Sole thermal forming device
The automated injection, heating, and cooling processes of the shoe sole thermoforming device solve the problem of low efficiency in traditional shoe sole processing, achieving highly efficient automated production.
Patent Information
- Application Number
- CN202422953213.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-30
- Publication Date
- 2025-10-21
- Estimated Expiration
- 2034-11-30
AI Technical Summary
Traditional shoe sole processing requires a lot of manpower and resources, resulting in low processing efficiency and high repetitiveness of manual operations.
The shoe sole thermoforming device, including a feeding mechanism, a pressing mechanism, and a discharging mechanism, achieves automated production of shoe soles through automated injection molding, heating, cooling, and transportation processes.
It significantly improves the efficiency of shoe sole processing, reduces the involvement of manpower and material resources, and realizes automated molding, transportation and collection, thereby improving production efficiency.
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Figure CN223456361U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application relates to the technical field of shoe sole processing equipment, in particular to a shoe sole hot forming device. BACKGROUND
[0002] A traditional shoe sole processing procedure is as follows: a mold is heated to a certain temperature by manpower, and then rubber is put into the mold to be extruded and formed by the upper and lower molds. The formed shoe sole is cooled, taken out of the upper and lower molds, and then collected by manpower and put into a material box. This process needs to consume a large amount of manpower and material resources, and the processing efficiency is reduced due to long-time work of workers. Therefore, further improvement can be made. CONTENT OF THE UTILITY MODEL
[0003] In order to improve the processing efficiency of shoe sole production, the application provides a shoe sole hot forming device.
[0004] The shoe sole hot forming device provided by the application adopts the following technical scheme:
[0005] A shoe sole hot forming device comprises a processing rack with a controller, wherein a discharging mechanism, a sole pressing mechanism and a feeding mechanism are arranged in the processing rack, the discharging mechanism is arranged on one side of the sole pressing mechanism, and the discharging mechanism is arranged on the side, away from the discharging mechanism, of the sole pressing mechanism.
[0006] The feeding mechanism is used for injecting shoe sole material into the sole pressing mechanism.
[0007] The sole pressing mechanism is used for manufacturing a formed shoe sole.
[0008] The discharging mechanism is used for transporting and collecting the manufactured formed shoe sole.
[0009] By adopting the above technical scheme, in the shoe sole manufacturing process, the feeding mechanism is used for injecting the shoe sole material into the sole pressing mechanism, the sole pressing mechanism is used for processing the material into a shoe sole, and then the discharging mechanism is used for transporting and collecting the manufactured formed shoe sole. Compared with the processing efficiency of the shoe sole processing by manpower, the processing efficiency of the shoe sole processing is greatly improved, and a large amount of manpower and material resources is not needed.
[0010] Optionally, the sole pressing mechanism comprises a first fixed plate and a second fixed plate, the second fixed plate is symmetrically arranged with the first fixed plate, and the second fixed plate can be arranged to be attached to or away from the first fixed plate.
[0011] The first fixed plate is provided with a plurality of shoe molds, the shoe molds can be arranged on the first fixed plate, the feeding mechanism is arranged on the side, away from the second fixed plate, of the first fixed plate, and the feeding mechanism respectively injects the shoe sole material into the plurality of shoe molds.
[0012] The second fixed plate is provided with a plurality of movable shoe molds, which are arranged on the side of the second fixed plate close to the first fixed plate and can be combined with the fixed shoe molds.
[0013] By adopting the above technical scheme, when the shoe sole is made, the second fixed plate is close to the first fixed plate, so that the fixed shoe molds on the first fixed plate are combined with the movable shoe molds on the second fixed plate.
[0014] Optionally, the second fixed plate is provided with a first driving mechanism for driving the movable shoe molds on the second fixed plate to combine with or separate from the fixed shoe molds on the first fixed plate.
[0015] By adopting the above technical scheme, the first driving mechanism is used to drive the second fixed plate to move close to or away from the first fixed plate, so as to combine or separate the fixed shoe molds and the movable shoe molds, instead of manual repetitive operation.
[0016] Optionally, the side of the first fixed plate away from the second fixed plate is provided with a plurality of feeding mold guns, and the plurality of feeding mold guns are arranged one-to-one corresponding to the plurality of fixed shoe molds.
[0017] The fixed shoe mold is provided with a feeding port and a water inlet close to the feeding mold gun, and the feeding mold gun is inserted into the feeding port.
