Production and injection device for fireproof heat-preservation non-dismantling integrated plate
By designing a fire-proof and heat-proof and disassembly-free integrated plate production injection device, the solid-shaped machine and the injection structure can achieve uniform injection of insulation materials between the fire-proof plates, which solves the problem of uneven injection of insulation materials in the traditional production process, improves production efficiency and reduces the existence of cavity.
Patent Information
- Application Number
- CN202422158293.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-04
- Publication Date
- 2025-06-17
- Estimated Expiration
- 2034-09-04
AI Technical Summary
During the production process of traditional fire-proof and thermal insulation integrated panels, the injected insulation material is uneven and cavity is easily generated.
A fire-proof and heat-proof and disassemble-free integrated plate production injection device is designed. Using a solid machine and material injection structure, the uniform injection material injection material is achieved through the synchronous lifting motor unit and lifting rack to achieve uniform injection of insulation material between the fire-proof plates.
The production efficiency of the fire-proof and thermal insulation integrated panel is improved, the existence of cavity is reduced, and the uniform injection of thermal insulation material is ensured.
Smart Images

Figure CN222987225U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of production of insulation boards, in particular to a feeding device for producing a fireproof and heat-insulating non-removable integrated board. Background Art
[0002] A fireproof and heat-insulating board is an integrated fireproof and heat-insulating board with a heat-insulating layer sandwiched between fireproof boards on both sides. Such boards are all produced by fixing the fireproof boards at fixed intervals and then filling them with heat-insulating materials. The traditional production of integrated boards uses jigs for fixation, and then the heat-insulating materials are injected into the boards. Uneven injection is likely to produce cavities. Therefore, a feeding device for producing a fireproof and heat-insulating non-removable integrated board is designed. Summary of the Utility Model
[0003] The purpose of the utility model is to provide a feeding device for producing a fireproof and heat-insulating non-removable integrated board to solve the above technical problems. To achieve the above purpose, the utility model adopts the following technical solutions:
[0004] A feeding device for producing a fireproof and heat-insulating non-removable integrated board includes a shaping machine, a feeding structure, a power supply control platform, a feeding lifting mechanism, and a feeding connection pipeline. The feeding lifting mechanism is oppositely arranged on both sides of the top surface of the shaping machine. Both ends of the feeding structure are connected between the feeding lifting mechanisms. The feeding connection pipeline is connected to the top side of the feeding structure. The power supply control platform is arranged on one side of the shaping machine.
[0005] On the basis of the above technical solution, the shaping machine is composed of a shaping machine body, shaping clamping plates, bow-shaped frames, and pipeline support rollers. The shaping clamping plates are arranged at the center of the shaping machine body, and the shaping clamping plates can be adjusted in position within the shaping machine body. The bow-shaped frames are oppositely arranged at both ends of the top surface of the shaping machine body. Anti-tilting grooves are arranged inside the bow-shaped frames. The pipeline support rollers are arranged on one side between the two groups of bow-shaped frames, and the pipeline support rollers can roll on the bow-shaped frames. The feeding lifting mechanism is composed of a synchronous lifting motor group and a lifting frame. The lifting frames are oppositely arranged at the bottom sides of the bow-shaped frames. The synchronous lifting motor group is arranged on the two groups of lifting frames. Both ends of the feeding structure are connected to the oppositely arranged lifting frames, and the feeding structure can slide up and down within the lifting frames. The upper sides of both ends of the feeding structure are arranged in the anti-tilting grooves, and the feeding structure can slide in the anti-tilting grooves. The feeding connection pipeline is arranged on the pipeline support rollers.
[0006] On the basis of the above technical solution, the injection structure is composed of an injection machine housing, an injection connection pipe, side-end connecting gear rods, and extended limiting plates. The injection connection pipe is connected to the top side of the injection machine housing. The side-end connecting gear rods are oppositely arranged at both ends of the injection machine housing. The extended limiting plates are oppositely arranged at the top sides of both ends of the injection machine housing. The injection machine housing, the injection connection pipe, the side-end connecting gear rods, and the extended limiting plates are integrally fixed. A plurality of variable-diameter injection cavities are arranged inside the injection machine housing. The plurality of variable-diameter injection cavities are arranged in a row and the variable-diameter injection cavities are correspondingly arranged with the injection connection pipe. The top side of the injection connection pipe is connected to an injection connection pipeline. The extended limiting plates are arranged in anti-tilting grooves. The side-end connecting gear rods are respectively connected to the lifting frames on both sides.
