Automatic assembly line frame
By designing an automatic assembly line frame, using product conveying mechanisms and multiple process mechanisms to achieve automatic labeling and pressing, the problem of large space occupancy of notebook shell labeling assembly lines in the prior art is solved, and resource conservation and production efficiency are improved.
Patent Information
- Application Number
- CN202421932527.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-09
- Publication Date
- 2025-05-06
- Estimated Expiration
- 2034-08-09
AI Technical Summary
The existing notebook shell label assembly line occupies a large amount of horizontal space due to the linear layout, resulting in waste of resources and inefficient production efficiency.
An automatic assembly line frame is designed, using a combination of a chassis shell, product conveying mechanism, hot melting mechanism, labeling mechanism and pressing mechanism. The product is transferred to the hot melting, labeling and pressing mechanism through the product conveying mechanism to realize automatic bonding and pressing of auxiliary materials, and the product feed end and discharge end are designed on the same side, avoiding the need to arrange the process in sequence along the straight line.
Through the automated labeling and pressing process, the horizontal space and area of the assembly line is significantly saved, production efficiency is improved, and human resource waste is reduced.
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Figure CN222833209U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of notebook shell labeling, and in particular to an automatic assembly line frame. Background Art
[0002] When processing the notebook shell, in order to increase brand recognition, display product information and other functions, it involves the process of sticking small auxiliary materials on the notebook shell product.
[0003] At present, the assembly line for labeling notebook shells is usually a linear production line, that is, each process is arranged in a linear shape, which is called a linear assembly line. The linear assembly line is long, resulting in a large horizontal space area. Utility Model Content
[0004] In order to help save the lateral space occupied by the assembly line, the present application provides an automatic assembly line frame.
[0005] The automatic assembly line framework provided in this application adopts the following technical solutions:
[0006] An automatic assembly line frame, including a chassis housing, a product conveying mechanism, a hot-melt mechanism, a labeling mechanism, and a pressing mechanism;
[0007] The product conveying mechanism is arranged on the chassis shell, one end of the product conveying mechanism is a product feeding end, and the other end is a product discharging end, and the product feeding end and the product discharging end are located on the same side of the chassis shell;
[0008] The hot melt mechanism is arranged on one side of the chassis housing close to the product feeding end, and is used to preheat the labeling position of the product;
[0009] The labeling mechanism is arranged on the chassis shell and is used to label the product after hot melting;
[0010] The pressing mechanism is arranged on one side of the chassis shell close to the product discharge end, and is used to press the auxiliary material and the product tightly.
[0011] By adopting the above technical scheme, the product is placed on the product feed end of the product conveying mechanism, the product conveying mechanism conveys the product to the hot melt mechanism, the hot melt mechanism preheats the product labeling position, and then the product conveying mechanism continues to convey the product to the labeling position, the labeling mechanism bonds the auxiliary materials to the hot-melted product, and then the product conveying mechanism conveys the product to the pressing mechanism, the pressing mechanism further presses the product and the auxiliary materials, and then the product conveying mechanism conveys the labeled product from the product discharging end. Since the product feeding end and the product discharging end of the assembly line are designed to be on the same side, the hot melt mechanism and the pressing mechanism are located on different sides of the product conveying mechanism, so that there is no need to arrange the various processes in sequence along a straight line, which helps to save the horizontal space and area occupied by the assembly line.
[0012] Preferably, brackets are provided on opposite sides of the chassis shell, the product conveying mechanism, the hot-melt mechanism and the pressing mechanism are all located between the two brackets, and two groups of the labeling mechanism are provided along the length direction of the brackets.
[0013] By adopting the above technical solution, double-station labeling can be achieved through two sets of labeling mechanisms, which helps to improve processing efficiency.
[0014] Preferably, the labeling mechanism includes a mounting plate slidably arranged between two brackets, a sliding block slidably arranged on the mounting plate, a mechanical arm slidably arranged on the sliding block, a first driving source arranged on the bracket, a second driving source arranged on the mounting plate, a third driving source arranged on the sliding block, and a feeder arranged on the chassis shell, the sliding direction of the mounting plate is parallel to the length direction of the bracket, the sliding direction of the sliding block is parallel to the length direction of the mounting plate, the mechanical arm is slidably arranged in a vertical direction, the stripping section of the feeder extends between the two brackets, the mechanical arm is used to attach the auxiliary material at the feeder feeder to the product after hot melting, the first driving source is used to drive the mounting plate to slide, the second driving source is used to drive the sliding block to slide, and the third driving source is used to drive the mechanical arm to slide.
