Glove shaping and drying device

By adopting spiral cone guide rails and circulating moving guide rails in the drying device, combined with a central tube and heating system, the problem of uneven drying of rubber gloves is solved, and uniform drying of the inside and outside of the gloves and the upper and lower layers is achieved, thereby improving the drying efficiency and effect.

CN223442650UActive Publication Date: 2025-10-17HUNAN HUACHENG SPORTS PROTECTIVE EQUIP CO LTD
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Patent Information

Application Number
CN202422810982.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2025-10-17
Estimated Expiration
2034-11-19

AI Technical Summary

Technical Problem

During the drying process of existing rubber glove dryers, the upper and lower layers of gloves overlap, resulting in uneven drying and inconsistent drying levels inside and outside the gloves.

Method used

The spiral cone-shaped spiral fixed guide rail and circulating movable guide rail design are combined with the structure of the central tube, air inlet cavity, return air cavity and heating tube to achieve uniform distribution and recycling of hot air in the drying chamber, ensuring that each glove has no overlap in the vertical direction and is evenly dried inside and outside.

Benefits of technology

It improves the uniformity and efficiency of glove drying, ensures that the upper and lower gloves and the inside and outside of the gloves are dried evenly, reduces the waste of hot air, and improves the drying effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The glove shaping and drying device comprises a drying oven, a drying cavity is defined by the middle of the drying oven, a conical spiral fixing guide rail is arranged in the drying cavity, the two ends of the conical spiral fixing guide rail extend to the outer portion of the drying oven, and a circulating moving guide rail is slidably connected into the conical spiral fixing guide rail in a sleeved mode. According to the glove shaping and drying device, the spiral-cone-shaped conical spiral fixing guide rails are arranged in the drying cavity, the circulating moving guide rails drive the hand molds to move along the conical spiral fixing guide rails, and the characteristic that the conical spiral fixing guide rails are arranged in the upper layer and the lower layer in a staggered mode is utilized, so that the situation that the hand molds are overlapped in the vertical direction of the drying cavity is avoided; and it is guaranteed that the hot air beams flowing in the vertical direction of the drying cavity only dry one glove, air carrying water vapor below is prevented from making contact with the upper-layer glove, and therefore the drying efficiency of the upper-layer glove is improved, and the effect that the upper-layer glove and the lower-layer glove are evenly dried is achieved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to drying technical field, concretely is a glove shaping drying device. BACKGROUND

[0002] The general production process of rubber gloves is as follows: the glove model is first cleaned by acid and alkali, and then washed by water, the washed model is first immersed in hot water, heated, then immersed in coagulant and dried for glue dipping, after glue dipping, the glove is sent to an oven for preliminary drying, fiber inner sleeve is added, hot water is flushed, and then the glove is sent to an oven for vulcanization, drying and shaping, after the glove is demolded, air check, low-temperature shaping, medium-temperature drying, water washing, dehydration and drying, the glove is packaged and sent to a finished product warehouse, and the drying is an important step in the processing of rubber gloves, and a special drying machine needs to be used.

[0003] However, in order to improve the drying yield and increase the number of gloves in the drying chamber, the upper and lower gloves are often overlapped in the drying chamber when the existing rubber glove drying machine is used for drying rubber gloves, the hot air carrying water vapor cannot be used to dry the gloves above due to the overlapping of the upper and lower gloves, and the drying degree of the upper and lower gloves is inconsistent. In addition, the gloves need to be shaped, so the gloves are sleeved on the hand mold, and the existing hand mold is a solid structure, the gloves in the drying box are more in contact with the outer surface of the gloves, and the drying degree of the gloves is inconsistent. UTILITY MODEL CONTENTS

[0004] The glove shaping drying device has the advantages of improving the uniformity of all glove drying and the uniformity of glove drying inside and outside, and solves the problem of inconsistent glove drying degree caused by the overlapping of the upper and lower gloves in the prior art.

[0005] To achieve the above purpose, the following technical scheme is adopted: a glove shaping drying device, comprising: an oven, the middle part of the oven is enclosed into a drying cavity, a conical spiral fixed guide rail is arranged in the drying cavity, both ends of the conical spiral fixed guide rail extend to the outside of the oven, a circulating moving guide rail is sleeved and connected in the conical spiral fixed guide rail in a sliding mode, an inner drying pipe is arranged in the conical spiral fixed guide rail, the inner drying pipe is sleeved in the circulating moving guide rail, a hand mold is rotatably connected to the lower end of the circulating moving guide rail, and a central pipe located in the middle part of the conical spiral fixed guide rail is installed in the drying cavity.

