Bearing structure for polyhedral laminating equipment and equipment
By designing a support structure that is close to or away from the assembly and sensor judgment, the pallets are solved to adapt to products and positioning problems of different specifications, and improve the applicability and accuracy of the coating equipment.
Patent Information
- Application Number
- CN202422460682.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-12
- Publication Date
- 2025-08-05
- Estimated Expiration
- 2034-10-12
AI Technical Summary
The existing pallet structure is difficult to adapt to products of different specifications, and it is impossible to effectively position and judge whether the product is assembled accurately, which affects the quality of the finished product.
A support structure is designed, including a pallet and an assembly part. The assembly part consists of the first and second assembly parts, which are close to or away, and a sensor is arranged to determine whether the product is assembled accurately, and the position of the assembly is controlled by the drive part to ensure the product is fixed and positioned.
It realizes the adaptation and accurate positioning of products of different specifications, improves the user experience, and ensures the accuracy and efficiency of the coating process.
Smart Images

Figure CN223187755U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to a supporting structure and equipment for polyhedron film laminating equipment, belonging to the field of film laminating. Background Art
[0002] Pallets are used to carry objects. In assembly line operations, pallets are often needed to carry products as they move from process to process. During this process, some processes inevitably come into direct contact with the product, which can cause it to shift position, impacting subsequent processes and reducing costs and quality. Therefore, ensuring the quality of the finished product requires precise positioning of the product.
[0003] Existing pallets are usually provided with several grooves to accommodate the products to be processed. However, if the grooves are too large, the products may be misaligned, and if the grooves are too small, the products cannot be fitted in. The same grooves are usually only suitable for a certain type of product and are not practical.
[0004] In view of this, it is indeed necessary to improve the existing supporting structure to solve the above problems. Utility Model Content
[0005] In order to solve the above technical problems, the utility model provides a supporting structure for a polyhedron laminating device, which can adapt to products of different specifications, and can also limit the position of the product and determine whether the product is assembled accurately.
[0006] To achieve the above-mentioned purpose, the utility model provides a supporting structure for a polyhedron laminating device, which is used to carry the product to be laminated. The supporting structure includes a tray and an assembly part provided on the tray, the assembly part is upwardly open and includes a first assembly part and a second assembly part located on opposite sides of the first assembly part. The two second assembly parts are configured to be able to approach or move away from each other, and an assembly area is formed between the first assembly part and the second assembly part. A sensor is provided inside the first assembly part, and the sensor is arranged directly opposite to the assembly area.
[0007] As a further improvement of the present invention, both the first assembly part and the second assembly part are provided with grooves, the grooves are connected to the assembly area and are used to position the product to be coated, and the recessed direction of the first assembly part is different from the recessed direction of the second assembly area.
[0008] As a further improvement of the present invention, the sensor is arranged on a side of the groove of the first assembly part away from the assembly area.
[0009] As a further improvement of the present invention, the first assembly part is recessed away from the opening direction of the assembly portion, the second assembly part is recessed away from the first assembly part, and the grooves of the two second assembly parts are aligned with each other.
[0010] As a further improvement of the present invention, the assembly portion further includes a driving portion connected to the second assembly parts, and the driving portion is configured to drive the two second assembly parts to move closer to or away from each other.
[0011] As a further improvement of the present invention, a card slot is provided on one side of the second assembly part close to the driving part, and the driving part is correspondingly provided with a driving arm, and the driving arm is assembled in the card slot.
[0012] As a further improvement of the present invention, the second assembly part is roughly L-shaped and includes a first part close to the first assembly part and a second part close to the driving part. The groove of the second assembly part is formed in the first part, and the card slot is arranged in the second part.
[0013] As a further improvement of the present invention, two driving arms are also provided, and are respectively assembled in the corresponding slots of the second assembly parts. The straight-line distance between the two driving arms is defined as the first distance, and the straight-line distance between the two grooves of the second assembly parts is defined as the second distance. The first distance is smaller than the second distance.
[0014] The utility model also provides a polyhedron laminating device, which can adapt to products of different specifications, and can also limit the position of the products and determine whether the products are assembled accurately.
