Paper sheet shoe stretcher production equipment capable of alternately working

Through the paper shoe tree production equipment with alternating operation mode, the fully automated production of pulp shoe trees is achieved, which solves the problems of low production efficiency and high cost, improves production efficiency and reduces costs.

CN223407583UActive Publication Date: 2025-10-03WENZHOU RUILI INTELLIGENT TECH CO LTD
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Patent Information

Application Number
CN202521767834.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-20
Publication Date
2025-10-03
Estimated Expiration
2035-08-20

AI Technical Summary

Technical Problem

The existing pulp shoe tree production process is complex, time-consuming and costly, and requires the addition of additives, which affects production efficiency and economy.

Method used

The paper shoe tree production equipment adopts an alternating operation mode, which realizes fully automated production through the material storage component, vacuum adsorption component, gluing component and transmission component. Combined with the cylinder-driven pressing block alternating operation, it realizes the simultaneous feeding and forming.

Benefits of technology

It improves production efficiency, reduces feeding waiting time, reduces production costs, and does not require the addition of any additives, simplifying the process.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of shoe stretcher production, and discloses alternate operation paper shoe stretcher production equipment which comprises a processing table, fixing frames are fixedly connected to the top of the processing table, limiting strips are fixedly connected to the inner sides of the fixing frames, and storage assemblies are arranged above the right sides of the fixing frames. Through grooves are formed in the two sides of the top of the machining table and formed in the middle in the fixing frame, a groove is formed in the left side of the top of the machining table and formed in the top of the machining table, connecting bases are slidably connected into the through grooves, and connecting plates are fixedly connected to the tops of the connecting bases. Feeding frames are fixedly connected to the two sides of the top of the connecting plate and arranged between the limiting strips. According to the utility model, feeding is carried out while pressing forming is realized, the waiting time caused by stopping feeding is reduced, an alternate operation mode is adopted, and the production continuity and efficiency are effectively improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of shoe tree production, in particular to alternately operating paper shoe tree production equipment. Background Art

[0002] A shoe stretcher is a tool placed inside a shoe to maintain its shape and prevent deformation. Its shape fits snugly around the toe box or the shoe itself. While shoe stretchers are made from a variety of materials, paper pulp is widely used due to its low cost and biodegradability. However, using paper pulp as a raw material for shoe stretchers has several drawbacks, including the following:

[0003] Production process: The production of paper pulp shoe trees usually requires multiple processes such as pulping, blistering, drying, hot pressing, and cutting, which is a relatively complex process. During the pulping process, recycled paper needs to be beaten into a pulp with raw materials such as water. This process often uses a beating device, which is time-consuming and inefficient, affecting overall production efficiency.

[0004] Cost: Although the cost of pulp raw materials themselves is relatively low, due to its complex production process, a large amount of auxiliary materials, such as waterproofing agents, hardening agents, etc., need to be added during the production process to improve the performance of pulp shoe trees, which increases the production cost to a certain extent.

[0005] In order to solve the above problems, a paper shoe tree production device with alternating operation is proposed. Utility Model Content

[0006] The purpose of the utility model is to provide an alternating operation paper shoe tree production device, which solves the problems in the background technology of long time consumption, low efficiency, the need to add any additives, and increased production costs.

[0007] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: an alternating operation paper shoe tree production equipment, comprising a processing table, the top of the processing table is fixedly connected to a fixing frame, the inner sides of the fixing frames are fixedly connected to a limiting strip, a material storage assembly is provided on the upper right side of the fixing frame, through slots are provided on both sides of the top of the processing table, and the through slots are arranged in the middle of the fixing frame, a groove is provided on the left side of the top of the processing table, and the groove is provided on the top of the processing table, and a connecting seat is slidably connected in the through slots, the top of the connecting seat is fixedly connected to a connecting plate, both sides of the top of the connecting plate are fixedly connected to a feeding rack, and the feeding rack is arranged between the limiting strips, and vacuum adsorption assemblies are installed on the front and back of the right side of the bottom of the processing table, the top of the vacuum adsorption assembly passes through the processing table, and a hot melt glue machine is fixedly connected to the rear of the top of the processing table, and gluing assemblies are provided on the front and back of the left side of the top of the processing table, and the gluing assembly is arranged on the outside of the fixing frame, and the front and back of the top of the groove The top of described sliding seat is fixedly provided with a base, and the bottom of described sliding seat is fixedly provided with a base, and the bottom of described sliding seat is fixedly provided with a base.