[0015] By adopting the above technical solution, the first driving source drives the mounting plate to slide along the bracket, the second driving source drives the sliding block to drive the mechanical arm to slide along the mounting plate, so that the mechanical arm is moved to the required feeder in turn, and the third driving source drives the mechanical arm to move downward, so that the mechanical arm absorbs the material, and then through the sliding of the mounting plate and the sliding block, the mechanical arm is moved to the labeling position of the product conveying mechanism between the hot melt mechanism and the pressing mechanism, and the auxiliary material is attached to the product, thereby realizing labeling, which is simple and convenient, and helps to save horizontal space and area.
[0016] Preferably, a plurality of feeder feeders are arranged along the circumference of the chassis shell.
[0017] Preferably, the product conveying mechanism includes a conveying line group passing through opposite sides of a chassis shell and a flipping module arranged on the chassis shell, the two conveying line groups are located between the brackets on both sides, the conveying line group on each side includes multiple conveyor belts, and the multiple conveyor belts of the conveying line group on each side are arranged in sequence along the product feeding and discharging direction, the flipping module is located on the side of the multiple conveyor belts away from the product feeding end, and the flipping module is used to flip and move the product.
[0018] Preferably, a plurality of conveyor belts of the conveyor line group near the product feeding end cross over the hot melt mechanism, and a plurality of conveyor belts of the conveyor line group near the product discharging end cross over the pressing mechanism.
[0019] Preferably, the multiple conveyor belts of the conveyor line groups on both sides are staggered.
[0020] By adopting the above technical solution, the two robotic arms are less likely to interfere with each other when performing labeling work, and the operating space is larger, which saves the horizontal space and area of the assembly line to a certain extent.
[0021] Preferably, a groove is provided on the upper surface of the chassis shell, and the hot melt mechanism, pressing mechanism, flip module and multiple conveyor belts are all located in the groove, and the conveyor belts located at the product feeding end and the product discharging end are all passed through the chassis shell.
[0022] Preferably, the product conveying mechanism is an enclosed structure, and the enclosed structure includes a closed enclosed structure and an unclosed enclosed structure;
[0023] The closed enclosure structure includes a U-shaped closed enclosure structure, a circular closed enclosure structure, a triangular closed enclosure structure and a polygonal closed enclosure structure;
[0024] The unclosed enclosure structure includes a U-shaped enclosure structure, a U-shaped unclosed enclosure structure, a circular unclosed enclosure structure, a triangular unclosed enclosure structure and a polygonal unclosed enclosure structure.
[0025] Preferably, the product conveying mechanism is a U-shaped enclosure structure.
[0026] In summary, this application includes the following beneficial technical effects:
[0027] The product is placed at the product feed end of the product conveying mechanism, and the product is conveyed to the hot melt mechanism by the product conveying mechanism. The product labeling position is preheated by the hot melt mechanism. Then the product conveying mechanism continues to convey the product to the labeling position, and the auxiliary materials are bonded to the hot-melted product by the labeling mechanism. Then the product conveying mechanism conveys the product to the pressing mechanism, and the product and the auxiliary materials are further pressed by the pressing mechanism. Then the product conveying mechanism conveys the labeled product from the product discharging end. Since the product feeding end and the product discharging end of the assembly line are designed to be on the same side, the hot melt mechanism and the pressing mechanism are located on different sides of the product conveying mechanism, so there is no need to arrange the various processes in sequence along a straight line, which helps to save the horizontal space and area occupied by the assembly line. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] Figure 1 It is a schematic diagram of the overall structure of an embodiment of the present application.
[0029] Figure 2 It is a schematic diagram of the first part of the structure of the embodiment of the present application.
[0030] Figure 3 It is a schematic diagram of the structure of the second part of the embodiment of the present application.
[0031] Explanation of the reference numerals in the accompanying drawings: 1. Chassis shell; 2. Hot melt mechanism; 21. First mounting frame; 22. Heating plate; 3. Pressing mechanism; 31. Second mounting frame; 32. Pressing plate; 4. Product feeding end; 5. Product discharging end; 6. Bracket; 7. Mounting plate; 8. Sliding block; 9. Robotic arm; 10. Feeder feeder; 11. Conveyor line group; 111. Conveyor belt; 12. Flip module; 13. Trough body; 14. Opening. DETAILED DESCRIPTION
[0032] The following is combined with Figure 1-3 This application is described in further detail.
