Manufacturing and rolling equipment for glass fiber fireproof cloth

By designing winding equipment for glass fiber fireproof cloth, using components such as rotary motors, mobile electric slide rails and extruded electric push rods, the problem that existing equipment cannot quickly adjust the spacing and insufficient extrusion limits during winding process is solved, and a stable and efficient winding process is achieved.

CN223002419UActive Publication Date: 2025-06-20HEBEI XIONGAN HOUDE FIBERGLASS PRODUCTS CO LTD
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Patent Information

Application Number
CN202422314000.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-23
Publication Date
2025-06-20
Estimated Expiration
2034-09-23

AI Technical Summary

Technical Problem

During the winding process of existing glass fiber fireproof cloth production equipment, the winding distance cannot be adjusted quickly, and the extrusion limit of the material collection position is insufficient, resulting in winding deviation, affecting the material collection speed and stability.

Method used

A winding device including a fixed support frame and collection assembly is designed. By rotating the motor, moving electric slide rail, extruded electric push rod and other components, the glass fiber fireproof cloth can be steadily restricted and tightly positioned to avoid deviation.

Benefits of technology

It effectively avoids winding deviation, improves the stability and speed of material collection, and ensures the quality of material collection.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses manufacturing and rolling equipment for glass fiber fireproof cloth, which is characterized in that a rotating motor is mounted at one end of a fixed support frame through a motor seat, an output shaft of the rotating motor is clamped with a processing fixing frame, a movable electric sliding rail is clamped at the bottom end of the inner side of the fixed support frame, and a movable processing frame is fixed at the top end of the movable electric sliding rail through a sliding rail seat; extrusion electric push rods are symmetrically clamped to the two ends of the treatment fixing frame, extrusion arc plates are fixed to one ends of the two extrusion electric push rods, a collecting motor drives a collecting hole pipe and a collecting barrel to rotate, glass fiber fireproof cloth is wound to the side end of the collecting barrel, and the edge of the fireproof cloth is limited through a rotary matching frame and the treatment fixing frame; and the side end of the glass fiber fireproof cloth is extruded and positioned by matching with the extrusion arc plate, so that the material receiving compactness is guaranteed, the situation that the glass fiber fireproof cloth deviates and disengages during rotary material receiving is avoided, the material receiving stability is improved, and the material receiving speed and the material receiving quality are guaranteed.
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Description

Technical Field

[0001] The utility model relates to the technical field of fiberglass fireproof cloth production, in particular to a production and winding device for fiberglass fireproof cloth. Background Technique

[0002] The fiberglass fireproof cloth is woven by a shuttleless loom to ensure a flat cloth surface without missing threads. It is mainly woven in three patterns: twill, satin, and plain weave. It is completed through processes such as coloring, baking, and shaping. The fiberglass fireproof cloth is used in fire-prone occasions such as fireproof rolling shutters, cable fire protection, and construction work fire protection. It can resist spark splashing, molten slag, welding spatter, etc., and play a role in isolating the workplace, separating working layers, and preventing potential fire hazards in welding work.

[0003] However, when winding the fiberglass fireproof cloth during production, since the winding spacing of the equipment cannot be adjusted quickly, and the existing equipment has insufficient extrusion and limitation of the winding position of the fireproof cloth during winding, during the winding process, the fireproof cloth cannot be steadily restricted, and the winding deviation is likely to occur, affecting the winding speed and stability of the winding. Content of the Utility Model

[0004] The utility model provides a production and winding device for fiberglass fireproof cloth, which can effectively solve the problems raised in the above background technique. When winding the fiberglass fireproof cloth during production, since the winding spacing of the equipment cannot be adjusted quickly, and the existing equipment has insufficient extrusion and limitation of the winding position of the fireproof cloth during winding, during the winding process, the fireproof cloth cannot be steadily restricted, and the winding deviation is likely to occur, affecting the winding speed and stability of the winding.

