Sock hot-pressing equipment with rapid cooling function

By using heat-conducting plates and replaceable cooling plates in the sock heat-pressing equipment, the problem of energy loss caused by heat dissipation into the air is solved, achieving rapid heating and cooling, improving sock shaping efficiency and reducing energy consumption.

CN223468576UActive Publication Date: 2025-10-24HUBEI MIANHUOMIANBAN INTELLIGENT KNITTING TECH CO LTD
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Patent Information

Application Number
CN202422499929.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-16
Publication Date
2025-10-24
Estimated Expiration
2034-10-16

AI Technical Summary

Technical Problem

During the hot pressing process, some of the heat is dissipated into the air, resulting in significant energy loss. The hot pressing mold also heats up and cools down slowly, affecting production efficiency and increasing energy consumption.

Method used

The sock hot pressing equipment uses rapid cooling to transfer heat through contact between the heat-conducting plate and the sock. Combined with replaceable cooling plates and hot pressing plates, it achieves rapid heating and cooling, reduces energy loss, and improves production efficiency.

Benefits of technology

It effectively reduces heat dissipation in the air, improves the working efficiency of hot pressing equipment and the shaping speed of socks, and reduces energy consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses sock hot-pressing equipment capable of cooling quickly, which relates to the technical field of sock processing and particularly comprises an equipment body, a cold fluid box and a hot fluid box are arranged outside the equipment body, and hot-pressing structures are arranged on two sides of an inner cavity of the equipment body. And the hot-pressing structure comprises a first hydraulic telescopic rod fixedly connected with the equipment body and a bottom plate fixedly connected with the first hydraulic telescopic rod, hot-pressing assemblies are evenly arranged on the top of the bottom plate, and each hot-pressing assembly comprises a hot-pressing frame movably connected with the bottom plate and a hot-pressing plate connected with the hot fluid box. According to the sock hot-pressing equipment with the rapid cooling function, the hot-pressing assembly transfers heat through the heat conducting plate matched with socks, the situation that part of heat is directly dissipated in air in the hot-pressing process of the socks is avoided, and the energy loss of the hot-pressing equipment is reduced; and a heating frame and a transmission structure are arranged, so that the heating assembly can quickly replace a heat conducting plate matched with the socks, and the working efficiency of the hot pressing equipment is improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of socks processing, in particular to a socks hot pressing device with rapid cooling. Background Art

[0002] After the socks are woven, they need to be shaped, and hot pressing is a common shaping method in the sock processing process. The sock hot pressing shaping process is usually as follows: before shaping, the socks are put on a prepared sock board to adjust the size of the socks appropriately, and then the socks and the sock board are hot pressed together. After hot pressing, the socks are cooled and shaped. Because during the hot pressing process, the heat in the part where the hot pressing plate contacts the socks is transferred to the socks, while the heat in the part where the hot pressing plate does not contact the socks is directly dissipated into the air, resulting in a large energy loss of the hot press during the hot pressing process. In addition, the hot pressing mold needs to be heated and cooled during the hot pressing shaping process. Since the hot pressing mold absorbs a certain amount of heat, the heating and cooling speed of the hot pressing mold is slow, which affects the sock production efficiency and increases energy consumption. Based on this, the present application proposes a sock hot pressing device with rapid cooling. Utility Model Content

[0003] The utility model provides a sock hot pressing device with rapid cooling, which solves the problems raised in the above-mentioned background technology that, during the hot pressing process of socks, a part of the energy is directly dissipated into the air, resulting in a large energy loss of the hot pressing machine; the hot pressing mold absorbs a certain amount of heat, resulting in a slow heating and cooling speed of the hot pressing mold, affecting the sock production efficiency and increasing energy consumption.

