Sizing device and sizing method for producing and processing rubber-sole socks

By repeatedly passing hot steam through the socks in the shaping device for production and processing of rubber socks, increasing the contact between fabric fibers and steam water molecules and generating heat exchange, the problems of low efficiency and steam waste in the existing shaping device are solved, and rapid and effective sock shaping is achieved.

CN120174572APending Publication Date: 2025-06-20ZHEJIANG ZHUJI SENWEITE KNITTING
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Patent Information

Application Number
CN202311736823.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-12-18
Publication Date
2025-06-20

AI Technical Summary

Technical Problem

The existing styling devices are inefficient during the styling process, and cannot quickly and effectively complete the styling of socks, and there are problems of steam waste and uneven styling.

Method used

A shaping device for the production and processing of rubber socks is designed. By repeatedly passing hot steam through the socks, it increases the contact between fabric fibers and steam water molecules and generates heat exchange, so as to achieve rapid and effective heat treatment and shaping.

Benefits of technology

Fast and effective sock styling is achieved, reducing labor time waste, improving productivity, and avoiding the problems of uneven styling and steam waste.

✦ Generated by Eureka AI based on patent content.

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Abstract

The sizing device comprises a forming tank, sealing covers used for sealing the forming tank are movably installed at the two ends of the forming tank respectively, a steam pipeline, a cooling pipeline and a recycling pipeline which are communicated with the interior of the forming tank are arranged on the forming tank, and a sliding rail is fixed to the inner wall of the forming tank; a transfer plate is arranged on the sliding rail, a supporting cylinder is fixed to the transfer plate through a bolt, a hollow sock plate shell is arranged at the top end of the supporting cylinder, air holes are formed in the outer wall of the sock plate shell, a discharge pipe is arranged at the bottom of the forming tank, and a power connector is arranged on one side of the forming tank through a power line. According to the sock shaping device, the contact between fabric fibers and steam water molecules is increased, heat exchange is generated, further heat treatment shaping is conducted on socks so as to achieve rapid and effective shaping, the shaped socks can be rapidly pre-separated from the sock plate shell, and then taking of subsequent production packages is facilitated.
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Description

Technical Field

[0001] The present invention specifically relates to a shaping device and a shaping method for the production and processing of rubber-soled socks, belonging to the technical field of fabric heat setting. Background Art

[0002] A rubber-soled sock is a new type of sock. A rubber layer is coated on the bottom or inside of a traditional fabric sock to increase friction. It can increase the friction between the sock and the ground respectively, and play a certain isolation role. It is often used for children's wear, and can prevent the sock from falling off. It is often used for women's short socks and boat socks, etc.

[0003] During the processing of socks, there will be pulling of mechanical forces such as stretching and twisting during the processes of splicing, sewing and printing and dyeing processing, which will cause a certain degree of deformation to the fabric. The sewn-together socks will have different degrees of shrinkage or wrinkling, which greatly affects the appearance and the wearing experience of the user. At this time, it is necessary to shape the socks to increase the service life of the socks, and at the same time improve the flexibility and elasticity of the sock fibers. Existing shaping devices mostly use steam to perform heat setting on socks. When high-temperature water vapor encounters lower-temperature clothing fibers, the water molecules inside the water vapor begin to release energy and interact with the fiber molecules in the clothing. Since the temperature of the fiber molecules rises, they become more active and cause them to shrink and deform, thus achieving the shaping effect.

[0004] For example, in a Chinese invention patent with the publication number CN115976778A, a shaping device for the processing of children's rubber-soled socks is disclosed, belonging to the technical field of children's rubber-soled sock processing; it includes a base and a steam box. A circular groove is opened on the base, and an intermittent rotation device is arranged inside the circular groove. A turntable is arranged on the rotation device. Eight rubber-soled sock molds are circumferentially and evenly fixedly installed on the turntable, and the rubber-soled sock molds at both ends are correspondingly arranged. When the rubber-soled sock enters the steam box, the baffle plate separates from the bottom end of the cylindrical tube, so that the bottom end of the cylindrical tube is opened, and steam enters the steam box through the cylindrical tube and fully contacts the rubber-soled sock. When the rubber-soled sock separates from the steam box, the baffle plate fits with the bottom end of the cylindrical tube, so that the bottom end of the cylindrical tube is closed, and steam cannot enter the steam box, avoiding the steam from easily dissipating into the air, thereby reducing steam waste, reducing production costs, and at the same time avoiding the situation of insufficient shaping of the local part of the rubber-soled sock, resulting in a good shaping effect on the rubber-soled sock.

