Drying equipment for uniformly heated rubber and plastic products

By designing a rubber glove drying device including guide rails, moving plates and heating mechanisms, the problems of low drying efficiency and uneven heating in the prior art are solved, and a more efficient and uniform drying effect of rubber gloves is achieved.

CN120096005APending Publication Date: 2025-06-06ANHUI ANCHENG RUBBER & PLASTIC TECH CO LTD
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Patent Information

Application Number
CN202510379075.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-28
Publication Date
2025-06-06

AI Technical Summary

Technical Problem

The existing rubber glove drying device has a close fit between the liquid rubber and the glove mold, which causes heat to be transmitted into the mold, which reduces drying efficiency and makes it difficult to install a heating structure in the mold to achieve uniform heating.

Method used

A drying device including a drying box, a guide rail, a moving plate and a heating mechanism is designed. By providing open grooves on both sides of the drying box, the combined structure of the guide rail and the moving plate is used to realize the rotation and movement of the glove mold, and the inside of the glove mold is heated through the first heating mechanism, and the second heating mechanism heats the rubber gloves outside the glove mold.

Benefits of technology

By directly heating the glove mold, quickly heating up the heat, improving the heating efficiency of rubber gloves, and achieving uniform drying of rubber gloves.

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Abstract

The invention is applicable to the technical field of rubber product drying devices, and provides uniformly heated drying equipment for rubber and plastic products, which comprises a drying box, both sides of the drying box are provided with open slots, the inner side of the drying box is provided with a mounting frame, and the top of the mounting frame is fixedly connected with the top wall of the drying box. The two sides of the mounting frame are each fixedly connected with a set of guide rails, the number of the guide rails in each set is two, and a plurality of movable plates are arranged between the guide rails in each set. According to the glove mold heating device, the first heating mechanism is matched with the circulating communication mechanism, and a plurality of moving and rotating glove molds in the conveying mechanism can be heated from the interior, so that the temperature of the glove molds can be quickly increased; and therefore, the situation that the temperature of the rubber gloves tightly attached to the glove mold is slowly increased due to the fact that surface heat is conducted into the glove mold can be avoided, the heating efficiency of the external rubber gloves can be improved by directly heating the glove mold, and the drying efficiency of the rubber gloves is improved.
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Description

Technical Field

[0001] The invention belongs to the technical field of rubber product drying devices, and in particular relates to a drying device for rubber and plastic products with uniform heating. Background Art

[0002] Rubber medical gloves are used in medicine to protect the hands from injury; medical gloves are disposable gloves used in medical examinations and procedures. During the production process, rubber gloves are generally made by immersing the glove mold in liquid rubber and then drying the liquid rubber on the surface of the glove mold through a drying device.

[0003] However, the existing rubber glove drying device has the following disadvantages: Existing rubber glove drying devices generally dry liquid rubber externally by arranging a heating rod in the drying device or by introducing a heated air flow. However, the liquid rubber is closely fitted to the glove mold, so that the heat on the surface of the liquid rubber is transferred to the glove mold, which causes the temperature of the liquid rubber to rise slowly, thereby reducing the drying efficiency of the device. In addition, the glove mold needs to be deflected to be immersed in the liquid rubber during the production process of the rubber gloves, and needs to be rotated to heat the liquid rubber evenly. Therefore, it is difficult to arrange a heating structure in the glove mold. Summary of the invention

[0004] The present invention provides a drying device for rubber and plastic products with uniform heating, aiming to solve the problem that the existing rubber glove drying device mentioned in the above background technology generally dries liquid rubber externally by arranging a heating rod in the drying device or by introducing a heated air flow, but the liquid rubber is closely fitted to the glove mold, so that the heat on the surface of the liquid rubber is transferred to the glove mold, thereby causing the temperature of the liquid rubber to rise slowly, thereby reducing the drying efficiency of the device, and the glove mold needs to be deflected during the production process of the rubber gloves to be immersed in the liquid rubber, and needs to be rotated to avoid uniform heating of the liquid rubber, so it is difficult to arrange a heating structure in the glove mold.

