Transplanting and conveying device

By combining the roller conveyor mechanism and the lifting and transferring mechanism, the problem of material deviation during the transfer process between the branch conveyor line and the main conveyor line is solved, achieving stable material transfer and improving the reliability and efficiency of transportation.

CN224132156UActive 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

The system employs a roller conveyor mechanism and a lifting and transferring mechanism. The roller conveyor mechanism stably transfers materials to or from the branch conveyor line to the roller conveyor mechanism, while the lifting and transferring mechanism achieves stable material transfer.

Benefits of technology

This achieves stable material transfer between the branch conveyor line and the main conveyor line, avoids material deviation, and improves the stability and efficiency of material transportation.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224132156U_ABST
    Figure CN224132156U_ABST
Patent Text Reader

Abstract

The utility model discloses a transplanting conveying device which comprises a roller conveying mechanism and a jacking transplanting mechanism. The roller conveying mechanism comprises a conveying frame and rollers, the rollers are rotatably arranged on the conveying frame, the number of the rollers is multiple, and a gap is formed between every two adjacent rollers; the jacking transplanting mechanism comprises a transplanting base, a lifting driving assembly and a transplanting conveying assembly; the transplanting base is arranged on the conveying frame, the lifting driving assembly is arranged on the transplanting base, the transplanting conveying assembly comprises a mounting frame and a plurality of groups of transplanting conveying belts, the mounting frame is connected with the lifting driving assembly and is driven by the lifting driving assembly to lift, and each group of transplanting conveying belts is rotatably arranged on the mounting frame; and each group of transplanting conveying belts is positioned at a gap position and can protrude out of or does not protrude out of the rollers. According to the utility model, the material on the branch conveying line is stably transferred to the roller conveying mechanism, or the material on the roller conveying mechanism is stably transferred to the branch conveying line.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

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

[0002] When manufacturing shell-type four-sided sealed vacuum insulation panels, after placing the core material inside the bottom shell, the entire assembly is placed on the main conveyor line for conveying. Then, the bottom shell and core material need to be conveyed to the vacuum equipment through the branch conveyor line for vacuuming. After the manufacturing is completed, the finished product needs to be transferred from the branch conveyor line to the main conveyor line.

[0003] 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 from the branch conveyor line to the main conveyor line, there is a deviation in the material transfer process, which affects the material transportation. Utility Model Content

[0004] Based on the aforementioned problems in the prior art, the purpose of this application is to provide a transplanting and conveying device, which, by setting a roller conveying mechanism and a lifting transplanting mechanism, realizes the stable transfer of materials on a branch conveying line to the roller conveying mechanism, or realizes the stable transfer of materials on the roller conveying mechanism to the branch conveying line.

[0005] The technical solution adopted by this application to solve its technical problem is: a transplanting and conveying device, including a roller conveying mechanism and a lifting and transplanting mechanism;

[0006] The roller conveying mechanism includes a conveying frame and rollers. The rollers are rotatably mounted on the conveying frame. There are multiple rollers, and a gap is formed between adjacent rollers.

[0007] The lifting and transplanting mechanism includes a transplanting base, a lifting drive assembly, and a transplanting conveying assembly. The transplanting base is mounted on a conveyor frame, the lifting drive assembly is mounted on the transplanting base, and the transplanting conveying assembly includes a mounting frame and a transplanting conveyor belt. The mounting frame is connected to the lifting drive assembly and is driven to move up and down by the lifting drive assembly. The transplanting conveyor belt is configured in multiple groups, and each group of transplanting conveyor belts is rotatably mounted on the mounting frame. Each group of transplanting conveyor belts is located at a gap position and can protrude or not protrude from the rollers.

[0008] Furthermore, the roller conveying mechanism also includes a conveying motor, which is mounted on the conveying frame and connected to the rollers, driving the rollers to rotate along the conveying frame.

[0009] Furthermore, an upper conveyor belt is installed on the conveyor frame, which is located directly above the rollers.

[0010] Furthermore, a lower conveyor belt is also installed on the conveyor frame, which is located directly below the rollers.

[0011] Furthermore, it also includes branch conveyor lines, whose conveying direction is consistent with that of the transplant conveyor belt, and whose conveying direction is perpendicular to that of the rollers.

[0012] Furthermore, a first mounting plate is provided on one side of the transplanting base and fixed to one side of the conveyor frame, and a second mounting plate is provided on the other side of the transplanting base and fixed to the other side of the conveyor frame.

