Preparation mold of inorganic modified non-combustible insulation board system

CN224809761UActive Publication Date: 2026-09-29SHANGHAI PUDONG YIXIANG HEAT PRESERVATION MATERIALS CO LTD
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Patent Information

Application Number
CN202522337766.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-11-04
Publication Date
2026-09-29
Estimated Expiration
2035-11-04

AI Technical Summary

Technical Problem

[0004]为了弥补以上不足,本实用新型提供了无机改性不燃保温板系统的制备模具,旨在改善现有技术中未对浆料平整和内部排气结构进行改进,导致板材表面高低差过大,影响后续使用,未排出的气体在板材内部形成空洞,导致局部强度骤降的问题

Benefits of technology

1、本实用新型中,启动电机输出动力带动驱动盘旋转,驱动盘带动推动杆转动,推动杆带动转动盘转动,转动盘带动驱动杆转动,驱动杆带动传动柱转动,传动柱带动左右侧支撑连杆转动,支撑连杆带动连接杆移动,连接杆带动连杆移动,连杆带动转动条在支撑杆支撑下转动,转动条带动震荡条敲击底板,使底板震动,消除浆料气泡并使浆料平整。

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Abstract

The utility model relates to the technical field of insulation board preparation, disclose preparation mould of inorganic modified non - combustible insulation board system, including the bottom plate, the all fixedly connected with a plurality of side plates in the top of bottom plate four quarters, the bottom plate's bottom end middle part is provided with the oscillation mechanism, the oscillation mechanism is for the slurry of bottom plate inside place is oscillated, the outer wall of side plate is provided with auxiliary mechanism, the auxiliary mechanism is for the quick splicing and quick stripping of mould, the oscillation mechanism includes motor, the top of motor and the bottom end front side fixed connection of bottom plate, the front side of motor is provided with drive assembly. In the utility model, start motor, drive driving disc rotation, driving disc drive push rod, rotating disc, drive rod, transmission column, support connecting rod, connecting rod, connecting rod and rotating strip rotate under the support of support rod, and rotating strip drives oscillation strip to knock the bottom plate, makes the bottom plate vibrate, to eliminate slurry bubble and make slurry even.
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Description

Technical Field

[0001] This utility model relates to the field of insulation board preparation technology, and in particular to the preparation mold of inorganic modified non-combustible insulation board system. Background Technology

[0002] Inorganic modified non-combustible insulation board is a high-performance building insulation material made from natural minerals or industrial waste through scientific modification. It primarily consists of inorganic materials such as rock wool, glass wool, and foamed cement. By adding special modifiers, it significantly improves insulation, compressive strength, and durability while ensuring non-combustibility. It does not burn or release toxic gases when exposed to open flames, eliminating fire hazards at the source. It offers excellent insulation performance, effectively reducing building energy consumption. It also has strong deformation resistance, adapting to different construction environments. The material has stable chemical properties, is anti-aging, acid and alkali resistant, and has a service life of up to 50 years. It is widely used in exterior wall insulation, roof insulation, and cold storage insulation. It is a green building material that combines safety and economy, providing dual protection for building energy conservation and fire safety. To manufacture inorganic modified non-combustible insulation boards, a preparation mold for the inorganic modified non-combustible insulation board system is required.

[0003] Currently available molds for preparing inorganic modified non-combustible insulation board systems mainly consist of a base plate assembly, side templates, and an ejector device. They are suitable for producing boards for building exterior walls, roofs, and cold storage insulation projects. They can mold rock wool and foamed cement inorganic materials to meet the fireproof and thermal insulation needs of residential, commercial, and industrial buildings. They can also be used for customized production of irregularly shaped components such as pipe insulation boards, achieving efficient mass production and precise molding. However, after the inorganic materials solidify, they adhere to the inner wall of the mold, resulting in a high rate of edge breakage during demolding. In some cases, manual knocking is required to assist in demolding, leading to low efficiency. To solve these problems, existing technologies only add elastic demolding modules at the four corners to provide a certain amount of clearance during demolding. However, they do not improve the smoothness of the slurry or the internal venting structure, resulting in excessive height differences on the board surface, affecting subsequent use. Unvented gas forms voids inside the board, causing a sharp drop in local strength. Utility Model Content

[0004] To overcome the above deficiencies, this utility model provides a preparation mold for an inorganic modified non-combustible insulation board system. It aims to improve the existing technology, which does not improve the smoothness of the slurry and the internal venting structure, resulting in excessive height differences on the surface of the board, affecting subsequent use, and causing unvented gas to form voids inside the board, leading to a sharp drop in local strength.

