Lifting type rotating device for copper-clad plate packaging
The design of the lifting and rotating device solves the problem that copper-clad laminate packaging equipment cannot flexibly adjust the packaging direction, realizing efficient and precise stacking and reversing, and improving packaging efficiency and automation.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- KINGBOARD ELECTRONIC RAW MATERIAL (JIANG YIN) CO LTD
- Filing Date
- 2025-03-12
- Publication Date
- 2026-04-14
AI Technical Summary
Existing copper-clad laminate packaging equipment cannot flexibly adjust the packaging direction after cutting, resulting in the need for secondary handling and affecting efficiency.
Design a lifting and rotating device that uses a rotary table and a platform in conjunction with a side-pushing mechanism to achieve product stacking and reversal, ensuring that products are stably stacked in the center of the platform, thereby improving stacking efficiency and accuracy.
It enables efficient and precise stacking and reversing of copper-clad laminates, improving packaging efficiency and automation, and reducing production and maintenance costs.
Smart Images

Figure CN224117634U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of copper clad laminate packaging technology, and in particular relates to a lifting and rotating device for copper clad laminate packaging. Background Technology
[0002] For copper-clad foil packaging, after cutting, it needs to be connected and packaged. The packaging process requires stacking the boards radially or latitudinally according to the requirements. However, most production lines now have adsorption devices with many cylinders and adsorption points, which makes it impossible to change the orientation of the boards on the production line. Therefore, there is no choice of packaging direction. They can only stack and package according to the direction of the production line, which lacks flexibility and requires secondary handling of the products, affecting packaging efficiency.
[0003] Therefore, designing a rotary device for copper-clad laminate packaging is a problem that needs to be solved by those skilled in the art. Summary of the Invention
[0004] The purpose of this utility model is to provide a lifting and rotating device for copper-clad laminate packaging. Through the cooperation of the turntable and the table surface, products can be stacked and reversed. Through the design and arrangement of two side pushing mechanisms, the four sides of the products on the table surface can be positioned to ensure the stacking state of the products and that they can be stably stacked in the center of the table surface. This can greatly improve stacking efficiency, stacking accuracy, packaging efficiency and automation.
[0005] To solve the above-mentioned technical problems, this utility model is achieved through the following technical solution:
[0006] This utility model is a lifting and rotating device for copper-clad laminate packaging, including a rotary table, a table surface and two side pushing mechanisms.
[0007] The platform is rotatably mounted on the rotary table via a slewing bearing. A slewing mechanism is provided between the platform and the rotary table. A set of strip grooves perpendicular to the sides of the platform are provided on each of the four sides of the platform.
[0008] A set of first crossbeams is fixed on one opposite side of the rotary table, and a set of second crossbeams is fixed on the other opposite side of the rotary table. The first and second crossbeams are vertically distributed and staggered in the height direction. A slide rail is fixed to the top of the first and second crossbeams.
[0009] The side-pushing mechanism includes a horizontal shaft and a set of pusher frames;
[0010] The horizontal axis passes through the rotary table and is rotatably connected to the rotary table. The horizontal axes of the two side push mechanisms are respectively arranged parallel between the two first horizontal beams and between the two second horizontal beams.
[0011] Both ends of the horizontal shaft are located outside the rotary table and are provided with threaded sections. The threaded sections at both ends of the horizontal shaft have opposite thread directions. The rotary table is provided with a motor reducer connected to the horizontal shaft.
[0012] The pusher includes a horizontal plate, the bottom of which is provided with a threaded sleeve that is threadedly connected to the threaded section, and both ends of the horizontal plate are provided with sliders that are slidably connected to the slide rail.
[0013] The top of both ends of the horizontal plate is rotatably connected to push arms via hinge seats. The eight push arms pass through eight strip slots and are slidably connected to the strip slots. A torsion spring is provided at the connection between the push arm and the hinge seat. The top of both ends of the horizontal plate is fixed with a limiting position that fits against the outside of the push arm.
[0014] The outer surfaces of the outer ends of the first and second crossbeams are both fixed with inner pressure rollers opposite to the push arm via vertical plates.