[0005] Existing shaping devices mostly simply place the socks in a steam environment, lacking further auxiliary shaping, and the shaping time cannot be shortened, which is very time-consuming and results in low production efficiency. Summary of the Invention

[0006] The object of the present invention is to provide a shaping device and a shaping method for the production and processing of rubber-soled socks, aiming at the deficiencies of the existing technology. By repeatedly passing hot steam through the socks, the contact between fabric fibers and steam water molecules is increased, and heat exchange occurs, so as to further heat-treat and shape the socks to achieve the purpose of rapid and effective shaping.

[0007] A shaping device for the production and processing of rubber-soled socks includes a forming tank. At both ends of the forming tank, there are respectively movably installed closing covers for sealing the forming tank. The side wall of the closing cover is rotatably installed at one opening of the forming tank through a rotating plate, enabling it to be rotated and opened. One side of the closing cover is fixed with a locking mechanism that can maintain a seal with the forming tank. The locking mechanism is used to press the closing cover on the forming tank to prevent steam leakage. The existing locking mechanisms are widely used and will not be described in detail here. There are a steam pipe, a cooling pipe, and a recovery pipe on the forming tank that are connected to the inside of the forming tank. The steam pipe is used to introduce external high-pressure steam into the forming tank. The cooling pipe needs to be connected to an external normal-temperature gas source, usually used in combination with a fan or an air pump. A sliding rail is fixed on the inner wall of the forming tank, and the sliding rail is used to support the transfer plate. There is a transfer plate on the sliding rail, and several socks to be shaped are carried on the transfer plate. A support cylinder is fixed on the transfer plate through bolts. The top of the support cylinder is provided with a hollow sock plate shell, and the socks to be shaped can be sleeved on the sock plate shell, usually manually. There are ventilation holes on the outer wall of the sock plate shell, and the ventilation holes are used to allow steam to pass through. When passing through, the steam can come into contact with the socks. A discharge pipe is provided at the bottom of the forming tank, and the discharge pipe is used to discharge residual steam, as well as possible condensed water or air. One or more control valves need to be provided on the discharge pipe. One side of the forming tank is provided with a power connector through a power cord.

[0008] Preferably, in order to prevent the socks from getting stuck in the ventilation holes and deforming, a support net flush with the outer wall plane of the sock plate shell is provided in the ventilation holes. The bottom of the sock plate shell is connected to the inside of the support cylinder, and a bottom hole is opened on the transfer plate corresponding to the bottom of the support cylinder.

[0009] Preferably, in order to facilitate sleeving the socks on the sock plate shell and facilitate setting components inside, one end of the sock plate shell extends obliquely upward, and the extended end is the insertion end of the socks. A pushing component is provided inside the sock plate shell.

[0010] Preferably, in order to facilitate pushing the socks out smoothly and prevent the socks from being strained, the pushing component includes a main rod. The main rod is slidably installed between the inner walls of the sock plate shell through a collar. A power mechanism for driving the main rod to move is provided inside the sock plate shell. A push outlet is opened at one end of the sock plate shell, and an arc-shaped push plate is provided in the push outlet.

[0011] Preferably, in order to be able to push out the socks with an external force, the power mechanism includes a transmission gear rotatably installed between the inner walls of the sock board housing. The transmission gear meshes with the outer wall of the main rod. A traction rope is wound around the rotating shaft of the transmission gear. The traction rope extends below the sock board housing through a through hole provided at the bottom of the sock board housing. A tension spring is connected between the bottom end of the main rod and the inner wall of the sock board housing. A blocking shaft for restricting the movement trajectory of the traction rope is provided between the inner walls of the sock board housing.

