Cloth hot-pressing device

By using the lifting and rotating mechanism of the fabric hot pressing device, traceability information can be efficiently imprinted during the dynamic conveying of the fabric, solving the problems of low traceability management efficiency and imprinting machine stoppage in the existing technology, and improving production efficiency.

CN224044858UActive Publication Date: 2026-03-27福建思嘉新材料科技有限公司
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-16
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

Existing fabric production lines suffer from low efficiency in traceability management, and the fabric printing machine needs to stop conveying during the printing process, which affects production efficiency.

Method used

Design a fabric hot pressing device, including a lifting mechanism, a rotating mechanism and an imprinting component. The lifting mechanism controls the distance between the imprinting component and the fabric, and the rotating mechanism makes the imprinting component contact the moving fabric synchronously to achieve dynamic imprinting.

Benefits of technology

It enables efficient imprinting of traceability information during the dynamic fabric conveying process, ensuring that the information is clearly visible, improving production efficiency and avoiding the impact of conveying stoppages.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cloth hot-pressing device which is arranged above a cloth conveying mechanism in a clamping mode and comprises a lifting mechanism, a rotating mechanism and an impressing assembly. The lifting mechanism is connected with the rotating mechanism, and the impressing assembly is connected with the rotating mechanism, so that the rotating mechanism drives the impressing assembly to rotate; the impressing assembly is provided with a hot pressing face used for making contact with cloth. According to the utility model, the dynamic cloth can be impressed, so that the cloth is traceable.
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Description

TECHNICAL FIELD

[0001] The utility model relates to cloth processing technical field especially is a cloth hot pressing device. BACKGROUND

[0002] Generally speaking, cloth is usually wound into a cylinder after production is completed, and then is packaged. On the existing cloth production line, the cloth is generally not managed by tracing, and when a roll of cloth has quality defects, the cloth of the same batch can only be checked one by one, and the problem is finally found by manual layer-by-layer tracing. This tracing method is inefficient and requires a lot of manpower and time.

[0003] The existing cloth printing press can print information on cloth, but the cloth needs to be stopped during the printing process, which affects the production efficiency. UTILITY MODEL CONTENT

[0004] The utility model solves the technical problem of providing a cloth hot pressing device to improve the printing efficiency of cloth traceability information.

[0005] To solve the above technical problems, the utility model adopts the following technical scheme:

[0006] A cloth hot pressing device, the hot pressing device is clamped above the cloth conveying mechanism, the cloth hot pressing device includes a lifting mechanism, a rotating mechanism and a printing assembly;

[0007] The lifting mechanism is connected with the rotating mechanism, and the printing assembly is connected with the rotating mechanism, so that the rotating mechanism drives the printing assembly to rotate;

[0008] The printing assembly has a hot pressing surface for contacting the cloth.

[0009] Further, the cloth hot pressing device further comprises a support for connecting with the cloth conveying mechanism;

[0010] The fixed end of the lifting mechanism is connected with the support.

[0011] Further, the lifting mechanism comprises at least two symmetrically arranged lifting driving members;

[0012] In the axial direction of the rotating mechanism, the two ends of the rotating mechanism are respectively connected with the corresponding lifting driving members.

[0013] Further, the rotating mechanism comprises a rotating assembly, a first bearing assembly, a second bearing assembly and a rotating driving member;

[0014] The two ends of the rotating assembly in the axial direction are respectively rotatably connected with the first bearing assembly and the second bearing assembly.

[0015] The pressing assembly is connected with the rotating assembly;

[0016] The first bearing assembly and the second bearing assembly are connected with the lifting mechanism;

[0017] The movable end of the rotating driving member is coaxially arranged with the rotating assembly and is in transmission connection, and the fixed end of the rotating driving member is connected with the lifting mechanism.

[0018] Further, the rotating assembly comprises a rotating shaft and at least two symmetrically arranged rotating discs;

[0019] The rotating shaft is coaxially arranged with the rotating discs, and the rotating shaft is in rotating connection with the first bearing assembly and the second bearing assembly through the corresponding rotating discs;

[0020] The pressing assembly is arranged between two adjacent rotating discs.

[0021] Further, the pressing assembly comprises a heating member and a pressing member;

[0022] In the radial direction of the rotating assembly, the pressing member is detachably connected with one end of the heating member and is in abutting pressure, and the projection area of the pressing member is located on the heating member.

[0023] Further, the pressing assembly further comprises a temperature sensor;

[0024] The sensing end of the temperature sensor is arranged opposite to the pressing member;

[0025] The temperature sensor is in electrical connection with the heating member.