[0005] To achieve the above objectives, the present invention adopts the following technical solution: a preparation mold for an inorganic modified non-combustible insulation board system, comprising a base plate, with multiple side plates fixedly connected to the top four sides of the base plate, and a vibration mechanism provided in the middle of the bottom end of the base plate for vibrating the slurry placed inside the base plate. An auxiliary mechanism is provided on the outer wall of the side plates for quickly assembling and demolding the mold. The vibration mechanism includes a motor, the top of which is fixedly connected to the front side of the bottom end of the base plate. A drive assembly is provided on the front side of the motor, a transmission assembly is provided on the rear side of the drive assembly, and a vibration assembly is provided on the top of the transmission assembly. Two support plates are fixedly connected to the front and rear sides of the bottom end of the base plate.

[0006] Through the above technical solution: the output end of the cylinder is fixedly connected to a push plate. The push plate, through its tight connection with the cylinder, can effectively transmit the power generated by the cylinder to the object to be pushed. The four corners of the base plate are provided with through holes for threading connecting parts or fixing parts. The outer wall of the base plate is provided with a fixing component, which can ensure that the base plate remains stable during use. The middle of the fixing component is provided with a locking component. The function of the locking component is to further ensure that the connection between the fixing component and the base plate is tight and reliable through the locking mechanism, thereby improving the stability and safety of the overall structure.

[0007] As a further description of the above technical solution: The auxiliary mechanism includes a cylinder, the output end of which is fixedly connected to a push plate. Through holes are provided at the four corners of the base plate. A fixing component is provided on the outer wall of the base plate, and a locking component is provided in the middle of the fixing component.

[0008] Through the above technical solution: the rear side of the drive disk is fixedly connected to the output end of the motor to ensure the stability and reliability of power transmission; a push rod is rotatably connected to the front right side of the drive disk, so that the push rod can rotate flexibly under the drive of the drive disk; the other side of the push rod is rotatably connected to the rotating disk, ensuring that the rotating disk can rotate synchronously with the movement of the push rod; the rear side of the rotating disk is fixedly connected to the drive rod, and this fixed connection method ensures that the drive rod can stably transmit the power of the rotating disk.

[0009] As a further description of the above technical solution: The drive assembly includes a drive disk, the rear side of which is fixedly connected to the output end of the motor. A push rod is rotatably connected to the front right side of the drive disk, and a rotating disk is rotatably connected to the other side of the push rod. A drive rod is fixedly connected to the rear side of the rotating disk.

[0010] Through the above technical solution: the transmission assembly includes a transmission column, the middle part of which is fixedly connected to the middle part of the outer wall of the drive rod, ensuring that the transmission column can effectively transmit the power of the drive rod. Two support links are fixedly connected to the left and right sides of the transmission column, which enhances the stability and load-bearing capacity of the transmission assembly. A connecting rod is rotatably connected to the opposite side of the support link, so that the connecting rod can rotate flexibly under the drive of the support link.

[0011] As a further description of the above technical solution: The transmission assembly includes a transmission column, the middle of which is fixedly connected to the middle of the outer wall of the drive rod. Two support bars are fixedly connected to the left and right sides of the transmission column, and a connecting rod is rotatably connected to the opposite side of the support bars.

[0012] Through the above technical solution: the oscillation assembly includes a connecting rod, the middle of the outer wall of the connecting rod is fixedly connected to the middle of the top of the connecting rod, ensuring that the connecting rod can stably receive the power of the connecting rod. Rotating bars are fixedly connected to both the front and rear sides of the connecting rod, so that the rotating bars can rotate synchronously under the drive of the connecting rod. A support rod is rotatably connected to the middle of the rotating bar, and the rotatable connection of the support rod allows it to rotate flexibly under the drive of the rotating bar. An oscillation bar is fixedly connected to the side of the rotating bar that is far away from it, ensuring that the oscillation bar can stably receive and transmit the power of the rotating bar, thereby realizing the function of the oscillation assembly.