[0005] To achieve the above object, the utility model provides the following technical solution: A production and winding device for fiberglass fireproof cloth, including a fixed support frame, a collection component is arranged at the top of the fixed support frame, and the collection component includes a rotation motor, a processing fixed frame, a moving electric slide rail, a moving processing frame, a rotation cooperation frame, an extrusion electric push rod, an extrusion arc plate, a collection motor, a collection hole pipe, a fixed air pump, an extraction pipe, and an in-out electric push rod;

[0006] One end of the fixed support frame is provided with a rotating motor through a motor base. The output shaft of the rotating motor is clamped with a processing fixed frame. The inner bottom end of the fixed support frame is clamped with a moving electric slide rail. The top end of the moving electric slide rail is fixed with a moving processing frame through a slide rail base. One end of the top of the moving processing frame is rotatably connected with a rotating matching frame. Both ends of the processing fixed frame are symmetrically clamped with extrusion electric push rods. One end of the two extrusion electric push rods is fixed with an extrusion arc plate. One end of the processing fixed frame is provided with a collecting motor through a motor base. The output shaft of the collecting motor is clamped with a collecting hole pipe. One end of the rotating matching frame is provided with a fixed air pump through a motor base. The side end of the fixed air pump is connected with an extraction pipe through a connector. Both the top end and the bottom end of the processing fixed frame are fixed with in-out electric push rods.

[0007] According to the above technical solution, the processing fixed frame is rotationally sleeved with the fixed support frame. The input ends of the rotating motor, the moving electric slide rail, the extrusion electric push rod, the collecting motor, the fixed air pump and the in-out electric push rod are all electrically connected to the output end of an external power supply.

[0008] According to the above technical solution, the processing fixed frame is slidably sleeved with the rotating matching frame. The extraction pipe is installed through the inside of the collecting hole pipe.

[0009] According to the above technical solution, an in-out assembly is installed on one side of the fixed support frame. The in-out assembly includes a positioning electric slide rail, a positioning fixed plate, a lifting electric push rod, a lifting load-bearing platform, a fixed electromagnet, a blocking placement box, a pushing electric push rod and a pushing circular plate.

[0010] The inner bottom end of the fixed support frame is symmetrically clamped with a positioning electric slide rail. One end of the positioning electric slide rail is clamped with a positioning fixed plate through a slide rail base. The top end of the positioning fixed plate is equidistantly and symmetrically provided with lifting electric push rods. The top end of the lifting electric push rod is fixed with a lifting load-bearing platform. The inner side of the lifting load-bearing platform is symmetrically provided with fixed electromagnets. The inside of the lifting load-bearing platform is sleeved with a blocking placement box. One end of the processing fixed frame is equidistantly and symmetrically provided with pushing electric push rods. One end of the two pushing electric push rods is provided with a pushing circular plate.

[0011] According to the above technical solution, the positioning fixed plate is slidably installed on the top end of the fixed support frame. The input ends of the positioning electric slide rail, the lifting electric push rod, the fixed electromagnet and the pushing electric push rod are all electrically connected to the output end of an external power supply.

[0012] According to the above technical solution, the blocking placement box and the fixed electromagnet are magnetically combined. The pushing circular plate is slidably placed inside the processing fixed frame.

[0013] Compared with the prior art, the beneficial effects of the present utility model are as follows: The structure of the present utility model is scientific and reasonable, and it is safe and convenient to use:

[0014] 1. A collection component is provided. The rotation fitting frame is driven by the incoming and outgoing electric push rods to move along the processing fixing frame, and the moving processing frame is driven by the moving electric slide rail, thereby changing the distance between the rotation fitting frame and the processing fixing frame. The fixed air pump and the extraction pipe cooperate with the collection hole pipe to adsorb and fix the material receiving cylinder. The extrusion electric push rod drives the extrusion arc plate to push the fiberglass fireproof cloth to fit against the side end of the material receiving cylinder. The collection motor drives the collection hole pipe and the material receiving cylinder to rotate, winding the fiberglass fireproof cloth around the side end of the material receiving cylinder. The rotation fitting frame and the processing fixing frame limit the edge of the fireproof cloth, and cooperate with the extrusion arc plate to extrude and position the side end of the fiberglass fireproof cloth, thereby ensuring the tightness of the material collection, avoiding the occurrence of deviation and detachment during the rotating material collection, improving the stability of the material collection, and ensuring the speed and quality of the material collection.

