Jacking transplanting mechanism

By designing a lifting and transplanting mechanism, and utilizing lifting drive components and transplanting conveying components, the problem of material offset during the transfer process between different conveyor lines was solved, achieving stable and efficient material transfer.

CN224132155UActive Publication Date: 2026-04-17FUJIAN SUPER TECH ADVANCED MATERIAL CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FUJIAN SUPER TECH ADVANCED MATERIAL CO LTD
Filing Date
2025-04-25
Publication Date
2026-04-17

AI Technical Summary

Technical Problem

When manufacturing shell-type four-sided sealed vacuum insulation panels, materials are prone to shifting during the transfer between branch conveyor lines and main conveyor lines, affecting the stability of material transportation.

Method used

Design a lifting and transplanting mechanism, including a lifting drive assembly and a transplanting conveyor assembly. The mechanism uses a drive cylinder to drive the inclined surface drive block and traveling wheels to lift and lower the transplanting conveyor belt. The cooperation of the mounting frame and guide wheels ensures stable material transfer.

Benefits of technology

It enables stable transfer of materials between different conveyor lines, avoids deviation, and improves the stability and efficiency of the transportation process.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224132155U_ABST
    Figure CN224132155U_ABST
Patent Text Reader

Abstract

The utility model discloses a jacking transplanting mechanism which comprises a transplanting base, a lifting driving assembly and a transplanting conveying assembly. The lifting driving assembly comprises a driving air cylinder and a driving block, the driving air cylinder is arranged on the transplanting base, an inclined plane is arranged on the driving block, and the driving block is connected with the driving air cylinder and driven by the driving air cylinder to move; the transplanting conveying assembly comprises a mounting frame, a driving motor, a transplanting conveying belt and walking wheels, the driving motor is arranged on the mounting frame, the transplanting conveying belt is rotatably arranged on the mounting frame, the transplanting conveying belt is connected with the driving motor and is driven by the driving motor to rotate, and the walking wheels are arranged at the bottom of the mounting frame; the walking wheels can roll along the inclined faces. By arranging the lifting driving assembly and the transplanting conveying assembly, materials can be conveniently and stably transferred.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of conveying technology, and in particular to a lifting and transplanting mechanism. Background Technology

[0002] When manufacturing shell-type four-sided sealed vacuum insulation panels, after the core material is placed inside the bottom shell, the entire assembly is conveyed on the main conveyor line. Then, the bottom shell and core material need to be conveyed to a vacuum device via a branch conveyor line for vacuuming. After manufacturing, the finished product needs to be transferred from the branch conveyor line to the main conveyor line. The conveying direction of the branch conveyor line is usually perpendicular to the conveying direction of the main conveyor line. When materials are transferred from the main conveyor line to the branch conveyor line, or vice versa, there is a tendency for material to shift during the transfer process, thus affecting material transport. Utility Model Content

[0003] In view of the above-mentioned problems existing in the prior art, one objective of the present application is to provide a lifting and transplanting mechanism, which facilitates the stable transfer of materials by setting up a lifting drive component and a transplanting and conveying component.

[0004] The technical solution adopted by this application to solve its technical problem is: a lifting and transplanting mechanism, including a transplanting base, a lifting drive assembly and a transplanting conveying assembly;

[0005] The lifting drive assembly includes a drive cylinder and a drive block. The drive cylinder is mounted on the transplant base, and the drive block has an inclined surface. The drive block is connected to the drive cylinder and is driven to move by the drive cylinder.

[0006] The transplanting and conveying assembly includes a mounting frame, a drive motor, a transplanting conveyor belt, and wheels. The drive motor is mounted on the mounting frame, the transplanting conveyor belt is rotatably mounted on the mounting frame, the transplanting conveyor belt is connected to the drive motor and is driven to rotate by the drive motor, and the wheels are located at the bottom of the mounting frame and can roll along the inclined surface.

[0007] Furthermore, the lifting drive assembly also includes a drive connecting frame, which is connected to the drive cylinder and driven to move by the drive cylinder, and a plurality of drive blocks are provided on the drive connecting frame.

[0008] Furthermore, a slider is provided at the bottom of the drive block, and a slide rail is provided on the transplanting base for the slider to slide.

[0009] Furthermore, the mounting frame includes a horizontal mounting plate and a vertical mounting plate. The vertical mounting plates are configured in multiple groups, with the multiple groups of vertical mounting plates parallel to each other. Each group of vertical mounting plates is vertically mounted on the horizontal mounting plate, and each group of vertical mounting plates is equipped with a transplanting conveyor belt.

