Plate turnover device
By setting up a first and second flipping conveyor belt and a clamping plate in coordination, and utilizing the alternating forward and reverse rotation of the flipping ring, the problem of low efficiency in traditional flipping devices is solved, and high efficiency and stability of plate flipping are achieved.
Patent Information
- Application Number
- CN202520190617.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-07
- Publication Date
- 2026-01-06
- Estimated Expiration
- 2035-02-07
AI Technical Summary
Traditional flipping devices are inefficient and unstable when flipping materials.
The first and second flip conveyor belts are used in conjunction with the first and second clamping plates. The plate is stably flipped by the alternating forward and reverse rotation of the flipping ring. The drive cylinder and guide wheel structure ensure the reliable clamping and releasing of the clamping plate.
It achieves high efficiency and stability in the flipping of the sheet material, and the clamping plate keeps the sheet material stably clamped during the flipping process, thus improving the flipping efficiency.
Smart Images

Figure CN223765440U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of flipping technology, and in particular to a plate flipping device. Background Technology
[0002] Vacuum insulation panels are a type of vacuum insulation material. They can effectively prevent heat transfer caused by air convection, thus significantly reducing the thermal conductivity. They are environmentally friendly, highly efficient, and energy-saving. They are widely used in refrigerators, insulated boxes, building walls, refrigerated containers, and other fields, playing a role in reducing energy consumption and improving economic efficiency, and have great development potential.
[0003] In the mass production of vacuum insulation panels, after the core material is placed on the conveyor line, the adsorbent is placed on the core material, and then the bottom shell is inverted on top of the core material, so that the core material is inside the bottom shell. At this point, the bottom shell and the core material need to be rotated 180 degrees so that the opening of the bottom shell faces upward, so that the barrier film can be placed at the opening of the bottom shell, and the bottom shell and the barrier film can be heat-sealed together. When rotating the bottom shell and the core material 180 degrees, a rotating device is required. Traditional rotating devices are inefficient and not stable enough when rotating the panels. Utility Model Content
[0004] Based on the above-mentioned problems existing in the prior art, the purpose of this application embodiment is to provide a plate flipping device, which realizes the conveying of plates by setting a first flipping conveyor belt and a second flipping conveyor belt, and realizes the clamping of plates by setting a first clamping plate and a second clamping plate, so that the plates are more stable when flipping.
[0005] The technical solution adopted by this application to solve its technical problem is: a plate flipping device, including a flipping seat, a flipping ring, a flipping frame, a first flipping conveyor belt, a second flipping conveyor belt, a first clamping plate and a second clamping plate;
[0006] The rotating ring includes a first rotating ring and a second rotating ring. The first rotating ring is rotatably mounted on a rotating base, and the second rotating ring is rotatably mounted on a rotating base. One end of the rotating frame is connected to the first rotating ring, and the other end of the rotating frame is connected to the second rotating ring. The first rotating conveyor belt is mounted on the rotating frame, and the second rotating conveyor belt is mounted on the rotating frame. The second rotating conveyor belt is positioned opposite to the first rotating conveyor belt. The first clamping plate is vertically and vertically mounted on the rotating frame and can protrude or not protrude from the first rotating conveyor belt. The second clamping plate is vertically and vertically mounted on the rotating frame and can protrude or not protrude from the second rotating conveyor belt.
[0007] Furthermore, multiple guide wheels are rotatably mounted on the flipping base, with the surface of each guide wheel in contact with the surface of the flipping ring.
[0008] Furthermore, the flipping seat includes a lower seat body, a connecting frame, and an upper seat body. The lower seat body is provided with at least two guide wheels, and the upper seat body is disposed on the connecting frame. The upper seat body is provided with at least two guide wheels, and the upper seat body is disposed opposite to the lower seat body.
[0009] Furthermore, three guide wheels are provided on the lower seat and three guide wheels are provided on the upper seat.
[0010] Furthermore, the flipping base is provided with a drive mechanism that drives the flipping ring to rotate along the guide wheel.
[0011] Furthermore, a first drive cylinder is provided on the tilting frame. The first drive cylinder is connected to the first clamping plate and drives the first clamping plate to protrude or not protrude from the first tilting conveyor belt.