[0015] To achieve the above-mentioned purpose, the present invention provides a polyhedron laminating device, comprising:
[0016] transmission components;
[0017] The aforementioned supporting structure, wherein the tray of the supporting structure is arranged on the transmission component and can move with the transmission component, and the tray is used to carry the product to be coated and the film;
[0018] The assembly portion of the tray includes a first assembly portion for carrying the film and a second assembly portion for carrying the product to be coated, and the first assembly part and the second assembly part are both arranged on the second assembly part.
[0019] As a further improvement of the present invention, the first assembly part is provided with at least two bearing positions to carry at least two of the membranes, and the second assembly part is correspondingly provided with two.
[0020] The beneficial technical effect of the present invention is that the present invention ensures the fixation of the product to be coated by setting two second assembly parts that can be close to or away from each other, and at the same time ensures that the product to be coated is installed in place by setting a sensor in the first assembly part, thereby increasing the user experience and being practical. BRIEF DESCRIPTION OF THE DRAWINGS
[0021] Figure 1 It is a structural schematic diagram of a polyhedron laminating device in accordance with a preferred embodiment of the present utility model.
[0022] Figure 2 yes Figure 1 The diagram shows the internal structure of the polyhedron laminating equipment.
[0023] Figure 3 yes Figure 2 Schematic diagram of the structure of the middle tray.
[0024] Figure 4 yes Figure 3 Schematic diagram of the structure of the dotted circle.
[0025] 100-polyhedron laminating equipment, 200-product to be laminated, 300-film;
[0026] 1-frame, 11-loading port, 12-start switch;
[0027] 2-transmission assembly, 21-transmission belt, 22-tray, 221-first assembly portion, 222-second assembly portion, 2220-assembly area, 2221-first assembly part, 2222-second assembly part, 22221-first part, 22222-second part, 2223-driving part, 22231-driving arm;
[0028] 3-Suction and pressure module;
[0029] 4-CCD module. DETAILED DESCRIPTION
[0030] In order to more clearly understand the technical means of the present invention and implement it according to the contents of the specification, the specific implementation methods of the present invention are further described in detail below in conjunction with the drawings and examples. The following examples are used to illustrate the present invention but are not used to limit the scope of the present invention.
[0031] See also Figures 1 to 4As shown, the present invention provides a polyhedron laminating device 100 for laminating a product 200 to be laminated. The polyhedron laminating device 100 comprises a frame 1, a transmission assembly 2, a suction and pressure module 3, and a CCD module 4. The frame 1 is provided with a loading port 11. The transmission assembly 2 is used to connect the product 200 to be laminated and the film 300 introduced from the loading port 11. The suction and pressure module 3 is used to absorb the film 300 and laminate the film 300 onto the product 200 to be laminated according to the positions of the product 200 and the film 300 recorded by the CCD module 4.
[0032] Specifically, the loading port 11 faces the operator, and the operator can manually place the product to be coated 200 and the film 300 on the transmission component 2, or can realize automatic loading through other loading components, which is not limited.
[0033] A plurality of operating switches are further provided on one side of the loading port 11 of the frame 1 , and the operating switches are electrically connected to the control module. The operator can trigger the control module through the operating switches to control the entire laminating process.
[0034] In this embodiment, the transport assembly 2 and the suction and pressure module 3 are both movable on the same horizontal plane. The horizontal movement direction of the suction and pressure module 3 is defined as a first direction. The transport assembly 2 includes a conveyor belt 21 capable of conveying the product to be coated 200 and the film 300. The longitudinal direction of the conveyor belt 21 is a second direction. The first and second directions are perpendicular to each other. Of course, the first and second directions do not need to be perpendicular, as long as they intersect.
[0035] There are preferably two transmission components 2, and the two transmission components 2 are arranged in parallel. This is to enable lamination of multiple products 200 to be laminated to be completed in one lamination process, thereby improving the lamination efficiency.
[0036] The transmission assembly 2 is housed within the frame 1 and is provided with a tray 22 for carrying the product 200 to be coated and the film 300 placed through the loading port 11. The tray 22 is provided with an assembly portion, comprising a first assembly portion 221 for assembling the film 300 and a second assembly portion 222 for assembling the product 200 to be coated. Both the first assembly portion 221 and the second assembly portion 222 are upwardly open. The openings are the directions in which the suction and pressure assembly 3 sucks the film 300.