[0008] By adopting the above technical solution, when the movable seat moves backward to the feeding position, the 1st, 3rd, 5th and 7th first cylinders from the back to the front contract to drive the pressure blocks to rise, and the 2nd, 4th, 6th and 8th first cylinders extend to drive the pressure blocks to press down and form, and feed at the same time; conversely, when the movable seat moves forward to the feeding position, the 2nd, 4th, 6th and 8th pressure blocks rise, and the 1st, 3rd, 5th and 7th pressure blocks are pressed down and formed and fed at the same time, thereby realizing that feeding is also carried out simultaneously during pressing down and forming, reducing the waiting time due to feeding stop and improving production efficiency.

[0009] As a further description of the above technical solution: the material storage component includes a paper rack, the bottom of the paper rack is fixedly connected to the fixed rack, two paper slots are opened in the paper rack, and the paper slots correspond to the two limit strips, and evenly distributed positioning columns are provided on the outside of the paper slots, and the bottom of the positioning columns is fixedly connected to the paper rack.

[0010] By adopting the above technical solution, the paper sheets can be conveniently stored through the storage component and can be ensured to be neatly stacked.

[0011] As a further description of the above technical solution: the vacuum adsorption assembly includes a third cylinder, the output end of the third cylinder is fixedly connected to the adsorption frame, and both sides of the top of the adsorption frame are fixedly connected to the first vacuum suction cup, and the first vacuum suction cup passes through the processing table and corresponds to the paper slot.

[0012] By adopting the above technical solution, the paper sheets can be easily extracted from the storage component through the vacuum adsorption component and placed on the feeding rack.

[0013] As a further description of the above technical solution: the gluing assembly includes a gluing rack, the bottom of the gluing rack is fixedly connected to the processing table, and the gluing rack is arranged on the outside of the fixed rack, and a gluing gun is fixedly connected to the outside of the gluing rack, and the gluing gun is arranged above between the two limit strips.

[0014] By adopting the above technical solution, the gluing component is coordinated with the hot melt glue machine, and the outside of the hot melt glue machine is connected to multiple glue guns through multiple glue hoses, which can meet the gluing needs of multiple positions. The glue gun is used to glue the paper so that the shoe stretcher can maintain its shape after being formed into the shoe stretcher through the pressing block and the forming mold.

[0015] As a further description of the above technical solution: the transmission assembly includes a motor and a second synchronous pulley, the output end of the motor is fixedly connected to the first synchronous pulley, and the first synchronous pulley and the second synchronous pulley are both provided with synchronous belts on the outside.

[0016] By adopting the above technical solution, the transmission assembly at the bottom of the mounting plate is installed, wherein the motor is fixedly connected to the outside of the mounting plate, and the second synchronous pulley is rotationally connected to the other side of the mounting plate. The exterior of the synchronous belt passes through the moving part and is fixedly connected thereto, so that the movement of the synchronous belt can drive the moving part to move. The transmission assembly at one end of the threaded rod is installed, wherein the motor is fixedly connected to the inside of the processing table, and the second synchronous pulley is fixedly connected to one end of the threaded rod. The synchronous belt can drive the second synchronous pulley and the threaded rod to rotate. The transmission assembly at the bottom of the processing table is installed, wherein the motor is fixedly connected to the bottom of the processing table, and the driven paper wheel is rotationally connected to the other side of the bottom of the processing table. The exterior of the synchronous belt passes through and is fixedly connected to the connecting seat.

[0017] As a further description of the above technical solution: the movable seat is penetrated by the groove and is slidably connected to the processing table, and the top of the movable seat is fixedly connected to the moving seat.

[0018] By adopting the above technical solution, two grooves are opened in the groove of the processing table, and the movable seat passes through the grooves, and the grooves play a role of limiting the movable seat.