[0005] The present invention is implemented as follows: a drying device for uniformly heated rubber and plastic products comprises a drying box, both sides of the drying box are provided with open slots, the inner side of the drying box is provided with a mounting frame, the top of the mounting frame is fixedly connected to the top wall of the drying box, both sides of the mounting frame are fixedly connected with a group of guide rails, the number of each group of guide rails is set to two, a plurality of movable plates are arranged between each group of guide rails, the plurality of movable plates are slidably connected with two adjacent guide rails, a conveying mechanism is arranged between each group of guide rails, and the conveying mechanism is used to drive the plurality of movable plates to move; A glove mold is arranged on one side of each of the movable plates, a circulation connection mechanism is arranged between the movable plate and the adjacent glove molds, a first heating mechanism is arranged between the two groups of the guide rails, the first heating mechanism matches with a plurality of circulation connection mechanisms, and the first heating mechanism is used to heat a plurality of glove molds; A second heating mechanism is provided inside the drying box, and the second heating mechanism is used to dry the rubber gloves outside the glove mold.

[0006] Preferably, the conveying mechanism comprises a driven rack and a mounting plate, the number of the driven racks is set to be multiple, and the side walls of the multiple driven racks are respectively fixedly connected to the multiple moving plates; The side wall of the mounting plate is fixedly connected to the mounting frame, a stepping motor is provided on one side of the mounting plate, and two transmission wheels are rotatably provided on the other side of the mounting plate, the two transmission wheels are respectively provided at both ends of the mounting plate, a toothed belt is sleeved between the two transmission wheels, and the toothed belt matches the driven rack; By starting the stepper motor, one of the transmission wheels can be driven to rotate, and at the same time, this transmission wheel can drive the toothed belt to circulate between the two transmission wheels. At the same time, the rotating toothed belt can drive the movable plate to move between the two guide rails through the driven rack meshing with it, and there will be no sliding between the driven rack and the toothed belt. Therefore, when multiple movable plates move, the relative positions between the multiple movable plates will not change, thereby avoiding large gaps between adjacent movable plates.

[0007] Preferably, the circulation connection mechanism comprises a rotary joint, a circulation heating groove, a first through hole and a second through hole, the rotary joint is rotatably connected to the end of the glove mold, a first connecting groove is provided through the middle of the rotary joint, an annular groove is provided at the end of the rotary joint, and a second connecting groove is provided through the side wall of the annular groove; The circulating heating groove is arranged inside the glove mold, one end of the circulating heating groove is connected with the first connecting groove, and the other end of the circulating heating groove is connected with the annular groove; The side wall of the rotary joint is fixedly connected with a connection frame, the connection frame is hingedly arranged with the side wall of the movable plate, the first through hole is arranged through the middle of the movable plate, the second through hole is arranged through the upper part of the movable plate, a first connecting pipe is arranged between the first connecting groove and the first through hole, a second connecting pipe is arranged between the second connecting groove and the second through hole, and the first connecting pipe and the second connecting pipe are both made of flexible heat-resistant polyethylene material; The hot air flow entering the first through hole can enter the circulation heating chamber through the first connecting pipe and the first connecting groove. The hot air flow in the circulation heating chamber will enter the annular groove after circulation and can be discharged through the second connecting groove, the second connecting pipe and the second through hole. By the above method, the glove mold can be heated by hot air flowing in the circulating heating tank, and when the glove mold rotates relative to the rotary joint, the air inlet end of the circulating heating tank located at the rotation center of the glove mold and the first connecting groove located at the center of the rotary joint will always be aligned, and the air outlet end of the circulating heating tank will always match the annular groove of the rotary joint, so the rotation of the glove mold will not affect the circulation of hot air in the circulating heating tank.

[0008] Preferably, the first heating mechanism comprises a heating bin, the heating bin is arranged between two groups of guide rails, the two sides of the heating bin are respectively fixedly connected to the adjacent guide rails, a partition plate is fixedly connected to the middle of the heating bin, an air inlet pipe is connected to the bottom of the heating bin, the middle of the air inlet pipe runs through the drying box, and an air outlet pipe is connected to the top of the heating bin, the middle of the air outlet pipe runs through the drying box; Multiple movable plates are arranged between the two sets of guide rails, which can be combined into a relatively sealed space with the heating chamber, and the partition plate can divide the sealed space into two spaces, the upper and lower spaces. At this time, the first through hole on the surface of the movable plate is connected with the lower space, and the first through hole and the second through hole on the surface of the movable plate are combined with the air pump through the external air heating equipment to introduce the hot air flow into the bottom space in the heating chamber through the air inlet pipe. At this time, the hot air can enter through the first through hole on the surface of the movable plates on both sides, and then the circulated hot air will be discharged through the second through hole and enter the upper space, and then the hot air will be discharged through the air outlet pipe.

