Glue drying device for slipper production

By designing circulating airflow and flexible covers in the glue drying device for slipper production, the problem of uneven glue drying of slippers is solved, and high-quality drying effect and stable slipper production are achieved.

CN223081207UActive Publication Date: 2025-07-11FUJIAN KAIYUAN PLASTIC CO LTD
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Patent Information

Application Number
CN202422144474.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-02
Publication Date
2025-07-11
Estimated Expiration
2034-09-02

AI Technical Summary

Technical Problem

The existing glue drying device does not have the effect of drying slippers, and it is easy to cause cracking if the glue on some slippers is not thoroughly dried or excessively dried.

Method used

A glue drying device for slipper production is adopted, including a transportation component, a heating component and a fan component. By forming a circulating flow airflow in the heating space, the heat is uniformly distributed using the air guide plate, and a flexible shield is used to ensure that the slippers are evenly laid into the heating space with a single layer for glue drying.

Benefits of technology

The uniform glue drying treatment of slippers in the heating space is achieved, the quality of the glue is improved, the heat loss is reduced, and the loading and unloading is convenient, ensuring the quality stability of the slippers.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a glue drying device for slipper production, and relates to the technical field of slipper production, the glue drying device comprises a transportation assembly, a heating assembly and a fan assembly, and further comprises a machine body, and the machine body is internally provided with a cavity; the conveying assembly comprises a plurality of conveying rollers and a driving part; the conveying rollers are rotationally connected with the machine body; the driving piece can drive the multiple conveying rollers to rotate synchronously in the same direction. The heating assembly comprises a cover body and a heater; the fan assembly comprises a fan and a first air guide plate; the blowing direction of the fan is the same as the conveying direction; the first air guide plate is obliquely arranged, the oblique upper end of the first air guide plate is located below the outlet and close to the outlet, and the oblique lower end of the first air guide plate is located below the fan and close to the fan. According to the slipper glue drying device, glue drying treatment can be evenly and effectively conducted on slippers, and therefore the quality of the slippers subjected to glue drying treatment can be effectively guaranteed.
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Description

Technical Field

[0001] The present application relates to the technical field of slipper production, and in particular to a glue drying device for slipper production. Background Art

[0002] A slipper is a lightweight shoe designed for indoor or casual wear to provide comfort and convenience. Slippers are usually made of soft and breathable materials such as plastic, rubber, foam, cotton, or plush to suit different seasons and wearing needs.

[0003] During the production of slippers, the shoe body and the sole need to be bonded with glue, and the glue between the shoe body and the sole is dried by a glue drying device to ensure the quality of the bonding of the shoe body and the sole with glue, thereby ensuring the quality of the product after slipper production.

[0004] The existing glue drying device includes a transportation component, a heating component, and a fan component. The transportation component sends the slippers to be glue-dried into the heating component, and the fan component promotes the gas flow inside the heating component so that the slippers are subjected to glue drying treatment inside the heating component.

[0005] However, the existing glue drying device has a poor glue drying effect on slippers, and it is easy to have the situation that the glue on some slippers is not dried thoroughly or some slippers crack due to over-drying, which affects the quality of the slippers after glue drying treatment. Utility Model Content

[0006] The present application provides a glue drying device for slipper production, which can uniformly and effectively perform glue drying treatment on slippers, thereby effectively ensuring the quality of the slippers after glue drying treatment.

[0007] The present application provides a glue drying device for slipper production, adopting the following technical solutions:

[0008] A glue drying device for slipper production includes a transportation component, a heating component, and a fan component, and further includes a machine body. The interior of the machine body has an upward-opening cavity. The transportation component and the heating component are both arranged on the top of the machine body, and the fan component is arranged in the cavity;

[0009] The transportation component includes a plurality of transportation rollers and a driving member; the transportation rollers are rotatably connected to the machine body and are located at a position of the machine body close to the opening of the cavity. The rotation axes of the transportation rollers are horizontal and the rotation axes of the plurality of transportation rollers are parallel to each other; the driving member is arranged on the machine body and can drive the plurality of transportation rollers to rotate synchronously and in the same direction;

[0010] The heating component includes a cover body and a heater; an internal heating space is formed inside the cover body, an inlet and an outlet are formed at two ends of the cover body along the transportation direction of the heating space, and the heating space communicates with the cavity; the heater is disposed on the cover body and located in the heating space;

[0011] The fan component includes a fan and a first air deflector; the fan is disposed in the cavity near the inlet, and the blowing direction of the fan is the same as the transportation direction; the first air deflector is located on one side of the fan close to the outlet, the first air deflector is inclined, the upper inclined end of the first air deflector is located below and close to the outlet, and the lower inclined end of the first air deflector is located below and close to the fan.