[0019] As a further description of the above technical solution: two telescopic claws are fixedly connected to the left side and the middle of the top of the feeding rack.

[0020] By adopting the above technical solution, the telescopic claw can be telescoped and bounced up and down, and can pass through the bottom of the paper sheet through the telescopic claw, while pushing the paper sheet to move in the limit strip, thereby realizing the feeding of the paper sheet.

[0021] As a further description of the above technical solution: a conveyor belt is provided on the left side of the processing table, and a controller is fixedly connected to the front end of the top of the processing table.

[0022] By adopting the above technical solution, the conveyor belt is installed on the bracket, and the formed shoe trees can be transported by the conveyor belt.

[0023] Compared with the prior art, the beneficial effects of the present invention are as follows:

[0024] 1. The utility model provides an alternating operation paper shoe tree production equipment. First, when the movable seat moves backward to the feeding position, the 1st, 3rd, 5th and 7th first cylinders from the back to the front contract to drive the pressure blocks to rise, and the 2nd, 4th, 6th and 8th first cylinders extend to drive the pressure blocks to press down to form and feed at the same time. Conversely, when the movable seat moves forward to the feeding position, the 2nd, 4th, 6th and 8th pressure blocks rise, and the 1st, 3rd, 5th and 7th pressure blocks are pressed down to form and feed at the same time, so that feeding is carried out simultaneously during pressing down and forming, reducing the waiting time due to feeding stop. The alternating operation mode is adopted to effectively improve production continuity and efficiency.

[0025] 2. The utility model provides an alternating operation paper shoe tree production equipment. The raw paper used in the utility model can be obtained by purchasing a large area of ​​paper and then cutting it with a cutting device. It does not need to be time-consuming and inefficient like making shoe pulp, and does not need to add any additives, which also reduces production costs. In addition, through the material storage component, vacuum adsorption component, gluing component and transmission component, etc., it realizes fully automated production from raw material transportation, gluing, molding to discharging, thereby improving production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0027] Figure 2 This is a schematic diagram of the structure of the material storage component of the utility model;

[0028] Figure 3 This is a schematic diagram of the connecting seat structure of the utility model;

[0029] Figure 4 This is a schematic diagram of the transmission assembly structure of the utility model;

[0030] Figure 5 It is a side view of the utility model;

[0031] Figure 6 This is a top view of the processing table of the present utility model;

[0032] Figure 7 This is a structural schematic diagram of an assembly rack of the present utility model.

[0033] Figure: 1. Processing table; 2. Fixing frame; 3. Limiting strip; 4. Paper rack; 5. Paper slot; 6. Positioning column; 7. Through slot; 8. Groove; 9. Connecting seat; 10. Connecting plate; 11. Feeding rack; 12. Telescopic claw; 13. First vacuum suction cup; 14. Hot melt glue machine; 15. Glueing rack; 16. Glue gun; 17. Slide rail; 18. Slide seat; 19. Moving seat; 20. Motor; 21. First synchronous pulley ; 22. Second synchronous pulley; 23. Threaded rod; 24. Synchronous belt; 25. Movable seat; 26. Connecting frame; 27. Support frame; 28. First cylinder; 29. ​​Press block; 30. Forming mold; 31. Assembly frame; 32. Mounting plate; 33. Moving part; 34. Second cylinder; 35. Material picking rack; 36. Second vacuum suction cup; 37. Conveyor belt; 38. Controller; 39. Third cylinder; 40. Adsorption rack. DETAILED DESCRIPTION

[0034] The following will refer to the accompanying drawings of the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0035] In order to further understand the content of the present invention, the present invention is described in detail with reference to the accompanying drawings.

