Conveying device for signboard aluminum sheet production
By introducing adjustment components and positioning modules into the aluminum sheet conveying device, the problems of aluminum sheet transmission stability and uneven stacking were solved, enabling precise positioning and continuous production of aluminum sheets, thereby improving production efficiency and product quality.
Patent Information
- Application Number
- CN202511760761.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-27
- Publication Date
- 2026-02-03
AI Technical Summary
Existing aluminum sheet conveying devices suffer from insufficient stability in the transmission and stacking stages, leading to aluminum sheets jamming, shifting, or uneven stacking, which affects production efficiency and quality. Furthermore, the single carrying space necessitates manual intervention and production interruptions during the initial collection phase.
The device employs a collection component, a guiding component, and a conveying component. The height of the carrier plate is automatically adjusted by an adjusting component. Combined with a positioning module and a rotating module, it achieves precise positioning and continuous production of aluminum sheets, ensuring that the aluminum sheets move along a predetermined path and are stacked stably.
This effectively avoids aluminum sheet position deviation and surface damage, improves transmission efficiency and production continuity, reduces manual intervention, and enhances production efficiency and product quality.
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Figure CN121448837A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of aluminum sheet production, in particular to a conveying device for signboard aluminum sheet production. BACKGROUND
[0002] In the production process of traffic signs, the processing of aluminum alloy plates is a crucial step. This process includes multiple delicate procedures such as stamping, drilling, and film pasting, which collectively shape the aluminum alloy plates into the final product. Among these procedures, stamping is a key step that determines the shape and structure of the aluminum sheet. After stamping, the aluminum sheet needs to be transferred to the collection area through a conveying device. The function of this device is to transfer the aluminum sheet to the collection area. In the collection area, subsequent processing and machining can be carried out.
[0003] However, in the prior art, the aluminum sheet conveying device used in the transmission and stacking process has some significant technical defects. These defects not only affect the production efficiency, but also damage the quality of the aluminum sheet. First, the transmission stability is insufficient, mainly because the existing device lacks a real-time correction mechanism, which causes the aluminum sheet to be prone to jamming, deviation, or uneven stacking during movement, affecting production efficiency and product quality. Second, in the traditional aluminum sheet collection device, a single bearing space is often used, and the distance between the aluminum sheet and the bottom of the bearing space is too large during the initial collection of the aluminum sheet, causing the stacking position of the aluminum sheet to deviate, which requires manual intervention. The capacity of the single bearing space is limited, and when the aluminum sheet is stacked to the upper limit, manual replacement or emptying of the bearing container is required, which interrupts the production process and reduces efficiency. SUMMARY
[0004] In order to overcome some of the problems mentioned in the background, the present application provides a conveying device for signboard aluminum sheet production.
[0005] The technical scheme adopted by the present application is as follows: a conveying device for signboard aluminum sheet production, comprising a collection assembly, a guide assembly, and a conveying assembly, the guide assembly is arranged between the collection assembly and the conveying assembly, and the guide assembly is used to guide the movement of the aluminum sheet; The collection assembly comprises a bearing space, the side wall of the bearing space is provided with a positioning module, the lower part of the bearing space is provided with a bearing module, the bearing module comprises a bearing plate and an adjusting piece, the adjusting piece is arranged below the bearing plate, the aluminum sheets are stacked on the upper part of the bearing plate, the adjusting piece adjusts the height of the bearing plate according to the weight of the aluminum sheet layer, and the bearing plate is in sliding connection with the inner wall of the positioning module.
[0006] Further, the collecting assembly further comprises a support module and a rotating module, the rotating module is arranged on the upper portion of the support module, the positioning module is arranged on the upper portion of the rotating module, and the bearing module is connected with the rotating module.
[0007] Further, the support module comprises an operation table, a support frame and a support plate, the operation table is arranged on the upper portion of the support frame, the support plate is arranged on the lower portion of the operation table, and the support frame is connected with the conveying assembly through a connecting rod; The upper portion of the operation table is provided with a connecting hole, and the rotating module is connected with the connecting hole.
