Calendering equipment for producing high-density windproof fabric

By setting a heating tank in the calendering roller and utilizing a water inlet pipe and a water supply system, the production of high-density windproof fabrics is achieved, which solves the problem of insufficient density after calendering in the existing technology, simplifies the operating steps, and improves the convenience and safety of use.

CN223445823UActive Publication Date: 2025-10-17ALLIS EDUCATIONAL EQUIP TECH (SUZHOU) CO LTD
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Patent Information

Application Number
CN202422717656.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-07
Publication Date
2025-10-17
Estimated Expiration
2034-11-07

AI Technical Summary

Technical Problem

In the existing technology for producing high-density fabrics, the density after calendering is insufficient and additional heating is required, which increases the complexity of the operation and affects the convenience.

Method used

A calendering roller with a heating tank is used. Hot water is injected into the calendering roller through the water inlet pipe and the rotating component is used to drive the fabric to be calendered. Combined with the water supply pump and controller, automatic water change is achieved, simplifying the operation steps.

Benefits of technology

The density of the calendered fabric is increased, the operation process is simplified, the convenience of use and the calendering quality are improved, and the safety risks are reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to calendaring equipment for high-density windproof fabric production, which relates to the technical field of fabric calendaring, and comprises a machine body, a calendaring roller and a water inlet pipeline, the calendaring roller is rotatably arranged on the machine body, a heating groove is arranged in the calendaring roller, the calendaring roller is provided with a connecting groove communicated with the heating groove, and the water inlet pipeline is communicated with the connecting groove. The water inlet pipeline penetrates through the connecting groove to be inserted into the heating groove, a connecting assembly is arranged on the water inlet pipeline and the machine body, the connecting assembly is used for connecting the water inlet pipeline and the machine body, the machine body is provided with a rotating assembly, and the rotating assembly is used for driving the calendaring roller to rotate. The application has the effect of improving the use convenience.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of fabric calendering, especially to calendering equipment for high-density windproof fabric production. BACKGROUND

[0002] In order to improve the windproof performance of clothes, high-density fabric is often used to make clothes. During the production of clothes, calendering is a finishing process that uses the plasticity of fibers to flatten the surface of the fabric or roll out parallel fine lines through rollers and other equipment to improve the gloss and density of the fabric.

[0003] The prior art discloses a calendering machine, which comprises a machine body and two groups of rollers rotatably arranged on the machine body. The two groups of rollers are driven to rotate in opposite directions by a driving structure, thereby driving the cloth to advance between the two groups of rollers and perform calendering.

[0004] In actual use, the overall density of the cloth after calendering is still low at room temperature. In order to make the density of the calendered cloth reach the expected value, the cloth needs to be heated before calendering. However, this additional heating step increases the complexity of the operation, making the use less convenient. SUMMARY

[0005] In order to improve the convenience of use, the present application provides calendering equipment for high-density windproof fabric production.

[0006] The calendering equipment for high-density windproof fabric production provided by the present application adopts the following technical solution:

[0007] The calendering equipment for high-density windproof fabric production comprises a machine body, a calendering roller, and a water inlet pipe. The calendering roller is rotatably arranged on the machine body. The calendering roller is internally provided with a heating groove. The calendering roller is provided with a connecting groove in communication with the heating groove. The water inlet pipe is inserted into the heating groove through the connecting groove. The water inlet pipe and the machine body are provided with a connecting assembly. The connecting assembly is used to connect the water inlet pipe and the machine body. The machine body is provided with a rotating assembly. The rotating assembly is used to drive the calendering roller to rotate.

[0008] By using the above technical solution, hot water is added to the heating groove of the calendering roller through the water inlet pipe. Then, the calendering roller is driven to rotate by the rotating assembly, which drives the cloth to move and perform calendering. At the same time, the calendering roller is heated by the hot water in the heating groove, thereby heating the cloth. The cloth is heated to a high temperature before calendering, which improves the density of the calendered cloth and makes high-density windproof fabric. This improves the calendering quality and simplifies the operation steps, thereby improving the convenience of use.