[0006] Further, the oven is provided with an air inlet clamping cavity located at the outer periphery of the drying cavity, the outer periphery of the air inlet clamping cavity is provided with an air return clamping cavity, the bottom wall of the drying cavity is sequentially provided with an air uniformizing bottom cavity, a heating bottom cavity and an air gathering bottom cavity, the top wall and the side wall of the air uniformizing bottom cavity are respectively provided with an upper air uniformizing hole and a side air uniformizing hole, the upper air uniformizing hole is communicated with the drying cavity, the side air uniformizing hole is communicated with the air inlet clamping cavity, the side wall of the drying cavity is provided with a side air inlet hole communicated with the air inlet clamping cavity, the top wall of the drying cavity is provided with a top air return hole communicated with the air return clamping cavity, and the bottom wall of the air return clamping cavity is provided with a bottom air gathering hole communicated with the air gathering bottom cavity.

[0007] Further, the air return pump is installed in the air gathering bottom cavity, the air inlet end of the air return pump is communicated with the air gathering bottom cavity, the air outlet end of the air return pump is connected with a heating cavity air supply pipe, the heating cavity air supply pipe is communicated with the heating bottom cavity, the heating pipe is arranged in the heating bottom cavity, the outer wall of the oven is installed with a air supply pump, the air inlet end of the air supply pump is communicated with the heating bottom cavity, the air outlet end of the air supply pump is connected with an air uniformizing cavity air supply pipe, the air uniformizing cavity air supply pipe is communicated with the air uniformizing bottom cavity, and the air inlet valves are installed on the heating cavity air supply pipe and the air uniformizing cavity air supply pipe.

[0008] Further, the bottom end of the central pipe is communicated with the air uniformizing bottom cavity, the outer wall of the central pipe is provided with a radial airflow hole, the diameter of the radial airflow hole gradually increases from bottom to top, and the central pipe is coaxial with the conical spiral fixed guide rail.

[0009] Further, the part of the conical spiral fixed guide rail located inside the drying cavity is in a spiral conical shape with the inner diameter gradually increasing from top to bottom, the upper and lower layers of the conical spiral fixed guide rail are staggered with each other, the top end of the conical spiral fixed guide rail extends outward through the inlet of the oven, the bottom end of the conical spiral fixed guide rail extends outward through the outlet of the oven, and the circulating moving guide rail spirally moves from top to bottom along the conical spiral fixed guide rail.

[0010] Further, the middle part and the side close to the central pipe of the conical spiral fixed guide rail are provided with a through fixed guide rail through hole, the upper and lower parts of the outer wall of the side close to the central pipe of the conical spiral fixed guide rail are connected with a U-shaped rod, the outer wall of the side away from the central pipe of the conical spiral fixed guide rail is connected with an outer fixed rod, one end of the outer fixed rod away from the conical spiral fixed guide rail is connected to the inner wall of the drying cavity, the circulating moving guide rail is slidably sleeved in the fixed guide rail through hole, the middle part and the side close to the central pipe of the circulating moving guide rail are provided with a through moving guide rail through hole, the bottom wall of the circulating moving guide rail is provided with a guide rail air hole, the drying inner pipe is located in the conical spiral fixed guide rail and coaxial with the moving guide rail through hole of the circulating moving guide rail, the fixed air inlet pipe is communicated with the inner cavity of the drying inner pipe, one end of the fixed air inlet pipe away from the drying inner pipe extends outward along the moving guide rail through hole and is communicated with the central pipe, and the bottom wall of the drying inner pipe is provided with an inner pipe air hole.

[0011] Further, the top wall of the circulating moving guide rail is provided with a gear, and the conical spiral fixed guide rail is connected at the two ends outside the oven.

[0012] Further, the top end of the hand mold is rotationally connected to the outer wall of the circulating moving guide rail, the hand mold is hollow inside and a vertical air flow groove is formed in the middle of the top end of the hand mold, and air holes are formed in the outer wall of the hand mold.