[0013] As a further description of the above technical solution: The oscillation assembly includes a connecting rod, the middle of the outer wall of the connecting rod is fixedly connected to the middle of the top of the connecting rod, rotating bars are fixedly connected to both the front and rear sides of the connecting rod, a support rod is rotatably connected to the middle of the rotating bar, and an oscillation bar is fixedly connected to the side of the rotating bar that is furthest away from it.

[0014] Through the above technical solution: the adjacent side of the support frame is fixedly connected to the outer wall of the base plate to ensure the stability and firmness of the overall structure; the internal fixed connection of the support frame is a fixing bolt, which ensures the stability of the support frame through precise positioning and tightening; the outer wall of the side plate is fixedly connected to a U-shaped clip, which can play a good role in fixing and supporting.

[0015] As a further description of the above technical solution: The fixing component includes a support frame, with an adjacent side of the support frame fixedly connected to the outer wall of the base plate. The support frame is internally fixedly connected with fixing bolts, and the outer wall of the side plate is fixedly connected with a U-shaped locking block.

[0016] Through the above technical solution: the locking assembly includes a rotating connecting block, the middle of which is rotatably connected to the inside of the support frame, so that the rotating connecting block can rotate flexibly within a certain range to adapt to different locking requirements. A fixing screw is fixedly connected to the left side of the rotating connecting block. The outer wall of the fixing screw is threaded and can be threadedly connected to a nut. By tightening the nut, the entire assembly can be further reinforced and locked.

[0017] As a further description of the above technical solution: The locking assembly includes a rotating connecting block, the middle of which is rotatably connected to the interior of the support frame. A fixing screw is fixedly connected to the left side of the rotating connecting block, and a nut is threaded onto the outer wall of the fixing screw.

[0018] Through the above technical solution: multiple support legs are provided at the four corners of the bottom of the base plate. These support legs are fixed to the base plate by a sturdy connection, ensuring that the entire device has sufficient stability and load-bearing capacity during placement and use. A fixing block is fixedly connected to the left side of the motor, which can effectively fix the motor and prevent it from shifting during operation, ensuring the smoothness and safety of motor operation.

[0019] As a further description of the above technical solution: Multiple support legs are fixedly connected to the four corners at the bottom of the base plate, and a fixing block is fixedly connected to the left side of the motor.

[0020] This utility model has the following beneficial effects: 1. In this utility model, the starting motor outputs power to drive the drive disc to rotate, the drive disc drives the push rod to rotate, the push rod drives the rotating disc to rotate, the rotating disc drives the drive rod to rotate, the drive rod drives the transmission column to rotate, the transmission column drives the left and right side support connecting rods to rotate, the support connecting rod drives the connecting rod to move, the connecting rod drives the connecting rod to move, the connecting rod drives the rotating bar to rotate under the support of the support rod, the rotating bar drives the vibrating bar to strike the bottom plate, causing the bottom plate to vibrate, eliminating air bubbles in the slurry and making the slurry smooth.

[0021] 2. In this utility model, the fixing screw is rotated in the middle of the outer wall of the inner shaft of the support frame by rotating the connecting block, and then locked into the slot. The nut is then tightened on the thread of the outer wall of the fixing screw to achieve fixation. After the slurry solidifies, the cylinder is activated, and its output end passes through the perforation of the bottom plate to push the push plate, which pushes out the finished product, realizing rapid mold assembly and rapid product removal, thus improving work efficiency. Attached Figure Description

[0022] Figure 1 A three-dimensional view of the front side of the mold for preparing the inorganic modified non-combustible insulation board system proposed in this utility model; Figure 2This is a structural diagram of the push plate of the preparation mold for the inorganic modified non-combustible insulation board system proposed in this utility model; Figure 3 This is a structural diagram of the fixing screws of the preparation mold for the inorganic modified non-combustible insulation board system proposed in this utility model; Figure 4 This is a diagram illustrating the motor structure of the preparation mold for the inorganic modified non-combustible insulation board system proposed in this utility model. Figure 5 This is a schematic diagram of the base plate structure of the preparation mold for the inorganic modified non-combustible insulation board system proposed in this utility model.