[0009] Preferably, the second heating mechanism comprises a driven rotating structure and a heating structure, wherein the driven rotating structure is used to drive the glove mold to rotate, and the heating structure is used to heat the rubber glove on the periphery of the glove mold.

[0010] Preferably, the driven rotating structure comprises a friction ring and a guide rod, the number of the friction rings is set to be multiple, and the multiple friction rings are respectively fixedly sleeved on the outer peripheries of multiple glove molds; the number of the guide rods is set to be two, and the two guide rods are both arranged through the middle of the drying box, the bottoms of the two guide rods are fixedly connected to the drying box, and the tops of the two guide rods are matched with adjacent friction rings; Under the action of gravity, the glove mold will rotate around the hinge of the connecting frame until the friction ring on the outer periphery of the glove mold contacts the guide rod at the bottom. When the moving block slides between the two guide rails, the friction ring will rub against the guide rod and be driven to rotate by the guide rod. At the same time, the friction rod will drive the glove mold to rotate, and then drive the rubber glove on the outer periphery of the glove mold to rotate.

[0011] Preferably, the heating structure comprises heating rods, and the heating rods are provided in two groups, and the two groups of heating rods are both arranged inside the drying box, wherein the tops of the heating rods in one group are fixedly connected to the top wall of the drying box, and the bottoms of the heating rods in the other group are fixedly connected to the bottom wall of the drying box, and the number of heating rods in each group is set to be multiple; The top and bottom of the rubber glove on the periphery of the glove mold can be heated respectively by two sets of heating rods, and the rubber glove on the periphery of the glove mold can be evenly heated by coordinating the rotation of the glove mold.

[0012] Preferably, a sealing structure is provided inside the movable plate, and the sealing structure includes a sealing groove and a slide groove, the sealing groove is provided at one end of the movable plate, the slide groove is provided at the other end of the movable plate, a through groove is provided through the side wall of the slide groove, a slider is slidably provided inside the slide groove, a plurality of grooves are provided on one side of the slider, a sealing plate is fixedly connected to the other side of the slider, extrusion springs are provided inside the plurality of grooves, one end of the plurality of extrusion springs are respectively against the inner walls of the plurality of grooves, the other ends of the plurality of extrusion springs are against the inner wall of the slide groove, and the sealing plate matches the adjacent sealing grooves; The slider can be squeezed by the extrusion spring, thereby driving the sealing plate to move outward in the open groove through the slider. Between two adjacent moving blocks, the sealing plate at the end of one moving block will be inserted into the sealing groove of the other moving block and tightly resisted by the elastic force of the extrusion spring, thereby improving the air tightness between the two adjacent moving blocks.

[0013] Compared with the prior art, the beneficial effects of the present invention are as follows: a uniformly heated drying device for rubber and plastic products of the present invention: By cooperating with the circulation connection mechanism, the plurality of moving and rotating glove molds in the conveying mechanism can be heated from the inside, so that the glove molds can be quickly heated up, thereby preventing the rubber gloves that are tightly fitted to the glove molds from heating up slowly because the surface heat is conducted into the glove molds. Therefore, by directly heating the glove molds, the heating efficiency of the external rubber gloves can be improved, thereby improving the drying efficiency of the rubber gloves.

[0014] By providing the second heating mechanism, the outside of the rubber glove arranged on the outer periphery of the glove mold can be heated by two groups of heating rods, so that the rubber glove can be dried, and the glove mold can drive the rubber glove to rotate synchronously while moving, so that the rubber glove can be evenly irradiated by the heating rods, so that the rubber glove can be heated more evenly. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a schematic diagram of the overall structure of the present invention; Figure 2 An exploded view of the present invention; Figure 3 It is a schematic diagram of the position of the heating chamber of the present invention; Figure 4 It is an exploded view of the local structure of the present invention; Figure 5 It is a schematic diagram of the connection between the glove mold and the movable plate of the present invention; Figure 6 is a cross-sectional view of a movable plate of the present invention; Figure 7 It is a cross-sectional view of the circulation connection mechanism of the present invention; Figure 8 For the present invention Figure 1 A magnified view of the structure of part A; Fig. 9 For the present invention Figure 4 A magnified view of the structure of part B; Fig.10 For the present invention Figure 4 A magnified view of the C-section structure; Fig.11 For the present invention Figure 6 A magnified view of the D-section structure; Fig.12 For the present invention Figure 7 The E structure is enlarged.