[0013] The glove shaping and drying device has the following beneficial effects:

[0014] 1. The glove shaping and drying device provided by the application sets a spiral conical conical spiral fixed guide rail in the drying cavity, the circulating moving guide rail moves along the conical spiral fixed guide rail with the hand mold, the conical spiral fixed guide rail is arranged in an upper and lower staggered manner, so that the hand mold does not overlap in the vertical direction of the drying cavity, the hot air beam flowing in the vertical direction of the drying cavity only dries one glove, air carrying water vapor below does not contact the upper glove, the drying efficiency of the upper glove is improved, and the upper and lower gloves are uniformly dried.

[0015] 2. The glove shaping and drying device provided by the application transports the hot air in the central pipe to the drying inner pipe through the fixed air inlet pipe, so that the hot air flows along the inner pipe air hole, the guide rail air hole, the vertical air flow groove and the air hole, and the hot air is dispersed from the inside of the hand mold to the outside of the hand mold, so that the glove sleeved on the hand mold is dried from the inside to the outside, and the uniformity and drying efficiency of the glove inside and outside are further improved.

[0016] 3. The glove shaping and drying device provided by the application realizes three air flow directions from bottom to top, from periphery to center and from center to periphery through the upper air inlet hole, the side air inlet hole and the radial air flow hole, improves the uniformity of hot air distribution in the drying cavity, is conducive to improving the uniformity of glove drying, cooperates with the top air return hole, the bottom air gathering hole, the air return pump and the air supply pump to realize air backflow, and heats the air through the heating pipe again to utilize the remaining heat of the hot air. BRIEF DESCRIPTION OF DRAWINGS

[0017] The accompanying drawings, which form a part of the specification, illustrate embodiments of the present application and, together with the description, serve to explain the principles of the present application.

[0018] Referring to the drawings, the present disclosure can be more clearly understood in light of the following detailed description, in which:

[0019] Figure 1 It is a structural perspective view of the present application;

[0020] Figure 2Figure 1 is a perspective view of the conical spiral fixed guide rail of the present application;

[0021] Figure 3 Figure 2 is a partial perspective view of the circulating moving guide rail of the present application;

[0022] Figure 4 Figure 3 is a top view of the conical spiral fixed guide rail of the present application;

[0023] Figure 5 Figure 4 is a side sectional view of the oven of the present application;

[0024] Figure 6 Figure 5 is a structural schematic view of the conical spiral fixed guide rail, the circulating moving guide rail, the drying inner tube and the hand mold of the present application;

[0025] Figure 7 Figure 6 is a schematic view of the oven of the present application;

[0026] Figure 8 Figure 7 is a sectional view along A-A of Figure 5

[0027] Figure 1 is a perspective view of the conical spiral fixed guide rail of the present application; DETAILED DESCRIPTION

[0028] The technical solutions in the embodiments of the present application will be described clearly and completely below in conjunction with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without any creative work fall within the scope of protection of the present application.

[0029] Figure 1 is a perspective view of the conical spiral fixed guide rail of the present application; Figure 1 ​The utility model provides a glove shaping and drying device, which comprises an oven 1, wherein the oven 1 is cylindrical, the bottom of the oven 1 is provided with a base, the top of the oven 1 is provided with a top seat, an inlet close to the top end is formed in the side wall of the oven 1, an outlet close to the bottom end is formed in the side wall of the oven 1, a drying cavity 101 is enclosed in the middle of the oven 1, a conical spiral fixed guide rail 2 is arranged in the drying cavity 101, the two ends of the conical spiral fixed guide rail 2 extend to the outside of the oven 1 from the inlet and the outlet of the oven 1 respectively, a circulating moving guide rail 3 is slidably sleeved in the conical spiral fixed guide rail 2, a drying inner tube 4 is arranged in the conical spiral fixed guide rail 2, the drying inner tube 4 is sleeved in the circulating moving guide rail 3, a hand mold 5 is rotationally connected to the lower end of the circulating moving guide rail 3, and a glove is sleeved outside the hand mold 5; a central pipe 6 is installed in the drying cavity 101.