[0023] Legend: 1. Base plate; 2. Vibration mechanism; 201. Motor; 202. Drive assembly; 2021. Drive disc; 2022. Push rod; 2023. Rotating disc; 2024. Drive rod; 203. Transmission assembly; 2031. Transmission column; 2032. Support link; 2033. Connecting rod; 204. Vibration assembly; 2041. Connecting rod; 2042. Rotating bar; 2043. Support rod; 2044. Vibration bar; 205. Support plate; 3. Auxiliary mechanism; 301. Cylinder; 302. Through hole; 303. Push plate; 304. Fixing assembly; 3041. Support frame; 3042. Fixing bolt; 3043. U-shaped locking block; 305. Locking assembly; 3051. Rotating link; 3052. Fixing screw; 3053. Nut; 4. Side plate; 5. Support leg; 6. Fixing block. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] Please see the appendix Figure 1 - Appendix Figure 3An embodiment of this utility model provides a preparation mold for an inorganic modified non-combustible insulation board system, including a base plate 1. Multiple side plates 4 are fixedly connected to the top four sides of the base plate 1. An oscillation mechanism 2 is provided in the middle of the bottom end of the base plate 1. The oscillation mechanism 2 is used to oscillate the slurry placed inside the base plate 1. An auxiliary mechanism 3 is provided on the outer wall of the side plates 4. The auxiliary mechanism 3 is used for quick assembly and quick demolding of the mold. The oscillation mechanism 2 includes a motor 201. The top end of the motor 201 is fixedly connected to the front side of the bottom end of the base plate 1 to ensure that the motor 201 is stable and reliable during operation. A drive component 202 is provided on the front side of the motor 201. A transmission component 203 is provided on the rear side of the drive component 202. An oscillation component 204 is provided on the top end of the transmission component 203. Two support plates 205 are fixedly connected to the front and rear sides of the bottom end of the base plate 1. Specifically, multiple side plates 4 are fixedly connected to the top four sides of the base plate 1. These side plates 4 tightly surround the base plate 1, forming a stable structure. A vibration mechanism 2 is provided in the middle of the bottom end of the base plate 1. The main function of the vibration mechanism 2 is to effectively vibrate the slurry placed inside the base plate 1 to ensure the uniformity and fluidity of the slurry. An auxiliary mechanism 3 is provided on the outer wall of the side plates 4. This auxiliary mechanism 3 is for realizing rapid assembly and demolding of the mold, thereby improving production efficiency. The vibration mechanism 2 includes a motor 201. The top of the motor 201 is fixedly connected to the front side of the bottom end of the base plate 1 to ensure that the motor 201 operates smoothly during operation. The device is stable and reliable. A drive assembly 202 is provided on the front side of the motor 201. The drive assembly 202 is responsible for transmitting the power of the motor 201. A transmission assembly 203 is provided on the rear side of the drive assembly 202. The function of the transmission assembly 203 is to further transmit the power of the drive assembly 202 to the vibration assembly 204. The vibration assembly 204 is provided on the top of the transmission assembly 203. Two support plates 205 are fixedly connected to the front and rear sides of the bottom of the base plate 1. These support plates 205 not only enhance the overall stability of the base plate 1, but also provide support force to ensure that the entire device remains stable during operation and avoids unnecessary shaking caused by vibration.

[0026] Please see the appendix Figure 2 - Appendix Figure 3 The auxiliary mechanism 3 includes a cylinder 301, and a push plate 303 is fixedly connected to the output end of the cylinder 301, which can effectively transmit the power generated by the cylinder 301 to the object to be pushed. The four corners of the base plate 1 are provided with through holes 302. The outer wall of the base plate 1 is provided with a fixing component 304, which can ensure that the base plate 1 remains stable during use. The middle part of the fixing component 304 is provided with a locking component 305. The function of the locking component 305 is to further ensure that the connection between the fixing component 304 and the base plate 1 is tight and reliable through the locking mechanism, thereby improving the stability and safety of the overall structure. Specifically, a push plate 303 is fixedly connected to the output end of the cylinder 301. The push plate 303, through its tight connection with the cylinder 301, can effectively transmit the power generated by the cylinder 301 to the object to be pushed. The four corners of the base plate 1 are provided with through holes 302 for threading connecting parts or fixing parts. The outer wall of the base plate 1 is provided with a fixing component 304. The fixing component 304 can ensure that the base plate 1 remains stable during use. A locking component 305 is provided in the middle of the fixing component 304. The function of the locking component 305 is to further ensure that the connection between the fixing component 304 and the base plate 1 is tight and reliable through the locking mechanism, thereby improving the stability and safety of the overall structure.

