Positioning rolling conveying mechanism
By designing a positioning and rolling conveying mechanism, the problem of low efficiency in manual folding of vacuum insulation panels was solved, achieving automated and stable conveying and rolling, adapting to vacuum insulation panels of different widths, and reducing labor costs.
Patent Information
- Application Number
- CN202520392099.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-07
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2035-03-07
AI Technical Summary
The folding process of vacuum insulation panels relies on manual operation, which is inefficient and costly, making it difficult to achieve high-efficiency automation.
A positioning and rolling conveying mechanism is designed, including a conveying component, a side positioning component, a rolling component, and an adjusting component. The vacuum insulation panel is guided and rolled by positioning and rolling wheels to achieve stable conveying and adapt to vacuum insulation panels of different widths.
It improves the folding efficiency of vacuum insulation panels, reduces labor costs, and achieves automated and stable conveying and rolling, adapting to vacuum insulation panels of different widths.
Smart Images

Figure CN223934134U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of vacuum insulation panel folding technology, and in particular to a positioning rolling conveying mechanism. Background Technology
[0002] Vacuum insulation panels consist of a high-barrier surface packaging bag, a core material, and a getter or adsorbent. By increasing the internal vacuum level, the gas remaining in the insulation space is removed, thereby eliminating various heat transfer paths caused by the gas and isolating heat conduction to achieve the purpose of heat preservation, heat insulation, and energy saving.
[0003] After the vacuum insulation panel is encapsulated, the long edges on the left and right sides, as well as the long edges on the front and back sides, need to be folded to form a regular shape for easy application. When folding the long edges, adhesive needs to be sprayed or applied to the folded areas of the long edges, and then the long edges are folded 180 degrees to attach them to the surface of the vacuum insulation panel, ensuring flatness on both sides. Traditionally, vacuum insulation panels are folded manually, which is inefficient and costly. Utility Model Content
[0004] Based on the aforementioned problems in the prior art, the purpose of this application is to provide a positioning and rolling conveying mechanism, which, after the long side leaf is folded onto the surface of the vacuum insulation panel, positions the vacuum insulation panel and then performs rolling conveying. By setting an adjustment component to adjust the distance between the first conveying component and the second conveying component, it is convenient to stably convey vacuum insulation panels of different widths.
[0005] The technical solution adopted by this application to solve its technical problem is: a positioning roller conveying mechanism, including a base frame, a conveying component, a side positioning component, a roller component and an adjusting component;
[0006] The conveying assembly includes a first conveying assembly and a second conveying assembly arranged opposite to each other. Each conveying assembly includes a frame and a conveyor belt. The frame is mounted on a base frame, and the conveyor belt is mounted on the frame.
[0007] The side positioning assembly includes a first side positioning assembly and a second side positioning assembly arranged opposite to each other. The first side positioning assembly is set on the frame of the first conveying assembly, and the second side positioning assembly is set on the frame of the second conveying assembly. Each side positioning assembly includes a positioning cylinder and a positioning plate. The positioning cylinder is set on the frame, and the positioning plate is connected to the positioning cylinder and is driven to move by the positioning cylinder.
[0008] The rolling assembly includes a first rolling assembly and a second rolling assembly arranged opposite to each other. The first rolling assembly is mounted on the frame of the first conveyor assembly, and the second rolling assembly is mounted on the frame of the second conveyor assembly. Each rolling assembly includes a rolling frame, a rolling drive cylinder, and a rolling wheel. The rolling frame is mounted on the frame, the rolling drive cylinder is mounted on the rolling frame, and the rolling wheel is driven to rise and fall by the rolling drive cylinder. The rolling wheel is located above the conveyor belt.
[0009] An adjustment component is mounted on the base frame to adjust the distance between the first side positioning component and the second side positioning component.
[0010] Furthermore, the adjustment assembly includes an adjustment motor and an adjustment belt. The adjustment motor is mounted on the base frame, and the adjustment belt is connected to the adjustment motor and driven to rotate by the adjustment motor. The adjustment belt is connected to the frame and drives the first conveying assembly and the second conveying assembly to move closer to or further away from each other.
[0011] Furthermore, a first adjusting seat is provided on the upper part of the adjusting belt, and the first adjusting seat is connected to the frame of the first conveying component. A second adjusting seat is provided on the lower part of the adjusting belt, and the second adjusting seat is connected to the frame of the second conveying component.