[0018] The processing rack is also provided with a hot pipeline filled with high-temperature gas, and the hot pipeline is provided with a plurality of gas outlets.
[0019] The feeding mold gun is provided with an injection port and an air inlet, the injection port is communicated with the feeding mechanism through a pipeline, and the air inlet is communicated with the gas outlet through a pipeline.
[0020] By adopting the above technical scheme, before the shoe sole is made, the feeding mold gun is inserted into the fixed shoe mold through the feeding port, the feeding mechanism injects the material for making the shoe sole into the feeding mold gun through the injection port on the feeding mold gun, so that the material for making the shoe sole is sent into the fixed shoe mold through the feeding mold gun, then the hot pipeline sends the high-temperature gas into the fixed shoe mold through the air inlet, and the shoe sole is formed by high-temperature heating.
[0021] Optionally, the processing rack is also provided with a water pump with cooling water, the water pump is located on the side of the first fixed plate away from the second fixed plate, the water inlet is communicated with the water pump through a pipeline, and the shoe sole formed by heating in the fixed shoe mold is cooled by the cooling water and demolded by the impact of the cooling water.
[0022] Through the above technical scheme, the sole formed by high-temperature heating in the shoe fixing mold is cooled by the cooling water brought by the water pump from the water inlet into the shoe fixing mold, and the sole is impacted and demolded by the cooling water, and the demolded sole falls into the feeding mechanism.
[0023] Optionally, the discharging mechanism comprises a discharging conveying box, the discharging conveying box is located at the bottom of the sole pressing mechanism, a conveying assembly is arranged on the discharging conveying box, the conveying assembly is used for receiving and conveying the sole formed in the sole pressing mechanism, and a second driving mechanism is arranged at the bottom of the discharging conveying box, the second driving mechanism is used for pushing the discharging conveying box out of the processing rack or pulling the discharging conveying box back into the processing rack.
[0024] Through the above technical scheme, the sole formed by high-temperature heating in the shoe fixing mold is cooled by the cooling water brought by the water pump from the water inlet into the shoe fixing mold, and the sole is impacted and demolded by the cooling water, and the demolded sole falls into the feeding mechanism.
[0025] Optionally, the discharging conveying box is provided with a collecting mechanism at one end away from the sole pressing mechanism, the collecting mechanism comprises a collecting box, and a collecting plate is arranged in the collecting box, the collecting plate is used for receiving the sole conveyed from the conveying assembly.
[0026] Through the above technical scheme, the conveying assembly and the collecting box are matched, the conveying assembly is used for automatically conveying the sole, and the sole is collected on the collecting plate in the collecting box, so that the sole does not need to be collected by manpower, and the collection efficiency is improved.
[0027] Optionally, a plurality of first water filtering holes are formed in the collecting plate, and a first water outlet is formed in the collecting box.
[0028] Through the above technical scheme, the sole cooled by the cooling water and impacted by the cooling water is wet, the wet sole is conveyed from the conveying assembly to the collecting plate, the water on the sole falls into the collecting box through the first water filtering holes, and finally the water is discharged through the first water outlet, so that the wet sole is preliminarily dried.
[0029] In summary, the present application has at least one of the following beneficial technical effects:
[0030] 1. In the sole manufacturing process, the material for manufacturing the sole is injected into the sole pressing mechanism by the feeding mechanism, the material is processed into the sole by the sole pressing mechanism, and then the formed sole is conveyed and collected by the discharging mechanism, so that the processing efficiency of the sole is greatly improved, and a large amount of manpower and material resources are not needed.
[0031] 2. When the shoe sole is made before processing, the feeding mold gun is inserted into the shoe fixing mold through the feeding port, the feeding mechanism injects the material for making the shoe sole into the feeding mold gun through the injection port of the feeding mold gun, so that the material for making the shoe sole is sent into the shoe fixing mold through the feeding mold gun, then the high-temperature gas is sent into the shoe fixing mold from the feeding mold gun through the air inlet of the heat pipe, and the shoe sole is formed by high-temperature heating;
[0032] 3. The water adhered to the shoe sole impacted by the cooling water is cooled and the shoe sole with the adhered water is conveyed from the conveying assembly to the collection plate, the water on the shoe sole falls into the collection box through the first water filtering hole, and finally is discharged through the first water outlet, so that the shoe sole with the adhered water is preliminarily dried. BRIEF DESCRIPTION OF DRAWINGS
[0033] Figure 1 is a schematic diagram of the whole structure in the process of making a shoe sole in the embodiment of the application.