[0015] Furthermore, when the horizontal plate is located at the end of the threaded section, the push arm is flipped under the table surface by the pressure of the inner pressure roller.
[0016] Furthermore, pulleys are fixed at one end of the horizontal shaft inside the rotary table and at the output end of the motor reducer, and a belt is provided between the two pulleys.
[0017] Furthermore, the rotary mechanism is a gear ring structure connected with a drive, and the rotary mechanism and the two motor reducers are misaligned within the rotary table.
[0018] Furthermore, an outer end plate is fixed on the outer side between two adjacent first crossbeams and on the outer side between two adjacent second crossbeams, and the end of the threaded section passes through the outer end plate and is rotatably connected to the outer end plate.
[0019] Furthermore, a support beam is fixed between the bottom of the outer end plate and the rotary table, and the support beam is an inclined beam structure.
[0020] This utility model has the following beneficial effects:
[0021] 1. This utility model enables product stacking and reversing through the cooperation of the rotary table and the table surface. The design and arrangement of two side push mechanisms can position the four sides of the product on the table surface, ensuring the stacking state of the product and that it can be stably stacked in the center of the table surface. This can greatly improve stacking efficiency, stacking accuracy, packaging efficiency and automation.
[0022] 2. This utility model, through the design of a novel side-pushing mechanism, can not only be used for precise positioning of product stacking, but also flip the push arm back to the bottom of the table when reversal is required, without affecting the normal reversal of the table and the products above. At the same time, it is easy to arrange when installed on the turntable, and compared with installing the push mechanism on the table, it is easier to connect and install.
[0023] 3. This utility model uses a design with two side-pushing mechanisms. The two pushing points of the same side-pushing mechanism are arranged opposite each other and can be synchronously driven by a horizontal axis. This facilitates precise control of the displacement of the two pushing points, reduces the need for a drive mechanism, and lowers production and maintenance costs.
[0024] Of course, any product implementing this utility model does not necessarily need to achieve all of the advantages described above at the same time. Attached Figure Description
[0025] To more clearly illustrate the technical solutions of the embodiments of this utility model, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0026] Figure 1 This is a schematic diagram of the structure of a lifting and rotating device for packaging copper-clad laminates according to the present invention.
[0027] Figure 2 This is a schematic diagram of the structure of this utility model after the countertop is removed;
[0028] Figure 3 This is a schematic diagram of the side thrust mechanism;
[0029] Figure 4 This is a schematic diagram of the side push mechanism of this utility model before the push arm is stored.
[0030] Figure 5 This is a schematic diagram of the side-push mechanism of this utility model after the push arm is stowed.
[0031] Figure 6 This is a structural cross-sectional view of the side-pushing mechanism of this utility model at the position of the horizontal plate;
[0032] The attached diagram lists the components represented by each number as follows:
[0033] 1-Rotary table, 2-Table surface, 3-Side push mechanism, 101-First crossbeam, 102-Second crossbeam, 103-Slide rail, 104-Upright plate, 105-Inner pressure roller, 106-Outer end plate, 107-Support beam, 201-Rotary bearing, 202-Rotary mechanism, 203-Strip groove, 301-Horizontal shaft, 302-Threaded section, 303-Motor reducer, 304-Horizontal plate, 305-Threaded sleeve, 306-Slider, 307-Push arm, 308-Torsion spring, 309-Hinge, 310-Limit, 311-Pulley, 312-Belt body. Detailed Implementation
[0034] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.
[0035] Please see Figure 1-6 As shown, this utility model is a lifting and rotating device for copper-clad laminate packaging, including a rotary table 1, a table surface 2 and two side pushing mechanisms 3.
[0036] The platform 2 is rotatably mounted on the rotary table 1 via the slewing bearing 201. A slewing mechanism 202 is provided between the platform 2 and the rotary table 1. A set of strip grooves 203 perpendicular to the sides of the platform 2 are provided on each of the four sides of the platform 2.