[0009] As a preferred embodiment, the machine body is provided with a water supply tank. The machine body is provided with a water supply pump connected to the water supply tank. The water supply pump is connected to the water inlet pipe.

[0010] By adopting the above technical scheme, the water supply tank is used for storing hot water, and water supply is performed through the water supply pump, thereby further improving the convenience of use.

[0011] Preferably, the water inlet pipeline is provided with a water outlet pipeline, the water outlet pipeline is provided with a water outlet pump, the water inlet pipeline is provided with a water inlet valve, the water inlet valve is arranged between the water outlet pipeline and the water supply pump, the water outlet pipeline is provided with a water outlet valve, and the water outlet valve is arranged between the water outlet pump and the water inlet pipeline.

[0012] By adopting the above technical scheme, the temperature of the water in the heating tank may decrease after long-time use, at which time the water inlet valve can be closed, the water outlet valve can be opened, and the water outlet pump can be started to pump out the water in the heating tank, then the water outlet valve and the water outlet pump can be closed, the water inlet valve can be opened, and the water supply pump can be started to inject hot water from the water supply tank into the heating tank, thereby completing the replacement of the heated water, and the operation is simple and convenient, thereby improving the convenience of use.

[0013] Preferably, the water supply pump is signal-connected with a controller, the controller is signal-connected with the water outlet pump, the water inlet valve, and the water outlet valve, the inner wall of the heating tank is provided with a temperature sensor, the temperature sensor is signal-connected with the controller, and the controller is used for controlling the opening and closing of the water supply pump, the water inlet valve, the water outlet pump, and the water outlet valve according to the detection value of the temperature sensor.

[0014] By adopting the above technical scheme, the opening and closing of each valve and pump are automatically controlled by the controller according to the temperature of the water in the heating tank detected by the temperature sensor, thereby realizing automatic water replacement, improving the convenience of water replacement, and further improving the convenience of use.

[0015] Preferably, the water supply tank is provided with a water supply pipeline, and the water supply pipeline is provided with a water supply valve.

[0016] By adopting the above technical scheme, the water supply pipeline is used for being connected with a hot water source, and the water supply valve is used for adding hot water into the water supply tank, thereby improving the convenience and speed of use.

[0017] Preferably, the machine body is provided with a calendering groove, and the calendering roller is rotatably arranged in the calendering groove.

[0018] By adopting the above technical scheme, the calendering groove is arranged to reduce the exposed area of the calendering roller, thereby reducing the possibility of collision damage of the calendering roller, improving the durability, and reducing the possibility of injury caused by the involvement of people or objects between the calendering rollers, thereby reducing the safety risk.

[0019] Preferably, the machine body is provided with a mounting groove in communication with the calendering groove, and the water inlet pipeline penetrates through the mounting groove.

[0020] Through the above technical scheme, the water supply pipeline is inserted into the calendering roller through the installation groove and is sealed, the contact area is increased, the stability of the installation and connection of the water supply pipeline is improved, the sealing performance is improved, and the possibility of water leakage is reduced.

[0021] As preferred, the connecting assembly comprises a connecting block and a connecting bolt, the connecting block is arranged on the water inlet pipeline and abuts against the machine body, and the connecting bolt is used for fixing the connecting block on the machine body.

[0022] Through the above technical scheme, the connecting block on the water supply pipeline abuts against the machine body, and then the connecting bolt is used for fixing the connecting block on the machine body, so that the operation is simple and convenient, the machine body and the water supply pipeline are convenient to disassemble, and the stability of the connection and fixation between the machine body and the water supply pipeline is improved.