[0012] Furthermore, the first reversing conveyor belt includes a first roller body and a first belt body. Multiple first belt bodies are provided. Each first belt body is connected to the first roller body and is driven to rotate by the first roller body. A first clearance space is formed between two adjacent first belt bodies for the first clamping plate to move.
[0013] Furthermore, a second drive cylinder is provided on the tilting frame. The second drive cylinder is connected to the second clamping plate and drives the second clamping plate to protrude or not protrude from the second tilting conveyor belt.
[0014] Furthermore, the second reversing conveyor belt includes a second roller and a second belt. Multiple second belts are provided. Each second belt is connected to a second roller and is driven to rotate by the second roller. A second clearance space is formed between two adjacent second belts for the movement of the second clamping plate.
[0015] Furthermore, multiple connecting rods are provided between the first and second rotating rings.
[0016] The beneficial effects of this application are as follows: Taking the bottom shell inverted on the core material as an example, in use, the board is conveyed to the first flipping conveyor belt. When multiple boards are on multiple first flipping conveyor belts, the first clamping plate and the second clamping plate approach each other, so that the first clamping plate abuts against one side of the board and the second clamping plate abuts against the other side of the board. Then, the first flipping ring and the second flipping ring rotate 180 degrees in the clockwise direction. Next, the first clamping plate and the second clamping plate move away from each other, so that the board falls onto the second flipping conveyor belt, realizing the board flipping 180 degrees. The second flipping conveyor belt outputs the board. Then, the next set of boards is conveyed to the second flipping conveyor belt. The first clamping plate and the second clamping plate approach each other to clamp the board. The first flipping ring and the second flipping ring rotate 180 degrees in the opposite direction, so that the board falls onto the first flipping conveyor belt, realizing the board flipping 180 degrees. The first flipping conveyor belt outputs the board. Therefore, the first and second flipping rings of this utility model rotate alternately in the forward and reverse directions, continuously flipping multiple plates by 180 degrees, resulting in high flipping efficiency. During the flipping process, the plates are clamped by the first and second clamping plates, making the flipping process more stable. Attached Figure Description
[0017] Figure 1 This is a front view of the plate flipping device in this application;
[0018] Figure 2 This is a schematic diagram of the sheet metal flipping device in this application;
[0019] Figure 3 This is a schematic diagram of the structure in this application where the first clamping plate and the second clamping plate are close to each other.
[0020] Explanation of reference numerals in the attached figures
[0021] 1. Tilting seat, 11. Guide wheel, 12. Lower seat body, 13. Connecting frame, 14. Upper seat body, 2. Tilting ring, 21. First tilting ring, 22. Second tilting ring, 23. Connecting rod, 3. Tilting frame, 31. First driving cylinder, 32. Second driving cylinder, 4. First tilting conveyor belt, 41. First roller body, 42. First clearance space, 43. Second tilting conveyor belt, 5. Second roller body, 51. Second belt body, 52. Second clearance space, 53. First clamping plate, 6. First connecting plate, 61. First vertical plate, 62. Second clamping plate, 7. Second connecting plate, 71. Second vertical plate, 72. 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 3As shown, a plate flipping device of this utility model includes a flipping seat 1, a flipping ring 2, a flipping frame 3, a first flipping conveyor belt 4, a second flipping conveyor belt 5, a first clamping plate 6, and a second clamping plate 7. The flipping ring 2 includes a first flipping ring 21 and a second flipping ring 22. The first flipping ring 21 is rotatably mounted on the flipping seat 1, and the second flipping ring 22 is rotatably mounted on the flipping seat 1. One end of the flipping frame 3 is connected to the first flipping ring 21, and the other end of the flipping frame 3 is connected to the second flipping ring 22. The first flipping conveyor belt 4 is mounted on the flipping frame 3, and the second flipping conveyor belt 5 is mounted on the flipping frame 3. The second flipping conveyor belt 5 is arranged opposite to the first flipping conveyor belt 4. The first clamping plate 6 is liftable and can be raised or lowered on the flipping frame 3, and can be raised or lowered on the first flipping conveyor belt 4. The second clamping plate 7 is liftable and can be raised or lowered on the flipping frame 3, and can be raised or lowered on the second flipping conveyor belt 5.