[0015] 2. An incoming and outgoing component is provided. The alignment fixing plate is driven by the alignment electric slide rail, and the lifting load-bearing platform is driven by the lifting electric push rod. The blocking placement box is magnetically fixed to the inner side of the lifting load-bearing platform through the fixed electromagnet. The pushing electric push rod drives the pushing circular plate to push the fiberglass fireproof cloth roll into the inner side of the blocking placement box, realizing stable material collection processing, and can adjust the collection position according to the winding size, realizing stable alignment collection, ensuring the stable operation of the material collection, and improving the discharge speed through the two-way discharge cooperation. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] The drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation to the present invention.

[0017] In the drawings:

[0018] Figure 1 is a three-dimensional structural schematic diagram of the present invention;

[0019] Figure 2 is a structural schematic diagram of the collection component of the present invention;

[0020] Figure 3 is an installation structural schematic diagram of the fixed air pump of the present invention;

[0021] Figure 4 is a structural schematic diagram of the incoming and outgoing component of the present invention;

[0022] Reference numerals in the figure: 1. Fixed support frame;

[0023] 2. Collection component; 201. Rotating motor; 202. Processing fixing frame; 203. Moving electric slide rail; 204. Moving processing frame; 205. Rotating fitting frame; 206. Extrusion electric push rod; 207. Extrusion arc plate; 208. Collection motor; 209. Collection hole pipe; 210. Fixed air pump; 211. Extraction pipe; 212. In-and-out electric push rod

[0024] 3. In-and-out component; 301. Alignment electric slide rail; 302. Alignment fixing plate; 303. Lifting electric push rod; 304. Lifting load-bearing platform; 305. Fixed electromagnet; 306. Blocking placement box; 307. Pushing-out electric push rod; 308. Pushing-out round plate Detailed implementation manner

[0025] The preferred embodiments of the present utility model will be described below in conjunction with the accompanying drawings. It should be understood that the preferred embodiments described herein are only used to illustrate and explain the present utility model, and are not used to limit the present utility model

[0026] Embodiment: As Figures 1-4 shown, the present utility model provides a technical solution, a production and winding device for fiberglass fireproof cloth, including a fixed support frame 1. A collection component 2 is arranged at the top end of the fixed support frame 1. The collection component 2 includes a rotating motor 201, a processing fixing frame 202, a moving electric slide rail 203, a moving processing frame 204, a rotating fitting frame 205, an extrusion electric push rod 206, an extrusion arc plate 207, a collection motor 208, a collection hole pipe 209, a fixed air pump 210, an extraction pipe 211 and an in-and-out electric push rod 212

[0027] A rotating motor 201 is installed at one end of the fixed support frame 1 through a motor base. The output shaft of the rotating motor 201 is clamped with a processing fixing frame 202. The processing fixing frame 202 is rotatably sleeved with the fixed support frame 1. The processing fixing frame 202 is slidably sleeved with the rotating fitting frame 205 to realize stable processing operations when the equipment is adjusted and the material is aligned. The inner bottom end of the fixed support frame 1 is clamped with a moving electric slide rail 203. The top end of the moving electric slide rail 203 is fixed with a moving processing frame 204 through a slide rail seat. One end of the moving processing frame 204 is rotatably connected to the rotating fitting frame 205 at the top. Both ends of the processing fixing frame 202 are symmetrically clamped with extrusion electric push rods 206. One end of the two extrusion electric push rods 206 is fixed with an extrusion arc plate 207. One end of the processing fixing frame 202 is installed with a collection motor 208 through a motor base. The output shaft of the collection motor 208 is clamped with a collection hole pipe 209. One end of the rotating fitting frame 205 is installed with a fixed air pump 210 through a motor base. The side end of the fixed air pump 210 is connected with an extraction pipe 211 through a rotary joint. The extraction pipe 211 is installed through the inside of the collection hole pipe 209 to ensure the stability of adsorption and fixation. The top end and the bottom end of the processing fixing frame 202 are both fixed with in-and-out electric push rods 212

[0028] For the stable operation of the device, the input ends of the rotating motor 201, the moving electric slide rail 203, the extrusion electric push rod 206, the collecting motor 208, the fixed air pump 210, and the in-out electric push rod 212 are all electrically connected to the output end of the external power supply.