[0004] The utility model provides the following technical solutions: a fast cooling sock hot pressing device, comprising a device body, a cold fluid box and a hot fluid box being provided on the outside of the device body, hot pressing structures being provided on both sides of the inner cavity of the device body, the hot pressing structure comprising a hydraulic telescopic rod 1 fixedly connected to the device body and a bottom plate fixedly connected to the hydraulic telescopic rod 1, hot pressing components being evenly provided on the top of the bottom plate, the hot pressing components comprising a hot pressing frame movably connected to the bottom plate, a hot pressing plate connected to the hot fluid box and a cooling plate connected to the cold fluid box, two adjacent hot pressing frames being connected by a transmission structure, a heat conducting plate adapted for socks being fixed on the side wall of the hot pressing frame, a heat insulating plate being provided on the top of the hot pressing frame, the heat insulating plate being fixedly connected to the bottom plate, and a side of the heat insulating plate close to the hydraulic telescopic rod 1 being flush with a side of the inner cavity of the hot pressing frame away from the hydraulic telescopic rod 1;

[0005] Two adjacent hot pressing plates are connected through connecting plate one, two adjacent cooling plates are connected through connecting plate two, the hot pressing plate and the cooling plate are matched with the inner cavity of the hot pressing frame, the hot pressing plate is connected with the bottom plate through the lifting translation structure, the cooling plate is connected with the heat insulation plate through the hydraulic telescopic rod two, and the cooling plate and the heat insulation plate are in contact on the side close to the hydraulic telescopic rod one.

[0006] Preferably, one end of the device body is provided with a sock inlet, the other end of the device body is provided with a sock outlet, the bottom end of the inner cavity of the device body is provided with a sock conveying structure, and the sock conveying structure is located between the two groups of hot pressing structures.

[0007] Preferably, the middle part of the bottom of the hot pressing frame is fixedly connected with a rotating rod, and the rotating rod is movably connected with the bottom plate; the transmission structure comprises a chain wheel one fixedly connected with the rotating rod, a chain wheel two movably connected with the bottom plate and a synchronous wheel fixedly connected with the chain wheel two, adjacent chain wheels one and chain wheels two are connected through a chain transmission, and adjacent two synchronous wheels are connected through a synchronous belt transmission.

[0008] Preferably, the bottom plate is fixedly connected with a rotating motor, and the output shaft of the rotating motor is fixedly connected with a synchronous wheel.

[0009] Preferably, the lifting translation structure comprises a hydraulic telescopic rod three fixedly connected with the bottom plate and a hydraulic telescopic rod four fixedly connected with the hydraulic telescopic rod three, and the output shaft of the hydraulic telescopic rod four is fixedly connected with the hot pressing plate.

[0010] Preferably, the back surface of the hot pressing plate is provided with a hot fluid inlet pipe and a hot fluid outlet pipe, the other end of the hot fluid inlet pipe is connected with the liquid outlet end of the hot fluid tank, and the other end of the hot fluid outlet pipe is connected with the liquid inlet end of the hot fluid tank; the top of the cooling plate is provided with a cold fluid inlet pipe and a cold fluid outlet pipe, the other end of the cold fluid inlet pipe is connected with the liquid outlet end of the cold fluid tank, and the other end of the cold fluid outlet pipe is connected with the liquid inlet end of the cold fluid tank.

[0011] Preferably, the thickness of the heat conduction plate is the same as the thickness of the frame wall of the hot pressing frame, and the outer surface of the hot pressing frame is coated with a heat insulation coating.

[0012] Compared with the prior art, the utility model has the following beneficial effects:

[0013] 1. This fast-cooling sock hot pressing equipment uses a heat-conducting plate that matches the socks to transfer heat. This prevents some of the heat from being directly dissipated into the air during the hot pressing process, thereby reducing the energy loss of the hot pressing equipment. Furthermore, the arrangement of the heating frame and transmission structure enables the heating component to quickly replace the heat-conducting plate that matches the socks. This equipment can quickly hot-press and shape socks of various sizes, thereby improving the working efficiency of the hot pressing equipment.

[0014] 2. The rapid cooling sock hot pressing equipment is equipped with a cooling plate, a hot pressing plate and a heat conducting plate. When the equipment is in use, the socks can be heated and cooled by replacing the cooling plate or the hot pressing plate in contact with the heat conducting plate. The cooling plate and the hot pressing plate can be replaced quickly, so that the temperature of the hot pressing component can be changed quickly, thereby improving the cooling and shaping speed of the socks. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 This is a front view of the structure of the utility model;

[0016] Figure 2 For the utility model structure Figure 1 Schematic diagram on the back;

[0017] Figure 3 For the utility model structure Figure 2 Internal schematic diagram;

[0018] Figure 4 This is a schematic diagram of the hot pressing structure of the utility model;

[0019] Figure 5 For the utility model structure Figure 4 Schematic diagram on the back;

[0020] Figure 6 For the utility model structure Figure 4 Schematic diagram from top view;

[0021] Figure 7 For the utility model structure Figure 4 Explosion diagram;

[0022] Figure 8 This is a schematic diagram of the structural cooling plate of the utility model.