[0012] Furthermore, the positioning plate is elongated, and a guide block is provided at the end of the positioning plate, with the surface of the guide block forming an outwardly expanding first guide surface.
[0013] Furthermore, guide plates are provided at the ends of the frame, and the surface of the guide plates forms an outwardly expanding second guide surface.
[0014] Furthermore, the rolling roller is connected to the rolling drive cylinder through a buffer assembly. The buffer assembly includes a first buffer block, a buffer rod, a locking element, a second buffer block, and a buffer spring. The first buffer block is connected to the rolling drive cylinder. One end of the buffer rod passes through the first buffer block and is connected to the locking element. The second buffer block is connected to the other end of the buffer rod. The buffer spring is sleeved on the buffer rod and is located between the first and second buffer blocks.
[0015] Furthermore, multiple rolling rollers are provided, distributed on both sides of the second buffer block.
[0016] The beneficial effects of this application are as follows: In use, the vacuum insulation panel with its long side folded is placed on the conveyor belts of the first and second conveying components for transport. During transport, the positioning plates of the first and second side positioning components move closer to each other, thereby guiding the vacuum insulation panel from both sides. Then, the rolling rollers of the first and second rolling components descend and press against the surface of the vacuum insulation panel. Under the action of the conveyor belt and the rolling rollers, the vacuum insulation panel is transported stably. By setting an adjustment component, stable transport of vacuum insulation panels of different widths can be achieved. Furthermore, the rolling components are mounted on the frame and move with the frame, ensuring that the rolling rollers can press against the surface of the vacuum insulation panel. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the positioning roller conveyor mechanism of this application;
[0018] Figure 2 This is a structural schematic diagram of the positioning rolling conveyor mechanism of this application from another angle;
[0019] Figure 3 This is a schematic diagram of the structure of the vacuum insulation panel being conveyed to the positioning and rolling conveying mechanism of this application.
[0020] Figure 4 This is a schematic diagram of the structure of the delivery component in this application.
[0021] Explanation of reference numerals in the attached figures
[0022] 1. Base frame, 2. Conveying assembly, 2a. First conveying assembly, 2b. Second conveying assembly, 21. Frame, 22. Conveying belt, 23. Guide plate, 231. Second guide surface, 3. Side positioning assembly, 3a. First side positioning assembly, 3b. Second side positioning assembly, 31. Positioning cylinder, 32. Positioning plate, 33. Guide block, 331. First guide surface, 331. Rolling assembly, 4a. First rolling assembly, 4b. Rolling frame, 41. Rolling drive cylinder, 42. Rolling wheel, 43. Adjusting assembly, 51. Adjusting motor, 52. First adjusting seat, 53. Second adjusting seat, 54. Buffer assembly, 6. First buffer block, 61. Locking element, 62. Second buffer block, 63. Detailed Implementation
[0023] 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.
[0024] like Figures 1 to 4 As shown, the present invention discloses a positioning rolling conveying mechanism, which includes a base frame 1, a conveying component 2, a side positioning component 3, a rolling component 4, and an adjusting component 5.
[0025] The conveying assembly 2 includes a first conveying assembly 2a and a second conveying assembly 2b arranged opposite to each other. Each conveying assembly 2b includes a frame 21 and a conveyor belt 22. The frame 21 is mounted on the base frame 1, and the conveyor belt 22 is mounted on the frame 21. The side positioning assembly 3 includes a first side positioning assembly 3a and a second side positioning assembly 3b arranged opposite to each other. The first side positioning assembly 3a is mounted on the frame 21 of the first conveying assembly 2a, and the second side positioning assembly 3b is mounted on the frame 21 of the second conveying assembly 2b. Each side positioning assembly 3b includes a positioning cylinder 31 and a positioning plate 32. The positioning cylinder 31 is mounted on the frame 21, and the positioning plate 32 is mounted on the base frame 2a. The positioning cylinder 31 is connected to and driven to move; the rolling assembly 4 includes a first rolling assembly 4a and a second rolling assembly 4b arranged opposite to each other. The first rolling assembly 4a is mounted on the frame 21 of the first conveying assembly 2a, and the second rolling assembly 4b is mounted on the frame 21 of the second conveying assembly 2b; each rolling assembly 4 includes a rolling frame 41, a rolling drive cylinder 42, and a rolling wheel 43. The rolling frame 41 is mounted on the frame 21, the rolling drive cylinder 42 is mounted on the rolling frame 41, and the rolling wheel 43 is connected to and driven by the rolling drive cylinder 42 to move up and down. The rolling wheel 43 is located above the conveyor belt 22. The adjusting assembly 5 is mounted on the bottom frame 1 to adjust the distance between the first side positioning assembly 3a and the second side positioning assembly 3b.