[0033] The present application embodiment discloses an automatic assembly line frame. Figure 1 and Figure 2The automatic assembly line framework includes a chassis shell 1, a product conveying mechanism, a hot melt mechanism 2, a labeling mechanism, a pressing mechanism 3 and a PLC controller; the cross-section of the chassis shell 1 is rectangular; brackets 6 are arranged on opposite sides of the upper surface of the chassis shell 1, and the length direction of the brackets 6 is parallel to the length direction of the chassis shell 1. A slot 13 is provided on the top of the chassis shell 1, and the slot 13 is located between the brackets 6 on both sides. The product conveying mechanism is passed through the slot 13 of the chassis shell 1, and the product conveying mechanism is located between the two brackets 6. One end of the product conveying mechanism is a product feeding end 4, and the other end is a product discharging end 5. In the embodiment of the present application, the product feeding and discharging direction is parallel to the length direction of the chassis shell 1; the product feeding end 4 and the product discharging end 5 are passed through the same side of the chassis shell 1, and an opening 14 for the product feeding end 4 and the product discharging end 5 to pass through is provided on the side wall of the chassis shell 1, and the opening 14 is connected to the slot 13.
[0034] Reference Figure 1 and Figure 2 The hot melt mechanism 2 is arranged on one side of the slot 13 of the chassis housing 1 near the product feed end 4, and is used to preheat the labeling position of the product; the labeling mechanism is arranged between the brackets 6 on both sides, and is used to label the product after hot melting; the pressing mechanism 3 is arranged on one side of the slot 13 of the chassis housing 1 near the product discharge end 5, and is used to press the auxiliary material and the product. The product conveying mechanism, the hot melt mechanism 2, the labeling mechanism and the pressing mechanism 3 are all electrically connected to the PLC controller, which helps to realize automated processing.
[0035] During operation, the product is placed on the product feed end 4 of the product conveying mechanism, and the product is conveyed to the hot melt mechanism 2 by the product conveying mechanism, and the product labeling position is preheated by the hot melt mechanism 2. Then the product conveying mechanism continues to convey the product to the labeling position, and the auxiliary materials are bonded to the hot-melted product by the labeling mechanism. Then the product conveying mechanism conveys the product to the pressing mechanism 3, and the product and the auxiliary materials are further pressed by the pressing mechanism 3. Then the product conveying mechanism conveys the labeled product from the product discharge end 5. Since the product feed end 4 and the product discharge end 5 of the assembly line are designed on the same side, the hot melt mechanism 2 and the pressing mechanism 3 are distributed on both sides of the product conveying mechanism, so that there is no need to arrange the various processes of the assembly line in sequence along a straight line, which helps to save the lateral occupied space and area of the assembly line; at the same time, there is no need to allocate personnel at both the product feed end 4 and the product discharge end 5, which helps to save manpower and improve efficiency.
[0036] Reference Figure 2 and Figure 3Specifically, the hot melt mechanism 2 includes a first mounting frame 21 and a heating plate 22. The first mounting frame 21 is mounted in the slot 13 of the chassis housing 1 at a position close to the product feed end 4. The heating plate 22 is driven by a cylinder to slide on the first mounting frame 21 in a vertical direction. The product conveying mechanism spans the first mounting frame 21 and is located below the heating plate 22. The cylinder on the first mounting frame 21 is electrically connected to the PLC controller. In other embodiments, the heating plate 22 can be replaced by a heating sheet, a heating film, etc., and the sliding of the heating plate 22 can also be driven by an electric cylinder, an electric push rod, etc. The heating plate 22 is driven down by the cylinder to make the heating plate 22 close to the product on the product conveying mechanism, thereby preheating the product.
[0037] Reference Figure 2 and Figure 3 Specifically, the pressing mechanism 3 includes a second mounting frame 31 and a pressing plate 32. The first mounting frame 21 is mounted in the slot 13 of the chassis housing 1 at a position close to the product discharge end 5. The pressing plate 32 is driven by a cylinder to slide on the second mounting frame 31 in a vertical direction. The product conveying mechanism spans the second mounting frame 31 and is located below the pressing plate 32. The cylinder on the second mounting frame 31 is electrically connected to the PLC controller. In other embodiments, the sliding of the pressing plate 32 can also be driven by an electric cylinder, an electric push rod, etc. The pressing plate 32 is driven down by the cylinder to press the product on the product conveying mechanism, thereby achieving the pressing of the auxiliary materials and the product.