[0023] In the figure: 1, the device body; 2, cold fluid tank; 3, hot fluid tank; 4, sock inlet; 5, sock conveying structure; 6, sock outlet; 7, hot pressing structure; 8, bottom plate; 9, hydraulic telescopic rod one; 10, hot pressing frame; 11, heat conduction plate; 12, hydraulic telescopic rod three; 13, heat insulation plate; 14, connecting plate two; 15, cooling plate; 16, hot pressing plate; 17, connecting plate one; 18, hydraulic telescopic rod four; 19, hydraulic telescopic rod two; 20, synchronous belt; 21, chain; 22, sprocket one; 23, sprocket two; 24, rotating motor; 25, heat insulation pad; 26, fluid flow plate. DETAILED DESCRIPTION

[0024] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0025] The utility model provides a kind of sock hot pressing equipment of quick cooling, including device body 1, one end of device body 1 is equipped with sock inlet 4, the other end of device body 1 is equipped with sock outlet 6, the bottom of the inner chamber of device body 1 is equipped with sock conveying structure 5, under the action of sock conveying structure 5, sock to be shaped enters the inner chamber of device body 1 by sock inlet 4, sock after shaping is removed by sock outlet 6, and the equipment is when actually used, staff can be hung with dense curtain on sock inlet 4 and sock outlet 6, sock inlet 4 or sock outlet 6 is shielded using dense curtain, reduce the influence of external environment on equipment internal environment when the equipment is used.Sock conveying structure 5 can be chain conveying structure, sock conveying structure 5 is fixed with sock board adapted to sock, sock to be shaped is sleeved on sock board.

[0026] The outside of device body 1 is equipped with cold fluid tank 2 and hot fluid tank 3, cold fluid tank 2 and hot fluid tank 3 can be constant temperature oil tank, the both sides of the inner chamber of device body 1 are equipped with hot pressing structure 7, sock conveying structure 5 is located between two groups of hot pressing structure 7.

[0027] Hot pressing structure 7 includes hydraulic telescopic rod one 9 fixedly connected with device body 1 and bottom plate 8 fixedly connected with hydraulic telescopic rod one 9, the extension of hydraulic telescopic rod one 9 can change the position of bottom plate 8 fixedly connected therewith.The top of bottom plate 8 is uniformly equipped with hot pressing assembly, and bottom plate 8 can drive hot pressing assembly to move when moving.

[0028] The hot-pressing assembly comprises the hot-pressing frame 10 movably connected with the bottom plate 8, the hot-pressing plate 16 connected with the hot fluid tank 3, and the cooling plate 15 connected with the cold fluid tank 2. Two adjacent hot-pressing frames 10 are connected through a transmission structure. A rotating rod is fixedly connected to the middle of the bottom of the hot-pressing frame 10, and the rotating rod is movably connected with the bottom plate 8. The transmission structure comprises a chain wheel one 22 fixedly connected with the rotating rod, a chain wheel two 23 movably connected with the bottom plate 8, and a synchronous wheel fixedly connected with the chain wheel two 23. Two adjacent chain wheel ones 22 and chain wheel twos 23 are connected through a chain 21, and two adjacent synchronous wheels are connected through a synchronous belt 20. A rotating motor 24 is fixedly connected to the bottom plate 8, and the output shaft of the rotating motor 24 is fixedly connected with a synchronous wheel through a speed reducer. Through the arrangement of the rotating motor 24, the rotation of the rotating motor 24 can drive the synchronous wheel fixedly connected thereto to rotate. The rotating synchronous wheel can drive other synchronous wheels to rotate through the synchronous belt 20. The rotating synchronous wheel drives the chain wheel two 23 fixedly connected thereto to rotate. The chain wheel two 23 can drive the chain wheel one 22 to rotate through the chain 21 engaged therewith. The chain wheel one 22 can drive the hot-pressing frame 10 to rotate through the rotating rod fixedly connected therewith. That is, the operation of the rotating motor 24 can drive the hot-pressing frames 10 on the bottom plate 8 to rotate synchronously.