[0027] Please see the appendix Figure 3 - Appendix Figure 4 The drive assembly 202 includes a drive disk 2021. The rear side of the drive disk 2021 is fixedly connected to the output end of the motor 201 to ensure the stability and reliability of power transmission. A push rod 2022 is rotatably connected to the front right side of the drive disk 2021, allowing the push rod 2022 to rotate flexibly under the drive of the drive disk 2021. A rotating disk 2023 is rotatably connected to the other side of the push rod 2022, ensuring that the rotating disk 2023 can rotate synchronously with the movement of the push rod 2022. A drive rod 2024 is fixedly connected to the rear side of the rotating disk 2023. This fixed connection ensures that the drive rod 2024 can stably transmit the power of the rotating disk 2023. The transmission assembly 203 includes a transmission column 2031. The middle part of the transmission column 2031 is fixedly connected to the middle part of the outer wall of the drive rod 2024, ensuring that the transmission column 2031 can effectively transmit the power of the drive rod 2024. The left and right sides of the transmission column 2031 are both... Two supporting links 2032 are fixedly connected, enhancing the stability and load-bearing capacity of the transmission assembly 203. A connecting rod 2033 is rotatably connected to the opposite side of the supporting links 2032, allowing the connecting rod 2033 to rotate flexibly under the drive of the supporting links 2032. The oscillation assembly 204 includes a connecting rod 2041, with the middle of the outer wall of the connecting rod 2041 fixedly connected to the middle of the top of the connecting rod 2033, ensuring that the connecting rod 2041 can stably receive the power from the connecting rod 2033. Rotating bars 2042 are fixedly connected to both the front and rear sides of the connecting rod 2041, allowing the rotating bars 2042 to rotate synchronously under the drive of the connecting rod 2041. A supporting rod 2043 is rotatably connected to the middle of the rotating bar 2042, and an oscillation bar 2044 is fixedly connected to the opposite side of the rotating bar 2042, ensuring that the oscillation bar 2044 can stably receive and transmit the power from the rotating bar 2042, thereby realizing the function of the oscillation assembly 204. Specifically, the rear side of the drive disc 2021 is fixedly connected to the output end of the motor 201 to ensure the stability and reliability of power transmission. A push rod 2022 is rotatably connected to the front right side of the drive disc 2021, allowing the push rod 2022 to rotate flexibly under the drive of the drive disc 2021. The other side of the push rod 2022 is rotatably connected to the rotating disc 2023, ensuring that the rotating disc 2023 can rotate synchronously with the movement of the push rod 2022. The rear side of the rotating disc 2023 is fixedly connected to the drive rod 2024. This fixed connection ensures that the drive rod 2024 can stably transmit the power of the rotating disc 2023. The transmission assembly 203 includes a transmission column 2031. The middle part of the transmission column 2031 is fixedly connected to the middle part of the outer wall of the drive rod 2024, ensuring that the transmission column 2031 can effectively transmit the power of the drive rod 2024. Two support bars 2032 are fixedly connected to both the left and right sides of the transmission column 2031, enhancing the transmission assembly 203. The stability and load-bearing capacity of the 03 component are ensured by a connecting rod 2033 rotatably connected to the opposite side of the supporting connecting bar 2032, allowing the connecting rod 2033 to rotate flexibly under the drive of the supporting connecting bar 2032. The oscillation component 204 includes a connecting rod 2041, with the middle of the outer wall of the connecting rod 2041 fixedly connected to the middle of the top of the connecting rod 2033, ensuring that the connecting rod 2041 can stably receive the power from the connecting rod 2033. Rotating bars 2042 are fixedly connected to both the front and rear sides of the connecting rod 2041, allowing the rotating bars 2042 to rotate synchronously under the drive of the connecting rod 2041. A supporting rod 2043 is rotatably connected to the middle of the rotating bar 2042, and the rotatable connection of the supporting rod 2043 allows it to rotate flexibly under the drive of the rotating bar 2042. An oscillation bar 2044 is fixedly connected to the opposite side of the rotating bar 2042, ensuring that the oscillation bar 2044 can stably receive and transmit the power from the rotating bar 2042, thereby realizing the function of the oscillation component 204.