[0038] Reference Figure 1 and Figure 2 , the labeling mechanism is provided with two groups along the length direction of the bracket 6, which is helpful to realize double-station labeling. The labeling mechanism includes a mounting plate 7, a sliding block 8, a mechanical arm 9, a first driving source, a second driving source, a third driving source and a flyer feeder 10. The mounting plate 7 is slidably arranged between the two brackets 6. The length direction of the mounting plate 7 is perpendicular to the length direction of the bracket 6. The sliding direction of the mounting plate 7 is parallel to the length direction of the bracket 6. The first driving source is installed on the bracket 6. The first driving source is used to drive the mounting plate 7 to slide. The first driving source can be a cylinder, a rodless cylinder, a servo module, etc., which is not limited here. The mechanical arm 9, the first driving source, the second driving source, the third driving source and the flyer feeder 10 are all electrically connected to the PLC controller.
[0039] Reference Figure 1 and Figure 2 The sliding block 8 is slidably set on the mounting plate 7. The two sliding blocks 8 are located on the side where the two mounting plates 7 are close to each other. The sliding direction of the sliding block 8 is parallel to the length direction of the mounting plate 7. The second driving source is installed on the mounting plate 7. The second driving source is used to drive the sliding block 8 to slide. The second driving source can be a cylinder, a rodless cylinder, a servo module, etc., which is not limited here.
[0040] Reference Figure 1 and Figure 2 The robot arm 9 is slidably arranged on the side of the sliding block 8 away from the mounting plate 7 along the vertical direction. The robot arm 9 is used to attach the auxiliary materials at the feeder 10 to the product. The third driving source is installed on the sliding block 8. The third driving source is used to drive the robot arm 9 to slide. The third driving source can be a cylinder, a rodless cylinder, a servo module, etc., which is not limited here.
[0041] Reference Figure 1 and Figure 2 The feeder 10 is installed on the top of the chassis shell 1. There are multiple feeders 10 along the circumference of the chassis shell 1, which can provide different auxiliary materials according to needs to improve processing efficiency; the stripping sections of multiple feeders 10 are extended between the two brackets 6 to facilitate the suction of the robot arm 9. The feeder 10, also called a feeder or a feeder, is mainly used to supply auxiliary materials to the robot arm 9 for suction; its principle and specific structure belong to the prior art and will not be elaborated here.
[0042] When labeling is required, the first driving source drives the mounting plate 7 to slide along the length direction of the bracket 6, and the second driving source drives the sliding block 8 to drive the robotic arm 9 to slide along the length direction of the mounting plate 7, so that the robotic arm 9 moves to each feeder feeder 10 in turn, and the third driving source drives the robotic arm 9 to move downward, the robotic arm 9 absorbs the material, and then through the sliding of the mounting plate 7 and the sliding block 8, the robotic arm 9 is moved to the labeling position of the product conveying mechanism between the hot melt mechanism 2 and the pressing mechanism 3, and the robotic arm 9 sticks the auxiliary material on the product, thereby realizing labeling.
[0043] Reference Figure 2 and Figure 3 The product conveying mechanism is an enclosed structure, and the enclosed structure includes a closed enclosed structure and an unclosed enclosed structure. The closed enclosed structure includes a U-shaped closed enclosed structure, a circular closed enclosed structure, a triangular closed enclosed structure, and a polygonal closed enclosed structure; the unclosed enclosed structure includes a U-shaped enclosed structure, a U-shaped unclosed enclosed structure, a circular unclosed enclosed structure, a triangular unclosed enclosed structure, and a polygonal unclosed enclosed structure. In the embodiment of the present application, the product conveying mechanism is a U-shaped enclosed structure, which helps to reduce the lateral occupied space and area.
[0044] Reference Figure 2 and Figure 3The product conveying mechanism includes a conveying line group 11 and a flip module 12. The conveying line group 11 is provided with two groups. The two conveying line groups 11 are respectively arranged on opposite sides of the slot 13 of the chassis shell 1. The two conveying line groups 11 are located between the brackets 6 on both sides. The conveying line group 11 on each side includes a plurality of conveyor belts 111. The plurality of conveyor belts 111 of the conveying line group 11 on each side are arranged in sequence along the product feeding and discharging direction, and the conveying direction of the conveyor belts 111 is parallel to the product feeding and discharging direction. The plurality of conveyor belts 111 of the conveying line group 11 near the product feeding end 4 cross the first mounting frame 21 of the hot melt mechanism 2, and the plurality of conveyor belts 111 of the conveying line group 11 near the product discharging end 5 cross the second mounting frame 31 of the pressing mechanism 3. The conveyor belts 111 located at the product feeding end 4 and the product discharging end 5 are both arranged on the chassis shell 1 and located at the feeder feeder 10 (refer to Figure 1 ) below, providing enough space for the arrangement of the feeder 10. The conveyor belt 111 and the turnover module 12 are both electrically connected to the PLC controller.