[0012] Preferably, in order to facilitate the removal of the socks after shaping, one end of the traction rope is connected to a suspended trigger rod. A trigger post extending downward is fixed to the bottom inside the shaping tank. An inclined trigger member is fixed to the bottom end of the trigger post. The trigger member can block the trigger rod when the trigger rod passes by, thereby triggering the movement of the traction rope.

[0013] Preferably, in order to press the transfer plate against the sealing frame to separate the space inside the shaping tank, a pressure rod is provided on the shaping tank. One end of the pressure rod extends above the transfer plate. A sealing frame for cooperating with the transfer plate to separate the space is provided on one side of the sliding rail. A sealing strip is provided on the sealing frame. An extendable elastic wheel device and a sealing groove for cooperating with the sealing strip to be embedded are provided at the bottom of the transfer plate. There is a height difference between the sliding rail and the sealing frame to allow the elastic wheel device to pass through. The elastic wheel device includes a positioning cylinder. An elastic spring is fixed inside the positioning cylinder. One end of the elastic spring is fixed to a telescopic rod. One end of the telescopic rod is rotatably installed with a moving wheel through a wheel frame. The telescopic rod can compress the elastic spring and thus enter the positioning cylinder.

[0014] Preferably, in order to further ensure the sealing performance, the sealing frame includes a fixed frame body and a movable frame body. The fixed frame body is fixed inside the forming tank. The movable frame body is fixed on one side of the closing cover. The edge of the movable frame body fits against the inner wall of the sealing cover. And the transfer plate can completely cover the movable frame body and the fixed frame body.

[0015] A shaping method for a shaping device for the production and processing of rubber-soled socks. S1: First, put the socks on the sock board housing outside the forming tank, send the transfer plate into the forming tank, close the closing cover to seal the socks in the forming tank. The height difference between the transfer plate and the forming tank can be compensated by using an external ramp.

[0016] S2: The steam pipeline on the forming tank sends steam into the forming tank. The steam temperature is controlled between 120 - 135 degrees Celsius. At this time, the exhaust pipe discharges air, and the discharge speed gradually slows down until the forming tank is filled with steam, and then preheat for 10 minutes.

[0017] S3: After preheating is completed, the discharge pipe discharges gas periodically, with a discharge interval of opening the steam discharge for 5 - 10 seconds every 1 minute, and then operating continuously for 20 - 30 minutes;

[0018] S4: Then the recovery pipeline opens to recover the steam, so that the steam pressure in the forming tank remains at 0.5 - 1.1 MPa;

[0019] S5: Open the cooling pipeline to introduce external cooling air, then open the discharge pipe to discharge the steam and hot air. After complete cooling, the transfer plate can be pulled out from the other end.

[0020] The beneficial effect of the present invention is that the present invention can increase the contact between fabric fibers and steam water molecules and generate heat exchange by passing hot steam through the socks repeatedly, thereby further heat - treating and shaping the socks to achieve rapid and effective shaping. And the present invention can quickly pre - detach the shaped socks from the sock board shell, which is convenient for subsequent production and packaging.

[0021] After the transfer plate is in place, the pressure rod extends to press the transfer plate downward. Under continuous pressure, the elastic wheel device can contract, and then the transfer plate descends until the sealing groove on the transfer plate presses on the sealing strip, which can separate the space in the forming tank. Then, steam is used to comprehensively and repeatedly heat - treat the socks. After shaping is completed, the transfer plate moves to the other side. When the trigger rod moves to one side of the trigger part, it can be pushed and pressed downward by the trigger part, and then the traction rope is pulled to move. When the traction rope moves, it can drive the transmission gear to rotate, and then drive the main rod to move. The arc push plate is used to push out the socks. When the transfer plate continues to move, the trigger part disengages from the trigger rod, and then the main rod resets under the pulling of the tension spring, which is convenient for relevant personnel to take out the socks more easily. BRIEF DESCRIPTION OF THE DRAWINGS