[0037] A set of first crossbeams 101 is fixed on one opposite side of the rotary table 1, and a set of second crossbeams 102 is fixed on the other opposite side of the rotary table 1. The first crossbeams 101 and the second crossbeams 102 are vertically distributed and staggered in the height direction. The top of the first crossbeams 101 and the second crossbeams 102 are both fixed with slide rails 103.
[0038] The side-pushing mechanism 3 includes a horizontal shaft 301 and a set of pusher frames;
[0039] The horizontal shaft 301 passes through the rotary table 1 and is rotatably connected to the rotary table 1. The horizontal shafts 301 of the two push mechanisms 3 on both sides are respectively arranged parallel between the two first horizontal beams 101 and between the two second horizontal beams 102.
[0040] Both ends of the horizontal shaft 301 are located outside the rotary table 1 and are provided with threaded sections 302. The threaded sections 302 at both ends of the horizontal shaft 301 have opposite thread directions. The rotary table 1 is provided with a motor reducer 303 connected to the horizontal shaft 301.
[0041] The pusher includes a horizontal plate 304, a threaded sleeve 305 at the bottom of the horizontal plate 304 that is threadedly connected to the threaded section 302, and sliders 306 at both ends of the horizontal plate 304 that are slidably connected to the slide rail 103.
[0042] The top of both ends of the horizontal plate 304 are rotatably connected to push arms 307 via hinge seats 309. The eight push arms 307 pass through eight strip grooves 203 respectively and are slidably connected to the strip grooves 203. A torsion spring 308 is provided at the connection between the push arm 307 and the hinge seat 309. The top of both ends of the horizontal plate 304 are fixed with limiters 310 that fit against the outside of the push arm 307.
[0043] The outer surfaces of the outer ends of the first crossbeam 101 and the second crossbeam 102 are both fixed with inner pressure rollers 105 opposite to the push arm 307 by the upright plate 104.
[0044] Among them, such as Figure 5 As shown, when the horizontal plate 304 is located at the end of the threaded section 302, the push arm 307 is flipped under the table 2 by the pressure of the inner pressure roller 105.
[0045] Among them, such as Figure 3-5 As shown, pulleys 311 are fixed at one end of the horizontal shaft 301 inside the rotary table 1 and at the output end of the motor reducer 303, and a belt body 312 is provided between the two pulleys 311.
[0046] Among them, such as Figure 2 As shown, the rotary mechanism 202 is a gear ring structure connected with a drive, and the rotary mechanism 202 and the two motor reducers 303 are misaligned within the rotary table 1.
[0047] Among them, such as Figure 1-6 As shown, an outer end plate 106 is fixed on the outer side between two adjacent first crossbeams 101 and on the outer side between two adjacent second crossbeams 102. The end of the threaded section 302 passes through the outer end plate 106 and is rotatably connected to the outer end plate 106.
[0048] Among them, such as Figure 1-6 As shown, a support beam 107 is fixed between the bottom of the outer end plate 106 and the rotary table 1. The support beam 107 is an inclined beam structure.
[0049] The working principle of this utility model is as follows: the copper-clad laminate is moved to the table 2 by the transfer rack and the adsorption device. The horizontal shaft 301 is driven to rotate by the motor reducer 303. The relative movement of the two horizontal plates 304 on the same side push mechanism 3 can be achieved by the cooperation of the threaded section 302 and the threaded sleeve 305. This can drive the push arm 307 to move relative to each other (the synchronous operation of the two side push mechanisms 3 can push and position the copper-clad laminate on the four sides. At the same time, the stroke of the push arm 307 is set in advance according to the specifications of the copper-clad laminate). The copper-clad laminate can be aligned with the center of the table 2. After the bottom copper-clad laminate is aligned, all copper-clad laminates are stacked in sequence. After the stacking is completed, if it is necessary to change the direction of the copper-clad laminate, the push arm 307 is driven to move to the outside of the rotary table 1. The inner pressure roller 105 can press the push arm 307 to make the push arm 307 flip to the bottom of the table 2. The table 2 can be rotated 90 degrees by the rotary table 1.
[0050] In the description of this specification, references to terms such as "an embodiment," "example," "specific example," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the present invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples.