[0034] Figure 2 is a schematic diagram of the whole structure in the process of conveying a shoe sole in the embodiment of the application.
[0035] Figure 3 is a schematic diagram of the whole structure in the process of removing part of the processing rack on one side in the embodiment of the application.
[0036] Figure 4 is a schematic diagram of the whole structure in the process of removing part of the processing rack on the other side in the embodiment of the application.
[0037] Figure 5 is a partial sectional view of the collection mechanism in the embodiment of the application.
[0038] BRIEF DESCRIPTION OF DRAWINGS
[0039] 1, processing rack; 2, discharging mechanism; 21, discharging conveying box; 22, conveying assembly; 221, conveying roller; 222, supporting block; 223, conveying belt; 23, third driving mechanism; 24, protective shell; 25, moving seat; 251, wheel; 26, second driving mechanism; 3, sole pressing mechanism; 31, first fixed plate; 32, second fixed plate; 33, shoe fixing mold; 331, feeding port; 332, water inlet; 34, shoe moving mold; 35, first supporting plate; 36, second supporting plate; 37, third supporting plate; 38, first driving mechanism; 4, feeding mechanism; 5, feeding mold gun; 51, injection port; 52, air inlet; 6, heat pipe; 61, air outlet connector; 7, water pump; 8, sliding rail; 9, collection mechanism; 91, collection box; 92, collection plate; 93, first inclined slope; 94, second inclined slope; 95, first water outlet; 96, second water outlet. DETAILED DESCRIPTION
[0040] The following will be described in detail with reference to the accompanying drawings Figures 1-5The application is further described in detail.
[0041] The application discloses a shoe sole hot forming device.
[0042] Referring to Figure 1 , 2 The shoe sole hot forming device comprises a processing rack 1, through holes are formed in both ends of the processing rack 1 along the length direction of the processing rack 1, a controller is arranged on one end of the processing rack 1, and a discharging mechanism 2, a sole pressing mechanism 3 and a feeding mechanism 4 are sequentially arranged in the processing rack 1 along the length direction of the processing rack 1.
[0043] In the actual shoe sole manufacturing process, the material for manufacturing the shoe sole is injected into the sole pressing mechanism 3 by the feeding mechanism 4, the material is processed into the shoe sole by the sole pressing mechanism 3, and then the processed shoe sole is transported and collected by the discharging mechanism 2, so that the processing efficiency of the shoe sole is greatly improved compared with manual processing of the shoe sole, and a large amount of manpower and material resources are not required.
[0044] Referring to Figure 3 , 4 Specifically, in the embodiment, the sole pressing mechanism 3 comprises a first fixed plate 31 and a second fixed plate 32 which are rectangular, the first fixed plate 31 and the second fixed plate 32 are arranged on the same horizontal line and symmetrically, six groups of fixed shoe molds 33 are arranged on the side of the first fixed plate 31 close to the second fixed plate 32, the six groups of fixed shoe molds 33 are divided into two rows, three groups of fixed shoe molds 33 are arranged at intervals in each row, six groups of movable shoe molds 34 are arranged on the side of the second fixed plate 32 close to the first fixed plate 31, the six groups of movable shoe molds 34 are also divided into two rows, three groups of movable shoe molds 34 are arranged at intervals in each row, and each group of movable shoe molds 34 is arranged in one-to-one correspondence with each group of fixed shoe molds 33.
[0045] A first support plate 35 is arranged at the bottom of the first fixed plate 31, two groups of second support plates 36 are arranged on the side of the first fixed plate 31 away from the second fixed plate 32, the two groups of second support plates 36 are respectively arranged on the inner walls of the processing rack 1, a third support plate 37 is arranged on the side of the second fixed plate 32 away from the first fixed plate 31, the second fixed plate 32 is fixedly arranged on the third support plate 37, and first driving mechanisms 38 are arranged between the two ends of the third support plate 37 close to the first fixed plate 31 and the two groups of second support plates 36, so that the second fixed plate 32 on the third support plate 37 is driven to move towards or away from the position of the first fixed plate 31 under the action of the first driving mechanisms 38, thereby realizing the mold closing or mold opening setting between the movable shoe molds 34 and the fixed shoe molds 33. In the embodiment, the first driving mechanism 38 adopts a multi-section telescopic air cylinder as a driving mechanism.