[0022] Figure 1 is the three - dimensional structure schematic diagram of the present invention;

[0023] Figure 2 is the structure schematic diagram inside the forming tank of the present invention;

[0024] Figure 3 is the cross - sectional structure schematic diagram of the forming tank of the present invention;

[0025] Figure 4 is the structure schematic diagram of the closed cover of the present invention;

[0026] Figure 5 is the structure schematic diagram of the bottom of the transfer plate of the present invention;

[0027] Figure 6 is the structure schematic diagram of the sock board shell of the present invention;

[0028] Figure 7Schematic structural diagram of the elastic wheel device of the present invention;

[0029] Figure 8 Schematic internal structure diagram of the sock board shell of the present invention;

[0030] Figure 9 Schematic flow diagram of the method steps of the present invention.

[0031] In the figure: 1, forming tank; 101, closing cover; 102, steam pipe; 103, cooling pipe; 104, recovery pipe; 105, discharge pipe; 2, sliding rail; 3, transfer plate; 4, support cylinder; 5, sock board shell; 6, pushing-out assembly; 601, main rod; 602, power mechanism; 603, arc pushing plate; 604, transmission gear; 605, towing rope; 606, tension spring; 607, trigger rod; 7, pressure rod; 8, sealing frame; 801, fixed frame body; 802, movable frame body. Specific embodiments

[0032] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0033] Please refer to Figures 1-8As shown, a shaping device for the production and processing of rubber-soled socks includes a shaping tank 1. At both ends of the shaping tank 1, there are respectively movably installed closing covers 101 for sealing the shaping tank 1. The side wall of the sealing cover is rotatably installed at the opening at one end of the shaping tank 1 through a rotating plate and can be rotated and opened. A locking mechanism that can maintain a seal with the shaping tank 1 is fixed on one side of the sealing cover. The locking mechanism is used to press the sealing cover against the shaping tank 1 to prevent steam leakage. The existing locking mechanisms are widely used and will not be described in detail here. A steam pipe 102, a cooling pipe 103, and a recovery pipe 104 that are connected to the inside of the shaping tank 1 are provided on the shaping tank 1. The steam pipe 102 is used to introduce high-pressure steam from the outside into the shaping tank 1. The cooling pipe 103 needs to be connected to an external normal-temperature gas source, usually used in combination with a fan or an air pump. A sliding rail 2 is fixed on the inner wall of the shaping tank 1. The sliding rail 2 is used to support the transfer plate 3. There is a transfer plate 3 on the sliding rail 2. A number of socks to be shaped are carried on the transfer plate 3. A support cylinder 4 is fixed on the transfer plate 3 through bolts. A hollow sock plate shell 5 is provided at the top of the support cylinder 4. The socks to be shaped can be put on the sock plate shell 5, usually manually. Vent holes are provided on the outer wall of the sock plate shell 5. The vent holes are used to allow steam to pass through. When passing through, the steam can come into contact with the socks. A discharge pipe 105 is provided at the bottom of the shaping tank 1. The discharge pipe 105 is used to discharge residual steam and possible condensate or air. One or more control valves need to be provided on the discharge pipe 105. A power connector is provided on one side of the shaping tank 1 through a power cord. When in use, first put the socks to be shaped on the sock plate shell 5, open the closing cover 101 on one side, directly push the transfer plate 3 in. The elastic wheel device can lift the transfer plate 3 above the sealing frame 8, and then close the sealing cover. After closing, high-pressure steam can be conveyed into the shaping tank 1 through the steam pipe 102. Cooperating with the discharge pipe 105 to fill the shaping tank 1 with steam, the shaping can start.

[0034] A support net flush with the outer wall plane of the sock plate shell 5 is provided in the vent holes. The bottom of the sock plate shell 5 is connected to the inside of the support cylinder 4. A bottom hole corresponding to the bottom of the support cylinder 4 is opened on the transfer plate 3. This can prevent the socks from getting into the vent holes and deforming. Steam can enter the sock plate shell 5 through the vent holes and then move to the lower part of the transfer plate 3 through the support cylinder 4.