[0029] A heat-conducting plate 11 adapted to the sock is fixedly connected to the sidewall of the hot-pressing frame 10. The side of the hot-pressing frame 10 away from the hydraulic telescopic rod one 9 is flush with the side of the bottom plate 8 away from the hydraulic telescopic rod one 9. When the device is in use, the movement of the hydraulic telescopic rod one 9 can drive the hot-pressing frame 10 to move. The hot-pressing frames 10 on both sides of the sock conveying structure 5 can press the sock synchronously, which is convenient for the shaping of the sock, and the sock is in contact with the heat-conducting plate 11. When the hot-pressing frame 10 rotates, the position of the heat-conducting plate 11 on the hot-pressing frame 10 can change, so that the hot-pressing assembly can realize the quick replacement of the heat-conducting plate 11 when the device is in use, and the device can heat-press and shape socks of various sizes.

[0030] The thickness of the heat-conducting plate 11 is the same as the thickness of the frame wall of the hot-pressing frame 10. The outer surface of the hot-pressing frame 10 is coated with a heat insulation coating. Heat is transferred to the sock through the heat-conducting plate 11, reducing energy consumption. The heat insulation coating material can be nano heat insulation paint.

[0031] A heat insulation plate 13 is arranged on the top of the hot-pressing frame 10. The heat insulation plate 13 is fixedly connected with the bottom plate 8. The side of the heat insulation plate 13 close to the hydraulic telescopic rod one 9 is flush with the side of the inner cavity of the hot-pressing frame 10 away from the hydraulic telescopic rod one 9. The side of the heat insulation plate 13 away from the hydraulic telescopic rod one 9 is flush with the side of the bottom plate 8 away from the hydraulic telescopic rod one 9.

[0032] Two adjacent hot pressing plates 16 are connected by connecting plate one 17, two adjacent cooling plates 15 are connected by connecting plate two 14, the hot pressing plate 16 and the cooling plate 15 are matched with the inner cavity of the hot pressing frame 10, the hot pressing plate 16 is connected with the bottom plate 8 through the lifting and translating structure, the lifting and translating structure includes the hydraulic telescopic rod three 12 fixedly connected with the bottom plate 8 and the hydraulic telescopic rod four 18 fixedly connected with the hydraulic telescopic rod three 12, the output shaft end of the hydraulic telescopic rod four 18 is fixedly connected with the hot pressing plate 16, through the setting of the lifting and translating structure, the extension and contraction of the hydraulic telescopic rod three 12 can change the distance between the hot pressing plate 16 and the heat conducting plate 11 matched with the socks, the extension and contraction of the hydraulic telescopic rod four 18 can change the height of the hot pressing plate 16, under the action of the hydraulic telescopic rod four 18, the hot pressing plate 16 can be moved to the upper side of the hot pressing frame 10, which is convenient for the rotation of the hot pressing frame 10; the cooling plate 15 is connected with the heat insulation plate 13 through the hydraulic telescopic rod two 19, one end of the hydraulic telescopic rod two 19 is fixedly connected with the heat insulation plate 13, the output shaft end of the hydraulic telescopic rod two 19 is fixedly connected with the cooling plate 15, the extension and contraction of the hydraulic telescopic rod two 19 can change the position of the cooling plate 15, and when the hot pressing plate 16 and the heat conducting plate 11 matched with the socks are separated, under the action of the hydraulic telescopic rod two 19, the cooling plate 15 can be in contact with the heat conducting plate 11, so that the socks are quickly cooled, and the sock shaping efficiency is improved.

[0033] The hot pressing plate 16 and the cooling plate 15 both include a fluid flow plate 26 and a heat insulation pad 25 fixed outside the fluid flow plate 26, and one end of the hot pressing plate 16 and the cooling plate 15 away from the hydraulic telescopic rod one 9 is not fixed with the heat insulation pad 25, so that the heat transfer is facilitated, through the setting of the heat insulation pad 25, the heat insulation pad 25 can block the heat, so that when the equipment is used, the heat is only transferred between the socks, the heat conducting plate 11 in contact with the socks and the side wall of the hot pressing plate 16 or the side wall of the cooling plate 15 in contact with the heat conducting plate, the energy consumption loss is reduced, the fluid flow plate 26 is provided with a fluid flow channel, the fluid flow channel is generally S-shaped, the fluid flow plate 26 is made of heat conducting material, and the material of the fluid flow plate 26 and the material of the heat conducting plate 11 are both copper, when the fluid flow plate 26 is in contact with the heat conducting plate 11, the heat can be quickly transferred between the fluid and the socks, so that the hot pressing and cooling of the socks are facilitated. The materials of the heat insulation plate 13 and the heat insulation pad 25 are both glass fiber.

