lifting platform in a transmission manner, used to drive the transverse platform to move in the horizontal direction; The production line's active gripper is rotatably mounted on the transverse platform; A drive motor is mounted on the transverse platform and is connected to the production line's active claw drive to drive the production line's active claw to rotate around its axis.
2. The power swivel lift table of claim 1, wherein, The supporting framework includes: Two side frames are symmetrically arranged on the left and right sides of the lifting platform; Two bottom beams are symmetrically arranged on the front and rear sides of the lifting platform, and the two ends of each bottom beam are fixedly connected to the bottom ends of the two side frames respectively. Each of the side frames includes: Two pillars, installed vertically; Multiple crossbeams are installed between the two columns and are spaced apart in the vertical direction.
3. The power swivel lift table of claim 2, wherein, include: Multiple vertical guide components are respectively installed on the left and right sides of the lifting platform; Each of the vertical guide components includes: A guide rod is provided between two adjacent horizontal beams; A sliding sleeve is installed on the side of the lifting platform and slidably fitted onto the guide rod.
4. The power rotary lifting platform according to claim 2, characterized in that, include: Four rollers are installed at the four corners of the bottom surface of the lifting platform and correspond one-to-one with the columns, and adjacent rollers and columns form a rolling engagement.
5. The power swivel lift table of claim 2, wherein, The vertical drive mechanism includes: A support plate is horizontally arranged below the lifting platform, with its two ends respectively installed between the crossbeams on the same horizontal plane in the two side frames; A vertical cylinder, with the cylinder body mounted on the bottom surface of the support plate, and the cylinder rod passing through the support plate and connected to the bottom surface of the lifting platform; Multiple reinforcing plates are disposed on the bottom surface of the support plate and are located on both sides of the vertical cylinder.
6. The power swivel lift table of claim 5, wherein, The lifting platform includes: Two concave beams, with their openings facing downwards, are arranged horizontally side by side at intervals. Two connecting plates are respectively disposed at both ends of the concave beam along its length, and both ends of each connecting plate are fixedly connected to the bottom surfaces of the two concave beams respectively. The first support beam is located between the two concave beams and is connected to the cylinder rod of the vertical cylinder. Multiple second support beams are located between the two concave beams and are arranged horizontally side by side at intervals.
7. The power swivel lift table of claim 6, wherein, The horizontal drive mechanism includes: A horizontal cylinder has its cylinder body mounted on multiple second support beams, and the end of the cylinder rod is connected to the transverse platform.
8. The power swivel lift table of claim 1, wherein, The traverse platform includes: A U-shaped frame, arranged horizontally; Two support blocks are respectively located on the left and right sides of the top surface of the U-shaped frame; The support base is mounted on the two support blocks and the drive motor is mounted thereon.
9. The power swivel lift table of claim 1, wherein, include: Multiple horizontal guide components are arranged at horizontal intervals between the lifting platform and the transverse platform; Each of the horizontal guide components includes: Guide rails are installed on the lifting platform; Multiple sliders are installed at intervals on the transverse platform and form a sliding engagement with the guide rail.
10. The power swivel lift table of claim 1, wherein, include: A protective shell is arranged outside the support frame and a passage is formed in the front side of the protective shell for the active claw of the production line to enter and exit.