[0035] One end of the sock plate shell 5 extends obliquely upward. The extended end is the insertion end of the socks. A pushing component 6 is provided inside the sock plate shell 5. This facilitates putting the socks on the sock plate shell 5.

[0036] To facilitate the smooth pushing out of the socks and avoid straining the socks, the pushing component 6 includes a main rod 601. The main rod 601 is slidably installed between the inner walls of the sock board shell 5 through a collar. A power mechanism 602 for driving the movement of the main rod 601 is provided inside the sock board shell 5. An ejection port is provided at one end of the sock board shell 5, and an arc-shaped pushing plate 603 is provided in the ejection port. The power mechanism 602 includes a transmission gear 604 rotatably installed between the inner walls of the sock board shell 5. The transmission gear 604 meshes with the outer wall of the main rod 601. A traction rope 605 is wound around the rotating shaft of the transmission gear 604. The traction rope 605 extends below the sock board shell 5 through a through hole provided at the bottom of the sock board shell 5. A tension spring 606 is connected between the bottom end of the main rod 601 and the inner wall of the sock board shell 5. A blocking shaft for restricting the movement trajectory of the traction rope 605 is provided between the inner walls of the sock board shell 5. To facilitate the relevant personnel to easily remove the socks after shaping, one end of the traction rope 605 is connected to a suspended trigger rod 607. A trigger post extending downward is fixed at the bottom inside the shaping tank. An inclined trigger member is fixed at the bottom end of the trigger post. The trigger member can block the trigger rod 607 when the trigger rod 607 passes by, thereby triggering the movement of the traction rope 605. During use, after shaping is completed, the transfer plate 3 moves to the other side. When the trigger rod 607 moves to one side of the trigger member, it can be pushed downward by the trigger member, and then the traction rope 605 is pulled to move. When the traction rope 605 moves, it can drive the transmission gear 604 to rotate, and then drive the main rod 601 to move, and use the arc-shaped pushing plate 603 to push out the socks. When the transfer plate 3 continues to move, the trigger member disengages from the trigger rod 607, and then the main rod 601 is reset under the pulling of the tension spring 606.

[0037] To better partition the space inside the shaping tank, a pressure rod 7 is provided on the shaping tank. One end of the pressure rod 7 extends above the transfer plate 3. A sealing frame 8 for cooperating with the transfer plate 3 to partition the space is provided on one side of the sliding rail 2. A sealing strip is provided on the sealing frame 8. An expandable elastic wheel device and a sealing groove for cooperating with the sealing strip to be embedded are provided at the bottom of the transfer plate 3. There is a height difference between the sliding rail 2 and the sealing frame 8 to allow the elastic wheel device to pass through. The elastic wheel device includes a positioning cylinder. An elastic spring is fixed inside the positioning cylinder. One end of the elastic spring is fixed with a telescopic rod. One end of the telescopic rod is rotatably installed with a moving wheel through a wheel frame. The telescopic rod can compress the elastic spring and thus enter the positioning cylinder. To further ensure the sealing performance, the sealing frame 8 includes a fixed frame body 801 and a movable frame body 802. The fixed frame body 801 is fixed inside the forming tank 1, and the movable frame body 802 is fixed on one side of the closing cover 101. The edge of the movable frame body 802 fits against the inner wall of the sealing cover. The transfer plate 3 can completely cover the upper part of the movable frame body 802 and the fixed frame body 801. During use, the pressure rod 7 extends out to press the transfer plate 3 downward. Under the continuous pressure, the elastic wheel device can be contracted, and then the transfer plate 3 descends until the sealing groove on the transfer plate 3 presses on the sealing strip.