[0023] In summary, the present application has at least one of the following beneficial technical effects:

[0024] 1. By arranging the machine body, the calendering roller, the water inlet pipeline, the connecting groove, the heating groove and the connecting assembly, the water inlet pipeline is connected to the machine body through the connecting assembly and is inserted into the heating groove through the connecting groove of the calendering roller, hot water is added to the heating groove through the water inlet pipeline, the calendering roller is kept at a certain temperature, the quality of the calendering is improved, the cloth does not need to be heated separately, the steps are simplified, the convenience of the calendering is improved, and use is facilitated.

[0025] 2. By arranging the water supply tank, the water inlet valve, the water supply pump, the water outlet pipeline, the water outlet valve and the water outlet pump, hot water is injected into the water inlet pipeline and the heating groove through the water supply pump cooperating with the water inlet valve, and water with a temperature that is too low in the heating groove is discharged through the water outlet pipeline cooperating with the water outlet pump and the water outlet valve, so that the water is replaced, the operation is simple and convenient, and use is facilitated.

[0026] 3. By arranging the controller and the temperature sensor, the temperature sensor detects the water temperature in the heating groove, and the controller controls the valve and the pump to replace the water, which automatically replaces the water, improves the convenience of the water replacement, and timely replaces the water to ensure the quality of the calendering. BRIEF DESCRIPTION OF DRAWINGS

[0027] Figure 1 is a whole schematic view of the calendering equipment for high-density windproof fabric production provided by the embodiment of the present application.

[0028] Figure 2 is a schematic view of the other side of the calendering equipment for high-density windproof fabric production.

[0029] Figure 3 is a sectional view for embodying the internal structure of the calendering roller.

[0030] Figure 4 is a sectional view for embodying the structure of the rotating assembly.

[0031] Figure 5 is the control block diagram of the calendering equipment for high-density windproof fabric production provided by the embodiment of the application.

[0032] Explanation of reference numerals: 1, machine body; 11, calendering groove; 12, gear groove; 13, mounting groove; 2, calendering roller; 21, heating groove; 22, connecting groove; 23, assembling groove; 24, temperature sensor; 3, water inlet pipeline; 31, water inlet valve; 4, water supply tank; 41, water supply pump; 42, water supply pipeline; 421, water supply valve; 5, water outlet pipeline; 51, water outlet pump; 52, water outlet valve; 6, connecting assembly; 61, connecting block; 62, connecting bolt; 7, rotating assembly; 71, rotating motor; 72, first rotating gear; 73, second rotating gear; 74, reversing gear; 8, controller. DETAILED DESCRIPTION

[0033] The following will be described in detail with reference to the accompanying drawings Figures 1-5 The application is further described in detail.

[0034] The embodiment of the application discloses a calendering equipment for high-density windproof fabric production. Referring to Figures 1 to 4 It comprises a machine body 1, a plurality of calendering rollers 2 and a water inlet pipeline 3. The calendering rollers 2 are rotationally arranged in the calendering grooves 11 through rotating shafts. In another embodiment, the rotating shafts can be provided with clamping blocks in the machine body 1 to improve the stability of the connection. The calendering rollers 2 are divided into two groups and are arranged in alignment one by one. A gap is left between the upper and lower calendering rollers 2 for the cloth to pass through. The calendering rollers 2 are internally provided with annular heating grooves 21. One end of the calendering rollers 2 is provided with connecting grooves 22 penetrating the rotating shafts and communicating with the heating grooves 21. The side wall of the machine body 1 is provided with a plurality of mounting grooves 13 communicating with the calendering grooves 11. The branch pipes of the water inlet pipeline 3 are inserted into the heating grooves 21 through the mounting grooves 13 and the connecting grooves 22 and are sealed at the connecting positions. The water inlet pipeline 3 is cylindrical and coaxially connected with the calendering rollers 2, which does not affect the rotation of the calendering rollers 2. The water inlet pipeline 3 and the machine body 1 are provided with a connecting assembly 6 connecting the water inlet pipeline 3 and the machine body 1. The machine body 1 is provided with a rotating assembly 7 for driving the calendering rollers 2 to rotate. The connecting assembly 6 comprises a connecting block 61 and a connecting bolt 62. The connecting block 61 is fixedly arranged on the branch pipe of the water inlet pipeline 3 and abuts against the side wall of the machine body 1. The connecting bolt 62 is used for fixing the connecting block 61 on the machine body 1. By arranging the water inlet pipeline 3, hot water is added into the heating grooves 21 of the calendering rollers 2, so that the cloth is heated during calendering, replacing the operation of additionally heating the cloth and improving the convenience of use.