[0013] Furthermore, the lifting drive assembly includes a drive cylinder and a drive block. The drive cylinder is mounted on the transplanting 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 bottom of the mounting frame is provided with traveling wheels that can roll along the inclined surface.

[0014] 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. Multiple drive blocks are provided on the drive connecting frame.

[0015] Furthermore, the mounting frame includes horizontal mounting plates and vertical mounting plates. 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.

[0016] Furthermore, a drive motor is installed on the mounting frame, which is connected to the transplanting conveyor belt and drives the transplanting conveyor belt to rotate.

[0017] 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 frame is mounted on the gear adjustment box.

[0018] Furthermore, the gear adjustment boxes are configured in multiple sets, with adjacent gear adjustment boxes connected by an adjustment rod.

[0019] The beneficial effects of this application are as follows: When materials need to be transferred from the main conveyor line to the branch conveyor line, the materials are placed on the rollers, and the rollers rotate to convey the materials forward. When the materials are conveyed to the lifting and transplanting mechanism, the lifting drive assembly drives the transplanting conveyor belt to rise, making the transplanting conveyor belt protrude beyond the rollers, thereby lifting the materials on the rollers and transferring the materials on the rollers to the transplanting conveyor belt. The transplanting conveyor belt rotates, transferring the materials on the transplanting conveyor belt to the branch conveyor line. When materials need to be transferred from the branch conveyor line to the main conveyor line, the materials are placed on the branch conveyor line, and the lifting drive assembly drives the transplanting conveyor belt to rise, making the transplanting conveyor belt level with the branch conveyor line. After the materials on the branch conveyor line move to the transplanting conveyor belt, the transplanting conveyor belt descends and becomes lower than the rollers, thereby transferring the materials to the rollers. Finally, the rollers rotate to realize the material conveying. Therefore, this utility model achieves stable transfer of materials from the branch conveyor line to the roller conveyor mechanism, or stable transfer of materials from the roller conveyor mechanism to the branch conveyor line, by setting up a roller conveyor mechanism and a lifting and transferring mechanism. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the transplanting and conveying device in this application;

[0021] Figure 2 This is a front view of the transplanting and conveying device in this application;

[0022] Figure 3 This is a top view of the transplanting and conveying device in this application;

[0023] Figure 4 This is a schematic diagram of the transplanting and conveying device according to another embodiment of this application;

[0024] Figure 5 This is a schematic diagram of the transplanting and conveying device according to another embodiment of this application;

[0025] Figure 6 This is a schematic diagram of the lifting and transplanting mechanism in this application;

[0026] Figure 7 This is an exploded view of the lifting and transplanting mechanism in this application;

[0027] Figure 8 This is a schematic diagram of the transplanting and conveying assembly in this application;

[0028] Figure 9 This is a front view of the transplanting and conveying component in this application.

[0029] Explanation of reference numerals in the attached figures

[0030] Roller conveyor mechanism 1, conveyor frame 11, roller 12, conveyor motor 13, upper conveyor belt 14, lower conveyor belt 15, lifting and transplanting mechanism 2, transplanting base 21, first mounting plate 211, second mounting plate 212, lifting drive assembly 22, drive cylinder 221, drive block 222, inclined surface 2221, drive connecting frame 223, transplanting conveyor assembly 23, mounting frame 231, horizontal mounting plate 2311, vertical mounting plate 2312, drive motor 2313, transplanting conveyor belt 232, traveling wheel 233, adjusting support assembly 24, support column 241, gear adjusting box 242, adjusting rod 243, branch conveyor line 3. Detailed Implementation

[0031] 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.

[0032] like Figures 1 to 9 As shown, a transplanting and conveying device of this utility model includes a roller conveying mechanism 1 and a lifting transplanting mechanism 2. The roller conveying mechanism 1 includes a conveying frame 11 and rollers 12. The rollers 12 are rotatably mounted on the conveying frame 11. Multiple rollers 12 are configured, and a gap is formed between adjacent rollers 12. The lifting transplanting mechanism 2 includes a transplanting base 21, a lifting drive assembly 22, and a transplanting conveying assembly 23. The transplanting base 21 is mounted on the conveying frame 11, and the lifting drive assembly 22 is mounted on the transplanting base 21. The transplanting conveying assembly 23 includes a mounting frame 231 and a transplanting conveyor belt 232. The mounting frame 231 is connected to the lifting drive assembly 22 and is driven to rise and fall by the lifting drive assembly 22. Multiple groups of transplanting conveyor belts 232 are configured. Each group of transplanting conveyor belts 232 is rotatably mounted on the mounting frame 231. Each group of transplanting conveyor belts 232 is located at a gap position and can protrude or not protrude from the rollers 12.