[0029] One side of the fixed support frame 1 is provided with an in-out component 3. The in-out component 3 includes a positioning electric slide rail 301, a positioning fixing plate 302, a lifting electric push rod 303, a lifting load-bearing platform 304, a fixed electromagnet 305, a blocking placement box 306, a pushing electric push rod 307, and a pushing circular plate 308.

[0030] The positioning electric slide rails 301 are symmetrically clamped at the inner bottom end of the fixed support frame 1. One end of the positioning electric slide rail 301 is clamped with a positioning fixing plate 302 through a slide rail seat. The positioning fixing plate 302 is slidably installed at the top end of the fixed support frame 1 to achieve stable movement and support, ensuring the stability of the limit fixation. The lifting electric push rods 303 are symmetrically installed at equal intervals at the top end of the positioning fixing plate 302. The top ends of the lifting electric push rods 303 are fixed with a lifting load-bearing platform 304. The fixed electromagnets 305 are symmetrically installed inside the lifting load-bearing platform 304. The blocking placement box 306 is sleeved inside the lifting load-bearing platform 304. The blocking placement box 306 and the fixed electromagnets 305 are magnetically combined to achieve stable positioning and magnetic fixation, ensuring the stable operation of loading and unloading. One end of the processing fixing frame 202 is symmetrically provided with pushing electric push rods 307 at equal intervals. A pushing circular plate 308 is installed at one end of the two pushing electric push rods 307. The pushing circular plate 308 is slidably placed inside the processing fixing frame 202 to achieve stable pushing and discharging.

[0031] For the stable operation of the device, the input ends of the positioning electric slide rail 301, the lifting electric push rod 303, the fixed electromagnet 305, and the pushing electric push rod 307 are all electrically connected to the output end of the external power supply.

[0032] Working principle and usage process of the present utility model: When producing fiberglass fireproof cloth, the rotation and cooperation frame 205 is driven by the incoming and outgoing electric push rod 212 to move along the processing and fixing frame 202. At the same time, the moving processing frame 204 is driven by the moving electric slide rail 203 to move along the fixed support frame 1. Thus, when changing the position of the rotation and cooperation frame 205, effective transposition processing can be carried out to ensure stable operation of support and positioning. Separate the processing and fixing frame 202 from the moving processing frame 204, and sleeve the material receiving cylinder onto the side end of the collection hole tube 209. Use the fixed air pump 210 and the extraction tube 211 to cooperate with the collection hole tube 209 to perform vacuum adsorption on the material receiving cylinder for fixing the material receiving cylinder. After the fixing is completed, the extrusion electric push rod 206 drives the extrusion arc plate 207 to push the fiberglass fireproof cloth to fit onto the side end of the material receiving cylinder, thereby bonding the fiberglass fireproof cloth to the side end of the material receiving cylinder. The collection motor 208 drives the collection hole tube 209 and the material receiving cylinder to rotate, winding the fiberglass fireproof cloth onto the side end of the material receiving cylinder. At the same time, during the process of rotating and receiving the material, the extrusion arc plate 207 is used to extrude and position the side end of the fiberglass fireproof cloth to ensure the tightness of the received material, and the side ends of the fiberglass fireproof cloth are restricted by the processing and fixing frame 202 and the rotation and cooperation frame 205 at both ends to prevent it from shifting and detaching during the rotation and material receiving process, improving the stability of material receiving;

[0033] After the material receiving is completed, the incoming and outgoing electric push rod 212 and the moving electric slide rail 203 drive the moving processing frame 204 and the rotation and cooperation frame 205 to move, separate the processing and fixing frame 202 from the rotation and cooperation frame 205. The rotation motor 201 drives the processing and fixing frame 202 to rotate, the alignment electric slide rail 301 drives the alignment fixing plate 302 to move along the fixed support frame 1, the lifting electric push rod 303 drives the lifting load-bearing platform 304 to move, and the fixed electromagnet 305 fixes the blocking placement box 306, fixing the blocking placement box 306 inside the lifting load-bearing platform 304. The pushing electric push rod 307 drives the pushing circular plate 308 to push the fiberglass fireproof cloth roll into the inside of the blocking placement box 306 to achieve stable material receiving processing, and the collection position can be adjusted according to the winding size to achieve stable alignment collection, ensuring stable operation of material receiving.