[0038] See also Figure 9 As shown, a shaping method of a shaping device for producing and processing rubber-soled socks includes S1: firstly, putting the socks on the sock plate shell 5 outside the shaping tank 1, sending the transfer plate 3 into the shaping tank 1, closing the closing cover 101 to seal the socks in the shaping tank 1, and the height difference between the transfer plate 3 and the shaping tank 1 can be compensated by using an external ramp frame;

[0039] S2: The steam pipe 102 on the molding tank 1 delivers steam into the molding tank 1, and the steam temperature is controlled between 120-135 degrees Celsius. At this time, the exhaust pipe 105 exhausts the air, and the exhaust speed gradually slows down until the molding tank 1 is full of steam, and then preheats for 10 minutes;

[0040] S3: After preheating is completed, the exhaust pipe 105 periodically discharges gas, the exhaust interval is to open and discharge steam for 5-10 seconds every 1 minute, and then continue to operate for 20-30 minutes;

[0041] S4: Then the recovery pipe 104 is opened to recover steam, so that the steam pressure in the molding tank 1 is maintained at 0.5-1.1 MPa;

[0042] S5: Open the cooling pipe 103 to introduce external cooling air, and then open the exhaust pipe 105 to exhaust the steam and hot air. After complete cooling, the transfer plate 3 can be pulled out at the other end.

[0043] When the present invention is in use, first connect the power connector on one side of the shaping tank to the external power supply, pre-set the socks to be shaped on the sock plate shell 5, open the closing cover 101 on one side, and directly push the transfer plate 3 in. The elastic wheel device can lift the transfer plate 3 to the top of the sealing frame 8, and then close the sealing cover. After closing, high-pressure steam can be transported into the shaping tank 1 through the steam pipe 102, and the shaping tank 1 is filled with steam in cooperation with the discharge pipe 105, and then shaping can begin.

[0044] After the transfer plate 3 is in place, the pressure rod 7 extends out to press the transfer plate 3 downward. Under continuous pressure, the elastic wheel device can shrink, and then the transfer plate 3 is lowered until the sealing groove on the transfer plate 3 is pressed on the sealing strip, so that the space in the molding tank 1 can be separated. After the shaping is completed, the transfer plate 3 moves to the other side. When the trigger rod 607 moves to one side of the trigger member, it can be pushed downward by the trigger member, and then the traction rope 605 is pulled to move. When the traction rope 605 moves, it can drive the transmission gear 604 to rotate, and then drive the main rod 601 to move, and use the arc push plate 603 to push the socks out. When the transfer plate 3 continues to move, the trigger member disengages from the trigger rod 607, and then the main rod 601 is reset under the pull of the tension spring 606, which can make it easier for relevant personnel to take out the socks.

[0045] The present invention can repeatedly pass hot steam through the socks, increasing the contact between the fabric fibers and the steam water molecules and generating heat exchange, thereby further heat-treating and shaping the socks to achieve rapid and effective shaping. Moreover, the present invention can quickly pre-detach the shaped socks from the sock board shell 5, automatically detaching a part of the socks from the sock board shell 5 after the shaping is completed, thus facilitating the transfer and removal by relevant personnel in the subsequent process.

[0046] For those skilled in the art, it is obvious that the present invention is not limited to the details of the above exemplary embodiments, and without departing from the spirit or basic characteristics of the present invention, the present invention can be implemented in other specific forms. Therefore, from any point of view, the embodiments should be regarded as exemplary and non-limiting. The scope of the present invention is defined by the appended claims rather than the above description. Therefore, all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present invention. Any reference signs in the claims should not be construed as limiting the claimed invention.

[0047] In addition, it should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative manner of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.

Claims

1. A shaping device for the production and processing of rubber-soled socks, comprising a shaping tank (1), characterized in that: Both ends of the forming tank (1) are movably installed with closing covers (101) for sealing the forming tank (1). A steam pipeline (102), a cooling pipeline (103), and a recovery pipeline (104) that are communicated with the inside of the forming tank (1) are provided on the forming tank (1). A sliding rail (2) is fixed on the inner wall of the forming tank (1). A transfer plate (3) is provided on the sliding rail (2). A support cylinder (4) is fixed on the transfer plate (3) by bolts. A hollow sock plate shell (5) is provided at the top of the support cylinder (4). Vent holes are provided on the outer wall of the sock plate shell (5). A discharge pipe (105) is provided at the bottom of the forming tank (1). A power connector is provided on one side of the forming tank (1) through a power cord.