[0034] The back surface of the hot pressing plate 16 is provided with a hot fluid inlet pipe and a hot fluid outlet pipe, the other end of the hot fluid inlet pipe is connected with the liquid outlet end of the hot fluid tank 3, and the other end of the hot fluid outlet pipe is connected with the liquid inlet end of the hot fluid tank 3; the top of the cooling plate 15 is provided with a cold fluid inlet pipe and a cold fluid outlet pipe, the other end of the cold fluid inlet pipe is connected with the liquid outlet end of the cold fluid tank 2, and the other end of the cold fluid outlet pipe is connected with the liquid inlet end of the cold fluid tank 2.

[0035] From the above description, it can be seen that when the device is in use, the hot pressing structure contacts the socks through the heat conducting plate 11. By changing the cooling plate 15 or the hot pressing plate 16 in contact with the heat conducting plate 11, the socks can be quickly heated up or cooled down. The setting of the cooling plate 15 and the hot pressing plate 16 can avoid heat loss during the switching process between the heating operation and the cooling operation, thereby saving resources.

[0036] The electrical components involved in this application are all existing technologies. Those skilled in the art are familiar with their connection methods. Through these people, all the electrical components in this application are connected to their corresponding power supplies through wires, and according to actual conditions, appropriate controllers are selected to meet control requirements. The specific connections and control sequences are described below. The electrical connections between the electrical components are completed in a sequential working order. The detailed connection methods are well known in the art. The following mainly introduces the working principles and processes, and no further explanation of electrical control is given.

[0037] In summary: when the fast cooling sock hot pressing equipment is used, after the socks are moved between the two sets of hot pressing structures 7 by the sock conveying structure 5, the sock conveying structure 5 stops working, the hydraulic telescopic rod 1 9 drives the bottom plate 8 to move, and the bottom plate 8 drives the hot pressing assembly to move, and the hot pressing assembly can perform hot pressing and shaping operations on the socks. In this process, when the socks are heated and heated, the hot pressing plate 16 and the heat conducting plate 11 in contact with the socks are in a tightly fitted state, and the hot fluid discharged from the hot fluid box 3 circulates in the inner cavity of the hot pressing plate 16 through the hot fluid inlet pipe and the hot fluid discharge pipe, and the hot fluid heats the socks. When the socks need to be cooled and shaped, the hydraulic telescopic rod 3 12 drives the hot pressing plate 16 away from the heat conducting plate 11 until the hot pressing plate 16 moves to the cooling plate 15 On the side away from the socks, the hydraulic telescopic rod 2 19 drives the cooling plate 15 to move downward, and the cooling plate 15 contacts the heat conducting plate 11 in contact with the socks. The heat on the socks can be quickly transferred to the cold fluid through the heat conducting plate 11, thereby achieving rapid cooling of the socks and improving the efficiency of hot pressing and shaping of the socks. When the heat conducting plate 11 needs to be replaced, the hydraulic telescopic rod 3 12 drives the hot pressing plate 16 to move to the side of the cooling plate 15 away from the socks, and then the hydraulic telescopic rod 4 18 drives the hot pressing plate 16 to move upward until the hot pressing plate 16 moves to the top of the hot pressing frame 10, and the rotating motor 24 is started. The operation of the rotating motor 24 can make the hot pressing frame 10 rotate, and the heat conducting plate 11 adapted to the socks can be moved to the side of the hot pressing frame 10 away from the hydraulic telescopic rod 1 9, thereby achieving rapid replacement of the heat conducting plate 11.

[0038] The standard parts used in the utility model can be purchased from the market, the special-shaped parts can be ordered according to the description and the drawings, the specific connecting mode of each part adopts the conventional means such as bolts, rivets and welding in the prior art, the machinery, parts and equipment adopt conventional models in the prior art, and the conventional models will not be described in detail, the contents not described in detail in the description belong to the prior art known by the professional technical personnel in the field, although the embodiments of the utility model have been shown and described, it can be understood by the ordinary skilled in the art that the embodiments can be changed, modified, replaced and modified in various manners without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and equivalents thereof.