[0037] The second assembly part 222 can controllably limit the product to be coated 200, and includes a first assembly part 2221 and a second assembly part 2222 located on opposite sides of the first assembly part 2221. The first assembly part 2221 and the second assembly part 2222 are both provided with recesses to jointly position the product to be coated 200, and the recess direction of the first assembly part 2221 is different from the recess direction of the second assembly part 2222.
[0038] In this embodiment, the first assembly member 2221 is recessed away from the opening of the assembly portion, and the second assembly member 2222 is recessed away from the first assembly member 2221. The grooves of the two second assembly members 2222 are aligned and connected. When the product 200 to be coated is assembled in the second assembly portion 222, the product 200 to be coated is partially located in the first assembly member 2221 and partially located in the second assembly member 2222, thereby positioning the product 200 to be coated from different directions.
[0039] In a direction perpendicular to the horizontal plane, the upper surface of the second assembly member 2222 is higher than the upper surface of the first assembly member 2221, forming an assembly area 2220 between the first assembly member 2221 and the second assembly member 2222. This defines the product 200 to be coated as having at least six sides, with the assembly area 2220 covering at least the bottom and two side surfaces of the product 200 to be coated. This ensures that the coating area is fully exposed while facilitating installation of the product 200 to be coated, avoiding placement difficulties. In other embodiments, the number of sides is not limited to six; this is for ease of understanding and illustration only.
[0040] The two second assembly parts 2222 are configured to be able to move closer to or further away from each other. The second assembly part 222 also includes a drive part 2223 electrically connected to the control module. The second assembly part 222 is configured to receive instructions from the control module via the drive part 2223 to control the two second assembly parts 222 to move closer to each other to clamp the product to be coated 200. A start switch 12 is provided on the outside of the frame 1. The start switch 12 is electrically connected to the control module and controls the second assembly part 222 to clamp the product to be coated 200 through the control module and the drive part 2223, thereby starting the laminating process.
[0041] In this embodiment, a slot is provided on one side of the second assembly part 2222 close to the driving portion 2223 , and a driving arm 22231 is correspondingly provided on the driving portion 2223 . The driving arm 22231 is assembled in the slot.
[0042] The second assembly part 2222 is generally L-shaped and includes a first portion 22221 close to the first assembly part 2221 and a second portion 22222 close to the driving portion 2223 . The groove of the second assembly part 2222 is formed in the first portion 22221 , and the card slot is provided in the second portion 22222 .
[0043] Two drive arms 22231 are provided, each mounted in a corresponding slot in the second assembly part 2222. The linear distance between the two drive arms 22231 is defined as a first distance, and the linear distance between the two slots in the second assembly part 2222 is defined as a second distance. The first distance is smaller than the second distance. In other words, the minimum product specifications are limited by the distance between the two drive arms 22231.
[0044] Preferably, a sensor is installed within the first assembly portion 221, positioned directly opposite the assembly area 2220, and configured to sense the position of the product to be coated 200. In this embodiment, the sensor is located on the side of the groove of the first assembly member 2221 facing away from the assembly area 2220. The polyhedron laminating apparatus 100 is also equipped with an alarm device, electrically connected to the sensor so that the alarm device issues an alarm if it senses that the product to be coated 200 is not properly installed.
[0045] In this embodiment, the tray 22 is provided with two second assembly sections 222, meaning that each transport assembly 2 can simultaneously accommodate two products 200 to be laminated. This means that one laminating process can simultaneously laminate four products 200, significantly improving laminating efficiency. Of course, in other embodiments, the number of second assembly sections 222 can be increased or decreased as needed, without limitation.
[0046] The suction and pressure module 3 is used to absorb the film 300 and apply it to the product to be coated 200. The CCD module 4 is used to position the film 300 and the product to be coated 200 to ensure that the coating position can be accurately positioned.
[0047] The transmission assembly 2 is provided with two, and the tray 22 of the transmission assembly 2 is provided with two second assembly parts 222, and the suction and pressure module 3 is also provided with two suction and pressure components 33. Therefore, the utility model can realize the coating of four products 200 to be coated in one use.