[0024] Thus, this utility model relates to a sheet metal flipping device. Taking the bottom shell of the sheet metal being inverted onto the core material as an example, in use, the sheet metal is conveyed to the first flipping conveyor belt 4. When multiple sheets are on multiple first flipping conveyor belts 4, the first clamping plate 6 and the second clamping plate 7 move closer together, with the first clamping plate 6 abutting against one side of the sheet metal and the second clamping plate 7 abutting against the other side, thereby clamping the sheet metal. Then, the first flipping ring 21 and the second flipping ring 22 rotate 180 degrees in the forward direction. Next, the first clamping plate 6 and the second clamping plate 7 move away from each other, causing the sheet metal to fall onto the second flipping conveyor belt 5, achieving a 180-degree flip of the sheet metal. The second flipping conveyor belt 5 then outputs the sheet metal. Next, the next set of sheets is conveyed to the second flipping conveyor belt 5. The first clamping plate 6 and the second clamping plate 7 move closer together to clamp the sheet metal, and the first flipping ring 21 and the second flipping ring 22 rotate 180 degrees in the opposite direction, causing the sheet metal to fall onto the first flipping conveyor belt 4, achieving a 180-degree flip of the sheet metal. The first flipping conveyor belt 4 then outputs the sheet metal. Therefore, the first flipping ring 21 and the second flipping ring 22 of this utility model rotate alternately in the forward and reverse directions, continuously flipping multiple plates by 180 degrees, which has high flipping efficiency. During the flipping process, the plates are clamped by the first clamping plate 6 and the second clamping plate 7, making the flipping more stable.
[0025] Optionally, multiple guide wheels 11 are rotatably mounted on the flip base 1, with the surface of each guide wheel 11 in contact with the surface of the flip ring 2. That is, the guide wheel 11 is tangential to the flip ring 2, so that the flip ring 2 rotates along the guide wheel 11 when it rotates, making the rotation of the flip ring 2 smoother.
[0026] In this embodiment, the flipping base 1 includes a lower base 12, a connecting frame 13, and an upper base 14. At least two guide wheels 11 are provided on the lower base 12, and the upper base 14 is mounted on the connecting frame 13, also having at least two guide wheels 11. The upper base 14 is positioned opposite to the lower base 12. By providing guide wheels 11 on both the lower base 12 and the upper base 14, the smoothness of the flipping ring 2's rotation is further improved. Specifically, three guide wheels 11 are provided on the lower base 12, and three guide wheels 11 are provided on the upper base 14.
[0027] In this embodiment, the flipping base 1 is provided with a drive mechanism that drives the flipping ring 2 to rotate along the guide wheel 11. By setting the drive mechanism, the rotation of the flipping ring 2 is realized. For example, the drive mechanism includes a drive motor and a drive wheel. The drive motor is connected to the drive wheel, and the drive wheel is engaged with the flipping ring 2, thereby realizing the forward and reverse rotation of the flipping ring 2, and each rotation is 180 degrees.
[0028] In some examples, a first drive cylinder 31 is provided on the tilting frame 3. The first drive cylinder 31 is connected to the first clamping plate 6 and drives the first clamping plate 6 to protrude or not protrude from the first tilting conveyor belt 4. By providing the first drive cylinder 31, the first drive cylinder 31 drives the first clamping plate 6 to rise or fall, cooperating with the second clamping plate 7 to clamp or release the plate.
[0029] Furthermore, the first reversing conveyor belt 4 includes a first roller body 41 and a first belt body 42. Multiple first belt bodies 42 are provided, and each first belt body 42 is connected to the first roller body 41 and driven to rotate by the first roller body 41. The first roller body 41 can be driven to rotate by a drive motor. A first clearance space 43 is formed between two adjacent first belt bodies 42 for the movement of the first clamping plate 6. The first clamping plate 6 includes a first connecting plate 61 and multiple first vertical plates 62. The first connecting plate 61 is connected to the first drive cylinder 31. Each first vertical plate 62 is fixed on the first connecting plate 61. Each first vertical plate 62 can protrude or not protrude from the first reversing conveyor belt 4 through the first clearance space 43.