2. The shaping device for the production and processing of rubber-soled socks according to claim 1, characterized in that: A support net flush with the outer wall plane of the sock plate shell (5) is provided in the vent holes. The bottom of the sock plate shell (5) is communicated with the inside of the support cylinder (4). A bottom hole is provided on the transfer plate (3) corresponding to the bottom of the support cylinder (4).

3. The shaping device for the production and processing of rubber-soled socks according to claim 2, characterized in that: One end of the sock plate shell (5) extends obliquely upward, and the extended end is the insertion end of the sock. A pushing component (6) is provided in the sock plate shell (5).

4. The shaping device for the production and processing of rubber-soled socks according to claim 3, characterized in that: The pushing component (6) includes a main rod (601). The main rod (601) is slidably installed between the inner walls of the sock plate shell (5) through a collar. A power mechanism (602) for driving the main rod (601) to move is provided in the sock plate shell (5). A push outlet is provided at one end of the sock plate shell (5). An arc-shaped push plate (603) is provided in the push outlet.

5. The shaping device for the production and processing of rubber-soled socks according to claim 4, characterized in that: The power mechanism (602) includes a transmission gear (604) rotatably installed between the inner walls of the sock plate shell (5). The transmission gear (604) meshes with the outer wall of the main rod (601). A traction rope (605) is wound around the rotating shaft of the transmission gear (604). The traction rope (605) extends below the sock plate shell (5) through a through hole provided at the bottom of the sock plate shell (5). A tension spring (606) is connected between the bottom end of the main rod (601) and the inner wall of the sock plate shell (5). A blocking shaft for restricting the movement track of the traction rope (605) is provided between the inner walls of the sock plate shell (5).

6. The shaping device for the production and processing of rubber-soled socks according to claim 5, characterized in that: One end of the traction rope (605) is connected with a suspended trigger rod (607). A trigger column extending downward is fixed at the bottom inside the shaping tank. An inclined trigger piece is fixed at the bottom end of the trigger column.

7. The shaping device for the production and processing of rubber-soled socks according to claim 1, characterized in that: A pressure rod (7) is provided on the shaping tank. One end of the pressure rod (7) extends above the transfer plate (3). A sealing frame (8) for cooperating with the transfer plate (3) to divide the space is provided on one side of the sliding rail (2). Sealing strips are provided on the sealing frame (8). An expandable elastic wheel device and a sealing groove for cooperating with the sealing strips to be inserted are provided at the bottom of the transfer plate (3).

8. The shaping device for the production and processing of rubber-soled socks according to claim 7, characterized in that: The sealing frame (8) includes a fixed frame body (801) and a movable frame body (802). The fixed frame body (801) is fixed inside the forming tank (1). The movable frame body (802) is fixed on one side of the closing cover (101).

9. A shaping method for a shaping device for the production and processing of rubber-soled socks, characterized in that, Including the following steps: S1: First, put the sock on the sock board shell (5) outside the forming tank (1), send the transfer board (3) into the forming tank (1), and close the closing cover (101) to seal the sock in the forming tank (1). S2: The steam pipe (102) on the forming tank (1) sends steam into the forming tank (1). The steam temperature is controlled between 120 - 135 degrees Celsius. At this time, the discharge pipe (105) discharges air, and the discharge speed gradually slows down until the forming tank (1) is filled with steam, and then preheat for 10 minutes. S3: After the preheating is completed, the discharge pipe (105) discharges gas periodically. The discharge interval is to open the steam discharge for 5 - 10 seconds every 1 minute, and then operate continuously for 20 - 30 minutes. S4: Then the recovery pipe (104) is opened to recover steam, so that the steam pressure in the forming tank (1) is maintained at 0.5 - 1.1 MPa. S5: Open the cooling pipe (103) to introduce external cooling air, and then open the discharge pipe (105) to discharge steam and hot air. After complete cooling, the transfer board (3) can be pulled out at the other end.

Citation Information

Patent Citations

  • Shaping equipment for children rubber sole sock processing

    CN115976778A