[0007] Compared with the prior art, the present utility model has the following advantages: The present utility model optimizes the setting of the fireproof and heat-insulating integrated board, changes the traditional processing method, and improves it into a machine body with a fixed fireproof board for integrally injecting heat-insulating materials, greatly improving the production efficiency, reducing the existence of cavities, and being suitable for popularization and use. BRIEF DESCRIPTION OF THE DRAWINGS
[0008] Figure 1 It is a general external view state diagram of the present utility model.
[0009] Figure 2 It is a detailed schematic diagram of the shaping machine of the present utility model.
[0010] Figure 3 It is a schematic diagram of the injection structure of the present utility model.
[0011] Figure 4 It is a half-sectional schematic diagram of the injection structure of the present utility model.
[0012] In the figure: shaping machine 1, injection structure 2, power supply control platform 3, injection lifting mechanism 4, injection connection pipeline 5, shaping machine body 6, shaping clamping plate 7, bow-shaped frame 8, pipeline support roller 9, anti-tilting groove 10, synchronous lifting motor group 11, lifting frame 12, injection machine housing 13, injection connection pipe 14, side-end connecting gear rod 15, extended limiting plate 16, variable-diameter injection cavity 17. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0013] The present utility model will be further described in detail below with reference to the accompanying drawings and specific embodiments.
[0014] An injection device for producing a fireproof, heat-insulating and non-removable integrated board includes a shaping machine 1, an injection structure 2, a power supply control platform 3, an injection lifting mechanism 4, and an injection connection pipeline 5. The injection lifting mechanism 4 is oppositely arranged on both sides of the top surface of the shaping machine 1. Both ends of the injection structure 2 are connected between the injection lifting mechanisms 4. The injection connection pipeline 5 is connected to the top side of the injection structure 2. The power supply control platform 3 is arranged on one side of the shaping machine 1.
[0015] The solidifying machine 1 is composed of a solidifying machine body 6, solidifying clamping plates 7, bow-shaped frames 8, and pipeline support rollers 9. The solidifying clamping plates 7 are arranged at the center of the solidifying machine body 6, and the solidifying clamping plates 7 can be adjusted in position within the solidifying machine body 6. The bow-shaped frames 8 are oppositely arranged at both ends of the top surface of the solidifying machine body 6. Anti-tipping grooves 10 are arranged inside the bow-shaped frames 8. The pipeline support rollers 9 are arranged on one side between the two groups of bow-shaped frames 8, and the pipeline support rollers 9 can roll on the bow-shaped frames 8. The feeding lifting mechanism 4 is composed of a synchronous lifting motor group 11 and a lifting frame 12. The lifting frames 12 are oppositely arranged at the bottom side of the bow-shaped frames 8. The synchronous lifting motor group 11 is arranged on the two groups of lifting frames 12. Both ends of the feeding structure 2 are connected to the oppositely arranged lifting frames 12, and the feeding structure 2 can slide up and down within the lifting frames 12. The upper sides of both ends of the feeding structure 2 are arranged in the anti-tipping grooves 10, and the feeding structure 2 can slide within the anti-tipping grooves 10. The feeding connection pipeline 5 is arranged on the pipeline support rollers 9.
[0016] The feeding structure 2 is composed of a feeding machine shell 13, a feeding connection pipe 14, side-end connecting gear rods 15, and extended limiting plates 16. The feeding connection pipe 14 is connected to the top side of the feeding machine shell 13. The side-end connecting gear rods 15 are oppositely arranged at both ends of the feeding machine shell 13. The extended limiting plates 16 are oppositely arranged at the top sides of both ends of the feeding machine shell 13. The feeding machine shell 13, the feeding connection pipe 14, the side-end connecting gear rods 15, and the extended limiting plates 16 are integrally fixed. Multiple variable-diameter feeding cavities 17 are arranged inside the feeding machine shell 13. The multiple variable-diameter feeding cavities 17 are arranged in a row, and the variable-diameter feeding cavities 17 are correspondingly arranged with the feeding connection pipe 14. The top side of the feeding connection pipe 14 is connected to the feeding connection pipeline 5. The extended limiting plates 16 are arranged in the anti-tipping grooves 10. The side-end connecting gear rods 15 are respectively connected to the two sides of the lifting frames 12.