[0030] participate in the attachment Figure 1 , the attachment Figure 5 , the attachment Figure 7 and the attachment Figure 8 As shown in the drawings, an air inlet clamping cavity 102 is formed in the oven 1 and located at the outer periphery of the drying cavity 101, an air return clamping cavity 103 is arranged at the outer periphery of the air inlet clamping cavity 102, a uniform air bottom cavity 104, a heating bottom cavity 105 and a wind gathering bottom cavity 106 are sequentially arranged below the bottom wall of the drying cavity 101, upper uniform air holes 111 and side uniform air holes 112 are respectively formed in the top wall and the side wall of the uniform air bottom cavity 104, the upper uniform air holes 111 are communicated with the drying cavity 101, the side uniform air holes 112 are communicated with the air inlet clamping cavity 102, a side air inlet hole 113 is formed in the side wall of the drying cavity 101 and communicated with the air inlet clamping cavity 102, a top air return hole 114 is formed in the top wall of the drying cavity 101 and communicated with the air return clamping cavity 103, and a bottom wind gathering hole 115 is formed in the bottom wall of the air return clamping cavity 103 and communicated with the wind gathering bottom cavity 106. A return air pump 7 is installed in the wind gathering bottom cavity 106, the air inlet end of the return air pump 7 is communicated with the wind gathering bottom cavity 106, the air outlet end of the return air pump 7 is connected with a heating cavity air supply pipe 701, the heating cavity air supply pipe 701 is communicated with the heating bottom cavity 105, a heating pipe 9 is arranged in the heating bottom cavity 105, the heating pipe 9 is connected with a power supply, and the power supply can be installed in the wind gathering bottom cavity 106 or outside the oven 1. If the power supply is installed in the wind gathering bottom cavity 106, the power supply and the return air pump 7 need to be heat insulated. An air supply pump 8 is installed on the outer wall of the oven 1, the air inlet end of the air supply pump 8 is communicated with the heating bottom cavity 105, the air outlet end of the air supply pump 8 is connected with a uniform air cavity air supply pipe 801, the uniform air cavity air supply pipe 801 is communicated with the uniform air bottom cavity 104, air inlet valves are installed on the heating cavity air supply pipe 701 and the uniform air cavity air supply pipe 801, the two air inlet valves respectively control the air outlet amount of the heating cavity air supply pipe 701 and the uniform air cavity air supply pipe 801, and can be adjusted separately.

[0031] Working principle: the heating tube 9 is powered on to heat the air in the heating bottom cavity 105, and then the air supply pump 8 is started. The hot air in the heating bottom cavity 105 flows from the air inlet of the air supply pump 8 to the air outlet of the air supply pump 8, the air supply cavity, and the air supply pipe 801 of the air supply cavity. The opening and closing of the air inlet valve installed on the air supply cavity air supply pipe 801 control the amount of hot air in the air supply cavity 104. The hot air in the air supply cavity 104 is dispersed to the drying cavity 101 through the upper air supply hole 111, and flows to the top end of the drying cavity 101. The hot air in the air supply cavity 104 also enters the air inlet clamping cavity 102 through the side air inlet hole 112, and enters the drying cavity 101 through the side air inlet hole 113. Start the return air pump 7. Under the suction of the return air pump 7, the cooled air in the drying cavity 101 flows to the top end and enters the return air clamping cavity 103 through the top return air hole 114, and flows downward along the return air clamping cavity 103 to enter the air gathering bottom cavity 106 through the bottom air gathering hole 115. The cooled air in the air gathering bottom cavity 106 enters the heating bottom cavity 105 through the inlet end, the outlet end, the heating cavity air supply pipe 701, and the heating tube 9 in the heating bottom cavity 105. The heated air is heated again, and the circulation of the air in the drying oven 1 is realized. The opening and closing of the air inlet valve on the heating cavity air supply pipe 701 control the amount of air entering the heating bottom cavity 105. When the glove on the hand mold 5 is in the drying cavity 101, the hot air in the drying cavity 101 dries the glove from the outside to the inside.

[0032] Referring to the accompanying Figure 1 , the accompanying Figure 2 , the accompanying Figure 5 , the bottom end of the central pipe 6 communicates with the air supply cavity 104, and the radial airflow holes 601 are formed in the outer wall of the central pipe 6. The diameter of the radial airflow holes 601 gradually increases from bottom to top. The central pipe 6 is coaxial with the tapered spiral fixed guide rail 2, that is, the central pipe 6 is located in the middle of the tapered spiral fixed guide rail 2. The hot air in the air supply cavity 104 enters the inner cavity of the central pipe 6 through the bottom end of the central pipe 6, and is dispersed to the drying cavity 101 along the radial airflow holes 601 along the radial direction of the central pipe 6, thereby drying the gloves on the hand mold 5 around the central pipe 6. Since the upper air supply hole 111 is formed in the bottom wall of the drying cavity 101, the amount of hot air is greater near the lower end of the drying cavity 101. In order to improve the uniformity of the distribution of hot air in the drying cavity 101, the diameter of the radial airflow holes 601 near the bottom wall of the drying cavity 101 is smaller, so that more hot air can flow upward, thereby improving the uniformity of the distribution of hot air in the drying cavity 101.