[0016] In the figure: 1. Drying box; 11. Opening slot; 12. Mounting frame; 13. Guide rail; 14. Moving plate; 15. Glove mold; 2. Conveying mechanism; 21. Driven rack; 22. Mounting plate; 23. Stepping motor; 24. Transmission wheel; 25. Toothed belt; 3. Circulation connection mechanism; 31. Rotary joint; 32. Circulation heating groove; 33. First through hole; 34. Second through hole; 35. Annular groove; 36. Connection frame; 37. First connecting pipe; 38. Second connecting pipe; 39. First connecting groove; 310. Second connecting groove; 4. first heating mechanism; 41. heating chamber; 42. partition plate; 43. air inlet pipe; 44. air outlet pipe; 5. Second heating mechanism; 51. Driven rotating structure; 511. Friction ring; 512. Guide rod; 52. Heating structure; 521. Heating rod; 6. Sealing structure; 61. Sealing groove; 62. Sliding groove; 63. Through groove; 64. Sliding block; 65. Groove; 66. Sealing plate; 67. Extrusion spring. DETAILED DESCRIPTION

[0017] The technical solution of the present invention will be clearly and completely described below in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all of the embodiments.

[0018] The components of the embodiments of the present invention generally described and shown in the drawings herein may be arranged and designed in various different configurations. Therefore, the following detailed description of the embodiments of the present invention provided in the drawings is not intended to limit the scope of the claimed invention, but merely represents selected embodiments of the present invention.

[0019] Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in the field without making any creative work shall fall within the scope of protection of the present invention.

[0020] In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as limiting the present invention. In addition, the terms "first", "second", and "third" are used for descriptive purposes only, and cannot be understood as indicating or implying relative importance.

[0021] In the description of the present invention, it should be noted that, unless otherwise clearly specified and limited, the terms "installed", "connected", and "connected" should be understood in a broad sense, for example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be a direct connection, or it can be indirectly connected through an intermediate medium, or it can be the internal communication of two components. For ordinary technicians in this field, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.

[0022] See also Figure 1-12 The present invention provides a technical solution: a drying device for rubber and plastic products with uniform heating, comprising a drying box 1, both sides of the drying box 1 are provided with open grooves 11, the inner side of the drying box 1 is provided with a mounting frame 12, the top of the mounting frame 12 is fixedly connected to the top wall of the drying box 1, both sides of the mounting frame 12 are fixedly connected with a group of guide rails 13, each group of guide rails 13 is set to two, a plurality of movable plates 14 are arranged between each group of guide rails 13, the plurality of movable plates 14 are slidably connected to two adjacent guide rails 13, a conveying mechanism 2 is arranged between each group of guide rails 13, and the conveying mechanism 2 is used to drive the plurality of movable plates 14 to move; A glove mold 15 is provided on one side of each movable plate 14, a circulation connection mechanism 3 is provided between the movable plate 14 and the adjacent glove mold 15, a first heating mechanism 4 is provided between the two sets of guide rails 13, the first heating mechanism 4 matches with the multiple circulation connection mechanisms 3, and the first heating mechanism 4 is used to heat the multiple glove molds 15; A second heating mechanism 5 is provided inside the drying box 1 , and the second heating mechanism 5 is used to dry the rubber gloves outside the glove mold 15 .

[0023] Furthermore, the conveying mechanism 2 includes a driven rack 21 and a mounting plate 22. The number of driven racks 21 is set to be multiple, and the side walls of the multiple driven racks 21 are respectively fixedly connected to the multiple moving plates 14; The side wall of the mounting plate 22 is fixedly connected to the mounting frame 12. A stepper motor 23 is provided on one side of the mounting plate 22. Two transmission wheels 24 are rotatably provided on the other side of the mounting plate 22. The two transmission wheels 24 are respectively provided at both ends of the mounting plate 22. A toothed belt 25 is sleeved between the two transmission wheels 24. The toothed belt 25 matches the driven rack 21.