[0045] Reference Figure 2 and Figure 3 The multiple conveyor belts 111 of the conveyor line groups 11 on both sides are staggered. On the one hand, when one robot arm 9 labels the products on the conveyor belt 111 near the hot melt mechanism 2, the other robot arm 9 can label the products on the conveyor belt 111 near the pressing mechanism 3, realizing double-station processing. When the two robot arms 9 label at the same time, it is not easy to interfere; on the other hand, it can provide enough space for the setting of the flip module 12.
[0046] Reference Figure 2 and Figure 3The flip module 12 is arranged in the slot 13 of the chassis housing 1. The flip module 12 is located on the side of the multiple conveyor belts 111 close to the product discharge end 5 and away from the opening 14. The flip module 12 is used to flip the product. The flip module can use a manipulator, or a combined structure consisting of a rotating cylinder, a support plate, and a suction cup installed on the support plate. The rotating cylinder is rotatably installed on the side wall of the slot 13. The extension direction and the rotation axis of the rotating cylinder are perpendicular to the conveying direction of the conveyor belt 111. The suction cup is used to adsorb and fix the top wall of the product close to the product feed end 4. When in use, the manipulator is used to clamp the product from the conveyor belt 111 close to the product feed end 4, flip it, and move it to the conveyor belt 111 close to the product discharge end 5. Alternatively, the support plate and the suction cup are driven by a rotating cylinder to move to the top of the conveyor belt 111 near the product feed end 4, so that the suction cup absorbs the product, and then drives the product to move to the conveyor belt 111 near the product discharge end 5. The rotating cylinder drives the support plate and the product to rotate, so that a part of the product is overlapped on the conveyor belt 111 near the product discharge end 5, and the suction cup releases the product. Similarly, the product on the conveyor belt 111 near the hot melt mechanism 2 can be flipped and moved to the conveyor belt 111 near the laminating mechanism 3.
[0047] The implementation principle of the embodiment of the present application is as follows: when working, the product is placed on the conveyor belt 111 at the product feeding end 4, and the product is conveyed to the bottom of the heating plate 22 by the conveyor belt 111, and the heating plate 22 is driven downward by the cylinder to preheat the product labeling position, and then the conveyor belt 111 continues to transport the product, and the hot-melted product is moved out of the first mounting frame 21 to the required position, and then the mounting plate 7 is driven to slide along the bracket 6 by the first driving source, and the sliding block 8 is driven by the second driving source to drive the mechanical arm 9 to slide along the mounting plate 7, so that the mechanical arm 9 is moved to each feeder feeder 10 in turn, and the third The driving source drives the robot arm 9 to move downward, so that the robot arm 9 absorbs the material, and then moves the robot arm 9 to the conveyor belt 111 between the hot melt mechanism 2 and the pressing mechanism 3 through the sliding of the mounting plate 7 and the sliding block 8. The robot arm 9 moves downward to stick the auxiliary material on the product, thereby realizing labeling. Then, the flipping module 12 drives the product to flip over to the conveyor belt 111 on the side close to the pressing mechanism 3, and the robot arm 9 is used to label the back side. The flipping module 12 can also not flip the product according to the situation, and directly move to the conveyor belt 111 of the other side transmission line group 11 to realize continuous labeling of two stations.
[0048] Then the conveyor belt 111 conveys the labeled product to the bottom of the pressing plate 32, and the cylinder drives the pressing plate 32 downward to further press the product and the auxiliary material, and then the conveyor belt 111 conveys the processed product from the product discharge end 5. Since the product feed end 4 and the product discharge end 5 of the assembly line are designed on the same side, the hot melt mechanism 2 and the pressing mechanism 3 are distributed on both sides of the product conveying mechanism, it is not necessary to arrange the various processes in sequence along a straight line, which helps to save the horizontal space and area occupied by the assembly line.
[0049] The above are all preferred embodiments of the present application, and the protection scope of the present application is not limited thereto. Therefore, any equivalent changes made according to the structure, shape, and principle of the present application should be included in the protection scope of the present application.