[0012] By adopting the above technical solution, when the fan blows air, guided by the first air deflector, an air flow circulating in the heating space can be formed, so that the heat distribution in the heating space is more uniform, and thus the slippers can be subjected to more uniform rubber baking treatment in the heating space, thereby effectively ensuring the quality of the slippers after the rubber baking treatment.

[0013] Optionally, the fan component further includes a second air deflector, the second air deflector is located on one side of the fan close to the outlet, the second air deflector is inclined, the second air deflector is located above the fan, the upper inclined end of the second air deflector is close to the inlet, and an air inlet is formed between the lower inclined end of the second air deflector and the lower inclined end of the first air deflector.

[0014] By adopting the above technical solution, after the air blown by the fan enters from the air inlet, the gas circulation in the heating space can be further improved under the guidance of the first air deflector and the second air deflector, so that the slippers can be further subjected to more uniform rubber baking treatment in the heating space.

[0015] Optionally, the heating component further includes two flexible shielding members, and the two shielding members respectively cover the inlet and the outlet.

[0016] By adopting the above technical solution, the shielding member can allow the slippers to be transported through, and at the same time can reduce the heat loss in the heating space, so that the slippers can be stably and effectively subjected to rubber baking treatment in the heating space.

[0017] Optionally, the shielding member includes a blocking portion and a covering portion, and the covering portion is located on one side of the blocking portion close to the cavity; the flexibility of the covering portion is greater than that of the blocking portion, and the covering portion is bent and deformed under force and can only allow a single layer of slippers to pass through.

[0018] By adopting the above technical solution, the shielding member can not only keep the heat in the heating space warm, but also block the slippers being transported through the shielding member, so that the slippers can only enter the heating space in a single-layer stacked state, thereby further improving the effect of the baking treatment of the slippers in the heating space.

[0019] Optionally, the shielding member near the entrance is tilted, a side of the machine body near one end of the entrance is a loading location, and the shielding member is tilted along the transport direction toward a direction away from the loading location.

[0020] By adopting the above technical solution, after the slippers are loaded from the loading point, the stacked slippers come into contact with the shielding piece at the entrance, and the shielding piece can guide the stacked part of the slippers to be laid flat on top of the transport roller, making it convenient for the slippers to be sent into the heating space in a single-layer and evenly laid state for glue baking treatment.

[0021] Optionally, a first baffle is further included, which is arranged on the top of the machine body and located on the side of the machine body away from the loading point.

[0022] By adopting the above technical solution, the first baffle can prevent the slippers from falling on one side of the machine body, thereby reducing the probability of the slippers falling from the transport roller during the loading, transportation and paving processes.

[0023] Optionally, a side of the machine body close to one end of the outlet is a material unloading location, and the material unloading location and the material loading location are located on the same side of the machine body.

[0024] By adopting the above technical solution, it is convenient for workers to complete the loading and unloading of slippers on the same side of the machine body.

[0025] Optionally, it also includes a second baffle, which is arranged on the top of the machine body and located on the side of the cover body close to the unloading place; the second baffle is arranged at an angle, and the second baffle is inclined along the transportation direction toward the side close to the unloading place.

[0026] By adopting the above technical solution, the second baffle can guide the slippers after the baking and glue treatment to move toward the unloading location during transportation, thereby facilitating the unloading of the slippers after the baking and glue treatment at the designated location.

[0027] Optionally, one end of the second baffle plate close to the outlet is rotatably connected to the machine body, and the rotation axis of the second baffle plate is vertical.

[0028] By adopting the above technical solution, the position of the unloading point can be adjusted by controlling the rotation of the second baffle plate, so that the staff can conveniently change the unloading position of the slippers after the baking and glue treatment.

[0029] In summary, the present application includes at least one of the following beneficial effects:

[0030] 1. It can form a circulating airflow in the heating space, making the heat distribution in the heating space more uniform. As a result, the slippers can be subjected to more uniform baking treatment in the heating space, effectively ensuring the quality of the slippers after baking treatment.