[0048] Preferably, the first assembly portion 221 is provided with at least two loading positions to hold at least two films 300, thereby satisfying the lamination requirements of at least two products 200 to be laminated. After lamination is completed, the control module can control the transport assembly 2 to transport the tray 22 back to the vicinity of the loading port 11 for removal by the operator. Therefore, the loading port 11 can also be used as a discharge port.
[0049] To sum up, the supporting structure and equipment for the polyhedron laminating device of the present invention ensure the fixation of the product 200 to be laminated by setting two second assembly parts 2222 that can move closer to or farther away from each other, and at the same time ensure that the product 200 to be laminated is installed in place by setting a sensor in the first assembly part 2221, thereby increasing the user experience and being practical.
[0050] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. It should be pointed out that ordinary technicians in this technical field can make several improvements and modifications without departing from the technical principles of the present invention. These improvements and modifications should also be regarded as within the scope of protection of the present invention.
Claims
1. A supporting structure for a polyhedron laminating device, used for carrying a product to be laminated (200), characterized in that: The supporting structure includes a tray (22) and an assembly portion provided on the tray (22), the assembly portion is upwardly open and includes a first assembly part (2221) and a second assembly part (2222) located on opposite sides of the first assembly part (2221), the two second assembly parts (2222) are configured to be able to approach or move away from each other, an assembly area (2220) is formed between the first assembly part (2221) and the second assembly part (2222), a sensor is provided inside the first assembly part (2221), and the sensor is arranged opposite to the assembly area (2220).
2. The supporting structure according to claim 1, characterized in that: The first assembly part (2221) and the second assembly part (2222) are both provided with grooves, the grooves are connected to the assembly area (2220), and are used to position the product to be coated (200), and the recessed direction of the first assembly part (2221) is different from the recessed direction of the second assembly part (2222).
3. The supporting structure according to claim 2, characterized in that: The sensor is arranged on a side of the groove of the first assembly part (2221) that is away from the assembly area (2220).
4. The supporting structure according to claim 2, characterized in that: The first assembly part (2221) is recessed away from the opening direction of the assembly portion, and the second assembly part (2222) is recessed away from the first assembly part (2221), and the grooves of the two second assembly parts (2222) are aligned with each other.
5. The supporting structure according to claim 1, characterized in that: The assembly portion further comprises a driving portion (2223) connected to the second assembly part (2222), and the driving portion (2223) is configured to be able to drive the two second assembly parts (2222) to move closer to or farther away from each other.
6. The supporting structure according to claim 5, characterized in that: A slot is provided on one side of the second assembly part (2222) close to the driving part (2223), and a driving arm (22231) is correspondingly provided on the driving part (2223), and the driving arm (22231) is assembled in the slot.
7. The supporting structure according to claim 6, characterized in that: The second assembly part (2222) is roughly L-shaped and includes a first part (22221) close to the first assembly part (2221) and a second part (22222) close to the driving part (2223). The groove of the second assembly part (2222) is formed in the first part (22221), and the card slot is arranged in the second part (22222).
8. The supporting structure according to claim 7, characterized in that: There are also two driving arms (22231), which are respectively assembled in the corresponding slots of the second assembly part (2222). The straight-line distance between the two driving arms (22231) is defined as the first distance, and the straight-line distance between the two grooves of the second assembly part (2222) is defined as the second distance. The first distance is smaller than the second distance.
9. A polyhedron laminating device, characterized in that: include: Transmission component (2); The supporting structure according to any one of claims 1 to 8, wherein the tray (22) of the supporting structure is arranged on the transmission component (2) and can move with the transmission component (2), and the tray (22) is used to carry the product (200) to be coated and the film (300); The assembly portion of the tray (22) includes a first assembly portion (221) for carrying the film (300) and a second assembly portion (222) for carrying the product to be coated (200), and the first assembly part (2221) and the second assembly part (2222) are both arranged in the second assembly part (222).
10. The polyhedron laminating device according to claim 9, characterized in that: The first assembly part (221) is provided with at least two bearing positions for bearing at least two of the films (300), and the second assembly part (222) is correspondingly provided with two.