[0024] Further, the circulation connection mechanism 3 includes a rotary joint 31, a circulation heating groove 32, a first through hole 33 and a second through hole 34. The rotary joint 31 is rotatably connected to the end of the glove mold 15. A first connecting groove 39 is provided through the middle of the rotary joint 31. An annular groove 35 is provided at the end of the rotary joint 31. A second connecting groove 310 is provided through the side wall of the annular groove 35. The circulating heating groove 32 is disposed inside the glove mold 15 , one end of the circulating heating groove 32 is connected to the first connecting groove 39 , and the other end of the circulating heating groove 32 is connected to the annular groove 35 ; A connecting frame 36 is fixedly connected to the side wall of the rotating joint 31, and the connecting frame 36 is hinged to the side wall of the movable plate 14. The first through hole 33 is arranged through the middle part of the movable plate 14, and the second through hole 34 is arranged through the upper part of the movable plate 14. A first connecting pipe 37 is arranged between the first connecting groove 39 and the first through hole 33, and a second connecting pipe 38 is arranged between the second connecting groove 310 and the second through hole 34. The first connecting pipe 37 and the second connecting pipe 38 are both made of flexible heat-resistant polyethylene material.

[0025] Furthermore, the first heating mechanism 4 includes a heating bin 41, which is arranged between two groups of guide rails 13. A partition plate 42 is fixedly connected to the middle of the heating bin 41, and both sides of the heating bin 41 are respectively fixedly connected to adjacent guide rails 13. An air inlet duct 43 is connected to the bottom of the heating bin 41, and the middle part of the air inlet duct 43 passes through the drying box 1. An air outlet duct 44 is connected to the top of the heating bin 41, and the middle part of the air outlet duct 44 passes through the drying box 1.

[0026] Furthermore, the second heating mechanism 5 includes a driven rotating structure 51 and a heating structure 52 . The driven rotating structure 51 is used to drive the glove mold 15 to rotate, and the heating structure 52 is used to heat the rubber glove on the periphery of the glove mold 15 .

[0027] Furthermore, the driven rotating structure 51 includes a friction ring 511 and a guide rod 512. The number of the friction rings 511 is set to be multiple, and the multiple friction rings 511 are respectively fixedly sleeved on the outer peripheries of the multiple glove molds 15; the number of the guide rods 512 is set to be two, and the two guide rods 512 are both arranged through the middle of the drying box 1, the bottoms of the two guide rods 512 are fixedly connected to the drying box 1, and the tops of the two guide rods 512 are matched with the adjacent friction rings 511.

[0028] Furthermore, the heating structure 52 includes heating rods 521, and the heating rods 521 are provided in two groups. The two groups of heating rods 521 are both arranged inside the drying box 1, wherein the top of one group of heating rods 521 is fixedly connected to the top wall of the drying box 1, and the bottom of the other group of heating rods 521 is fixedly connected to the bottom wall of the drying box 1, and the number of heating rods 521 in each group is set to be multiple.

[0029] Furthermore, a sealing structure 6 is provided inside the movable plate 14, and the sealing structure 6 includes a sealing groove 61 and a slide groove 62. The sealing groove 61 is provided at one end of the movable plate 14, and the slide groove 62 is provided at the other end of the movable plate 14. A through groove 63 is provided through the side wall of the slide groove 62, and a slider 64 is slidably provided inside the slide groove 62. A plurality of grooves 65 are provided on one side of the slider 64, and a sealing plate 66 is fixedly connected to the other side of the slider 64. Extrusion springs 67 are provided inside the plurality of grooves 65, and one end of the plurality of extrusion springs 67 respectively abuts against the inner walls of the plurality of grooves 65, and the other ends of the plurality of extrusion springs 67 abut against the inner walls of the slide groove 62, and the sealing plate 66 matches the adjacent sealing groove 61.