[0031] 2. It can facilitate the feeding of slippers into the heating space in a single-layer and evenly laid state for baking treatment, further improving the effect of baking treatment on the slippers in the heating space.

[0032] 3. It can reduce the heat loss in the heating space, maintain a certain stability in the heating space, and improve the reliability of baking treatment of the slippers in the heating space.

[0033] 4. It can facilitate the staff to load and unload the slippers and can adjust the unloading position of the slippers according to requirements. BRIEF DESCRIPTION OF THE DRAWINGS

[0034] Figure 1 FIG. is a schematic structural diagram of a baking device for slipper production according to an embodiment of the present application;

[0035] Figure 2 is Figure 1 a cross-sectional view taken along the line A-A in ;

[0036] Figure 3 is Figure 2 a cross-sectional view taken along the line B-B in.

[0037] Description of the reference numerals: 1, body; 11, cavity; 12, loading area; 13, unloading area; 2, transportation component; 21, transportation roller; 22, driving member; 3, heating component; 31, cover body; 311, heating space; 312, inlet; 313, outlet; 32, heater; 33, shielding member; 331, blocking portion; 332, covering portion; 4, fan component; 41, fan; 42, first air guide plate; 43, second air guide plate; 5, first baffle; 6, second baffle. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0038] The following further describes the present application in detail with reference to the attached Figures 1 - 3 drawings.

[0039] Refer to Figure 1 and Figure 2The embodiment of the present application discloses a glue drying device for slipper production, comprising a machine body 1, a transport component 2, a heating component 3 and a fan component 4. The machine body 1 is used as a mounting carrier for other components; the transport component 2 is used to transport the slippers; the heating component 3 is used to heat the slippers so that the slippers are subjected to glue drying treatment; the fan component 4 is used to promote gas flow so that the glue drying treatment of the heating component 3 on the slippers is more complete and uniform.

[0040] The body 1 is in a rectangular parallelepiped structure as a whole, and has a cavity 11 with an opening facing upward inside the body 1 .

[0041] The transport assembly 2 includes a plurality of transport rollers 21 and a driving member 22 .

[0042] The transport roller 21 is a cylindrical rod-shaped structure as a whole, and is installed in a position close to the opening of the cavity 11; the two ends of the transport roller 21 in the axial direction are respectively rotatably connected to the body 1, and the rotation axis of the transport roller 21 coincides with its own axis and is parallel to the width direction of the body 1. Multiple transport rollers 21 are evenly distributed on the body 1 along the length direction of the body 1, and the spacing between adjacent transport rollers 21 is sufficient to prevent the slippers from falling into the cavity 11 during transportation.

[0043] There is a structure between the multiple transport rollers 21 for them to rotate synchronously and in the same direction. In this embodiment, since the structure for allowing the multiple transport rollers 21 to rotate synchronously and in the same direction is a common existing technology, such as a synchronous belt structure and a synchronous chain structure, etc., it will not be described in detail here, and the relevant structure is omitted in the drawings.

[0044] The driving member 22 is fixedly mounted on one side of the machine body 1 in the width direction, and can drive a transport roller 21 to rotate relative to the machine body 1, thereby driving multiple transport rollers 21 to rotate synchronously in the same direction, and at this time, the transport direction of the transport assembly 2 is parallel to the length direction of the machine body 1. In this embodiment, the driving member 22 is preferably a servo motor; since the servo motor is a common prior art, it will not be described in detail here, and it is only briefly shown in the drawings.

[0045] The heating assembly 3 is installed on the top of the machine body 1 , and is located in the middle of the machine body 1 along its length direction. The heating assembly 3 includes a cover 31 , a heater 32 and two shielding members 33 .

[0046] The cover body 31 is generally in a cuboid structure and is fixedly installed on the top of the machine body 1, and the length direction of the cover body 31 is parallel to the length direction of the machine body 1; inside the cover body 31, there is a heating space 311 for the slippers to be treated with baking glue, and the bottom of the heating space 311 can communicate with the cavity 11 through the space between multiple adjacent conveying rollers 21. At both ends of the heating space 311 in the length direction of the cover body 31, there are respectively formed an inlet 312 and an outlet 313 for the slippers to be conveyed in and out, so that the slippers can sequentially pass through the inlet 312, the heating space 311, and the outlet 313 under the conveyance of the conveying assembly 2.