[0033] Referring to the accompanying Figure 1 , the accompanying Figure 2 , the accompanying Figure 3 , the accompanying Figure 4 , the accompanying Figure 5 and the accompanying Figure 6As shown, the portion of the cone spiral fixed guide rail 2 located inside the drying chamber 101 is in the shape of a spiral cone with a larger inner diameter at the top and a smaller inner diameter at the bottom. The circulating movable guide rail 3 moves in a spiral from top to bottom along the cone spiral fixed guide rail 2. The upper and lower layers of the cone spiral fixed guide rail 2 are staggered with each other. By setting the spiral taper of the cone spiral fixed guide rail 2, a staggered shape is formed, so that the cone spiral fixed guide rail 2 can be realized as shown in the attached figure. Figure 4 As shown, there is a radial gap between adjacent layers. Since hot air flows upward within the drying chamber 101, the water vapor content increases as the air rises due to evaporation of moisture from the gloves. Therefore, the staggered arrangement of the upper and lower layers of the conical spiral fixed guide rail 2 reduces the possibility of water vapor-carrying air from below contacting the upper gloves again, which could result in poor drying efficiency. This ensures that each upward-flowing stream of hot air only contacts and dries one glove, thereby improving glove drying efficiency. The top end of the conical spiral fixed guide rail 2 extends outward through the inlet of the drying oven 1, while the bottom end of the conical spiral fixed guide rail 2 extends outward through the outlet of the drying oven 1. The ends of the conical spiral fixed guide rail 2 located outside the drying oven 1 are connected end to end to form a ring. The portion of the conical spiral fixed guide rail 2 located outside the drying oven 1 can extend to other workstations, such as the glove application workstation and the glove removal workstation. The glove application workstation is the first process in the drying apparatus, while the glove removal workstation is the second process in the drying apparatus. The other workstations are designed based on the actual glove production process.

[0034] See attached Figure 1 , Attachment Figure 2 , Attachment Figure 3 , Attachment Figure 5 , Attachment Figure 6 As shown, a through fixed guide rail through hole is opened in the middle part of the conical spiral fixed guide rail 2 and on the side close to the central tube 6. Since the conical spiral fixed guide rail 2 is through on the side close to the central tube 6, the conical spiral fixed guide rail 2 is divided into two parts. Therefore, a U-shaped rod 201 is connected to the upper and lower parts of the outer wall of the conical spiral fixed guide rail 2 close to the central tube 6, and the two parts of the conical spiral fixed guide rail 2 are connected by the U-shaped rod 201; an external fixing rod 202 is connected to the outer wall of the conical spiral fixed guide rail 2 away from the central tube 6, and one end of the external fixing rod 202 away from the conical spiral fixed guide rail 2 is connected to the inner wall of the drying chamber 101. There are several U-shaped rods 201 and external fixing rods 202, which are evenly distributed along the conical spiral fixed guide rail 2. The external fixing rod 202 is used to fix and support the conical spiral fixed guide rail 2 on the oven 1, ensuring that the conical spiral fixed guide rail 2 is located in the middle of the drying chamber 101, and providing supporting force for the conical spiral fixed guide rail 2.

[0035] The circulating movable guide rail 3 is slidably sleeved in the fixed guide rail through hole; a penetrating movable guide rail through hole is opened in the middle of the circulating movable guide rail 3 and on one side close to the central tube 6, and a guide rail air hole 301 is opened on the bottom wall of the circulating movable guide rail 3.