[0046] Referring to Figure 3 , 4Specifically, in the embodiment, the first fixed plate 31 is provided with a through installation opening for installing the shoe mold 33, and the shoe mold 33 is provided with a feeding opening 331 and a water inlet 332 away from the second fixed plate 32. In the embodiment, two shoe molds are arranged in each group of shoe molds 33, and therefore, the feeding opening 331 is two;
[0047] The first fixed plate 31 is provided with twelve feeding mold guns 5 away from the second fixed plate 32. The feeding mold gun 5 is inserted into the shoe mold 33 through the feeding opening 331 to prepare for feeding. The feeding mold gun 5 is provided with an injection opening 51 and an air inlet 52. When the shoe mold 33 and the movable shoe mold 34 are combined, the feeding mechanism 4 is communicated with the injection opening 51 through a pipeline, feeds into the feeding mold gun 5 from the injection opening 51, and then injects into the shoe mold 33 from the feeding mold gun 5. In the embodiment, the feeding mechanism 4 uses an injection molding machine in the prior art as a feeding carrier, and therefore, it is not expanded and explained.
[0048] The processing rack 1 is provided with a heat pipeline 6 on the top of the second support plate 36. The heat pipeline 6 is communicated with a device for providing high-temperature gas, so that the heat pipeline 6 is filled with high-temperature gas. The heat pipeline 6 is provided with three groups of air outlets 61. The air outlet 61 is communicated with the air inlet 52 of the feeding mold gun 5. After the injection mechanism injects the required material into the shoe mold 33, the high-temperature gas in the heat pipeline 6 enters the feeding mold gun 5 through the air inlet 52, and then is injected into the shoe mold 33 from the feeding mold gun 5. The high temperature makes the material for making the shoe sole be heated and formed into a shoe sole.
[0049] The processing rack 1 is provided with a water pump 7 away from the first fixed plate 31 on the second support plate 36. The water pump 7 can extract cooling water. The outlet of the water pump 7 is communicated with the water inlet 332 of the shoe mold 33 through a pipeline. After the shoe sole in the shoe mold 33 and the movable shoe mold 34 is hot plastic formed, the cooling water is injected into the shoe mold 33 from the water inlet 332 through the water pump 7, so as to cool the shoe sole. After the shoe sole is cooled, the movable shoe mold 34 and the shoe mold 33 are opened. The water pump 7 drives the cooling water to impact the shoe sole, so that the shoe sole is demolded from the shoe mold 33.
[0050] Referring to Figure 1 , 3, 5, specifically, in the embodiment, the discharging mechanism 2 comprises a discharging conveying box 21, the discharging conveying box 21 is located at the bottom of the first fixed plate 31, the top of the discharging conveying box 21 is provided with a conveying assembly 22 along the length direction of the discharging conveying box 21, the conveying assembly 22 comprises two interval conveying rollers 221 rotatably arranged along the length direction of the discharging conveying box 21, three supporting blocks 222 are arranged between the two conveying rollers 221, a conveying belt 223 is arranged on the two conveying rollers 221, the three supporting blocks 222 are respectively arranged in the conveying belt 223 and support the conveying belt 223, the bottom of the discharging conveying box 21 is provided with a third driving mechanism 23 near the first fixed plate 31, the third driving mechanism 23 is arranged at the bottom of the discharging conveying box 21 through a mounting shell, the driving end of the third driving mechanism 23 is provided with a driving gear, one end of the conveying roller 221 near the first fixed plate 31 side penetrates the side wall of the discharging conveying box 21 and is provided with a driven gear, the driving gear and the driven gear are connected through a chain transmission, the driving gear and the driven gear are provided with a protective shell 24, so that the third driving mechanism 23 drives the conveying roller 221 to rotate, so that the conveying belt 223 is driven, when the shoe sole in the fixed shoe mold 33 is demolded by the impact of the cooling water, the demolded shoe sole falls on the conveying belt 223, and the shoe sole is transported out of the processing rack 1 through the conveying belt 223;
[0051] In addition, in order to prevent the transported shoe sole on the conveying belt 223 from falling, the discharging conveying box 21 is provided with a baffle near one end of the first fixed plate 31 and on both sides thereof.