[0008] Further, the rotating module comprises a rotating plate and a first motor, the rotating plate is fixedly connected with the output end of the first motor, the first motor is connected with the support plate, and the rotating plate is arranged in the connecting hole; The rotating plate is provided with two groups of mounting stations, the two groups of mounting stations are symmetrically arranged along the center line of the rotating plate, the mounting station comprises a plurality of mounting grooves, the bearing module is correspondingly arranged in the mounting groove, a plurality of adjusting holes are arranged in the mounting groove, the adjusting hole is correspondingly arranged with the adjusting piece, and the positioning module is arranged along the outer side of the mounting groove.
[0009] Further, the positioning module is provided with an opening portion, and the aluminum sheet slides into the bearing space through the opening portion; The positioning module comprises a push plate mechanism, a first side baffle and a second side baffle, the first side baffle and the second side baffle are arranged on the two sides of the opening portion respectively, and the push plate mechanism is arranged relative to the opening portion; The second side baffle is provided with a counter, and the counter is connected with the rotating module.
[0010] Further, the adjusting piece is provided with a plurality of adjusting pieces, and the plurality of adjusting pieces are arranged one by one corresponding to the plurality of mounting grooves; The adjusting piece comprises a sliding rod, an adjusting spring, a limiting plate and a fixed frame, one end of the sliding rod is fixedly connected with the lower surface of the bearing plate, the other end of the sliding rod passes through the fixed frame and is fixedly connected with the limiting plate, and the limiting plate limits the maximum lifting stroke of the bearing plate; The adjusting spring is arranged on the outer side of the sliding rod, and the two ends of the adjusting spring are connected with the bearing plate and the fixed frame respectively, and the sliding rod is slidingly connected with the fixed frame.
[0011] Further, the guide assembly comprises an end plate, a second motor, a rotating roller, a transmission roller, a guide plate, a material guide plate and a pressure roller, the end plate is arranged at one end of the conveying assembly, and the end plate is arranged at the two ends of the rotating roller, the transmission roller and the pressure roller; The second motor is fixedly connected to one of the end plates, and the second motor is driven by the rotating roller, which is located at the lower part of the rotating roller. The pressure roller is located in front of the rotating roller, the guide plate is located in front of the transmission roller, and the guide plate is located between the rotating roller and the transmission roller. One end of the guide plate is fixedly connected to the guide plate, and the other end of the guide plate is located on the upper part of the conveying assembly.
[0012] Furthermore, the conveying assembly includes a conveyor belt, a drive roller, and a third motor. The third motor is connected to the drive roller, and the drive roller drives the conveyor belt to rotate. The surface of the conveyor belt is provided with an anti-slip layer.
[0013] Furthermore, the pusher mechanism includes a telescopic device and a discharge plate, wherein the discharge plate reciprocates horizontally under the drive of the telescopic device to push aluminum sheets.
[0014] Furthermore, it also includes a stamping machine, with the other end of the conveying assembly disposed inside the stamping machine, and the stamped aluminum sheet falling directly onto the conveying assembly.
[0015] Compared with the prior art, the beneficial effects of the present invention are as follows: By coordinating the adjustment mechanism with the support plate, the height can be automatically adjusted according to the weight of the stacked aluminum sheets, maintaining a consistent height difference between the upper aluminum sheets and the unloading port of the guide assembly. This mechanism effectively prevents aluminum sheets from falling from the collection assembly during the initial collection stage due to an excessive height difference between the support plate and the unloading port, thus avoiding positional deviations or surface damage to the aluminum sheets. Furthermore, it also prevents aluminum sheets from slipping due to excessive stacking height.
[0016] By cooperating with the guide component and the positioning module, the aluminum sheet is ensured to move along the predetermined path, reducing the risk of jamming and deviation and improving transmission efficiency.