[0036] Reference Figure 1-7The utility model discloses an alternating operation paper shoe rack production equipment, comprising a processing table 1, and two fixing frames 2 are fixedly connected to the top of the processing table 1, and each fixing frame 2 is divided into two groups. Two limit bars 3 are fixedly connected to the inner sides of the two fixing frames 2, and the right end of the limit bar 3 is arc-shaped, so that the paper can be pushed into the groove formed between the limit bar 3 and the fixing frame 2. A storage assembly is provided on the upper right side of the two fixing frames 2, and through grooves 7 are provided on both sides of the top of the processing table 1, and the two through grooves 7 are provided in the middle of the fixing frame 2, and the through grooves 7 facilitate the movement of the connecting seat 9. A groove 8 is provided on the left side of the top of the processing table 1, and the groove 8 is provided on the top of the processing table 1. The groove 8 can ensure that the top of the forming mold 30 is flush with the feeding rack 11. A connecting seat 9 is slidably connected in the two through grooves 7, and the connecting seat 9 plays the role of fixed connection. A connecting plate 10 is fixedly connected to the top of the connecting base 9. A feed rack 11 is fixedly connected to both sides of the top of the connecting plate 10. A baffle for pushing paper sheets is installed at the right end of the feed rack 11, and a hole for the first vacuum suction cup 13 to pass through is opened on the right side of the feed rack 11. The feed rack 11 is set between two limit bars 3. Vacuum suction assemblies are installed on the front and back of the bottom right side of the processing table 1. The top of the vacuum suction assembly passes through the processing table 1. A hot melt adhesive machine 14 is fixedly connected to the back of the top of the processing table 1 to provide adhesive. Glueing assemblies are installed on the front and back of the top left side of the processing table 1. The glueing assemblies are installed on the outside of the two fixed frames 2. Two slide rails 17 are fixedly connected to the front and back of the top of the groove 8, and limit blocks are installed at both ends of the slide rails 17. Four slides 18 are slidably connected to the outside of the front and back slide rails 17, and the slides 18 can move along the slide rails 17. A movable seat 19 is fixedly connected to the top of the slide 18. A connecting frame 26 is fixedly connected to the front and back of the bottom of the groove 8, and the connecting frame 26 acts as a limiter. Threaded rods 23 are threaded through and rotatably connected to the two connecting frames 26. The outer rings of the two threaded rods 23 are threadedly connected to movable seats 25, which can be driven to move by the threaded rods 23. The tops of the two movable seats 19 are fixedly connected to support frames 27, which provide support and fixation. Four first cylinders 28 are fixedly connected to the tops of the two support frames 27. The output ends of the first cylinders 28 pass through the support frames 27 and are fixedly connected to pressure blocks 29. They are made of smooth and non-stick materials such as Teflon coating. This material can reduce the adhesion between the rubber and the surface of the pressure blocks 29, preventing adhesion. At the same time, the pressure blocks 29 precisely match the forming mold 30 during the pressing process. After the pressing is completed, the first cylinders 28 will drive the pressure blocks 29 to quickly reset, shortening the contact time between the pressure blocks 29 and the rubber layer, further reducing the possibility of adhesion. The first cylinders 28 can drive the pressure blocks 29 to move. Four forming molds 30 are fixedly connected to the top of the two movable seats 19, and the top of the forming molds 30 corresponds to the pressing blocks 29. The top of the forming molds 30 is provided with forming grooves corresponding to the pressing blocks 29. Assembly racks 31 are fixedly connected to the front and rear of the left side of the processing table 1, and the assembly racks 31 serve as fixed supports.The tops of the two assembly racks 31 are fixedly connected to mounting plates 32, which serve as a connection. A movable member 33 is provided at the bottom of the mounting plates 32. Guide rods are inserted through and slidably connected to both sides of the movable member 33, and the guide rods are fixedly connected to the mounting plates 32. A second cylinder 34 is fixedly connected to the bottom of the movable member 33. The output end of the second cylinder 34 is fixedly connected to a material picker 35, which can be driven to move up and down by the second cylinder 34. Second vacuum suction cups 36 are fixedly connected to the ends of the bottom of the material picker 35. Transmission assemblies are installed at the bottom of the mounting plates 32, one end of the threaded rod 23, and the bottom of the processing table 1. A movable seat 25 is inserted through a groove and slidably connected to the processing table 1. The top of the movable seat 25 is fixedly connected to the movable seat 19. Two telescopic claws 12 are fixedly connected to the left and middle parts of the top of the feeding rack 11. The right side of the telescopic claws 12 is curved to facilitate the passage of paper. A spring is installed inside the telescopic claws 12, which can retract and pass through paper when the telescopic claws 12 move to the right. A conveyor belt 37 is provided on the left side of the processing table 1 , through which the formed shoe trees can be transported. A controller 38 is fixedly connected to the front end of the top of the processing table 1 .