[0030] The working principle and use process of the present invention: By starting the stepper motor 23, one of the transmission wheels 24 can be driven to rotate, and at the same time, the transmission wheel 24 can drive the toothed belt 25 to circulate between the two transmission wheels 24. At the same time, the rotating toothed belt 25 can drive the moving plate 14 to move between the two guide rails 13 through the driven rack 21 meshing with it, and there will be no sliding between the driven rack 21 and the toothed belt 25. Therefore, when the multiple moving plates 14 move, the relative positions between the multiple moving plates 14 will not change, thereby avoiding the appearance of large gaps between adjacent moving plates 14. A plurality of movable plates 14 are arranged between the two sets of guide rails 13, and can be combined into a relatively sealed space in conjunction with the heating chamber 41, and the partition plate can separate the sealed space into two spaces, the upper and lower spaces. At this time, the first through hole 33 on the surface of the movable plate 14 is connected to the lower space, and the first through hole 33 and the second through hole 34 on the surface of the movable plate 14 are in conjunction with an external air heating device and an air pump, so that the hot air flow can be introduced into the bottom space in the heating chamber 41 through the air inlet pipe 43, and the hot air can enter through the first through hole 33 on the surface of the movable plate 14 on both sides; The hot air flow entering the first through hole 33 can enter the circulation heating chamber 41 through the first connecting pipe 37 and the first connecting groove 39. The hot air flow in the circulation heating chamber 41 will enter the annular groove 35 after circulation, and can be discharged through the second connecting groove 310, the second connecting pipe 38 and the second through hole 34. In the above manner, the glove mold 15 can be heated by hot air flowing in the circulation heating groove 32, and when the glove mold 15 rotates relative to the rotary joint 31, the air inlet end of the circulation heating groove 32 located at the rotation center of the glove mold 15 and the first connecting groove 39 located at the center of the rotary joint 31 will always be aligned, and the air outlet end of the circulation heating groove 32 will always match the annular groove 35 of the rotary joint 31, so that the glove mold 15 will not affect the hot air flow in the circulation heating groove 32 when rotating; The circulated hot air will then be discharged through the second through hole 34 and enter the upper space, and then the hot air will be discharged through the air outlet pipe 44; By the above method, the multiple moving and rotating glove molds 15 in the conveying mechanism 2 can be heated from the inside, so that the temperature of the glove molds 15 can be quickly increased; Under the action of gravity, the glove mold 15 rotates around the hinge of the connection frame 36 as the axis until the friction ring 511 on the outer periphery of the glove mold 15 abuts against the guide rod 512 at the bottom. When the moving block slides between the two guide rails 13, the friction ring 511 rubs against the guide rod 512 and is driven to rotate by the guide rod 512. At the same time, the friction rod drives the glove mold 15 to rotate, and further drives the rubber glove on the outer periphery of the glove mold 15 to rotate. The top and bottom of the rubber glove on the periphery of the glove mold 15 can be heated respectively by two sets of heating rods 521, and the rubber glove on the periphery of the glove mold 15 can be evenly heated by coordinating the rotation of the glove mold 15.

[0031] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A drying device for rubber and plastic products with uniform heating, comprising a drying box (1), characterized in that: Both sides of the drying box (1) are provided with open grooves (11); a mounting frame (12) is provided inside the drying box (1); the top of the mounting frame (12) is fixedly connected to the top wall of the drying box (1); both sides of the mounting frame (12) are fixedly connected with a group of guide rails (13); the number of each group of guide rails (13) is set to two; a plurality of movable plates (14) are provided between each group of guide rails (13); the plurality of movable plates (14) are slidably connected to two adjacent guide rails (13); a conveying mechanism (2) is provided between each group of guide rails (13); the conveying mechanism (2) is used to drive the plurality of movable plates (14) to move; A glove mold (15) is provided on one side of each of the movable plates (14); a circulation connection mechanism (3) is provided between the movable plates (14) and adjacent glove molds (15); a first heating mechanism (4) is provided between the two groups of guide rails (13); the first heating mechanism (4) matches a plurality of circulation connection mechanisms (3); and the first heating mechanism (4) is used to heat the plurality of glove molds (15); A second heating mechanism (5) is provided inside the drying box (1), and the second heating mechanism (5) is used to dry the rubber gloves outside the glove mold (15).

2. The uniformly heated drying equipment for rubber and plastic products according to claim 1, characterized in that: The conveying mechanism (2) comprises a driven rack (21) and a mounting plate (22); the driven rack (21) is provided in a plurality, and the side walls of the plurality of driven racks (21) are respectively fixedly connected to the plurality of movable plates (14); The side wall of the mounting plate (22) is fixedly connected to the mounting frame (12); a stepping motor (23) is provided on one side of the mounting plate (22); two transmission wheels (24) are rotatably provided on the other side of the mounting plate (22); the two transmission wheels (24) are respectively provided at two ends of the mounting plate (22); a toothed belt (25) is sleeved between the two transmission wheels (24); the toothed belt (25) matches the driven rack (21).