[0033] Thus, in the transplanting and conveying device of this utility model, when materials need to be transferred from the main conveying line to the branch conveying line 3, the materials are placed on the roller 12, and the roller 12 rotates to convey the materials forward. When the materials are conveyed to the position of the lifting transplanting mechanism 2, the lifting drive component 22 drives the transplanting conveyor belt 232 to rise, so that the transplanting conveyor belt 232 protrudes from the roller 12, thereby lifting the materials on the roller 12 and transferring the materials on the roller 12 to the transplanting conveyor belt 232. The transplanting conveyor belt 232 rotates to transfer the materials on the transplanting conveyor belt 232 to the branch conveying line 3. When materials need to be transferred from branch conveyor line 3 to main conveyor line, the materials are placed on branch conveyor line 3. The lifting drive assembly 22 drives the transplanting conveyor belt 232 to rise, making the transplanting conveyor belt 232 flush with the branch conveyor line 3. After the materials on the branch conveyor line 3 move to the transplanting conveyor belt 232, the transplanting conveyor belt 232 descends and becomes lower than the roller 12, thereby transferring the materials onto the roller 12. Finally, the roller 12 rotates to realize material conveying. Therefore, this utility model, by setting the roller conveying mechanism 1 and the lifting transplanting mechanism 2, can stably transfer materials from the branch conveyor line 3 to the roller conveying mechanism 1, or stably transfer materials from the roller conveying mechanism 1 to the branch conveyor line 3.

[0034] Optionally, the roller conveyor mechanism 1 further includes a conveyor motor 13, which is mounted on the conveyor frame 11. The conveyor motor 13 is connected to the rollers 12 and drives the rollers 12 to rotate along the conveyor frame 11. The conveyor motor 13 can drive multiple rollers 12 to rotate synchronously through a sprocket and chain structure, thereby realizing the conveying of materials.

[0035] like Figure 4 As shown, in one embodiment, an upper conveyor belt 14 is also provided on the conveyor frame 11, and the upper conveyor belt 14 is located directly above the roller 12. Figure 5 As shown, in another embodiment, a lower conveyor belt 15 is also provided on the conveyor frame 11, and the lower conveyor belt 15 is located directly below the roller 12.

[0036] In a preferred embodiment, such as Figure 3 As shown, it also includes a branch conveyor line 3, whose conveying direction is consistent with that of the transfer conveyor belt 232, and whose conveying direction is perpendicular to that of the roller 12. When materials need to be transferred, the materials on the branch conveyor line 3 can be transferred to the roller 12, or the materials on the roller 12 can be transferred to the branch conveyor line 3.

[0037] Furthermore, a first mounting plate 211 is provided on one side of the transplanting base 21, and the first mounting plate 211 is fixed to one side of the conveyor frame 11. A second mounting plate 212 is provided on the other side of the transplanting base 21, and the second mounting plate 212 is fixed to the other side of the conveyor frame 11. By providing the first mounting plate 211 and the second mounting plate 212, the transplanting base 21 is firmly fixed to the conveyor frame 11.

[0038] In a preferred embodiment of this invention, the lifting drive assembly 22 includes a drive cylinder 221 and a drive block 222. The drive cylinder 221 is mounted on the transplanting base 21, and the drive block 222 has an inclined surface 2221. The drive block 222 is connected to the drive cylinder 221 and is driven to move by the drive cylinder 221. The bottom of the mounting frame 231 is provided with a traveling wheel 233 that can roll along the inclined surface 2221. By providing an inclined surface 2221 on the drive block 222 and a traveling wheel 233 at the bottom of the mounting frame 231, the drive block 222 moves under the action of the drive cylinder 221, causing the traveling wheel 233 to slide along the inclined surface 2221, thereby realizing the lifting and lowering of the transplanting conveyor belt 232.

[0039] In this embodiment, the lifting drive assembly 22 further includes a drive connecting frame 223, which is connected to and driven by a drive cylinder 221. The drive connecting frame 223 has multiple drive blocks 222. Specifically, four drive blocks 222 are located at the four corners of the drive connecting frame 223. The drive cylinder 221 drives the drive connecting frame 223 to move, causing the four drive blocks 222 to move synchronously. The inclined surfaces 2221 of each drive block 222 are identical, ensuring stability during the lifting process of the transplanting conveyor belt 232.