Claims

1. A rapid-cooling sock heat-pressing apparatus comprising an apparatus body (1), characterized in that: The outside of the device body (1) is provided with a cold fluid tank (2) and a hot fluid tank (3), both sides of the inner cavity of the device body (1) are provided with a hot pressing structure (7), the hot pressing structure (7) includes a hydraulic telescopic rod one (9) fixedly connected with the device body (1) and a bottom plate (8) fixedly connected with the hydraulic telescopic rod one (9), the top of the bottom plate (8) is uniformly provided with a hot pressing assembly, the hot pressing assembly includes a hot pressing frame (10) movably connected with the bottom plate (8), a hot pressing plate (16) connected with the hot fluid tank (3) and a cooling plate (15) connected with the cold fluid tank (2), two adjacent hot pressing frames (10) are connected through a transmission structure, the side wall of the hot pressing frame (10) is fixedly provided with a heat conduction plate (11) matched with the sock, the top of the hot pressing frame (10) is provided with a heat insulation plate (13), the heat insulation plate (13) is fixedly connected with the bottom plate (8), and the side of the heat insulation plate (13) close to the hydraulic telescopic rod one (9) is flush with the side of the inner cavity of the hot pressing frame (10) away from the hydraulic telescopic rod one (9). Two adjacent hot pressing plates (16) are connected through a connecting plate one (17), two adjacent cooling plates (15) are connected through a connecting plate two (14), the hot pressing plate (16) and the cooling plate (15) are matched with the inner cavity of the hot pressing frame (10), the hot pressing plate (16) is connected with the bottom plate (8) through a lifting translation structure, the cooling plate (15) is connected with the heat insulation plate (13) through a hydraulic telescopic rod two (19), and the side of the cooling plate (15) and the heat insulation plate (13) close to the hydraulic telescopic rod one (9) is in contact.

2. A rapid cooling sock heat press apparatus as claimed in claim 1, wherein: One end of the device body (1) is provided with a sock inlet (4), the other end of the device body (1) is provided with a sock outlet (6), and the bottom end of the inner cavity of the device body (1) is provided with a sock conveying structure (5), the sock conveying structure (5) is located between the two groups of hot pressing structures (7).

3. A rapid cooling sock heat press apparatus as defined in claim 1, wherein: The middle of the bottom of the hot pressing frame (10) is fixedly connected with a rotating rod, and the rotating rod is movably connected with the bottom plate (8); the transmission structure includes a chain wheel one (22) fixedly connected with the rotating rod, a chain wheel two (23) movably connected with the bottom plate (8) and a synchronous wheel fixedly connected with the chain wheel two (23), adjacent chain wheel ones (22) and chain wheel twos (23) are drivingly connected through chains (21), and adjacent synchronous wheels are drivingly connected through synchronous belts (20).

4. A rapid cooling sock heat press apparatus as claimed in claim 3, wherein: The bottom plate (8) is fixedly connected with a rotating motor (24), and the output shaft of the rotating motor (24) is fixedly connected with a synchronous wheel.

5. A rapid cooling sock heat press apparatus as defined in claim 1, wherein: The lifting translation structure includes a hydraulic telescopic rod three (12) fixedly connected with the bottom plate (8) and a hydraulic telescopic rod four (18) fixedly connected with the hydraulic telescopic rod three (12), and the output shaft of the hydraulic telescopic rod four (18) is fixedly connected with the hot pressing plate (16).

6. A rapid cooling sock heat press apparatus as defined in claim 1, wherein: The back of the hot pressing plate (16) is provided with a hot fluid inlet pipe and a hot fluid outlet pipe, the other end of the hot fluid inlet pipe is connected with the liquid outlet end of the hot fluid tank (3), and the other end of the hot fluid outlet pipe is connected with the liquid inlet end of the hot fluid tank (3); the top of the cooling plate (15) is provided with a cold fluid inlet pipe and a cold fluid outlet pipe, the other end of the cold fluid inlet pipe is connected with the liquid outlet end of the cold fluid tank (2), and the other end of the cold fluid outlet pipe is connected with the liquid inlet end of the cold fluid tank (2).

7. A rapid cooling sock heat press apparatus as defined in claim 1, wherein: The thickness of the heat conducting plate (11) is the same as the thickness of the frame wall of the hot pressing frame (10), and the outer surface of the hot pressing frame (10) is coated with a heat insulation coating.