[0010] Furthermore, the drive motor drives the transplanting conveyor belt to rotate via a rotary drive assembly. The rotary drive assembly includes a drive sprocket, a drive shaft, a driven sprocket, a chain, and a drive wheel. The drive sprocket is connected to the drive motor and is driven to rotate by the drive motor. The drive shaft is rotatably mounted on a vertical mounting plate. The driven sprocket is mounted on the drive shaft. The chain is connected to the drive sprocket and the driven sprocket. The drive wheel is mounted on the drive shaft and rotates synchronously with the drive shaft. The drive wheel drives the transplanting conveyor belt to rotate.

[0011] Furthermore, a first guide wheel is provided at one end of the vertical mounting plate, a second guide wheel is provided at the other end of the vertical mounting plate, a third guide wheel and a fourth guide wheel are provided in the middle of the vertical mounting plate, the drive wheel is located between the third guide wheel and the fourth guide wheel, and the transplanting conveyor belt connects the first guide wheel, the second guide wheel, the third guide wheel, the drive wheel and the fourth guide wheel.

[0012] Furthermore, multiple drive wheels are provided on the drive shaft; multiple transplanting conveyor belts are provided, with each transplanting conveyor belt corresponding to one drive wheel.

[0013] Furthermore, it also includes an adjustable support assembly, which includes a support column and a gear adjustment box. The support column is mounted on the transplant base, the gear adjustment box is vertically adjustable on the support column, and the mounting bracket is mounted on the gear adjustment box.

[0014] Furthermore, the gear adjustment boxes are configured in multiple sets, with adjacent gear adjustment boxes connected by adjustment rods.

[0015] The beneficial effects of this application are as follows: When materials need to be transferred, the drive cylinder drives the drive block to move. Because the drive block has an inclined surface, the traveling wheels can roll along the inclined surface. After the drive block is displaced under the action of the drive cylinder, the traveling wheels roll along the inclined surface, thereby causing the mounting frame to rise or fall, achieving synchronous lifting and lowering of the transplanting conveyor belt on the mounting frame. This allows the transplanting conveyor belt to protrude or not protrude from the conveyor rollers, thus realizing material transfer. Driving the transplanting conveyor belt to rise and fall by the traveling wheels rolling on the inclined surface ensures stable lifting and lowering of the transplanting conveyor belt and stable material transfer. Attached Figure Description

[0016] Figure 1 This is a schematic diagram of the lifting and transplanting mechanism in this application;

[0017] Figure 2 This is an exploded view of the lifting and transplanting mechanism in this application;

[0018] Figure 3 This is a schematic diagram of the transplanting and conveying assembly in this application;

[0019] Figure 4This is a structural schematic diagram of the transplanting and conveying component in this application from another angle.

[0020] Explanation of reference numerals in the attached figures

[0021] Transplanting base 1, slide rail 11, lifting drive assembly 2, drive cylinder 21, drive block 22, inclined surface 221, drive connecting frame 23, slider 24, transplanting conveyor assembly 3, mounting frame 31, horizontal mounting plate 311, vertical mounting plate 312, first guide wheel 3121, second guide wheel 3122, third guide wheel 3123, fourth guide wheel 3124, drive motor 32, transplanting conveyor belt 33, traveling wheel 34, rotary drive assembly 35, drive sprocket 351, drive shaft 352, driven sprocket 353, drive wheel 354, adjusting support assembly 4, support column 41, gear adjusting box 42, adjusting rod 43. Detailed Implementation

[0022] To better explain and facilitate understanding of this utility model, the present utility model will be described in detail below with reference to the accompanying drawings and specific embodiments.

[0023] like Figures 1 to 4 As shown, the present invention provides a lifting and transplanting mechanism, comprising a transplanting base 1, a lifting drive assembly 2, and a transplanting conveying assembly 3. The lifting drive assembly 2 includes a drive cylinder 21 and a drive block 22. The drive cylinder 21 is mounted on the transplanting base 1, and the drive block 22 has an inclined surface 221. The drive block 22 is connected to the drive cylinder 21 and is driven to move by the drive cylinder 21. The transplanting conveying assembly 3 includes a mounting frame 31, a drive motor 32, a transplanting conveyor belt 33, and traveling wheels 34. The drive motor 32 is mounted on the mounting frame 31, and the transplanting conveyor belt 33 is rotatably mounted on the mounting frame 31. The transplanting conveyor belt 33 is connected to the drive motor 32 and is driven to rotate by the drive motor 32. The traveling wheels 34 are located at the bottom of the mounting frame 31 and can roll along the inclined surface 221.