[0052] The bottom of the discharging conveying box 21 is provided with a moving seat 25, the moving seat 25 is provided with a second driving mechanism 26 near one end of the first fixed plate 31, the moving seat 25 is provided with a moving groove inwardly opening near one end of the first fixed plate 31, the driving end of the second driving mechanism 26 is inserted and fixed in the moving groove, so that the second driving mechanism 26 drives the moving seat 25 to perform extension and contraction movement, that is, the discharging conveying box 21 on the moving seat 25 is pushed out of or pulled back into the processing rack 1, in the embodiment, the second driving mechanism 26 adopts a multi-section telescopic cylinder as the driving mechanism;
[0053] In order to make the extension and contraction movement of the moving seat 25 more smooth, the bottom of the processing rack 1 is provided with a slide rail 8 along the length direction of the slide rail 8, one end of the slide rail 8 extends out of the processing rack 1, the moving seat 25 is provided with two groups of rotatable wheels 251 on both sides along the length direction of the moving seat 25, the wheels 251 are rotatably arranged on the slide rail 8, so that the moving seat 25 slides along the slide rail 8 through the wheels 251 under the action of the second driving mechanism 26.
[0054] Referring to Figure 1 , 3, 5, specifically, in the embodiment, the discharge conveying box 21 is provided with a collecting mechanism 9 away from one end of the second fixed plate 32, the collecting mechanism 9 comprises a collecting box 91, the collecting box 91 is fixedly connected with the moving seat 25, a collecting plate 92 is arranged in the collecting box 91 along the width direction of the collecting box 91, the collecting plate 92 is located at one end of the conveying belt 223, so that the soles on the conveying belt 223 are collected and processed.
[0055] In addition, since the soles are cooled and impacted by the cooling water for demolding, the soles are stained with the cooling water, in order to reduce the cooling water on the soles, a plurality of second water filtering holes are arranged on the conveying belt 223, a first inclined slope 93 is arranged on the bottom of the discharge conveying box 21 along the length direction of the discharge conveying box 21, the low part of the first inclined slope 93 is towards the side of the collecting box 91, a second water outlet 96 is arranged on the side of the collecting box 91 close to the first inclined slope 93, a plurality of second water filtering holes are arranged on the collecting plate 92, a second inclined slope 94 is arranged on the bottom of the collecting box 91 along the width direction of the collecting box 91, a first water outlet 95 is arranged on the side wall of the collecting box 91 at the low part of the second inclined slope 94, so that the soles stained with the cooling water falling on the conveying belt 223 are transported on the conveying belt 223, part of the cooling water on the soles drips from the second water filtering holes of the conveying belt 223 to the first inclined slope 93, flows into the collecting box 91 from the first inclined slope 93 through the second water outlet 96, when the soles are conveyed on the collecting plate 92 from the conveying belt 223, part of the cooling water on the soles drips from the first water filtering holes to the second inclined slope 94, and the cooling water in the first inclined slope 93 and the second inclined slope 94 is discharged from the first water outlet 95.
[0056] The implementation principle of the sole thermoforming device in the embodiment of the application is as follows: the second fixed plate 32 drives the second fixed plate 32 on the third support plate 37 to move towards the position of the first fixed plate 31 under the action of the first driving mechanism 38, so that the mold closing between the movable shoe mold 34 and the fixed shoe mold 33 is realized, after the mold closing, the feeding mold gun 5 is inserted into the fixed shoe mold 33, the feeding mechanism 4 is communicated with the injection port 51 through the pipeline, the feeding mechanism 4 feeds the material into the feeding mold gun 5 from the injection port 51, and then the material is injected into the fixed shoe mold 33 from the feeding mold gun 5, after the injection is completed, the high-temperature gas in the heat pipeline 6 enters the feeding mold gun 5 through the air inlet 52, and then the high-temperature gas is injected into the fixed shoe mold 33 from the feeding mold gun 5, so that the material for making soles is heated to a high temperature to form soles.
[0057] After the soles are made, the cooling water is injected into the fixed shoe mold 33 from the water inlet 332 by the water pump 7, so that the soles are cooled, after the soles are cooled, the mold opening between the movable shoe mold 34 and the fixed shoe mold 33 is realized, the cooling water is pressurized by the water pump 7 to impact the soles, so that the soles are demolded from the fixed shoe mold 33, after the soles in the fixed shoe mold 33 are impacted by the cooling water and demolded, the demolded soles fall on the conveying belt 223, and the soles are transported out of the processing rack 1 by the conveying belt 223.