[0028] Please see the appendix Figure 3 - Appendix Figure 5The fixing component 304 includes a support frame 3041, with one adjacent side of the support frame 3041 fixedly connected to the outer wall of the base plate 1 to ensure the stability and robustness of the overall structure. A fixing bolt 3042 is fixedly connected inside the support frame 3041. The fixing bolt 3042, through precise positioning and tightening, ensures the stability of the support frame 3041. A U-shaped locking block 3043 is fixedly connected to the outer wall of the side plate 4, providing good fixing and support. The locking component 305 includes a rotating connecting block 3051, the middle of which is rotatably connected to the interior of the support frame 3041, allowing the rotating connecting block 3051 to... It can rotate flexibly within a certain range to adapt to different locking requirements. The left side of the rotating connecting block 3051 is fixedly connected with a fixing screw 3052. The outer wall of the fixing screw 3052 is threaded with a nut 3053. By tightening the nut 3053, the entire component can be further reinforced and locked. Multiple support legs 5 are fixedly connected at the four corners of the bottom of the base plate 1 to ensure that the entire device has sufficient stability and load-bearing capacity during placement and use. The left side of the motor 201 is fixedly connected with a fixing block 6, which can effectively fix the motor 201 and prevent it from shifting during operation, ensuring the smoothness and safety of the motor 201 operation. Specifically, the adjacent side of the support frame 3041 is fixedly connected to the outer wall of the base plate 1 to ensure the stability and firmness of the overall structure. A fixing bolt 3042 is fixedly connected inside the support frame 3041. This fixing bolt 3042, through precise positioning and tightening, ensures the stability of the support frame 3041. A U-shaped locking block 3043 is fixedly connected to the outer wall of the side plate 4. This U-shaped locking block 3043 provides good fixing and support. The locking assembly 305 includes a rotating connecting block 3051. The middle of the rotating connecting block 3051 is rotatably connected to the interior of the support frame 3041, allowing the rotating connecting block 3051 to rotate flexibly within a certain range to adapt to different locking requirements. The left side of the rotating connecting block 3051 is fixedly connected to a fixing screw 3052. The outer wall of the fixing screw 3052 is threaded, which can be threadedly connected to the nut 3053. By tightening the nut 3053, the entire component can be further reinforced and locked. At the four corners of the bottom end of the base plate 1, there are multiple support legs 5. These support legs 5 are fixed to the base plate 1 by a sturdy connection, ensuring that the entire device has sufficient stability and load-bearing capacity during placement and use. The left side of the motor 201 is fixedly connected to a fixing block 6, which can effectively fix the motor 201 and prevent it from shifting during operation, ensuring the smoothness and safety of the motor 201 operation.

[0029] Working principle: When in use, the starting motor 201 outputs power to drive the drive disc 2021 to rotate. The rotation of the drive disc 2021 drives the push rod 2022 to rotate. The rotation of the push rod 2022 drives the rotating disc 2023 to rotate. The rotation of the rotating disc 2023 drives the drive rod 2024 to rotate. The rotation of the drive rod 2024 drives the transmission column 2031 to rotate. The rotation of the transmission column 2031 drives the support connecting bars 2032 fixed on the left and right sides to rotate. The rotation of the support connecting bars 2032 drives the connecting rod 2033 to move. The movement of the connecting rod 2033 drives the connecting rod 2041 to move. The movement of the connecting rod 2041 drives the rotating bar 2042 to rotate under the support of the support rod 2043. The rotation of the rotating bar 2042 drives the vibrating bar 2044 to strike the base plate 1, causing the base plate 1 to vibrate, thereby eliminating air bubbles in the slurry and making the slurry smooth. In use, the fixing screw 3052, connected by the rotating connecting block 3051, rotates inside the support frame 3041 into the slot of the U-shaped locking block 3043. Then, the nut 3053 is tightened on the thread of the outer wall of the fixing screw 3052 to achieve fixation. After the slurry solidifies, the cylinder 301 is activated. The output end of the cylinder 301 passes through the through hole 302 at the bottom of the base plate 1 to push the push plate 303 to move and push out the solidified finished product, thereby realizing the rapid assembly of the mold and the rapid removal of the finished product, improving work efficiency.