[0037] Reference Figure 2 、 Figure 4 and Figure 3 The storage assembly includes a paper rack 4, the bottom of which is fixedly connected to the fixed frame 2. Two paper slots 5 are provided in the paper rack 4, and the paper slots 5 correspond to the two limit bars 3. Evenly distributed positioning columns 6 are provided on the outside of the paper slots 5, and the bottom of the positioning columns 6 is fixedly connected to the paper rack 4. The storage assembly can conveniently store paper and ensure that the paper is neatly stacked. The vacuum adsorption assembly includes a third cylinder 39, the output end of the third cylinder 39 is fixedly connected to the adsorption frame 40, and the top two sides of the adsorption frame 40 are fixedly connected to the first vacuum suction cup 13. The first vacuum suction cup 13 passes through the processing table 1 and corresponds to the paper slots 5. The vacuum adsorption assembly can conveniently extract paper from the storage assembly and place it on the feeding rack 11.

[0038] Reference Figure 1-7The gluing assembly includes a gluing frame 15, the bottom of which is fixedly connected to the processing table 1 and is arranged on the outside of the fixed frame 2. Two glue guns 16 are fixedly connected to the outside of the gluing frame 15, and the glue guns 16 are arranged above and between the two limit bars 3. The gluing assembly cooperates with the hot melt glue machine 14. The outside of the hot melt glue machine 14 is connected to multiple glue guns 16 through multiple glue hoses to meet the gluing needs of multiple positions. The glue guns 16 are used to glue the paper so that the shoe tree can maintain its shape after being formed into the shoe tree by the pressing block 29 and the forming mold 30. The transmission assembly includes a motor 20 and a second synchronous pulley 22. The output end of the motor 20 is fixedly connected to the first synchronous pulley 21. The first synchronous pulley 21 and the second synchronous pulley 22 are both provided with a synchronous belt 24 on the outside, and the first synchronous pulley 21 and the second synchronous pulley 22 are meshed with the synchronous belt 24.