[0026] Further, the cloth hot-pressing device further comprises a speed reduction assembly;

[0027] The adjusting end of the speed reduction assembly is connected with the cloth conveying mechanism, the speed reduction end of the speed reduction assembly is in adjustable position with the rotating assembly, and can be in abutting pressure with the rotating assembly.

[0028] Further, the speed reduction assembly comprises a supporting assembly and a friction enhancing member;

[0029] The friction enhancing member is clamped at one end of the supporting assembly.

[0030] Further, the supporting assembly comprises a first supporting member and a second supporting member;

[0031] The end of the first supporting member close to the rotating mechanism is recessed relative to the second supporting member.

[0032] The utility model discloses an advantageous effect lies in: the utility model discloses through lifting mechanism, rotating mechanism and pressure imprinting subassembly, can realize to the cloth under the dynamic and carry out pressure imprinting. Through setting up pressure imprinting subassembly, be used for printing the traceability information to cloth, the setting of rotating mechanism is used for making the hot pressing surface of pressure imprinting subassembly and the cloth under the movement state synchronous contact, ensure that the information of hot pressing surface can be accurately pressure imprinted on cloth, and can ensure that the traceability information that is pressure imprinted on cloth is clear and visible, and the setting of lifting mechanism is used for controlling the distance between hot pressing surface and the cloth that is pressure imprinted, makes hot pressing surface and cloth contact and carry out pressure imprinting. The utility model discloses can realize in the process that cloth is in dynamic transmission, pressure imprinting to cloth, ensure continuous production, improve production efficiency. BRIEF DESCRIPTION OF DRAWINGS

[0033] Figure 1 It is structure diagram of cloth hot pressing device in the utility model Figure One ;

[0034] Figure 2 It is structure diagram of cloth hot pressing device in the utility model Figure Two .

[0035] Label explanation:

[0036] 1, fixed link;

[0037] 2, lifting mechanism, 21, lifting drive piece;

[0038] 3, rotating mechanism, 31, rotating assembly, 311, rotating shaft, 312, rotating disc, 32, first bearing assembly, 33, second bearing assembly, 34, rotation drive piece, 35, right angle connecting piece;

[0039] 4, pressure imprinting subassembly, 41, heating piece, 42, pressure imprinting piece, 43, temperature sensor;

[0040] 5, support;

[0041] 6, speed reduction assembly, 61, support assembly, 611, first support piece, 612, second support piece, 62, friction enhancement piece. DETAILED DESCRIPTION

[0042] To explain the technical content of the utility model, the purpose and effect realized in detail, the following is explained in conjunction with the drawings.

[0043] Please refer to Figure 1 And Figure 2The utility model provides a cloth hot pressing device, and the cloth hot pressing device is clamped above the cloth conveying mechanism, and the cloth hot pressing device comprises a lifting mechanism 2, a rotating mechanism 3 and a stamping assembly 4, the lifting mechanism 2 is connected with the rotating mechanism 3, the stamping assembly 4 is connected with the rotating mechanism 3, so that the rotating mechanism 3 drives the stamping assembly 4 to rotate, and the stamping assembly 4 has a hot pressing surface for contacting the cloth.

[0044] It can be understood that the utility model can realize the stamping of the cloth in a dynamic state through the lifting mechanism 2, the rotating mechanism 3 and the stamping assembly 4. The stamping assembly 4 is arranged to print the traceability information on the cloth, the rotating mechanism 3 is arranged to make the hot pressing surface of the stamping assembly 4 contact the cloth in a moving state synchronously, ensure that the information of the hot pressing surface can be accurately stamped on the cloth, and ensure that the traceability information stamped on the cloth is clear and visible, and the lifting mechanism 2 is arranged to control the distance between the hot pressing surface and the cloth to be stamped, so that the hot pressing surface contacts the cloth and is stamped.

[0045] In some embodiments, the cloth hot pressing device further comprises a support 5 connected with the cloth conveying mechanism, and the fixed end of the lifting mechanism 2 is connected with the support 5. The support 5 is arranged to fix the cloth hot pressing device as a whole above the cloth conveying mechanism, ensure the stability of the relative position between the cloth hot pressing device and the cloth conveying mechanism, and ensure the stamping effect.

[0046] In some embodiments, the lifting mechanism 2 comprises at least two symmetrical lifting driving members 21, and the two ends of the rotating mechanism 3 are connected with corresponding lifting driving members 21 in the axial direction of the rotating mechanism 3. Preferably, the lifting driving member 21 is a linear cylinder, and in other equivalent embodiments, the lifting driving member 21 can also be a linear push rod or a linear servo motor.