[0047] On one side in the width direction of the machine body 1, there are a loading place 12 and an unloading place 13 for loading and unloading the slippers. The loading place 12 and the unloading place 13 are located on the same side of the machine body 1. The loading place 12 is located on one side in the length direction of the cover body 31 and is close to the inlet 312, and the unloading place 13 is located on the other side in the length direction of the cover body 31 and is close to the outlet 313.

[0048] The heater 32 is fixedly installed on the cover body 31 and is located in the heating space 311, and can heat the heating space 311. In this embodiment, preferably, the heater 32 is located at the top of the heating space 311, and the slippers entering the heating space 311 will maintain a certain distance from the heater 32 above them; since the heater 32 is an existing technology in the art, it will not be further limited here, and it is only briefly shown in the drawings.

[0049] The shielding member 33 is in a rectangular sheet structure. Two shielding members 33 are respectively fixedly installed at both ends in the length direction of the cover body 31 and respectively cover the inlet 312 and the outlet 313. The shielding member 33 as a whole has flexibility and a certain elastic deformation ability. Under normal conditions, the shielding member 33 can completely cover the corresponding inlet 312 and outlet 313 to reduce the heat loss in the heating space 311; when the slippers need to pass through the shielding member 33 under the conveyance of the conveying assembly 2, the force exerted by the slippers on the shielding member 33 can drive the shielding member 33 to bend and deform, so that the slippers can pass through the space formed between the bent shielding member 33 and the conveying roller 21.

[0050] The shielding member 33 includes a blocking portion 331 and a covering portion 332. The blocking portion 331 is fixedly connected to the housing, and the covering portion 332 is located at the bottom of the blocking portion 331 and is fixedly connected to the blocking portion 331. In this embodiment, preferably, both the blocking portion 331 and the covering portion 332 are made of rubber material, and the flexibility degree of the blocking portion 331 is less than that of the covering portion 332.

[0051] When the slippers are transported in a stacked state, the slippers at the bottom will contact the covering portion 332, and the acting force exerted on the covering portion 332 can drive the covering portion 332 to bend and deform and then pass through; while the other slippers will contact the blocking portion 331, and the acting force exerted on the blocking portion 331 can only drive the blocking portion 331 to bend slightly and cannot pass through. At this time, the shielding member 33 can limit the slippers from being transported into the heating space 311 in a single-layer distribution state.

[0052] Referring to Figure 1 and Figure 3 Fig., further preferably, the shielding member 33 located at the entrance 312 is installed obliquely, the length direction thereof is inclined with respect to the transportation direction of the slippers, and the length direction thereof is inclined in the direction away from the feeding place 12 along the transportation direction of the slippers.

[0053] At this time, if the slippers are transported through the entrance 312 into the heating space 311 in a stacked state, the slippers contacting the blocking portion 331 of the shielding member 33 at the entrance 312 will move along the inclined direction of the shielding member 33, so that the slippers can be evenly laid flat above the plurality of transport rollers 21, accelerating the speed of the slippers entering the heating space 311 through the shielding member 33, and at the same time helping the slippers to enter the heating space 311 in a single-layer and evenly laid flat state, which is helpful to improve the effect of subsequent baking glue treatment of the slippers.

[0054] Further, in order to reduce the probability that the slippers fall to the side of the machine body 1 away from the feeding place 12 and the discharging place 13 during the transportation process due to the blocking of the shielding member 33 at the entrance 312 and during the subsequent transportation after leaving the heating assembly 3, preferably, a first baffle 5 is further fixedly installed on the machine body 1, and preferably, two first baffles 5 are installed on the machine body 1 in total.

[0055] The first baffle 5 is integrally in a rectangular plate-like structure. The two first baffles 5 are respectively located on the side of the machine body 1 away from the feeding place 12 and on the side of the machine body 1 away from the discharging place 13. The first baffle 5 is installed in a vertical state, and the length direction of the first baffle 5 is parallel to the length direction of the machine body 1.

[0056] Further, in order to facilitate the discharging of the slippers at the discharging place 13 after the baking glue treatment of the slippers, preferably, a second baffle 6 for guiding the discharging of the slippers is further installed on the machine body 1.