[0035] For the convenience of use, referring to Figure 2 , Figure 3 and Figure 5The body 1 is internally provided with a water supply tank 4, and a water supply pump 41 connected with the water supply tank 4 is fixedly arranged on the side wall of the body 1. The water supply pump 41 is connected with the water inlet pipeline 3. The water supply tank 4 is provided with a water supply pipeline 42, and the water supply pipeline 42 is provided with a water supply valve 421. The main pipe of the water inlet pipeline 3 is provided with a water outlet pipeline 5 in communication. The main pipe of the water inlet pipeline 3 is provided with a water inlet valve 31 between the water outlet pipeline 5 and the water supply pump 41. The water outlet pipeline 5 is connected with a water outlet pump 51 in communication, and the water outlet pump 51 is fixedly connected with the side wall of the body 1. The water outlet pipeline 5 is provided with a water outlet valve 52 between the water outlet pump 51 and the water inlet pipeline 3. The water supply pump 41 is signal-connected with a controller 8, and the controller 8 is signal-connected with the water outlet pump 51, the water inlet valve 31 and the water outlet valve 52. An assembly groove 23 is arranged on the inner wall of the heating groove 21, and a temperature sensor 24 is fixedly arranged in the assembly groove 23. The outer wall of the temperature sensor 24 is flush with the inner wall of the heating groove 21. The temperature sensor 24 is signal-connected with the controller 8 and is used for detecting the water temperature in the heating groove 21. The controller 8 is used for controlling the opening and closing of the water supply pump 41, the water inlet valve 31, the water outlet pump 51 and the water outlet valve 52 according to the detection value of the temperature sensor 24. In another embodiment, the controller 8 is signal-connected with the water supply valve 421, and the water supply tank 4 is provided with a water level detection device signal-connected with the controller 8. The water level in the heating groove 21 is detected by the temperature sensor 24, and the opening and closing of the valves and pumps are automatically controlled by the controller 8 to perform water replacement operation, thereby improving the convenience of use.

[0036] For convenient use, referring to Figure 2 and Figure 4 The rotating assembly 7 comprises a first rotating gear 72, a second rotating gear 73, a reversing gear 74 and a rotating motor 71. The rotating motor 71 is fixedly arranged on the side wall of the body 1 away from the water inlet pipeline 3. A gear cavity is arranged in the body 1. The first rotating gear 72, the second rotating gear 73 and the reversing gear 74 are rotatably arranged in the gear cavity. The first rotating gear 72 is coaxially and fixedly connected with the upper calender roller 2. The second rotating gear 73 is coaxially and fixedly connected with the lower calender roller 2. The first rotating gear 72 and the second rotating gear 73 are engaged with each other. The reversing gear 74 is engaged between any two first rotating gears 72. The rotating shaft of the rotating motor 71 is coaxially and fixedly connected with any first rotating gear 72. After the rotating motor 71 is started, the calender roller 2 is driven to rotate through the gear transmission, so that the calender rollers 2 in the same layer rotate synchronously, and the calender rollers 2 in different layers rotate in opposite directions, thereby driving the cloth to advance while calendering, thereby improving the convenience of use.