[0024] Thus, the lifting and transplanting mechanism of this utility model, when materials need to be transferred, uses a drive cylinder 21 to move a drive block 22. Because the drive block 22 has an inclined surface 221, the traveling wheels 34 can roll along the inclined surface 221. After the drive block 22 is displaced under the action of the drive cylinder 21, the traveling wheels 34 roll along the inclined surface 221, thereby causing the mounting frame 31 to rise or fall, achieving synchronous lifting and lowering of the transplanting conveyor belt 33 on the mounting frame 31. This allows the transplanting conveyor belt 33 to protrude or not protrude from the conveyor rollers, thus achieving material transfer. By using the traveling wheels 34 to drive the transplanting conveyor belt 33 to rise and fall on the inclined surface 221, the lifting and lowering process of the transplanting conveyor belt 33 is stable, and the material transfer process is stable.

[0025] like Figure 2As shown, optionally, the lifting drive assembly 2 also includes a drive connecting frame 23, which is connected to and driven by the drive cylinder 21. Multiple drive blocks 22 are provided on the drive connecting frame 23. Specifically, a drive block 22 is provided at each of the four corners of the drive connecting frame 23, and the inclined surface 221 of each drive block 22 has the same angle. Together with four identical traveling wheels 34, this achieves stable lifting and lowering of the transplanting conveyor belt 33.

[0026] To ensure smooth and stable movement of the drive block 22, a slider 24 is provided at the bottom of the drive block 22, and a slide rail 11 is provided on the transplant base 1 for the slider 24 to slide. Under the action of the drive cylinder 21, the slider 24 slides along the slide rail 11, thereby achieving stable movement of the drive block 22.

[0027] In this embodiment, the mounting frame 31 includes a horizontal mounting plate 311 and a vertical mounting plate 312. Multiple sets of vertical mounting plates 312 are arranged parallel to each other, with each set vertically mounted on the horizontal mounting plate 311. Each set of vertical mounting plates 312 is equipped with a transplanting conveyor belt 33. In use, this lifting and transplanting mechanism can be mounted on a roller conveyor mechanism. By setting multiple sets of parallel transplanting conveyor belts 33, each located in the gap between two adjacent conveyor rollers, the material is transferred by raising and lowering the transplanting conveyor belts 33.

[0028] Furthermore, the drive motor 32 drives the transplanting conveyor belt 33 to rotate via the rotary drive assembly 35. The rotary drive assembly 35 includes a drive sprocket 351, a drive shaft 352, a driven sprocket 353, a chain, and a drive wheel 354. The drive sprocket 351 is connected to the drive motor 32 and is driven to rotate by the drive motor 32. The drive shaft 352 is rotatably mounted on the vertical mounting plate 312. The driven sprocket 353 is mounted on the drive shaft 352. The chain is connected to the drive sprocket 351 and the driven sprocket 353. The drive wheel 354 is mounted on the drive shaft 352 and rotates synchronously with the drive shaft 352. The drive wheel 354 drives the transplanting conveyor belt 33 to rotate.

[0029] When the transplanting conveyor belt 33 needs to rotate, the drive motor 32 drives the drive sprocket 351 to rotate. The drive sprocket 351 drives the driven sprocket 353 to rotate through the chain. The rotation of the driven sprocket 353 drives the drive shaft 352 and the drive wheel 354 to rotate. The rotation of the drive wheel 354 realizes the rotation of the transplanting conveyor belt 33.

[0030] In this embodiment, a first guide wheel 3121 is provided at one end of the vertical mounting plate 312, a second guide wheel 3122 is provided at the other end of the vertical mounting plate 312, a third guide wheel 3123 and a fourth guide wheel 3124 are provided in the middle of the vertical mounting plate 312, and a drive wheel 354 is located between the third guide wheel 3123 and the fourth guide wheel 3124. The transplanting conveyor belt 33 connects the first guide wheel 3121, the second guide wheel 3122, the third guide wheel 3123, the drive wheel 354 and the fourth guide wheel 3124. Driven by the drive wheel 354, the transplanting conveyor belt 33 rotates along the first guide wheel 3121, the second guide wheel 3122, the third guide wheel 3123 and the fourth guide wheel 3124.

[0031] Furthermore, multiple drive wheels 354 are provided on the drive shaft 352; multiple transplanting conveyor belts 33 are provided, with each transplanting conveyor belt 33 corresponding to one drive wheel 354. The multiple transplanting conveyor belts 33 are at the same height and rise and fall synchronously, thereby achieving stable material transfer.