[0039] Working Principle: The material storage assembly provides sufficient and neatly organized raw materials for production. A paper rack 4 is fixed to the fixed frame 2. Two paper slots 5 within it are used to store the paper sheets to be processed. These slots 5 align with the stop bars 3 on the inside of the fixed frame 2, ensuring that the paper sheets precisely enter the designated track during subsequent feeding. Evenly distributed positioning posts 6 on the outer sides of the slots 5 limit the stacked paper sheets, preventing them from skewing and ensuring neat stacking, paving the way for the smooth progress of subsequent processes. The feeding process is driven by the transmission assembly, which cooperates with the vacuum suction assembly and the feed rack 11. In the transmission assembly at the bottom of the processing table 1, the motor 20 rotates the first synchronous pulley 21. This first synchronous pulley 21 drives the second synchronous pulley 22 via a synchronous belt 24. The synchronous belt 24 is fixedly connected to the connecting base 9, which in turn drives the connecting base 9 to slide within the through slot 7. The connecting plate 10 on top of the connecting base 9 moves accordingly, and the feed rack 11 on the connecting plate 10 moves synchronously to the right between the two stop bars 3. When the right side of the feeding rack 11 reaches above the first vacuum suction cup 13, the vacuum adsorption assembly is started, and the third cylinder 39 pushes the adsorption rack 40 to rise, so that the first vacuum suction cup 13 passes through the processing table 1 and the feeding rack 11 and contacts the paper in the paper slot 5. The first vacuum suction cup 13 generates suction to pull the paper out of the storage assembly and the first vacuum suction cup 13 is retracted to place the paper above the right side of the feeding rack 11. Then the transmission assembly is started to drive the feeding rack 11 to move to the left. During the movement, the baffle on the right side of the feeding rack 11 (not marked in the figure) pushes the paper into the groove between the limit strip 3 and the fixed frame 2 and moves to the left. Then the transmission assembly drives the feeding rack 11 to move right again. During the right movement, the two telescopic claws 12 in the middle of the feeding rack 11 shrink and pass through the bottom of the paper. The paper reaches between the two telescopic claws 12. At the same time, the first vacuum suction cup 13 absorbs the paper again and enters the right side of the feeding rack 11. By analogy, the reciprocating motion of the feeding rack 11 can be realized while pushing the paper to move to the left. When the paper moves to the position below the glue gun 16, the paper is glued so that the paper can maintain a stable configuration after being subsequently formed into a shoe stretcher. Finally, the paper sheet is pushed onto the top of the forming groove of the forming mold 30. The first cylinder 28 drives the pressing block 29 down to fit into the forming groove, extruding the paper sheet. The motor 20 drives the first synchronous pulley 21 to rotate, and the synchronous belt 24 drives the second synchronous pulley 22 and the threaded rod 23 to rotate within the connecting frame 26. The threaded rod 23 drives the movable seat 25, which is threaded on the outer ring, to move. The top of the movable seat 25 is fixedly connected to the movable seat 19. The movable seat 25 passes through a groove (not marked in the figure) in the groove 8 of the processing table 1 and is slidably connected. Driven by the threaded rod 23, the movable seat 19 can slide back and forth on the slide rail 17 via the slide seat 18 at the bottom.When the moving seat 19 moves backward to the feeding position, the 1st, 3rd, 5th and 7th first cylinders 28 from the back to the front contract and drive the pressure blocks 29 to rise, and the 2nd, 4th, 6th and 8th first cylinders 28 extend to drive the pressure blocks 29 to press down and form, and feed at the same time. Conversely, when the moving seat 19 moves forward to the feeding position, the 2nd, 4th, 6th and 8th pressure blocks 29 rise, and the 1st, 3rd, 5th and 7th pressure blocks 29 press down and form and feed at the same time, thereby realizing that feeding is also carried out simultaneously during press-down forming, reducing the waiting time due to feeding stop, adopting the alternating operation mode, and effectively improving the production continuity and efficiency. When taking materials, in the transmission assembly at the bottom of the mounting plate 32, the motor 20 works to drive the synchronous belt 24 to move, thereby driving the moving part 33 to move right along the guide rods (not marked in the figure) installed on both sides of the bottom of the mounting plate 32. The second cylinder 34 at the bottom of the moving member 33 moves accordingly. When it reaches above the finished shoe stretcher, the second cylinder 34 extends, pushing the picker 35 downward. Second vacuum cups 36 at the ends of the picker 35 contact the shoe stretcher and generate suction, holding it in place. The second cylinder 34 then retracts, and the moving member 33, driven by the transmission assembly, moves the shoe stretcher onto the conveyor belt 37, completing the shoe stretcher processing.

[0040] It should be noted that, in this document, relational terms such as first and second, etc., are used only to distinguish one entity or operation from another entity or operation, and do not necessarily require or imply any actual relationship or order between these entities or operations. Moreover, the terms "comprises," "comprising," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that includes a list of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or apparatus.

[0041] Although the embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A paper shoe tree production device with alternating operation, comprising a processing table (1), characterized in that: The top of the processing table (1) is fixedly connected to a fixed frame (2), the inner side of the fixed frame (2) is fixedly connected to a limit strip (3), a material storage component is provided on the upper right side of the fixed frame (2), a groove (8) is provided on the left side of the top of the processing table (1), and the groove (8) is provided on the top of the processing table (1), vacuum adsorption components are installed on the front and rear sides of the right side of the bottom of the processing table (1), the top of the vacuum adsorption component passes through the processing table (1), a hot melt glue machine (14) is fixedly connected to the rear side of the top of the processing table (1), a glue assembly is provided on the front and rear sides of the left side of the top of the processing table (1), and the glue assembly is provided on the outside of the fixed frame (2), the front and rear sides of the top of the groove (8) are fixedly connected to a slide rail (17), the outside of the front and rear slide rails (17) are slidably connected to a slide seat (18), the top of the slide seat (18) is fixedly connected to a moving seat (19), the front and rear sides of the bottom of the groove (8) are fixedly connected to the slide rail (17), the outside of the front and rear slide rails (17) are slidably connected to the slide seat (18), the top of the slide seat (18) is fixedly connected to the moving seat (19), the front and rear sides of the bottom of the groove (8) are fixedly connected to the slide rail (17), the front and rear sides of the slide rails (17) are fixedly connected to the sliding seat (18), the top of the sliding ... A connecting frame (26) is fixedly connected, a threaded rod (23) is passed through and rotatably connected to the connecting frame (26), the outer ring of the threaded rod (23) is threadedly connected to a movable seat (25), the top of the movable seat (19) is fixedly connected to a support frame (27), the top of the support frame (27) is fixedly connected to a first cylinder (28), the output end of the first cylinder (28) passes through the support frame (27) and is fixedly connected to a pressing block (29), the top of the movable seat (19) is fixedly connected to a forming mold (30), and the top of the forming mold (30) corresponds to the pressing block (29), the front and rear sides of the left side of the processing table (1) are fixedly connected to an assembly frame (31), the top of the assembly frame (31) is fixedly connected to a mounting plate (32), the bottom of the mounting plate (32) is provided with a moving part (33), and the bottom of the mounting plate (32), one end of the threaded rod (23) and the bottom of the processing table (1) are all equipped with a transmission assembly.