[0047] In some embodiments, the rotating mechanism 3 comprises a rotating assembly 31, a first bearing assembly 32, a second bearing assembly 33 and a rotary driving member 34; the rotating assembly 31 is rotationally connected with the first bearing assembly 32 and the second bearing assembly 33 at two ends in the axial direction; the stamping assembly 4 is connected with the rotating assembly 31; the first bearing assembly 32 and the second bearing assembly 33 are connected with the lifting mechanism 2; the movable end of the rotary driving member 34 is coaxially arranged with the rotating assembly 31 and is drivingly connected with the rotating assembly 31; the fixed end of the rotary driving member 34 is connected with the lifting mechanism 2 through a right-angle connecting member 35. Preferably, the rotary driving member 34 is a servo motor. The overall rotating mechanism 3 is controlled to lift by the lifting mechanism 2, and the rotating assembly 31 is controlled to rotate by the rotary driving member 34 to drive the stamping assembly 4 to rotate, so that the rotating speed of the stamping assembly 4 is kept synchronous with the moving speed of the cloth, the stamping assembly 4 is realized to stamp under the dynamic state, and the clear information stamped on the cloth is ensured. Specifically, the rotating speed of the stamping assembly 4 is controlled by the rotary driving member 34, and the rotating speed of the rotary driving member 34 should be pre-set according to the rotating speed of the cloth conveying assembly, so as to ensure that the rotating speed of the stamping assembly 4 is kept consistent with the rotating speed of the cloth.

[0048] In some embodiments, the rotating assembly 31 comprises a rotating shaft 311 and at least two symmetrically arranged rotating discs 312; the rotating shaft 311 is coaxially arranged with the rotating discs 312, and the rotating shaft 311 is rotationally connected with the first bearing assembly 32 and the second bearing assembly 33 through the corresponding rotating discs 312; the stamping assembly 4 is arranged between two adjacent rotating discs 312. Preferably, two rotating discs 312 are arranged, and a certain space is kept between the two rotating discs 312 and the corresponding first bearing assembly 32 and second bearing assembly 33, so as to avoid abrasion. The rotating disc 312 is mainly arranged to protect the stamping assembly 4.

[0049] In some embodiments, the stamping assembly 4 comprises a heating member 41 and a stamping member 42; in the radial direction of the rotating assembly 31, the stamping member 42 is detachably connected with one end of the heating member 41 and abuts against the one end of the heating member 41, and the projection area of the stamping member 42 is located on the heating member 41. Preferably, the heating member 41 is an electric iron, and the stamping member 42 is a metal nameplate with traceability information engraved on the surface, so as to ensure that the heating member 41 can conduct heat to the stamping member 42 and ensure the stamping effect.

[0050] In some embodiments, the stamping assembly 4 further comprises a temperature sensor 43; the sensing end of the temperature sensor 43 is oppositely arranged with the stamping member 42; the temperature sensor 43 is electrically connected with the heating member 41. Specifically, the temperature sensor 43 is connected with the support 5 through an extension frame, and the temperature sensor 43 is oppositely arranged with the stamping member 42 only when the stamping member 42 is in a certain area, so as to intermittently measure the temperature of the stamping member 42, so as to control the temperature of the heating member 41 according to the measured temperature. Preferably, the temperature sensor 43 is a non-contact temperature sensor.

[0051] In some embodiments, the cloth heat pressing device further comprises a deceleration assembly 6; an adjusting end of the deceleration assembly 6 is connected with the cloth conveying mechanism, a deceleration end of the deceleration assembly 6 is adjustably positioned relative to the rotating assembly 31 and is capable of abutting against the rotating assembly 31. The deceleration assembly 6 is arranged to brake the rotating assembly 31 after the stamping work is completed. Specifically, the adjusting end of the deceleration assembly 6 is rotatably connected with the fixed rod of the cloth conveying mechanism, by adjusting the position of the deceleration assembly 6, the deceleration end of the deceleration assembly 6 abuts against or separates from the rotating assembly 31, which can decelerate the rotating assembly 31 when necessary and avoid increasing the friction of the rotating assembly 31 when the rotating assembly 31 is normally operating.

[0052] In some embodiments, the deceleration assembly 6 comprises a supporting assembly 61 and a friction enhancing piece 62; the friction enhancing piece 62 is clamped at one end of the supporting assembly 61. The supporting assembly 61 is arranged to adjust the relative position between the friction enhancing piece 62 and the surface of the rotating disc 312 of the rotating assembly 31. Specifically, the friction enhancing piece 62 can be a hard plate with rough surface fabric wrapped on the surface.