[0030] In this embodiment, a second drive cylinder 32 is provided on the tilting frame 3. The second drive cylinder 32 is connected to the second clamping plate 7 and drives the second clamping plate 7 to protrude or not protrude from the second tilting conveyor belt 5. By providing the second drive cylinder 32, the second drive cylinder 32 drives the second clamping plate 7 to rise or fall, cooperating with the first clamping plate 6 to clamp or release the plate.
[0031] Furthermore, the second reversing conveyor belt 5 includes a second roller body 51 and a second belt body 52. Multiple second belt bodies 52 are provided, each connected to and driven by the second roller body 51 to rotate. The second roller body 51 can be driven to rotate by a drive motor. A second clearance space 53 is formed between adjacent second belt bodies 52 for the movement of the second clamping plate 7. The second clamping plate 7 includes a second connecting plate 71 and multiple second vertical plates 72. The second connecting plate 71 is connected to the second drive cylinder 32. Each second vertical plate 72 is fixed to the second connecting plate 71, and each second vertical plate 72 can protrude or not protrude from the second reversing conveyor belt 5 through the second clearance space 53.
[0032] To make the connection between the first rotating ring 21 and the second rotating ring 22 more secure, multiple connecting rods 23 are provided between the first rotating ring 21 and the second rotating ring 22.
[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 board flipping device, characterized by: The turnover seat, the turnover ring, the turnover frame, the first turnover conveying belt, the second turnover conveying belt, the first clamping plate and the second clamping plate are included. The turnover ring includes a first turnover ring and a second turnover ring, the first turnover ring is rotatably arranged on the turnover seat, the second turnover ring is rotatably arranged on the turnover seat, one end of the turnover frame is connected with the first turnover ring, the other end of the turnover frame is connected with the second turnover ring, the first turnover conveying belt is arranged on the turnover frame, the second turnover conveying belt is arranged on the turnover frame, the second turnover conveying belt is arranged opposite to the first turnover conveying belt, the first clamping plate is arranged on the turnover frame in a liftable manner and can protrude or not protrude from the first turnover conveying belt, and the second clamping plate is arranged on the turnover frame in a liftable manner and can protrude or not protrude from the second turnover conveying belt.
2. The sheet material turnover apparatus of claim 1 wherein: A plurality of guide wheels are rotatably arranged on the turnover seat, and the surface of each guide wheel is attached to the surface of the turnover ring.
3. The sheet material turnover apparatus of claim 2 wherein: The turnover seat includes a lower seat body, a connecting frame and an upper seat body, at least two guide wheels are arranged on the lower seat body, the upper seat body is arranged on the connecting frame, at least two guide wheels are arranged on the upper seat body, and the upper seat body is arranged opposite to the lower seat body.
4. The sheet material turnover apparatus of claim 3 wherein: Three guide wheels are arranged on the lower seat body, and three guide wheels are arranged on the upper seat body.
5. The sheet material turnover apparatus of claim 1 wherein: A driving mechanism for driving the turnover ring to rotate along the guide wheels is arranged on the turnover seat.
6. The sheet material turnover apparatus of claim 1 wherein: A first driving cylinder is arranged on the turnover frame, the first driving cylinder is connected with the first clamping plate and drives the first clamping plate to protrude or not protrude from the first turnover conveying belt.
7. The sheet material turnover apparatus of claim 6 wherein: The first turnover conveying belt includes a first roller body and a first belt body, a plurality of first belt bodies are arranged, each first belt body is connected with the first roller body and is driven to rotate by the first roller body, and a first accommodation space for the movement of the first clamping plate is formed between adjacent two first belt bodies.
8. The sheet material turnover apparatus of claim 1 wherein: A second driving cylinder is arranged on the turnover frame, the second driving cylinder is connected with the second clamping plate and drives the second clamping plate to protrude or not protrude from the second turnover conveying belt.
9. The sheet material turnover apparatus of claim 8 wherein: The second turnover conveying belt includes a second roller body and a second belt body, a plurality of second belt bodies are arranged, each second belt body is connected with the second roller body and is driven to rotate by the second roller body, and a second accommodation space for the movement of the second clamping plate is formed between adjacent two second belt bodies.
10. The sheet material turnover apparatus of claim 1 wherein: A plurality of connecting rods are arranged between the first turnover ring and the second turnover ring.