2. The alternating operation paper shoe tree production equipment according to claim 1, characterized in that: The material storage assembly comprises a paper rack (4), the bottom of the paper rack (4) is fixedly connected to the fixed rack (2), two paper slots (5) are provided in the paper rack (4), and the paper slots (5) correspond to the two limit bars (3), and evenly distributed positioning columns (6) are provided on the outside of the paper slots (5), and the bottom of the positioning columns (6) is fixedly connected to the paper rack (4).

3. The alternate operation paper shoe tree production equipment according to claim 1, characterized in that: The vacuum adsorption assembly comprises a third cylinder (39), an output end of the third cylinder (39) is fixedly connected to an adsorption frame (40), and both sides of the top of the adsorption frame (40) are fixedly connected to first vacuum suction cups (13), and the first vacuum suction cups (13) pass through the processing table (1) and correspond to the paper slots (5).

4. The alternate operation paper shoe tree production equipment according to claim 1, characterized in that: The gluing assembly comprises a gluing frame (15), the bottom of the gluing frame (15) is fixedly connected to the processing table (1), and the gluing frame (15) is arranged outside the fixing frame (2), and a gluing gun (16) is fixedly connected to the outside of the gluing frame (15), and the gluing gun (16) is arranged above between the two limit bars (3).

5. The alternate operation paper shoe tree production equipment according to claim 1, characterized in that: The transmission assembly comprises a motor (20) and a second synchronous pulley (22); the output end of the motor (20) is fixedly connected to the first synchronous pulley (21); and the first synchronous pulley (21) and the second synchronous pulley (22) are both provided with synchronous belts (24) on their exteriors.

6. The alternate operation paper shoe tree production equipment according to claim 1, characterized in that: The movable seat (25) passes through the groove and is slidably connected to the processing table (1), and the top of the movable seat (25) is fixedly connected to the moving seat (19).

7. The alternate operation paper shoe tree production equipment according to claim 1, characterized in that: The bottom of the movable member (33) is fixedly connected to a second cylinder (34), the output end of the second cylinder (34) is fixedly connected to a material taking rack (35), and both ends of the bottom of the material taking rack (35) are fixedly connected to second vacuum suction cups (36).

8. The alternate operation paper shoe tree production equipment according to claim 1, characterized in that: A conveyor belt (37) is provided on the left side of the processing table (1), and a controller (38) is fixedly connected to the front end of the top of the processing table (1).

9. The alternate operation paper shoe tree production equipment according to claim 1, characterized in that: Through slots (7) are provided on both sides of the top of the processing table (1), and the two through slots (7) are arranged in the middle of the fixed frame (2). Connecting seats (9) are slidably connected in the two through slots (7). A connecting plate (10) is fixedly connected to the top of the connecting seat (9). A feeding rack (11) is fixedly connected to both sides of the top of the connecting plate (10). The feeding rack (11) is arranged between the two limit bars (3). Two telescopic claws (12) are fixedly connected to the left side and the middle of the top of the feeding rack (11).