[0053] In some embodiments, the supporting assembly 61 comprises a first supporting piece 611 and a second supporting piece 612; the first supporting piece 611 is inwardly recessed relative to the second supporting piece 612 at one end close to the rotating mechanism 3, so as to avoid the first supporting piece 611 contacting the rotating disc 312 and causing abnormal wear of the rotating disc 312, and the first supporting piece 611 and the second supporting piece 612 are arranged to clamp and fix the friction enhancing piece 62 and are capable of adjusting the relative position between the friction enhancing piece 62 and the rotating disc 312.

[0054] Embodiment one of the utility model discloses:

[0055] A cloth heat pressing device, the heat pressing device is arranged above the cloth conveying mechanism, specifically, the heat pressing device is connected with the fixed rod 1 at the top of the cloth conveying mechanism, and the cloth heat pressing device comprises a lifting mechanism 2, a rotating mechanism 3 and a stamping assembly 4; the lifting mechanism 2 is connected with the rotating mechanism 3, the stamping assembly 4 is connected with the rotating mechanism 3, so that the rotating mechanism 3 drives the stamping assembly 4 to rotate; the stamping assembly 4 has a heat pressing surface for contacting the cloth.

[0056] In the embodiment, the cloth heat pressing device further comprises a support 5 for being connected with the cloth conveying mechanism; a fixed end of the lifting mechanism 2 is connected with the support 5.

[0057] In the embodiment, the lifting mechanism 2 comprises two symmetrical lifting driving members 21; the two ends of the rotating mechanism 3 are connected with the corresponding lifting driving members 21 in the axial direction of the rotating mechanism 3. Preferably, the lifting driving member 21 is a linear cylinder.

[0058] In the embodiment, the rotating mechanism 3 comprises a rotating assembly 31, a first bearing assembly 32, a second bearing assembly 33 and a rotating driving member 34; the two ends of the rotating assembly 31 in the axial direction are rotatably connected with the first bearing assembly 32 and the second bearing assembly 33 respectively; the stamping assembly 4 is connected with the rotating assembly 31; the first bearing assembly 32 and the second bearing assembly 33 are connected with the lifting mechanism 2; the movable end of the rotating driving member 34 is coaxially arranged with the rotating assembly 31 and is drivingly connected with the rotating assembly 31; the fixed end of the rotating driving member 34 is connected with the lifting mechanism 2 through a right-angle connecting member 35. Preferably, the rotating driving member 34 is a servo motor.

[0059] In the embodiment, the rotating assembly 31 comprises a rotating shaft 311 and two symmetrical rotating discs 312; the rotating shaft 311 is coaxially arranged with the rotating disc 312, and the rotating shaft 311 passes through the corresponding rotating disc 312 and is rotatably connected with the first bearing assembly 32 and the second bearing assembly 33 respectively; the stamping assembly 4 is arranged between two adjacent rotating discs 312.

[0060] In the embodiment, the stamping assembly 4 comprises a heating member 41 and a stamping member 42; in the radial direction of the rotating assembly 31, the stamping member 42 is detachably connected with one end of the heating member 41 and abuts against the heating member 41, and the projection area of the stamping member 42 is located on the heating member 41. Preferably, the heating member 41 is an electric soldering iron, and the stamping member 42 is a metal nameplate with traceability information engraved on the surface.

[0061] In the embodiment, the stamping assembly 4 further comprises a temperature sensor 43; the sensing end of the temperature sensor 43 is arranged opposite to the stamping member 42; the temperature sensor 43 is electrically connected with the heating member 41. Specifically, the temperature sensor 43 is connected with the support 5 through an extension frame.

[0062] In the embodiment, the fabric hot-pressing device further comprises a speed reduction assembly 6; the adjusting end of the speed reduction assembly 6 is connected with the fabric conveying mechanism, the speed reduction end of the speed reduction assembly 6 is adjustably arranged relative to the rotating assembly 31 and can abut against the rotating assembly 31. The speed reduction assembly 6 is arranged to brake the rotating assembly 31 after the stamping work is completed. Specifically, the adjusting end of the speed reduction assembly 6 is rotatably connected with the fixed rod of the fabric conveying mechanism.

[0063] In the embodiment, the speed assembly comprises a support assembly 61 and a friction enhancer 62; the friction enhancer 62 is clamped at one end of the support assembly 61. The support assembly 61 comprises a first support 611 and a second support 612; the first support 611 is inwardly recessed relative to the second support 612 at one end close to the rotating mechanism 3.