[0017] By switching the load-bearing space using a rotating module, alternating operations between "full load" and "empty load" can be achieved, enabling continuous production and significantly improving production efficiency. Attached Figure Description
[0018] Figure 1 This is a schematic diagram of a conveying device for producing aluminum sheet signs according to an embodiment of the present invention; Figure 2 This is a front view schematic diagram of a conveying device (excluding a stamping machine) for producing aluminum sheet for signs, according to an embodiment of the present invention. Figure 3 for Figure 1 A schematic diagram of the collection components; Figure 4 for Figure 1 Top view of the collection components; Figure 5 For Figure 4 Fig. 2 is a schematic view along A-A section of the middle; Figure 6 For Figure 1 Fig. 3 is a schematic view of the middle conveying assembly; Figure 7 For Figure 1 Fig. 4 is a schematic view of the middle guide assembly; Figure 8 For Figure 1 Fig. 5 is a schematic view of the front of the middle guide assembly; Figure 9 For Figure 8 Fig. 6 is a schematic view along B-B section of the middle.
[0019] In the drawings: 1, aluminum sheet; 2, collecting assembly; 21, support module; 211, operation table; 212, support frame; 213, support plate; 214, connecting rod; 22, rotating module; 221, rotating plate; 222, mounting groove; 223, adjusting hole; 224, first motor; 23, positioning module; 231, push plate mechanism; 2311, telescopic device; 2312, unloading plate; 232, first side baffle; 233, second side baffle; 24, bearing module; 241, bearing plate; 242, sliding rod; 243, adjusting spring; 244, limiting plate; 245, fixed frame; 3, guide assembly; 31, end plate; 32, second motor; 33, rotating roller; 34, transmission roller; 35, guide plate; 36, material guide plate; 37, pressure roller; 4, conveying assembly; 41, conveying belt; 42, drive roller; 43, third motor; 5, punching machine. DETAILED DESCRIPTION
[0020] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0021] In the description of the present application, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application and simplifying the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the present application.
[0022] As Figures 1-9As shown, in some embodiments, a conveying device for producing a signboard aluminum sheet 1 includes a collecting assembly 2, a guiding assembly 3, and a conveying assembly 4. The guiding assembly 3 is arranged between the collecting assembly 2 and the conveying assembly 4, and its main function is to guide the aluminum sheet 1 to move along a predetermined path, ensuring smooth transmission of the aluminum sheet 1 during the production process. The design of the guiding assembly 3 takes into account the shape and size of the aluminum sheet 1, as well as the flow speed of the aluminum sheet 1 on the production line, so as to ensure that the aluminum sheet 1 does not jam or deviate from the predetermined path when passing through the guiding assembly 3, thereby affecting the production efficiency and the quality of the aluminum sheet 1.
[0023] In particular, the collecting assembly 2 is equipped with a bearing space, and the side wall of the space is specially designed with a positioning module 23 to ensure the accurate position of the aluminum sheet 1 in the space. The bottom of the bearing space is provided with a bearing module 24, which is composed of a bearing plate 241 and an adjusting member. The bearing plate 241 is located at the upper layer and directly bears the aluminum sheet 1, and the adjusting member is installed below the bearing plate 241. The function of the adjusting member is to automatically adjust the height of the bearing plate 241 according to the weight of the stacked aluminum sheet layer, so as to ensure that the height difference between the aluminum sheet 1 stacked on the uppermost layer of the bearing plate 241 and the discharge port of the guiding assembly 3 is always maintained within a certain range, so that the aluminum sheet 1 can smoothly slide into the bearing space.
[0024] In addition, the bearing plate 241 is in sliding connection with the inner wall of the positioning module 23, and this design allows the bearing plate 241 to move up and down in the positioning module 23 flexibly, so that the aluminum sheet 1 can smoothly slide into the bearing space.
[0025] In this embodiment, the conveying assembly 4 is responsible for conveying the punched aluminum sheet 1 out of the punching machine, and through the guiding operation of the guiding assembly 3, it ensures that the aluminum sheet 1 can accurately fall into the predetermined bearing space. Specifically, the discharge port of the guiding assembly 3 is arranged corresponding to the bearing space, In the initial stage, the bearing plate 241 is located at the initial position, and the height difference between it and the discharge port of the guiding assembly 3 is maintained at 5 cm.