[0051] The preferred embodiments of this utility model disclosed above are merely illustrative of the present utility model. These preferred embodiments do not exhaustively describe all details, nor do they limit the utility model to the specific implementations described. Clearly, many modifications and variations can be made based on the content of this specification. This specification selects and specifically describes these embodiments to better explain the principles and practical applications of this utility model, thereby enabling those skilled in the art to better understand and utilize it. This utility model is limited only by the claims and their full scope and equivalents.
Claims
1. A lifting and rotating device for copper-clad laminate packaging, characterized in that: It includes a rotary table (1), a platform (2), and two side-pushing mechanisms (3); The platform (2) is rotatably mounted on the rotary table (1) via a slewing bearing (201). A slewing mechanism (202) is provided between the platform (2) and the rotary table (1). A set of strip grooves (203) perpendicular to the sides of the platform (2) are provided on each of the four sides of the platform (2). A set of first crossbeams (101) is fixed on one opposite side of the rotary table (1), and a set of second crossbeams (102) is fixed on the other opposite side of the rotary table (1). The first crossbeams (101) and the second crossbeams (102) are vertically distributed and staggered in the height direction. The top of the first crossbeams (101) and the second crossbeams (102) are both fixed with slide rails (103). The side-pushing mechanism (3) includes a horizontal shaft (301) and a set of pusher frames; The horizontal shaft (301) passes through the rotary table (1) and is rotatably connected to the rotary table (1). The horizontal shafts (301) of the two side push mechanisms (3) are respectively arranged parallel between the two first horizontal beams (101) and between the two second horizontal beams (102). Both ends of the horizontal shaft (301) are located outside the rotary table (1) and are provided with threaded sections (302). The threaded directions of the threaded sections (302) at both ends of the horizontal shaft (301) are opposite. The rotary table (1) is provided with a motor reducer (303) connected to the horizontal shaft (301). The pusher includes a horizontal plate (304), the bottom of the horizontal plate (304) is provided with a threaded sleeve (305) that is threadedly connected to the threaded section (302), and both ends of the horizontal plate (304) are provided with sliders (306) that are slidably connected to the slide rail (103). The top of both ends of the horizontal plate (304) are rotatably connected to push arms (307) via hinge seats (309). The eight push arms (307) pass through eight strip grooves (203) respectively and are slidably connected to the strip grooves (203). A torsion spring (308) is provided at the connection between the push arm (307) and the hinge seat (309). The top of both ends of the horizontal plate (304) are fixed with limiters (310) that fit against the outside of the push arm (307). The outer sides of the outer ends of the first crossbeam (101) and the second crossbeam (102) are both fixed with inner pressure rollers (105) opposite to the push arm (307) by the upright plate (104).
2. The lifting and rotating device for copper-clad laminate packaging according to claim 1, characterized in that, When the horizontal plate (304) is located at the end of the threaded section (302), the push arm (307) is flipped under the table (2) by the pressure of the inner pressure wheel (105).
3. A lifting and rotating device for copper-clad laminate packaging according to claim 1, characterized in that, The horizontal shaft (301) is fixed with pulleys (311) at one end inside the rotary table (1) and at the output end of the motor reducer (303), and a belt body (312) is provided between the two pulleys (311).
4. A lifting and rotating device for copper-clad laminate packaging according to claim 3, characterized in that, The rotary mechanism (202) is a gear ring structure connected with a drive, and the rotary mechanism (202) and the two motor reducers (303) are misaligned within the rotary table (1).
5. A lifting and rotating device for copper-clad laminate packaging according to claim 1, characterized in that, An outer end plate (106) is fixed between the outer sides of two adjacent first crossbeams (101) and between the outer sides of two adjacent second crossbeams (102). The end of the threaded section (302) passes through the outer end plate (106) and is rotatably connected to the outer end plate (106).
6. A lifting and rotating device for copper-clad laminate packaging according to claim 5, characterized in that, A support beam (107) is fixed between the bottom of the outer end plate (106) and the rotary table (1), and the support beam (107) is an inclined beam structure.