[0064] The working principle of the utility model is:

[0065] The rotating speed of the rotating mechanism 3 and the cloth conveying mechanism is pre-set in the controller, so that the rotating speed of the rotating mechanism 3 is consistent with the cloth conveying speed of the cloth conveying mechanism, and the interval distance between the two sequentially arranged pressure marks on the cloth is controlled by controlling the rotating speed;

[0066] After the pressure mark assembly 4 is heated to the preset temperature, the pressure mark assembly 4 is controlled to reciprocate by the lifting mechanism 2, the pressure mark 42 of the pressure mark assembly 4 rotates and moves along the direction gradually close to the cloth, so that the pressure mark assembly 4 gradually contacts the cloth in a rotating manner, specifically, the pressure mark assembly 4 performs pressure marking on the cloth at an interval, and the position of the lifting mechanism 2 is kept before the pressure marking on the same batch of cloth is finished;

[0067] After the pressure marking is finished, the lifting mechanism 2 retreats, the pressure mark assembly 4 is away from the cloth, and the rotating mechanism 3 is stopped, so that the friction enhancer 62 of the speed reduction assembly 6 contacts the rotating disc 312 by manually rotating the speed reduction assembly 6, and the rotating disc 312 is speed-reduced.

[0068] The interval distance between the pressure marks on the cloth is set according to actual requirements, preferably, the interval distance between every two pressure marks is 1 meter.

[0069] The above only describes the embodiments of the utility model, and does not limit the patent range of the utility model, any equivalent transformation or direct or indirect application in related technical fields according to the contents of the utility model specification and drawings is also included in the patent protection range of the utility model.

Claims

1. A fabric heat pressing apparatus, said heat pressing apparatus being sandwiched above a fabric conveying mechanism, characterized in that, The cloth hot-pressing device comprises a lifting mechanism, a rotating mechanism and a stamping assembly; The lifting mechanism is connected with the rotating mechanism, and the stamping assembly is connected with the rotating mechanism so that the rotating mechanism drives the stamping assembly to rotate; The stamping assembly has a hot-pressing surface for contacting with cloth.

2. The fabric heat press apparatus of claim 1, wherein, The cloth hot-pressing device further comprises a support for being connected with a cloth conveying mechanism; The fixed end of the lifting mechanism is connected with the support.

3. The fabric heat press apparatus of claim 1, wherein, The lifting mechanism comprises at least two symmetrically arranged lifting driving members; In the axial direction of the rotating mechanism, the two ends of the rotating mechanism are respectively connected with corresponding lifting driving members.

4. The fabric heat press apparatus of claim 1, wherein, The rotating mechanism comprises a rotating assembly, a first bearing assembly, a second bearing assembly and a rotating driving member; The two ends of the rotating assembly in the axial direction are respectively rotationally connected with the first bearing assembly and the second bearing assembly; The stamping assembly is connected with the rotating assembly; The first bearing assembly and the second bearing assembly are connected with the lifting mechanism; The movable end of the rotating driving member is coaxially arranged with the rotating assembly and is drivingly connected with the rotating assembly, and the fixed end of the rotating driving member is connected with the lifting mechanism.

5. The fabric heat press apparatus of claim 4, wherein, The rotating assembly comprises a rotating shaft and at least two symmetrically arranged rotating discs; The rotating shaft is coaxially arranged with the rotating discs, and the rotating shaft passes through corresponding rotating discs and is rotationally connected with the first bearing assembly and the second bearing assembly; The stamping assembly is arranged between two adjacent rotating discs.

6. The fabric heat press apparatus of claim 1, wherein, The stamping assembly comprises a heating member and a stamping member; In the radial direction of the rotating assembly, the stamping member is detachably connected with one end of the heating member and abuts against the heating member, and the projection area of the stamping member is located on the heating member.

7. The fabric heat press apparatus of claim 6, wherein, The stamping assembly further comprises a temperature sensor; The sensing end of the temperature sensor can be arranged opposite to the stamping member; The temperature sensor is electrically connected with the heating member.

8. The fabric heat press apparatus of claim 1, wherein, The cloth hot-pressing device further comprises a speed reduction assembly; The adjusting end of the speed reduction assembly is connected with the cloth conveying mechanism, and the speed reduction end of the speed reduction assembly is adjustably arranged opposite to the rotating assembly and can abut against the rotating assembly.

9. The fabric heat press apparatus of claim 8, wherein, The speed reduction assembly comprises a support assembly and a friction enhancing member; The friction enhancing member is clamped at one end of the support assembly.

10. The fabric heat press apparatus of claim 9, wherein, The support assembly comprises a first support member and a second support member; The end of the first support member close to the rotating mechanism is recessed relative to the second support member.