[0026] In the collecting stage, after the aluminum sheet 1 moves out of the guiding assembly 3, it falls in the direction of the bearing space. During the falling process, the front end and the side edge of the aluminum sheet 1 will contact the positioning module 23, which ensures that the aluminum sheet 1 can accurately fall into the bearing space. As the aluminum sheet 1 is continuously stacked on the bearing plate 241, the weight of the aluminum sheet layer gradually increases, and the downward pressure on the adjusting member also gradually increases, thereby continuously adjusting the height of the bearing plate 241 downward.
[0027] It is worth noting that through the cooperation of the adjusting piece and the bearing plate 241, the height can be automatically adjusted according to the weight of the aluminum sheet 1 stack, keeping the height difference between the upper aluminum sheet 1 and the discharge port of the guide assembly 3 consistent. This mechanism effectively avoids the aluminum sheet from falling out of the collection assembly 2 due to the excessive height difference between the bearing plate 241 and the discharge port during the initial collection stage, thereby causing position deviation or surface damage of the aluminum sheet 1. In addition, it can also prevent the aluminum sheet 1 from sliding smoothly due to the over-high stack.
[0028] The positioning module 23 limits the front end and side edges of the aluminum sheet 1 through the side wall, ensuring that the aluminum sheet 1 can accurately fall into the bearing space and reducing position deviation. The sliding connection design of the bearing plate 241 and the inner wall of the positioning module 23 meets the height adjustment requirement and maintains the stability of the aluminum sheet stack.
[0029] Through the cooperation between the guide assembly 3 and the positioning module 23, the aluminum sheet 1 is ensured to move along the predetermined path, reducing the risk of jamming and deviation and improving the transmission efficiency.
[0030] Further, in some embodiments, the collection assembly 2 further includes a support module 21 and a rotating module 22. The rotating module 22 is arranged on the upper part of the support module 21, and the support module 21 provides stable support for the rotating module 22.
[0031] In addition, the positioning module 23 is arranged on the upper part of the rotating module 22 to facilitate the collection operation of the aluminum sheet 1. Similarly, the bearing module 24 is connected with the rotating module 22, and the rotating module 22 supports the bearing module 24.
[0032] It is particularly noted that in the present embodiment, a plurality of bearing spaces are arranged, which are combined in pairs and uniformly distributed on the rotating module 22. When the number of aluminum sheets 1 collected in the bearing space located at the discharge port reaches a predetermined value, the rotating module 22 is rotated to move the bearing space out of the discharge port and switch to an empty bearing space, realizing the alternating operation between "full load and empty load" and continuous production, thereby significantly improving the production efficiency.
[0033] As shown in Figure 2 , Figure 3 and Figure 4 , in some embodiments, the support module 21 includes an operation table 211, a support frame 212 and a support plate 213. The support frame 212 supports the operation table 211 to ensure the stability of the operation table 211. The support plate 213 is arranged on the lower part of the operation table 211 and connected with the support frame 212.
[0034] In addition, the support frame 212 is connected with the conveying assembly 4 through the connecting rod 214 to ensure the stability of the position between the collecting assembly 2 and the conveying assembly 4, ensuring the stability and reliability of the entire device.
[0035] The upper part of the operation table 211 is provided with a connecting hole designed in the form of a stepped hole, and the rotating module 22 is connected with the operation table 211 through the connecting hole.
[0036] In particular, the upper part of the operation table 211 is specially designed with a connecting hole. This connecting hole is connected with the rotating module 22. Through this design, the rotating module 22 can be flexibly connected with the upper connecting hole of the operation table 211 to ensure the stability of the connection.
[0037] Further, in some embodiments, the rotating module 22 includes a rotating plate 221 and a first motor 224, wherein the rotating plate 221 is fixedly connected with the output end of the first motor 224, the rotating plate 221 is driven to rotate by the first motor 224, and the carrying space is carried by the rotating plate 221 to rotate. To ensure the stable output of the power of the first motor 224, it is fixed on the support plate 213 to ensure the stability of the first motor 224.