Claims
1. Automatic assembly line frame, characterized by: It comprises a chassis shell (1), a product conveying mechanism, a hot-melt mechanism (2), a labeling mechanism and a pressing mechanism (3); The product conveying mechanism is arranged on the chassis housing (1), one end of the product conveying mechanism is a product feeding end (4), and the other end is a product discharging end (5), and the product feeding end (4) and the product discharging end (5) are located on the same side of the chassis housing (1); The hot melt mechanism (2) is arranged on a side of the chassis housing (1) close to the product feeding end (4) and is used to preheat the labeling position of the product; The labeling mechanism is arranged on the chassis housing (1) and is used to label the product after hot melting; The pressing mechanism (3) is arranged on a side of the chassis shell (1) close to the product discharge end (5) and is used to press the auxiliary material and the product tightly.
2. The automatic assembly line frame according to claim 1, characterized in that: Brackets (6) are provided on opposite sides of the chassis shell (1); the product conveying mechanism, the hot-melt mechanism (2) and the pressing mechanism (3) are all located between the two brackets (6); and two groups of labeling mechanisms are provided along the length direction of the brackets (6).
3. The automatic assembly line frame according to claim 2, characterized in that: The labeling mechanism comprises a mounting plate (7) slidably arranged between two brackets (6), a sliding block (8) slidably arranged on the mounting plate (7), a mechanical arm (9) slidably arranged on the sliding block (8), a first driving source arranged on the bracket (6), a second driving source arranged on the mounting plate (7), a third driving source arranged on the sliding block (8), and a flyer feeder (10) arranged on the chassis shell (1); the sliding direction of the mounting plate (7) is parallel to the length direction of the bracket (6); the sliding direction of the sliding block (8) is parallel to the length direction of the mounting plate (7); the mechanical arm (9) is slidably arranged in a vertical direction; the stripping section of the flyer feeder (10) extends between the two brackets (6); the mechanical arm (9) is used to attach the auxiliary material at the flyer feeder (10) to the product after hot melting; the first driving source is used to drive the mounting plate (7) to slide; the second driving source is used to drive the sliding block (8) to slide; and the third driving source is used to drive the mechanical arm (9) to slide.
4. The automatic assembly line frame according to claim 3, characterized in that: A plurality of the feeder feeders (10) are arranged along the circumference of the chassis shell (1).
5. The automatic assembly line frame according to claim 2, characterized in that: The product conveying mechanism comprises a conveying line group (11) passing through two opposite sides of a chassis shell (1) and a flip module (12) arranged on the chassis shell (1); the two conveying line groups (11) are located between the brackets (6) on the two sides; the conveying line group (11) on each side comprises a plurality of conveying belts (111); the plurality of conveying belts (111) of the conveying line group (11) on each side are arranged in sequence along a product feeding and discharging direction; the flip module (12) is located on a side of the plurality of conveying belts (111) away from a product feeding end (4); and the flip module (12) is used to flip and move the product.
6. The automatic assembly line frame according to claim 5, characterized in that: The multiple conveyor belts (111) of the conveyor line group (11) near the product feeding end (4) cross the hot melt mechanism (2), and the multiple conveyor belts (111) of the conveyor line group (11) near the product discharging end (5) cross the pressing mechanism (3).
7. The automatic assembly line frame according to claim 5, characterized in that: The multiple conveyor belts (111) of the conveyor line groups (11) on both sides are staggered.
8. The automatic assembly line frame according to claim 5, characterized in that: A groove (13) is provided on the upper surface of the chassis shell (1); the hot melt mechanism (2), the pressing mechanism (3), the flip module (12) and the plurality of conveyor belts (111) are all located in the groove (13); and the conveyor belts (111) located at the product feeding end (4) and the product discharging end (5) are all passed through the chassis shell (1).
9. The automatic assembly line frame according to any one of claims 1 to 8, characterized in that: The product conveying mechanism is an enclosed structure, and the enclosed structure includes a closed enclosed structure and an unclosed enclosed structure; The closed enclosure structure includes a U-shaped closed enclosure structure, a circular closed enclosure structure, a triangular closed enclosure structure and a polygonal closed enclosure structure; The unclosed enclosure structure includes a U-shaped enclosure structure, a U-shaped unclosed enclosure structure, a circular unclosed enclosure structure, a triangular unclosed enclosure structure and a polygonal unclosed enclosure structure.
10. The automatic assembly line frame according to claim 9, characterized in that: The product conveying mechanism is a U-shaped enclosed structure.
Citation Information
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