[0036] The drying inner tube 4 is located in the conical spiral fixed guide rail 2 and coaxial with the moving guide rail through hole of the circulating moving guide rail 3, the inner cavity of the drying inner tube 4 is communicated with the fixed air inlet pipe 401, the fixed air inlet pipe 401 extends outward along the moving guide rail through hole away from the drying inner tube 4 and is communicated with the central pipe 6, and the bottom wall of the drying inner tube 4 is provided with an inner tube air hole 402. The connection of the fixed air inlet pipe 401 and the central pipe 6 realizes that the hot air in the central pipe 6 enters the drying inner tube 4 through the radial air flow hole 601, and in addition, the connection of the fixed air inlet pipe 401 and the central pipe 6 realizes the supporting effect of the drying inner tube 4 and the fixed air inlet pipe 401, so that the drying inner tube 4 is suspended in the inside of the conical spiral fixed guide rail 2, when the circulating moving guide rail 3 moves to the inside of the conical spiral fixed guide rail 2, the circulating moving guide rail 3 is sleeved on the outer periphery of the drying inner tube 4, the conical spiral fixed guide rail 2 and the drying inner tube 4 are stationary, and the circulating moving guide rail 3 moves, that is, the sleeving state shown in the central pipe 6 in the drawing is formed.

[0037] The top end of the hand mold 5 is rotationally connected to the outer wall of the circulating moving guide rail 3, when the circulating moving guide rail 3 moves along the conical spiral fixed guide rail 2, the hand mold 5 is ensured to be in a vertical downward state, the inside of the hand mold 5 is hollow, and a vertical air flow groove 501 is formed in the middle of the top end of the hand mold 5, and air holes 502 are formed in the outer wall of the hand mold 5, and the glove is sleeved on the outside of the hand mold 5.

[0038] Working principle: when the circulating moving guide rail 3 moves along the conical spiral fixed guide rail 2, the outside of the circulating moving guide rail 3 passes through the conical spiral fixed guide rail 2, the inside of the circulating moving guide rail 3 passes through the drying inner tube 4, the hot air in the central pipe 6 enters the drying inner tube 4 through the fixed air inlet pipe 401, then flows downward into the circulating moving guide rail 3 through the inner tube air hole 402, and flows downward along the guide rail air hole 301 into the hand mold 5, then disperses outward from the hand mold 5 along the air holes 502, since the glove is sleeved on the outside of the hand mold 5, the hot air dispersed outward from the air holes 502 disperses into the drying cavity 101 through the gap of the glove fabric, thereby realizing the drying effect of the glove from inside to outside.

[0039] In the present application, the circulating moving guide rail 3 can be a strip-shaped guide rail with bending property, so that the circulating moving guide rail 3 can bend and move along the conical spiral fixed guide rail 2; in addition, the strip-shaped circulating moving guide rail 3 can be uniformly divided into small segments rotationally connected, like the structure of a common chain, the bendability of the chain ensures that the circulating moving guide rail 3 can move along the conical spiral fixed guide rail 2.

[0040] The top wall of the circulating moving guide rail 3 is provided with a gear 302. A motor can be arranged outside the drying device, and a gear is sleeved on the shaft of the motor. The circulating moving guide rail 3 is driven to move by the meshing of the gear and the gear 302. If the circulating moving guide rail 3 is arranged in the form of a chain, the circulating moving guide rail 3 can be driven to move by the meshing of the gear and the chain in the same manner as the chain is driven to move in the prior art, so as to form the power for driving the circulating moving guide rail 3 to move.

Claims

1. A glove shaping and drying device, characterized in that: include: An oven (1) is provided, wherein the middle portion of the oven (1) forms a drying chamber (101), a conical spiral fixed guide rail (2) is provided in the drying chamber (101), both ends of the conical spiral fixed guide rail (2) extend to the outside of the oven (1), a circulating movable guide rail (3) is slidably sleeved in the conical spiral fixed guide rail (2), a drying inner tube (4) is provided in the conical spiral fixed guide rail (2), the drying inner tube (4) is sleeved in the circulating movable guide rail (3), a hand mold (5) is rotatably connected to the lower end of the circulating movable guide rail (3), and a central tube (6) located in the middle of the conical spiral fixed guide rail (2) is installed in the drying chamber (101).

2. The glove shaping and drying device according to claim 1, characterized in that: The oven (1) is provided with an air inlet clamping chamber (102) located on the periphery of the drying chamber (101), and a return air clamping chamber (103) is provided on the periphery of the air inlet clamping chamber (102). An air balancing bottom chamber (104), a heating bottom chamber (105) and an air collecting bottom chamber (106) are sequentially provided below the bottom wall of the drying chamber (101). An upper air balancing hole (111) and a side air balancing hole (112) are respectively provided on the top wall and the side wall of the air balancing bottom chamber (104). 111) is communicated with the drying chamber (101), the side air balancing hole (112) is communicated with the air inlet clamp chamber (102), a side air inlet hole (113) communicating with the air inlet clamp chamber (102) is provided on the side wall of the drying chamber (101), a top return air hole (114) communicating with the return air clamp chamber (103) is provided on the top wall of the drying chamber (101), and a bottom air gathering hole (115) communicating with the air gathering bottom chamber (106) is provided on the bottom wall of the return air clamp chamber (103).