[0038] In addition, the rotating plate 221 is arranged in the connecting hole, which not only ensures the accurate movement of the rotating module 22, but also improves the stability and durability of the entire device, In particular, the rotating plate 221 is provided with two groups of mounting stations, which are symmetrically arranged along the center line of the rotating plate 221. Each group of mounting stations includes a plurality of mounting grooves 222, which are specially designed to carry the carrying module 24, and they correspond to the carrying module 24 one by one to ensure the stability of the carrying module 24. A plurality of adjusting holes 223 are arranged in each mounting groove 222, which are arranged corresponding to the adjusting pieces. Through the cooperation of the adjusting holes 223 and the adjusting pieces, the height of the carrying plate 241 can be adjusted, so as to accurately carry the aluminum sheet 1.
[0039] In addition, the positioning module 23 is arranged along the outer side of the mounting groove 222, which can ensure the accurate positioning of the aluminum sheet 1 during collection, and further improve the production efficiency and product quality of the entire device.
[0040] Further, in some embodiments, the positioning module 23 is provided with an opening part specially designed for the aluminum sheet 1 to slide into the carrying space. Specifically, the size and shape of the opening part are carefully designed according to the specifications of the aluminum sheet 1 to ensure that the aluminum sheet 1 can smoothly and accurately slide into the predetermined carrying space, thereby improving the production efficiency and positioning accuracy of the aluminum sheet 1.
[0041] The positioning module 23 comprises a push plate mechanism 231, a first side baffle 232 and a second side baffle 233, wherein the first side baffle 232 and the second side baffle 233 are respectively arranged on both sides of the opening portion to ensure that the aluminum sheet 1 can smoothly slide into the bearing space. The push plate mechanism 231 is arranged relative to the opening portion, which functions to push the aluminum sheet 1 into the predetermined position. The design of the push plate mechanism 231 takes into account the thickness and hardness of the aluminum sheet 1 to ensure that no damage is caused when the aluminum sheet 1 is pushed, while ensuring sufficient pushing force to overcome the friction of the aluminum sheet 1 during sliding.
[0042] A counter is provided on the second side baffle 233, which is connected with the rotating module 22 for real-time monitoring and recording the number of aluminum sheets 1 passing through, ensuring the accuracy of the number in the production process. The setting of the counter makes the production process more automated, reduces the error and labor intensity of manual counting, and at the same time, through the connection with the rotating module 22, when the number of aluminum sheet 1 stacks reaches the preset value, the first motor 224 drives the rotating plate 221 to rotate, drives the bearing module 24 on the upper part to move, so that the bearing module 24 full of aluminum sheet 1 moves, and switches to the empty bearing module 24, ensuring the stability of the collection operation and improving the production efficiency.
[0043] Further, in some embodiments, the number of adjusting members is multiple, and these adjusting members are respectively arranged one-to-one corresponding to the multiple mounting grooves 222.
[0044] Among them, the adjusting member comprises a sliding rod 242, an adjusting spring 243, a limiting plate 244 and a fixed frame 245. Specifically, one end of the sliding rod 242 is fixedly connected with the lower surface of the bearing plate 241, and the other end of the sliding rod 242 is fixedly connected with the limiting plate 244 through the fixed frame 245, and the limiting plate 244 functions to limit the maximum lifting stroke of the bearing plate 241; through this structure design, it can be ensured that the bearing plate 241 will not exceed the predetermined stroke range in the lifting process, thereby ensuring the stability and safety of the production process.
[0045] The adjusting spring 243 is arranged on the outside of the sliding rod 242, and the two ends of the adjusting spring 243 are respectively connected with the bearing plate 241 and the fixed frame 245, so as to ensure that the sliding rod 242 and the fixed frame 245 can be smoothly connected. The existence of the adjusting spring 243 makes the sliding rod 242 be able to get appropriate elastic support in the lifting process, thereby ensuring the stability of the position of the bearing plate 241.