[0057] The second baffle 6 is a rectangular plate-shaped structure as a whole. The second baffle 6 is located above the machine body 1. One end of the second baffle 6 in the length direction is rotatably connected to the side of the machine body 1 away from the unloading place 13. The rotation axis of the second baffle 6 is vertical and parallel to its own width direction. During the rotation of the second baffle 6 relative to the machine body 1, the length direction of the second baffle 6 remains inclined relative to the transportation direction of the slippers. The end of the second baffle 6 away from its own rotation axis remains above the side of the machine body 1 close to the unloading place 13, and the second baffle 6 is inclined along the transportation direction of the slippers toward the side close to the unloading place 13.

[0058] At this time, the slippers leaving the heating space 311 through the outlet 313 can contact the second baffle 6 under the transportation of the transport component 2, and move along the inclined direction of the second baffle 6 toward the direction close to the unloading place 13 under the guidance of the second baffle 6; and, the staff can control the second baffle 6 to rotate relative to the machine body 1 according to needs, so that the slippers can be unloaded at the specified position of the unloading place 13.

[0059] Reference Figure 2 and Figure 3 The fan assembly 4 includes a fan 41 , a first air guide plate 42 and a second air guide plate 43 .

[0060] The fan 41 is fixedly mounted on the body 1 and is located in the cavity 11, and is located at one end of the cavity 11 in the length direction close to the feeding position 12, and the fan 41 can blow out gas in a direction parallel to the length direction of the body 1. In this embodiment, since the fan 41 is a common prior art, it is not described here, and it is only briefly shown in the drawings.

[0061] The first air guide plate 42 is a rectangular plate-shaped structure as a whole. The first air guide plate 42 is fixedly mounted on the body 1 and is located in the cavity 11, and the first air guide plate 42 is installed obliquely in the cavity 11. The first air guide plate 42 is located on the side of the fan 41 close to the heating assembly 3, the width direction of the first air guide plate 42 is parallel to the width direction of the body 1, the length direction of the first air guide plate 42 is inclined relative to the length direction of the body 1, and the first air guide plate 42 is inclined upward along the transportation direction of the slippers. In this embodiment, the inclined lower end of the first air guide plate 42 is preferably close to the fan 41 and located below the fan 41, and the inclined upper end of the first air guide plate 42 is preferably close to the outlet 313 and located below the outlet 313.

[0062] The second air deflector 43 is integrally in the shape of a rectangular plate, and the second air deflector 43 is fixedly installed on the machine body 1 and located in the cavity 11, and the second air deflector 43 is inclinedly installed in the cavity 11. The second air deflector 43 is located on the side of the fan 41 close to the heating component 3 and between the fan 41 and the first air deflector 42; the width direction of the second air deflector 43 is parallel to the width direction of the machine body 1, the length direction of the second air deflector 43 is inclined relative to the length direction of the machine body 1, and the second air deflector 43 is inclined downward along the transportation direction of the slippers. In this embodiment, preferably, the inclined upper end of the second air deflector 43 is close to the inlet 312 and located below the inlet 312, and preferably, the inclined lower end of the second air deflector 43 is close to the inclined lower end of the first air deflector 42, and an air inlet for the fan 41 to blow air into is formed therebetween.

[0063] At this time, after the air blown by the fan 41 passes through the air inlet, it will be blown into the heating space 311 under the guidance of the first air deflector 42, and then flow in the heating space 311 in the direction opposite to the transportation direction of the slippers, and then flow in the direction close to the first air deflector 42 under the guidance of the second air deflector 43, thereby promoting the gas circulation flow in the heating space 311.

[0064] The implementation principle of a rubber baking device for slipper production in an embodiment of the present application is as follows:

[0065] After the slippers are loaded at the loading place 12, the transportation component 2 transports the slippers to drive the shielding member 33 at the inlet 312 to bend and deform, and then enters the heating space 311 through the inlet 312. During this process, the stacked slippers can be restricted by the shielding member 33 at the inlet 312, so that the slippers enter the heating space 311 in a single-layer and evenly tiled state;

[0066] After the slippers are transported into the heating space 311, the heater 32 heats in the heating space 311. At the same time, the fan 41 forms a gas circulation flow in the heating space 311 under the guidance of the first air deflector 42 and the second air deflector 43, so that the heat distribution in the heating space 311 is uniform, so that the slippers can be evenly and effectively subjected to rubber baking treatment in the heating space 311;

[0067] After the rubber baking treatment of the slippers is completed, the slippers are transported by the transportation component 2, first leave the heating space 311 through the shielding member 33 at the outlet 313, and then are guided by the second baffle 6 to complete the unloading at the designated position of the unloading place 13.