[0037] The implementation principle of the calendering equipment for high-density windproof fabric production is as follows: when calendering the high-density windproof fabric, hot water is added to the heating groove 21 of the calendering roller 2 through the water inlet pipe 3, then the fabric is inserted between the two calendering rollers 2, the calendering roller 2 is driven to rotate by the rotating assembly 7, the fabric is moved to be calendered, and the fabric temperature is raised during calendering after the hot water in the heating groove 21 heats the calendering roller 2, so that the calendered fabric is more dense, the high-density windproof fabric is made, and the fabric does not need to be heated separately, the operation steps are simplified, and the convenience of use is improved.

[0038] The above are preferred embodiments of the present application, and do not limit the protection scope of the present application, so: any equivalent changes made on the structure, shape, principle of the present application should be covered within the protection scope of the present application.

Claims

1. Calendering equipment for the production of high-density windproof fabrics, characterized by: The invention comprises a machine body (1), a calendering roller (2) and a water inlet pipe (3), wherein the calendering roller (2) is rotatably arranged on the machine body (1), a heating groove (21) is arranged inside the calendering roller (2), the calendering roller (2) is provided with a connecting groove (22) communicating with the heating groove (21), the water inlet pipe (3) passes through the connecting groove (22) and is inserted into the heating groove (21), a connecting component (6) is provided on the water inlet pipe (3) and the machine body (1), the connecting component (6) is used to connect the water inlet pipe (3) and the machine body (1), and the machine body (1) is provided with a rotating component (7), and the rotating component (7) is used to drive the calendering roller (2) to rotate.

2. The calendering equipment for producing high-density windproof fabrics according to claim 1, characterized in that: The machine body (1) is provided with a water supply tank (4), and the machine body (1) is provided with a water supply pump (41) connected to the water supply tank (4), and the water supply pump (41) is connected to the water inlet pipe (3).

3. The calendering equipment for producing high-density windproof fabrics according to claim 2, characterized in that: The water inlet pipe (3) is provided with a water outlet pipe (5), the water outlet pipe (5) is provided with a water outlet pump (51), the water inlet pipe (3) is provided with a water inlet valve (31), the water inlet valve (31) is provided between the water outlet pipe (5) and the water supply pump (41), the water outlet pipe (5) is provided with a water outlet valve (52), the water outlet valve (52) is provided between the water outlet pump (51) and the water inlet pipe (3).

4. The calendering equipment for producing high-density windproof fabrics according to claim 3, characterized in that: The water supply pump (41) is signal-connected to a controller (8), and the controller (8) is signal-connected to a water outlet pump (51), a water inlet valve (31), and a water outlet valve (52). A temperature sensor (24) is provided on the inner wall of the heating tank (21), and the temperature sensor (24) is signal-connected to the controller (8). The controller (8) is used to control the opening and closing of the water supply pump (41), the water inlet valve (31), the water outlet pump (51), and the water outlet valve (52) according to the value detected by the temperature sensor (24).

5. The calendering equipment for producing high-density windproof fabrics according to claim 2, characterized in that: The water supply tank (4) is provided with a water supply pipe (42), and the water supply pipe (42) is provided with a water supply valve (421).

6. The calendering equipment for producing high-density windproof fabrics according to claim 1, characterized in that: The machine body (1) is provided with a calendering groove (11), and the calendering roller (2) is rotatably arranged in the calendering groove (11).

7. The calendering equipment for producing high-density windproof fabrics according to claim 5, characterized in that: The machine body (1) is provided with a mounting groove (13) communicating with the calendering groove (11), and the water inlet pipe (3) passes through the mounting groove (13).

8. The calendering equipment for producing high-density windproof fabrics according to claim 1, characterized in that: The connecting assembly (6) comprises a connecting block (61) and a connecting bolt (62); the connecting block (61) is arranged on the water inlet pipe (3) and abuts against the machine body (1); and the connecting bolt (62) is used to fix the connecting block (61) on the machine body (1).