3. The uniformly heated drying equipment for rubber and plastic products according to claim 1, characterized in that: The circulation connection mechanism (3) comprises a rotary joint (31), a circulation heating groove (32), a first through hole (33) and a second through hole (34); the rotary joint (31) is rotatably connected to the end of the glove mold (15); a first connecting groove (39) is provided through the middle of the rotary joint (31); an annular groove (35) is provided at the end of the rotary joint (31); and a second connecting groove (310) is provided through the side wall of the annular groove (35); The circulating heating groove (32) is disposed inside the glove mold (15); one end of the circulating heating groove (32) is connected to the first connecting groove (39); and the other end of the circulating heating groove (32) is connected to the annular groove (35); A connecting frame (36) is fixedly connected to the side wall of the rotary joint (31); the connecting frame (36) is hingedly connected to the side wall of the movable plate (14); the first through hole (33) is arranged through the middle of the movable plate (14); the second through hole (34) is arranged through the upper part of the movable plate (14); a first connecting pipe (37) is arranged between the first connecting groove (39) and the first through hole (33); a second connecting pipe (38) is arranged between the second connecting groove (310) and the second through hole (34); and the first connecting pipe (37) and the second connecting pipe (38) are both made of a flexible heat-resistant polyethylene material.

4. The uniformly heated drying equipment for rubber and plastic products according to claim 1, characterized in that: The first heating mechanism (4) comprises a heating chamber (41), the heating chamber (41) being arranged between two groups of guide rails (13), a partition plate (42) being fixedly connected to the middle of the heating chamber (41), both sides of the heating chamber (41) being fixedly connected to adjacent guide rails (13), an air inlet pipe (43) being arranged at the bottom of the heating chamber (41), the middle of the air inlet pipe (43) penetrating the drying box (1), and an air outlet pipe (44) being arranged at the top of the heating chamber (41), the middle of the air outlet pipe (44) penetrating the drying box (1).

5. The uniformly heated drying equipment for rubber and plastic products according to claim 1, characterized in that: The second heating mechanism (5) comprises a driven rotating structure (51) and a heating structure (52), wherein the driven rotating structure (51) is used to drive the glove mold (15) to rotate, and the heating structure (52) is used to heat the rubber glove on the periphery of the glove mold (15).

6. A uniformly heated drying device for rubber and plastic products as claimed in claim 5, characterized in that: The driven rotating structure (51) comprises a friction ring (511) and a guide rod (512), the number of the friction ring (511) being set to be multiple, and the multiple friction rings (511) being respectively fixedly sleeved on the outer circumferences of the multiple glove molds (15); the number of the guide rods (512) being set to be two, and the two guide rods (512) are both arranged to penetrate the middle of the drying box (1), the bottoms of the two guide rods (512) are both fixedly connected to the drying box (1), and the tops of the two guide rods (512) are both matched with adjacent friction rings (511).

7. The uniformly heated drying device for rubber and plastic products according to claim 5, characterized in that: The heating structure (52) comprises heating rods (521), wherein the heating rods (521) are arranged in two groups, and the two groups of heating rods (521) are both arranged inside the drying box (1), wherein the tops of the heating rods (521) in one group are fixedly connected to the top wall of the drying box (1), and the bottoms of the heating rods (521) in the other group are fixedly connected to the bottom wall of the drying box (1), and the number of heating rods (521) in each group is set to be multiple.

8. The uniformly heated drying equipment for rubber and plastic products according to claim 1, characterized in that: A sealing structure (6) is provided inside the movable plate (14), and the sealing structure (6) comprises a sealing groove (61) and a slide groove (62). The sealing groove (61) is provided at one end of the movable plate (14), and the slide groove (62) is provided at the other end of the movable plate (14). A through groove (63) is provided through the side wall of the slide groove (62). A slider (64) is slidably provided inside the slide groove (62). A plurality of grooves (65) are provided on one side of the slider (64), and a sealing plate (66) is fixedly connected to the other side of the slider (64). Extrusion springs (67) are provided inside the plurality of grooves (65), and one end of the plurality of extrusion springs (67) respectively abuts against the inner wall of the plurality of grooves (65), and the other end of the plurality of extrusion springs (67) abuts against the inner wall of the slide groove (62). The sealing plate (66) matches the adjacent sealing groove (61).

Citation Information

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