[0046] As Figure 7 , Figure 8 and Figure 9As shown, in some embodiments, the guide assembly 3 includes an end plate 31, a second motor 32, a rotating roller 33, a transmission roller 34, a guide plate 35, a material guide plate 36, and a pressing roller 37. Among them, the end plate 31 is arranged at one end of the conveying assembly 4 away from the punch 5, and at the same time, the two ends of the rotating roller 33, the transmission roller 34 and the pressing roller 37 are fixed through the end plate 31, so as to ensure the stability of the rotating roller 33, the transmission roller 34 and the pressing roller 37.
[0047] The first motor 224 is fixedly connected with one of the end plates 31, and the first motor 224 is in transmission connection with the rotating roller 33. The transmission roller 34 is arranged at the lower part of the rotating roller 33. The first motor 224 serves as a power source, drives the rotating roller 33 to rotate through the transmission connection with the rotating roller 33, and in turn drives the aluminum sheet 1 to forwardly convey. The transmission roller 34 is arranged at the lower part of the rotating roller 33, so as to better support and guide the conveying process of the aluminum sheet 1.
[0048] The pressing roller 37 is arranged at the front side of the rotating roller 33, the material guide plate 36 is arranged at the front side of the transmission roller 34, and the guide plate 35 is arranged between the rotating roller 33 and the transmission roller 34. One end of the guide plate 35 is fixedly connected with the material guide plate 36, and the other end of the guide plate 35 is arranged at the upper part of the conveying assembly 4.
[0049] The pressing roller 37 is arranged at the front side of the rotating roller 33, the material guide plate 36 is arranged at the front side of the transmission roller 34, and the guide plate 35 is arranged between the rotating roller 33 and the transmission roller 34. One end of the guide plate 35 is fixedly connected with the material guide plate 36, and the other end of the guide plate 35 is arranged at the upper part of the conveying assembly 4. The pressing roller 37 serves to ensure that the aluminum sheet 1 closely adheres to the rotating roller 33 during the conveying process, so as to prevent the aluminum sheet 1 from deviating or warping during the conveying process. The material guide plate 36 and the guide plate 35 are arranged to guide the aluminum sheet 1 to convey along the correct path, so as to avoid the aluminum sheet 1 from deviating from the predetermined conveying direction.
[0050] As shown, Figure 6 In some embodiments, the conveying assembly 4 includes a conveying belt 41, a driving roller 42 and a third motor 43. Specifically, the first motor 224 is in transmission connection with the driving roller 42, so that the driving roller 42 can effectively drive the conveying belt 41 to rotate through this driving mode. The surface of the conveying belt 41 is provided with an anti-skid layer.
[0051] In addition, the surface of the conveying belt 41 is specially designed with an anti-skid layer, which can ensure that the aluminum sheet 1 can be stably fixed on the conveying belt 41 during the conveying process, thereby improving the safety of the movement of the aluminum sheet 1.
[0052] As shown, Figure 5As shown, in some embodiments, the pusher mechanism 231 includes a telescoping device 2311 and a discharge plate 2312. The discharge plate 2312 is driven by the telescoping device 2311 to reciprocate in the horizontal direction. The purpose of this reciprocating motion is to effectively push the aluminum sheet 1 and ensure that the aluminum sheet 1 moves smoothly after being stacked and collected.
[0053] like Figure 1 As shown, in some embodiments, the conveying device further includes a stamping machine 5. Specifically, the other end of the conveying assembly 4 is directly connected to the interior of the stamping machine 5. In this way, after the stamping machine 5 completes the stamping of the aluminum sheets 1, these stamped aluminum sheets 1 can fall directly onto the conveying assembly 4 very conveniently, thereby realizing an efficient and continuous production process.
[0054] The typical working process of the above embodiments is as follows: Step 1: Aluminum sheet stamping and initial feeding 1. After being stamped by the stamping machine 5, the aluminum sheet 1 falls directly onto the conveyor belt 41 of the conveying assembly 4; 2. The third motor 43 drives the drive roller 42, which in turn drives the conveyor belt 41 to transport the aluminum sheet 1 to the guide assembly 3.