[0017] The working principle of the present utility model: The main function of this structure is to use the solidifying clamping plates 7 in the solidifying machine body 6 to limit the movement of the two-sided fireproof boards, and then use the feeding structure 2 to insert between the fireproof boards to inject thermal insulation materials.
[0018] Before use, the corresponding thermal insulation material supply equipment needs to be connected to the injection connection pipeline 5. Before operation, the fireproof board to be used is put into the solid forming body 6 between the solid forming clamping plates 7. The solid forming clamping plates 7 in the solid forming body 6 are used to fix and limit the fireproof board. Then, the synchronous lifting motor group 11 drives the lifting frame 12 to control the up and down adjustment of the injection structure 2. When the injection structure 2 moves to the lowest end, the thermal insulation material enters the variable diameter injection cavity 17 through the injection connection pipeline 5 and is then injected between the two fireproof boards through the bottom end of the variable diameter injection cavity 17. Before the thermal insulation material stabilizes, the solid forming clamping plates 7 are used to limit the position and provide a stable function. After the integrated board is cured, the integrated board is taken out.
[0019] The above is the preferred embodiment of the present invention. For those of ordinary skill in the art, according to the teachings of the present invention, without departing from the principles and spirit of the present invention, the changes, modifications, substitutions, and variations made to the implementation manners still fall within the protection scope of the present invention.
Claims
1. A material injection device for producing fireproof and heat-insulating non-disassembly integrated panels, characterized in that: The invention comprises a solid forming machine (1), an injection structure (2), a power supply control platform (3), an injection lifting mechanism (4), and an injection connecting pipeline (5), wherein the injection lifting mechanism (4) is arranged on two opposite sides of the top surface of the solid forming machine (1), the two ends of the injection structure (2) are connected between the injection lifting mechanisms (4), the injection connecting pipeline (5) is connected to the top side of the injection structure (2), and the power supply control platform (3) is arranged on one side of the solid forming machine (1).
2. A material injection device for producing fireproof and heat-insulating non-disassembly integrated panels according to claim 1, characterized in that: The solid forming machine (1) is composed of a solid forming machine body (6), a solid forming clamping plate (7), a bow frame (8), and a pipeline support roller (9). The solid forming clamping plate (7) is arranged at the center of the solid forming machine body (6), and the position of the solid forming clamping plate (7) can be adjusted in the solid forming machine body (6). The bow frame (8) is arranged at opposite ends of the top surface of the solid forming machine body (6). The inner side of the bow frame (8) is provided with an anti-tilting groove (10). The pipeline support roller (9) is arranged on one side between the two sets of bow frames (8), and the pipeline support roller (9) can roll on the bow frame (8). The injection lifting mechanism (4 ) is composed of a synchronous lifting motor group (11) and a lifting frame (12), wherein the lifting frames (12) are arranged oppositely on the bottom side of the bow frame (8), the synchronous lifting motor group (11) is arranged on the two sets of lifting frames (12), the two ends of the injection structure (2) are connected to the lifting frames (12) arranged oppositely, and the injection structure (2) can slide up and down in the lifting frames (12), the upper sides of the two ends of the injection structure (2) are arranged in the anti-tilt groove (10), and the injection structure (2) can slide in the anti-tilt groove (10), and the injection connection pipeline (5) is arranged on the pipeline support roller (9).
3. A material injection device for producing fireproof and heat-insulating non-disassembly integrated panels according to claim 2, characterized in that: The injection structure (2) is composed of an injection machine housing (13), an injection pipe (14), a side end connecting gear rod (15), and an extended limit plate (16); the injection pipe (14) is connected to the top side of the injection machine housing (13); the side end connecting gear rod (15) is arranged oppositely at the two ends of the injection machine housing (13); the extended limit plate (16) is arranged oppositely at the top sides of the two ends of the injection machine housing (13); the injection pipe (14), the side end connecting gear rod (15) and the extended limit plate (16) are arranged oppositely at the top sides of the two ends of the injection machine housing (13); The gear rod (15) and the extended limit plate (16) are fixed as a whole. A plurality of groups of variable-diameter injection cavities (17) are arranged inside the injection machine housing (13). The plurality of groups of variable-diameter injection cavities (17) are arranged in an array, and the variable-diameter injection cavities (17) are arranged corresponding to the injection pipe (14). The top side of the injection pipe (14) is connected to the injection connection pipeline (5). The extended limit plate (16) is arranged in the anti-tilt groove (10). The side end connected to the gear rod (15) is respectively connected to the lifting frames (12) on both sides.