[0040] Furthermore, the mounting frame 231 includes a horizontal mounting plate 2311 and a vertical mounting plate 2312. Multiple sets of vertical mounting plates 2312 are arranged parallel to each other. Each set of vertical mounting plates 2312 is vertically mounted on the horizontal mounting plate 2311, and a transplanting conveyor belt 232 is mounted on each set of vertical mounting plates 2312. Each vertical mounting plate 2312 is located at a gap position, allowing each transplanting conveyor belt 232 to protrude from or not protrude from the roller 12 at the gap position.

[0041] The mounting bracket 231 is equipped with a drive motor 2313, which is connected to and drives the transplanting conveyor belt 232 to rotate. The drive motor 2313 can drive multiple transplanting conveyor belts 232 to rotate synchronously through a rotary drive assembly.

[0042] In a preferred embodiment of this utility model, an adjustable support assembly 24 is further included. The adjustable support assembly 24 includes a support column 241 and a gear adjustment box 242. The support column 241 is mounted on the transplant base 21, and the gear adjustment box 242 is vertically and elliptically mounted on the support column 241. A mounting bracket 231 is mounted on the gear adjustment box 242. Multiple gear adjustment boxes 242 are configured, and adjacent gear adjustment boxes 242 are connected by an adjusting rod 243.

[0043] After the drive block 222 moves, the mounting frame 231, together with the gear adjustment box 242, rises and falls along the support column 241. Since the drive block 222 is driven by the drive cylinder 221, the individual drive blocks 222 may be asynchronous, including the positional accuracy may not be very high. Therefore, in this embodiment, the gear adjustment box 242 is set in multiple sets, and adjacent gear adjustment boxes 242 are connected by an adjustment rod 243. By setting the adjustment rod 243 and the gear box, the lifting and lowering of the four points of the transplanting and conveying assembly 23 are made consistent, which can ensure the synchronicity of the lifting and lowering of the transplanting and conveying assembly 23.

[0044] 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 transplant delivery device, characterized by: Includes a roller conveyor mechanism and a lifting and transplanting mechanism; The roller conveying mechanism includes a conveying frame and rollers. The rollers are rotatably mounted on the conveying frame. There are multiple rollers, and a gap is formed between adjacent rollers. The lifting and transplanting mechanism includes a transplanting base, a lifting drive assembly, and a transplanting conveying assembly. The transplanting base is mounted on a conveyor frame, the lifting drive assembly is mounted on the transplanting base, and the transplanting conveying assembly includes a mounting frame and a transplanting conveyor belt. The mounting frame is connected to the lifting drive assembly and is driven to move up and down by the lifting drive assembly. The transplanting conveyor belt is configured in multiple groups, and each group of transplanting conveyor belts is rotatably mounted on the mounting frame. Each group of transplanting conveyor belts is located at a gap position and can protrude or not protrude from the rollers.

2. The transplant delivery device of claim 1, wherein: The roller conveyor mechanism also includes a conveyor motor, which is mounted on the conveyor frame and connected to the rollers, driving the rollers to rotate along the conveyor frame.

3. The transplant delivery device of claim 1, wherein: An upper conveyor belt is also installed on the conveyor frame, which is located directly above the rollers.

4. The transplant delivery device of claim 1, wherein: A lower conveyor belt is also installed on the conveyor frame, which is located directly below the rollers.

5. The transplant delivery device of claim 1, wherein: It also includes branch conveyor lines, whose conveying direction is the same as that of the transplant conveyor belt, and whose conveying direction is perpendicular to that of the rollers.

6. The transplant delivery device of claim 1, wherein: A first mounting plate is provided on one side of the transplanting base and fixed to one side of the conveyor frame. A second mounting plate is provided on the other side of the transplanting base and fixed to the other side of the conveyor frame.

7. The transplant delivery device of claim 1, wherein: 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 mounting bracket is equipped with wheels at the bottom that allow it to roll along the inclined surface.

8. The transplant delivery device of claim 7, wherein: 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. Multiple drive blocks are provided on the drive connecting frame.

9. The transplant delivery device of claim 1, wherein: The mounting frame includes horizontal mounting plates and vertical mounting plates. The vertical mounting plates are set in multiple groups, which are parallel to each other. Each group of vertical mounting plates is vertically set on the horizontal mounting plate, and each group of vertical mounting plates is equipped with a transplanting conveyor belt.

10. The transplant delivery device 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 set on the transplant base, and the gear adjustment box is raised and lowered on the support column. The mounting frame is set on the gear adjustment box.