[0068] The above are all the preferred embodiments of the present application, and the protection scope of the present application is not limited accordingly. Therefore, all equivalent changes made according to the structure, shape, and principle of the present application should be covered within the protection scope of the present application.

Claims

1. A rubber drying device for slipper production, comprising a transportation component (2), a heating component (3) and a fan component (4), characterized in that, It also comprises a machine body (1), the interior of the machine body (1) having a cavity (11) opening upwards, the transport component (2) and the heating component (3) being arranged on the top of the machine body (1), and the fan component (4) being arranged in the cavity (11); The transport assembly (2) comprises a plurality of transport rollers (21) and a driving member (22); the transport rollers (21) are rotatably connected to the machine body (1) and are located at a position of the machine body (1) close to the opening of the cavity (11); the rotation axis of the transport rollers (21) is horizontal and the rotation axes of the plurality of transport rollers (21) are parallel to each other; the driving member (22) is arranged on the machine body (1) and is capable of driving the plurality of transport rollers (21) to rotate synchronously in the same direction; The heating assembly (3) comprises a cover body (31) and a heater (32); the cover body (31) has a heating space (311) inside, the heating space (311) is formed with an entrance (312) and an exit (313) at two ends of the cover body (31) along the transport direction, and the heating space (311) is communicated with the cavity (11); the heater (32) is arranged on the cover body (31) and is located in the heating space (311); The fan assembly (4) comprises a fan (41) and a first air guide plate (42); the fan (41) is arranged in the cavity (11) at a position close to the inlet (312), and the blowing direction of the fan (41) is the same as the transport direction; the first air guide plate (42) is located on a side of the fan (41) close to the outlet (313), the first air guide plate (42) is arranged obliquely, the inclined upper end of the first air guide plate (42) is located below the outlet (313) and close to the outlet (313), and the inclined lower end of the first air guide plate (42) is located below the fan (41) and close to the fan (41).

2. The rubber drying device for slipper production according to claim 1, characterized in that, The fan assembly (4) further comprises a second air guide plate (43), the second air guide plate (43) being located on a side of the fan (41) close to the outlet (313), the second air guide plate (43) being arranged at an angle, the second air guide plate (43) being located above the fan (41), the inclined upper end of the second air guide plate (43) being close to the inlet (312), and an air inlet being formed between the inclined lower end of the second air guide plate (43) and the inclined lower end of the first air guide plate (42).

3. The rubber drying device for slipper production according to claim 2, characterized in that, The heating component (3) further comprises two flexible shielding members (33), wherein the two shielding members (33) respectively cover the inlet (312) and the outlet (313).

4. The rubber drying device for slipper production according to claim 3, wherein, The shielding member (33) comprises a blocking portion (331) and a covering portion (332), and the covering portion (332) is located on a side of the blocking portion (331) close to the cavity (11); the flexibility of the covering portion (332) is greater than the flexibility of the blocking portion (331), and the covering portion (332) bends and deforms after being subjected to force and can only allow a single-layer slipper to pass through.

5. The rubber drying device for slipper production according to claim 3, characterized in that, The shielding member (33) near the inlet (312) is inclined. One side of one end of the machine body (1) near the inlet (312) is the loading area (12), and the shielding member (33) is inclined in the transportation direction away from the side where the loading area (12) is located.

6. The rubber drying device for slipper production according to claim 5, characterized in that, It further includes a first baffle (5). The first baffle (5) is arranged on the top of the machine body (1) and is located on the side of the machine body (1) away from the loading area (12).

7. The rubber drying device for slipper production according to claim 5, characterized in that, One side of one end of the machine body (1) near the outlet (313) is the unloading area (13), and the unloading area (13) and the loading area (12) are on the same side of the machine body (1).

8. A rubber drying device for slipper production according to claim 7, characterized in that, It further includes a second baffle (6). The second baffle (6) is arranged on the top of the machine body (1) and is located on the side of the cover body (31) near the unloading area (13); the second baffle (6) is inclined, and the second baffle (6) is inclined in the transportation direction towards the side where the unloading area (13) is located.

9. The rubber drying device for slipper production according to claim 8, characterized in that, One end of the second baffle (6) near the outlet (313) is rotatably connected to the machine body (1), and the rotation axis of the second baffle (6) is vertical.