[0026] Thus, the positioning and rolling conveying mechanism of this utility model, in use, places the vacuum insulation panel with its long side folded onto the conveyor belt 22 of the first conveying component 2a and the second conveying component 2b for conveying. During the conveying process, the positioning plates 32 of the first side positioning component 3a and the second side positioning component 3b move closer to each other, thereby guiding the vacuum insulation panel from both sides. Then, the rolling rollers 43 of the first rolling component 4a and the second rolling component 4b descend and abut against the surface of the vacuum insulation panel. Under the action of the conveyor belt 22 and the rolling rollers 43, the vacuum insulation panel is conveyed stably. By setting the adjusting component 5, stable conveying of vacuum insulation panels of different widths can be achieved. The rolling component 4 is set on the frame 21 and moves with the frame 21 to ensure that the rolling rollers 43 can press against the surface of the vacuum insulation panel.
[0027] In this embodiment, the adjusting component 5 includes an adjusting motor 51 and an adjusting belt 52. The adjusting motor 51 is mounted on the base frame 1, and the adjusting belt 52 is connected to and driven by the adjusting motor 51 to rotate. The adjusting belt 52 is connected to the frame 21 and drives the first conveying component 2a and the second conveying component 2b to move closer to or further away from each other. By setting the adjusting component 5, the first conveying component 2a, and the second conveying component 2b, and by the adjusting motor 51 driving the adjusting belt 52 to rotate, the distance between the first conveying component 2a and the second conveying component 2b can be adjusted, thereby ensuring that vacuum insulation panels of different widths can be stably conveyed by the conveying components 2.
[0028] Specifically, a first adjusting seat 53 is provided on the upper part of the adjusting belt 52, and the first adjusting seat 53 is connected to the frame 21 of the first conveying component 2a. A second adjusting seat 54 is provided on the lower part of the adjusting belt 52, and the second adjusting seat 54 is connected to the frame 21 of the second conveying component 2b. Since the first adjusting seat 53 and the second adjusting seat 54 are respectively located on the upper and lower parts of the adjusting belt 52, when the adjusting motor 51 rotates, the first adjusting seat 53 and the second adjusting seat 54 move in opposite directions, thereby causing the first conveying component 2a and the second conveying component 2b to move closer to each other or further away from each other, thus adjusting the distance between the first conveying component 2a and the second conveying component 2b.
[0029] In this embodiment, the positioning plate 32 is elongated, and a guide block 33 is provided at the end of the positioning plate 32. The surface of the guide block 33 forms an outwardly expanding first guide surface 331. Furthermore, a guide plate 23 is provided at the end of the frame 21, and the surface of the guide plate 23 forms an outwardly expanding second guide surface 231.
[0030] By setting the first guide surface 331 and the second guide surface 231, when the vacuum insulation board is input into the conveying assembly 2, the end of the vacuum insulation board can move along the first guide surface 331 and the second guide surface 231, thereby facilitating the input of the vacuum insulation board into the positioning and rolling conveying mechanism for rolling.
[0031] In a preferred embodiment of this utility model, the rolling roller 43 is connected to the rolling drive cylinder 42 through the buffer assembly 6. The buffer assembly 6 includes a first buffer block 61, a buffer rod, a locking member 62, a second buffer block 63, and a buffer spring. The first buffer block 61 is connected to the rolling drive cylinder 42. One end of the buffer rod passes through the first buffer block 61 and is connected to the locking member 62. The second buffer block 63 is connected to the other end of the buffer rod. The buffer spring is sleeved on the buffer rod and is located between the first buffer block 61 and the second buffer block 63.