3. The glove shaping and drying device according to claim 2, characterized in that: A return air pump (7) is installed in the air gathering bottom chamber (106), the air inlet end of the return air pump (7) is communicated with the air gathering bottom chamber (106), the air outlet end of the return air pump (7) is connected to the heating chamber air supply pipe (701), the heating chamber air supply pipe (701) is communicated with the heating bottom chamber (105), a heating pipe (9) is laid in the heating bottom chamber (105), an air supply pump (8) is installed on the outer wall of the oven (1), the air inlet end of the air supply pump (8) is communicated with the heating bottom chamber (105), the air outlet end of the air supply pump (8) is connected to the air distribution chamber air supply pipe (801), the air distribution chamber air supply pipe (801) is communicated with the air distribution bottom chamber (104), and air inlet valves are installed on both the heating chamber air supply pipe (701) and the air distribution chamber air supply pipe (801).

4. The glove shaping and drying device according to claim 3, characterized in that: The bottom end of the central tube (6) is in communication with the air-distributing bottom cavity (104), and radial airflow holes (601) are provided on the outer wall of the central tube (6). The aperture of the radial airflow holes (601) gradually increases from bottom to top, and the central tube (6) is coaxial with the conical spiral fixed guide rail (2).

5. The glove shaping and drying device according to claim 1, characterized in that: The portion of the conical spiral fixed guide rail (2) located inside the drying chamber (101) is in the shape of a spiral cone with a larger inner diameter at the top and a smaller inner diameter at the bottom. The upper and lower layers of the conical spiral fixed guide rail (2) are interlaced with each other. The top end of the conical spiral fixed guide rail (2) extends outward through the inlet of the drying oven (1), and the bottom end of the conical spiral fixed guide rail (2) extends outward through the outlet of the drying oven (1). The circulating movable guide rail (3) moves in a spiral from top to bottom along the conical spiral fixed guide rail (2).

6. The glove shaping and drying device according to claim 5, characterized in that: A through fixed guide rail through hole is provided in the middle of the conical spiral fixed guide rail (2) and on the side close to the central tube (6); the upper and lower parts of the outer wall of the conical spiral fixed guide rail (2) close to the central tube (6) are connected with a U-shaped rod (201); the outer wall of the conical spiral fixed guide rail (2) away from the central tube (6) is connected with an external fixed rod (202); one end of the external fixed rod (202) away from the conical spiral fixed guide rail (2) is connected to the inner wall of the drying chamber (101); the cyclic movable guide rail (3) is slidably sleeved in the fixed guide rail through hole; the cyclic movable guide rail (3) ) and a side close to the central tube (6) are provided with a penetrating movable guide rail through hole, a guide rail air hole (301) is provided on the bottom wall of the circulating movable guide rail (3), the drying inner tube (4) is located in the conical spiral fixed guide rail (2) and is coaxial with the movable guide rail through hole of the circulating movable guide rail (3), the inner cavity of the drying inner tube (4) is connected with a fixed air inlet pipe (401), one end of the fixed air inlet pipe (401) away from the drying inner tube (4) extends outward along the movable guide rail through hole and is connected with the central tube (6), and an inner tube air hole (402) is provided on the bottom wall of the drying inner tube (4).

7. The glove shaping and drying device according to claim 6, characterized in that: Gear teeth (302) are provided on the top wall of the circulating movable guide rail (3), and the two ends of the conical spiral fixed guide rail (2) located outside the oven (1) are connected end to end.

8. The glove shaping and drying device according to claim 6, characterized in that: The top of the hand mold (5) is rotatably connected to the outer wall of the circulating movable guide rail (3); the interior of the hand mold (5) is hollow and a vertical air flow groove (501) is provided in the middle of the top of the hand mold (5); air diffusion holes (502) are provided on the outer wall of the hand mold (5); and the glove is sleeved on the outside of the hand mold (5).