[0058] The embodiments of the present application are preferred embodiments of the present application, and are not intended to limit the protection scope of the present application, wherein the same parts are denoted by the same reference numerals. Therefore, any equivalent changes made on the structure, shape, and principle of the present application should be covered by the protection scope of the present application.
Claims
1. A shoe sole thermoforming apparatus, characterized by: Including the processing frame (1) with controller, the processing frame (1) is provided with the discharging mechanism (2), the bottom pressing mechanism (3) and the feeding mechanism (4), the discharging mechanism (2) is located on the side of the bottom pressing mechanism (3), the discharging mechanism (2) is located on the side of the bottom pressing mechanism (3) away from the discharging mechanism (2); The feeding mechanism (4) is used for injection molding of shoe sole material into the bottom pressing mechanism (3); The bottom pressing mechanism (3) is used for making a shaped shoe sole; The discharging mechanism (2) is used for transporting and collecting the shaped shoe sole.
2. The shoe sole thermoforming apparatus of claim 1, wherein: The bottom pressing mechanism (3) includes a first fixed plate (31) and a second fixed plate (32), the second fixed plate (32) is symmetrically arranged with the first fixed plate (31), and the second fixed plate (32) can be arranged close to or away from the first fixed plate (31); A plurality of shoe molds (33) are arranged on the first fixed plate (31), the shoe molds (33) can be arranged on the first fixed plate (31), the feeding mechanism (4) is located on the side of the first fixed plate (31) away from the second fixed plate (32), and the feeding mechanism (4) respectively injects shoe sole material into a plurality of shoe molds (33); A plurality of movable shoe molds (34) are arranged on the second fixed plate (32), the movable shoe molds (34) are arranged on the side of the second fixed plate (32) close to the first fixed plate (31), and the movable shoe molds (34) can be combined with the fixed shoe molds (33).
3. A shoe sole thermoforming apparatus according to claim 2, wherein: A first driving mechanism (38) is arranged on the second fixed plate (32), the first driving mechanism (38) is used to drive the movable shoe molds (34) on the second fixed plate (32) to combine or separate with the fixed shoe molds (33) on the first fixed plate (31).
4. The shoe sole thermoforming apparatus of claim 2, wherein: A plurality of feeding mold guns (5) are arranged on the side of the first fixed plate (31) away from the second fixed plate (32), a plurality of feeding mold guns (5) are arranged one by one corresponding to a plurality of fixed shoe molds (33); The fixed shoe mold (33) is provided with an inlet (331) and a water inlet (332) close to the feeding mold gun (5), and the feeding mold gun (5) is inserted into the inlet (331); A hot water pipe (6) filled with high-temperature gas is further arranged on the processing frame (1), and a plurality of gas outlets (61) are arranged on the hot water pipe (6); An injection port (51) and an air inlet (52) are arranged on the feeding mold gun (5), the injection port (51) is communicated with the feeding mechanism (4) through a pipeline, and the air inlet (52) is communicated with the gas outlet (61) through a pipeline.
5. A shoe sole thermoforming apparatus according to claim 4, wherein: A water pump (7) with cooling water is further arranged on the processing frame (1), the water pump (7) is located on the side of the first fixed plate (31) away from the second fixed plate (32), the water inlet (332) is communicated with the water pump (7) through a pipeline, and the shoe sole heated and formed in the fixed shoe mold (33) is cooled and demolded by the cooling water.
6. The shoe sole thermoforming apparatus of claim 1, wherein: The discharging mechanism (2) comprises a discharging conveying box (21) located at the bottom of the bottom pressing mechanism (3), a conveying assembly (22) is arranged on the discharging conveying box (21), the conveying assembly (22) is used for receiving the bottom formed in the bottom pressing mechanism (3) and conveying, and a second driving mechanism (26) is arranged at the bottom of the discharging conveying box (21), the second driving mechanism (26) is used for pushing or pulling the discharging conveying box (21) out of or back into the processing rack (1).
7. A shoe sole thermoforming apparatus according to claim 6, wherein: The discharging conveying box (21) is provided with a collecting mechanism (9) at one end away from the bottom pressing mechanism (3), the collecting mechanism (9) comprises a collecting box (91), and a collecting plate (92) is arranged in the collecting box (91), the collecting plate (92) is used for receiving the bottom conveyed from the conveying assembly (22).
8. The shoe sole thermoforming apparatus of claim 7, wherein: A plurality of first water filtering holes are formed in the collecting plate (92), and a first water outlet (95) is formed in the collecting box (91).