[0030] Finally, it should be noted that the above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Although the present utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A mold for preparing an inorganic modified non-combustible insulation board system, comprising a base plate (1), characterized in that: Multiple side plates (4) are fixedly connected to the top of the base plate (1) around the perimeter. A vibration mechanism (2) is provided at the bottom center of the base plate (1). The vibration mechanism (2) is used to vibrate the slurry placed inside the base plate (1). An auxiliary mechanism (3) is provided on the outer wall of the side plate (4). The auxiliary mechanism (3) is used to quickly assemble and demold the mold. The oscillation mechanism (2) includes a motor (201), the top of the motor (201) is fixedly connected to the front side of the bottom end of the base plate (1), a drive assembly (202) is provided on the front side of the motor (201), a transmission assembly (203) is provided on the rear side of the drive assembly (202), an oscillation assembly (204) is provided on the top of the transmission assembly (203), and two support plates (205) are fixedly connected to the front and rear sides of the bottom end of the base plate (1).

2. The preparation mold for the inorganic modified non-combustible insulation board system according to claim 1, characterized in that: The auxiliary mechanism (3) includes a cylinder (301), the output end of which is fixedly connected to a push plate (303), and the four corners of the base plate (1) are provided with through holes (302). The outer wall of the base plate (1) is provided with a fixing component (304), and the middle part of the fixing component (304) is provided with a locking component (305).

3. The preparation mold for the inorganic modified non-combustible insulation board system according to claim 1, characterized in that: The drive assembly (202) includes a drive disk (2021), the rear side of which is fixedly connected to the output end of the motor (201). A push rod (2022) is rotatably connected to the front right side of the drive disk (2021), and a rotating disk (2023) is rotatably connected to the other side of the push rod (2022). A drive rod (2024) is fixedly connected to the rear side of the rotating disk (2023).

4. The preparation mold for the inorganic modified non-combustible insulation board system according to claim 1, characterized in that: The transmission assembly (203) includes a transmission column (2031), the middle part of which is fixedly connected to the middle part of the outer wall of the drive rod (2024), and two support bars (2032) are fixedly connected to the left and right sides of the transmission column (2031). A connecting rod (2033) is rotatably connected to the opposite side of the support bars (2032).

5. The preparation mold for the inorganic modified non-combustible insulation board system according to claim 1, characterized in that: The oscillation assembly (204) includes a connecting rod (2041), the middle of the outer wall of the connecting rod (2041) is fixedly connected to the middle of the top of the connecting rod (2033), and a rotating bar (2042) is fixedly connected to both the front and rear sides of the connecting rod (2041). A support rod (2043) is rotatably connected to the middle of the rotating bar (2042), and an oscillation bar (2044) is fixedly connected to the side of the rotating bar (2042) that is furthest away from it.

6. The preparation mold for the inorganic modified non-combustible insulation board system according to claim 2, characterized in that: The fixing component (304) includes a support frame (3041), one side of which is fixedly connected to the outer wall of the base plate (1), and a fixing bolt (3042) is fixedly connected inside the support frame (3041), and a U-shaped locking block (3043) is fixedly connected to the outer wall of the side plate (4).

7. The preparation mold for the inorganic modified non-combustible insulation board system according to claim 2, characterized in that: The locking assembly (305) includes a rotating connecting block (3051), the middle part of which is rotatably connected to the inside of the support frame (3041), and a fixing screw (3052) is fixedly connected to the left side of the rotating connecting block (3051), and a nut (3053) is threaded onto the outer wall of the fixing screw (3052).

8. The preparation mold for the inorganic modified non-combustible insulation board system according to claim 1, characterized in that: Multiple support legs (5) are fixedly connected to the four corners of the bottom of the base plate (1), and a fixing block (6) is fixedly connected to the left side of the motor (201).