[0055] Step Two: Orientation and Positioning 1. After aluminum sheet 1 enters the guide assembly 3, it is clamped and conveyed forward by rotating roller 33 and pressure roller 37; 2. The guide plate 36 and the guide plate 35 guide the aluminum sheet 1 to move along a predetermined path to the unloading port; 3. When aluminum sheet 1 slides out of the unloading port, the front push plate mechanism 231 abuts against it and the side contacts the first side baffle 232 and the second side baffle 233 to ensure that it falls accurately into the bearing space.
[0056] Step 3: Load-bearing capacity and height adjustment 1. After aluminum sheet 1 falls into the bearing space, it is stacked on the bearing plate 241; 2. As the weight of aluminum sheet 1 increases, the adjusting spring 243 is compressed and contracts, causing the slide bar 242 and the bearing plate 241 to move downward, maintaining a constant height difference between the upper aluminum sheet 1 and the unloading port; 3. The limiting plate 244 limits the maximum downward travel of the bearing plate 241.
[0057] Step 4: Rotation of Multiple Load-Bearing Spaces 1. The counter of the second side baffle 233 monitors the number of aluminum sheets 1 in real time, and sends a signal to the rotation module 22 when the preset value is reached; 2. After receiving the signal, the first motor 224 drives the rotating plate 221 to rotate, so that the fully loaded carrying space moves out of the unloading port and the empty carrying space is switched to below the unloading port; 3. The extender 2311 of the push plate mechanism 231 pushes the discharge plate 2312, assisting the aluminum sheet 1 to move out of the carrying space.
[0058] Step five: cycle operation - Repeat steps one to five to realize continuous production without downtime for changing the carrying space.
[0059] It should be noted that the relational terms herein such as first and second and the like are used solely to distinguish one from another entity or action without necessarily requiring or implying any actual relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.
[0060] Although the embodiments of the present application have been shown and described, it is to be understood that for the purpose of the present application, the embodiments change, modify, replace, and vary in many ways without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
[0061] The above describes the present application and its embodiments, which are not limited, and the drawings show only one of the embodiments of the present application, and the actual structure is not limited thereto. In general, if a person skilled in the art is inspired by it, without departing from the purpose of the present application, without creative design, similar structure and embodiments of the technical solution should belong to the protection scope of the present application.
Claims
1. A conveying device for producing aluminum sheet for signs, characterized in that, It includes a collecting component (2), a guiding component (3) and a conveying component (4), wherein the guiding component (3) is disposed between the collecting component (2) and the conveying component (4), and the guiding component (3) is used to guide the aluminum sheet (1) to move; The collecting component (2) includes a carrying space, the side wall of which is provided with a positioning module (23), and the lower part of which is provided with a carrying module (24). The carrying module (24) includes a carrying plate (241) and an adjusting member. The adjusting member is located below the carrying plate (241). The aluminum sheet (1) is stacked on the upper part of the carrying plate (241). The adjusting member adjusts the height of the carrying plate (241) according to the weight of the aluminum sheet (1) layer. The carrying plate (241) is slidably connected to the inner wall of the positioning module (23).
2. The conveying device for producing aluminum sheet signs according to claim 1, characterized in that, The collecting component (2) further includes a support module (21) and a rotating module (22). The rotating module (22) is located on the upper part of the support module (21), the positioning module (23) is located on the upper part of the rotating module (22), and the bearing module (24) is connected to the rotating module (22).
3. The conveying device for producing aluminum sheet signs according to claim 2, characterized in that, The support module (21) includes an operating table (211), a support frame (212), and a support plate (213). The operating table (211) is located on the upper part of the support frame (212), and the support plate (213) is located on the lower part of the operating table (211). The support frame (212) is connected to the conveying assembly (4) by a connecting rod (214). The upper part of the operating table (211) is provided with a connection hole, and the rotating module (22) is connected to the connection hole.