[0032] In a preferred embodiment of this utility model, an adjusting support assembly 4 is further included. The adjusting support assembly 4 includes a support column 41 and a gear adjusting box 42. The support column 41 is disposed on the transplanting base 1, and the gear adjusting box 42 is vertically and elliptically disposed on the support column 41. The mounting frame 31 is disposed on the gear adjusting box 42. After the drive block 22 moves, the mounting frame 31, together with the gear adjusting box 42, moves up and down along the support column 41. Since the drive block 22 is driven by the drive cylinder 21, the various drive blocks 22 may be asynchronous, including the positional accuracy may not be very high. Therefore, in this embodiment, the gear adjusting box 42 is configured in multiple sets, and adjacent gear adjusting boxes 42 are connected by adjusting rods 43. By setting the adjusting rods 43 and the gear boxes, the lifting and lowering amounts of the four points of the transplanting conveying assembly 3 are consistent, which can ensure the synchronicity of the lifting and lowering of the transplanting conveying assembly 3.

[0033] The above description is merely an embodiment of this utility model and does not limit the patent scope of this utility model. Any equivalent modifications made based on the content of this utility model specification and drawings, or direct or indirect applications in related technical fields, are similarly included within the patent protection scope of this utility model.

Claims

1. A lift transplant mechanism characterized by: Includes transplanting base, lifting drive assembly, and transplanting conveyor assembly; The lifting drive assembly includes a drive cylinder and a drive block. The drive cylinder is mounted on the transplant base, and the drive block has an inclined surface. The drive block is connected to the drive cylinder and is driven to move by the drive cylinder. The transplanting and conveying assembly includes a mounting frame, a drive motor, a transplanting conveyor belt, and wheels. The drive motor is mounted on the mounting frame, the transplanting conveyor belt is rotatably mounted on the mounting frame, the transplanting conveyor belt is connected to the drive motor and is driven to rotate by the drive motor, and the wheels are located at the bottom of the mounting frame and can roll along the inclined surface.

2. The lift-jacking mechanism according to claim 1, wherein: The lifting drive assembly also includes a drive connecting frame, which is connected to the drive cylinder and is driven to move by the drive cylinder. A plurality of drive blocks are provided on the drive connecting frame.

3. The lift-jacking mechanism of claim 1, wherein: A slider is provided at the bottom of the drive block, and a slide rail is provided on the transplanting base for the slider to slide.

4. The lift-jacking mechanism of claim 1, wherein: The mounting frame includes a horizontal mounting plate and a vertical mounting plate. The vertical mounting plates are arranged in multiple groups, which are parallel to each other. Each group of vertical mounting plates is vertically mounted on the horizontal mounting plate, and each group of vertical mounting plates is equipped with a transplanting conveyor belt.

5. The lift-jacking mechanism of claim 4, wherein: The drive motor drives the transplanting conveyor belt to rotate via a rotary drive assembly. The rotary drive assembly includes a drive sprocket, a drive shaft, a driven sprocket, a chain, and a drive wheel. The drive sprocket is connected to the drive motor and is driven to rotate by the drive motor. The drive shaft is rotatably mounted on a vertical mounting plate. The driven sprocket is mounted on the drive shaft. The chain is connected to the drive sprocket and the driven sprocket. The drive wheel is mounted on the drive shaft and rotates synchronously with the drive shaft. The drive wheel drives the transplanting conveyor belt to rotate.

6. The lift-jacking mechanism of claim 5, wherein: A first guide wheel is provided at one end of the vertical mounting plate, a second guide wheel is provided at the other end of the vertical mounting plate, a third guide wheel and a fourth guide wheel are provided in the middle of the vertical mounting plate, the drive wheel is located between the third guide wheel and the fourth guide wheel, and the transplanting conveyor belt connects the first guide wheel, the second guide wheel, the third guide wheel, the drive wheel and the fourth guide wheel.

7. The lift-jacking mechanism of claim 5, wherein: Multiple drive wheels are provided on the drive shaft; multiple transplanting conveyor belts are provided, with each transplanting conveyor belt corresponding to one drive wheel.

8. The lift-jacking mechanism of claim 1, wherein: It also includes an adjustable support assembly, which includes a support column and a gear adjustment box. The support column is mounted on the transplant base, and the gear adjustment box is vertically adjustable on the support column. The mounting bracket is mounted on the gear adjustment box.

9. The lift-jacking mechanism of claim 8, wherein: The gear adjustment boxes are configured in multiple sets, and adjacent gear adjustment boxes are connected by an adjustment rod.