[0034] Finally, it should be noted that the above are only preferred examples of the present utility model and are not used to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions described in the foregoing embodiments, or perform equivalent replacements for some of the technical features. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A production and winding device for glass fiber fireproof cloth, comprising a fixed support frame (1), characterized in that: A collecting assembly (2) is arranged at the top of the fixed support frame (1), and the collecting assembly (2) comprises a rotating motor (201), a processing fixed frame (202), a movable electric slide rail (203), a movable processing frame (204), a rotating matching frame (205), an extrusion electric push rod (206), an extrusion arc plate (207), a collecting motor (208), a collecting hole pipe (209), a fixed air pump (210), an extraction pipe (211) and an in-and-out electric push rod (212); A rotating motor (201) is installed at one end of the fixed support frame (1) through a motor seat, and the output shaft of the rotating motor (201) is clamped with a processing fixed frame (202). A movable electric slide rail (203) is clamped at the bottom of the inner side of the fixed support frame (1), and a movable processing frame (204) is fixed at the top of the movable electric slide rail (203) through a slide rail seat. A rotating matching frame (205) is rotatably connected to the top of one end of the movable processing frame (204), and extrusion electric push rods (206) are symmetrically clamped at both ends of the processing fixed frame (202). An extrusion arc plate (207) is fixed at one end of the two extrusion electric push rods (206); a collection motor (208) is installed at one end of the processing fixed frame (202) through a motor seat; a collection hole tube (209) is clamped on the output shaft of the collection motor (208); a fixed air pump (210) is installed at one end of the rotating matching frame (205) through a motor seat; a side end of the fixed air pump (210) is connected to an extraction tube (211) through an adapter; and inlet and outlet electric push rods (212) are fixed at the top and bottom ends of the processing fixed frame (202).

2. The production and winding equipment for glass fiber fireproof cloth according to claim 1 is characterized in that: The processing fixed frame (202) is rotatably fitted with the fixed support frame (1), and the input ends of the rotating motor (201), the movable electric slide rail (203), the extrusion electric push rod (206), the collection motor (208), the fixed air pump (210) and the in-and-out electric push rod (212) are all electrically connected to the output end of the external power supply.

3. The production and winding equipment for glass fiber fireproof cloth according to claim 1 is characterized in that: The processing fixed frame (202) and the rotating matching frame (205) are slidably fitted, and the extraction tube (211) is installed through the inner side of the collection hole tube (209).

4. The production and winding equipment for glass fiber fireproof cloth according to claim 1, characterized in that: An entry and exit assembly (3) is installed on one side of the fixed support frame (1), and the entry and exit assembly (3) includes an alignment electric slide rail (301), an alignment fixed plate (302), a lifting electric push rod (303), a lifting load-bearing platform (304), a fixed electromagnet (305), a blocking placement box (306), an ejection electric push rod (307) and an ejection circular plate (308); The bottom inner end of the fixed support frame (1) is symmetrically connected with an alignment electric slide rail (301), one end of the alignment electric slide rail (301) is connected with an alignment fixed plate (302) through a slide rail seat, the top of the alignment fixed plate (302) is symmetrically installed with a lifting electric push rod (303), the top of the lifting electric push rod (303) is fixed with a lifting load-bearing platform (304), the inner side of the lifting load-bearing platform (304) is symmetrically installed with a fixed electromagnet (305), the inner side of the lifting load-bearing platform (304) is sleeved with a blocking placement box (306), one end of the processing fixed frame (202) is symmetrically installed with an ejection electric push rod (307), and one end of the two ejection electric push rods (307) is installed with an ejection circular plate (308).

5. The production and winding equipment for glass fiber fireproof cloth according to claim 4 is characterized in that: The alignment fixing plate (302) is slidably mounted on the top of the fixed support frame (1), and the input ends of the alignment electric slide rail (301), the lifting electric push rod (303), the fixed electromagnet (305) and the pushing electric push rod (307) are all electrically connected to the output end of the external power supply.

6. The production and winding equipment for glass fiber fireproof cloth according to claim 4, characterized in that: The blocking placement box (306) is magnetically combined with the fixed electromagnet (305), and the pushing circular plate (308) is slidably placed inside the processing fixed frame (202).