[0032] By incorporating the buffer assembly 6, when the rolling roller 43 descends and abuts against the vacuum insulation panel, the buffer spring is compressed, thereby reducing the impact of the rolling roller 43 on the vacuum insulation panel during its descent and preventing damage to the barrier film of the vacuum insulation panel. Simultaneously, by incorporating the buffer assembly 6, the rolling roller 43 can abut against vacuum insulation panels of different thicknesses, enabling the rolling of vacuum insulation panels of varying thicknesses.
[0033] In this embodiment, multiple rollers 43 are provided, and the rollers 43 are distributed on both sides of the second buffer block 63. The rollers 43 can abut against the long side blade, and the rollers 43 roll along the long side blade as the conveyor belt 22 rotates.
[0034] Because some vacuum insulation panels have long blades, during folding, some blades may not adhere properly or are not firmly attached to the surface of the vacuum insulation panel, resulting in poor folding effect. This invention addresses this by using a rolling roller 43 to roll along the long blades, thus firmly adhering any loose or unattached blades to the surface of the vacuum insulation panel.
[0035] 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 positioning rolling conveying mechanism, characterized in that: Includes a base frame, conveying assembly, side positioning assembly, rolling assembly, and adjusting assembly; The conveying assembly includes a first conveying assembly and a second conveying assembly arranged opposite to each other. Each conveying assembly includes a frame and a conveyor belt. The frame is mounted on a base frame, and the conveyor belt is mounted on the frame. The side positioning assembly includes a first side positioning assembly and a second side positioning assembly arranged opposite to each other. The first side positioning assembly is set on the frame of the first conveying assembly, and the second side positioning assembly is set on the frame of the second conveying assembly. Each side positioning assembly includes a positioning cylinder and a positioning plate. The positioning cylinder is set on the frame, and the positioning plate is connected to the positioning cylinder and is driven to move by the positioning cylinder. The rolling assembly includes a first rolling assembly and a second rolling assembly arranged opposite to each other. The first rolling assembly is mounted on the frame of the first conveyor assembly, and the second rolling assembly is mounted on the frame of the second conveyor assembly. Each rolling assembly includes a rolling frame, a rolling drive cylinder, and a rolling wheel. The rolling frame is mounted on the frame, and the rolling drive cylinder is mounted on the rolling frame. The rolling wheel is connected to the rolling drive cylinder and is driven to move up and down by the rolling drive cylinder. The rolling wheel is located above the conveyor belt. An adjustment component is mounted on the base frame to adjust the distance between the first side positioning component and the second side positioning component.
2. The positioning rolling conveying mechanism as described in claim 1, characterized in that: The adjustment assembly includes an adjustment motor and an adjustment belt. The adjustment motor is mounted on the base frame, and the adjustment belt is connected to the adjustment motor and driven to rotate by the adjustment motor. The adjustment belt is connected to the frame and drives the first conveying assembly and the second conveying assembly to move closer to or further away from each other.
3. The positioning rolling conveying mechanism as described in claim 2, characterized in that: A first adjusting seat is provided at the upper part of the adjusting belt, and the first adjusting seat is connected to the frame of the first conveying component. A second adjusting seat is provided at the lower part of the adjusting belt, and the second adjusting seat is connected to the frame of the second conveying component.
4. The positioning rolling conveying mechanism as described in claim 1, characterized in that: The positioning plate is long and narrow, with guide blocks at its ends. The surface of the guide blocks forms an outwardly expanding first guide surface.
5. The positioning rolling conveying mechanism as described in claim 1, characterized in that: Guide plates are installed at the ends of the frame, and the surface of the guide plates forms an outwardly expanding second guide surface.
6. The positioning rolling conveying mechanism as described in claim 1, characterized in that: The rolling roller is connected to the rolling drive cylinder through a buffer assembly. The buffer assembly includes a first buffer block, a buffer rod, a locking element, a second buffer block, and a buffer spring. The first buffer block is connected to the rolling drive cylinder. One end of the buffer rod passes through the first buffer block and is connected to the locking element. The second buffer block is connected to the other end of the buffer rod. The buffer spring is sleeved on the buffer rod and is located between the first and second buffer blocks.
7. The positioning rolling conveying mechanism as described in claim 6, characterized in that: Multiple rolling rollers are provided, and the rolling rollers are distributed on both sides of the second buffer block.