4. The conveying device for producing aluminum sheet signs according to claim 3, characterized in that, The rotating module (22) includes a rotating plate (221) and a first motor (224). The rotating plate (221) is fixedly connected to the output end of the first motor (224). The first motor (224) is connected to the support plate (213). The rotating plate (221) is disposed in the connection hole. The rotating plate (221) is provided with two sets of installation stations. The two sets of installation stations are symmetrically arranged along the center line of the rotating plate (221). Each installation station includes multiple installation slots (222). The bearing module (24) is arranged correspondingly to the installation slots (222). Multiple adjustment holes (223) are provided in the installation slots (222). The adjustment holes (223) are arranged correspondingly to the adjustment components. The positioning module (23) is arranged along the outer side of the installation slots (222).
5. The conveying device for producing aluminum sheet signs according to claim 1, characterized in that, The positioning module (23) is provided with an opening, through which the aluminum sheet (1) slides into the bearing space; The positioning module (23) includes a push plate mechanism (231), a first side baffle (232), and a second side baffle (233). The first side baffle (232) and the second side baffle (233) are respectively disposed on both sides of the opening. The push plate mechanism (231) is disposed relative to the opening. The second side baffle (233) is equipped with a counter, which is connected to the rotation module (22).
6. The conveying device for producing aluminum sheet signs according to claim 4, characterized in that, The adjustment component is provided in multiple ways, and each of the multiple adjustment components is configured to correspond one-to-one with the multiple mounting slots (222); The adjusting component includes a slide rod (242), an adjusting spring (243), a limiting plate (244), and a fixing frame (245). One end of the slide rod (242) is fixedly connected to the lower surface of the bearing plate (241), and the other end of the slide rod (242) passes through the fixing frame (245) and is fixedly connected to the limiting plate (244). The limiting plate (244) limits the maximum lifting stroke of the bearing plate (241). The adjusting spring (243) is located on the outside of the slide rod (242). The two ends of the adjusting spring (243) are respectively connected to the bearing plate (241) and the fixed frame (245). The slide rod (242) is slidably connected to the fixed frame (245).
7. The conveying device for producing aluminum sheet signs according to claim 1, characterized in that, The guiding assembly (3) includes an end plate (31), a second motor (32), a rotating roller (33), a transmission roller (34), a guide plate (35), a guide plate (36), and a pressure roller (37). The end plate (31) is disposed at one end of the conveying assembly (4), and the end plate (31) is disposed at both ends of the rotating roller (33), the transmission roller (34), and the pressure roller (37). The second motor (32) is fixedly connected to one of the end plates (31), and the second motor (32) is connected to the rotating roller (33) for transmission. The transmission roller (34) is located at the lower part of the rotating roller (33). The pressure roller (37) is located on the front side of the rotating roller (33), the guide plate (36) is located on the front side of the transmission roller (34), the guide plate (35) is located between the rotating roller (33) and the transmission roller (34), one end of the guide plate (35) is fixedly connected to the guide plate (36), and the other end of the guide plate (35) is located on the upper part of the conveying assembly (4).
8. The conveying device for producing aluminum sheet signs according to claim 1, characterized in that, The conveying assembly (4) includes a conveyor belt (41), a drive roller (42) and a third motor (43). The third motor (43) is connected to the drive roller (42). The drive roller (42) drives the conveyor belt (41) to rotate. The surface of the conveyor belt (41) is provided with an anti-slip layer.
9. The conveying device for producing aluminum sheet signs according to claim 5, characterized in that, The push plate mechanism (231) includes a telescopic device (2311) and a discharge plate (2312). The discharge plate (2312) reciprocates in the horizontal direction under the drive of the telescopic device (2311) to push the aluminum sheet (1).
10. The conveying device for producing aluminum sheet signs according to claim 1, characterized in that, It also includes a stamping machine (5), with the other end of the conveying assembly (4) located inside the stamping machine (5), and the stamped aluminum sheet (1) falling directly onto the conveying assembly (4).