Rapid installation mechanism of light fireproof heat insulation plate for cultural relic storehouse

By designing the combination and fixing mechanism of lightweight fireproof insulation boards, the transportation and installation problems of fireproof insulation boards are solved, rapid disassembly and transportation and simple installation are achieved, and the fire safety of cultural relics warehouses is improved.

CN223423418UActive Publication Date: 2025-10-10ZHEJIANG HUAMING CONSTRUCTION ENGINEERING CO LTD
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Patent Information

Application Number
CN202521886992.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-09-03
Publication Date
2025-10-10
Estimated Expiration
2035-09-03

AI Technical Summary

Technical Problem

The existing fireproof insulation panels are large in size, which makes transportation difficult, increases costs and is difficult to install in some places, affecting the progress of the fire protection project in the cultural relics warehouse.

Method used

The combination and fixing mechanisms of the lightweight fireproof and heat-insulating panels are designed. The panels can be disassembled and transported by the cooperation of the connecting blocks and springs, and can be quickly installed and disassembled by the cooperation of the threaded rods and locking blocks.

Benefits of technology

It effectively reduces the volume of panels, reduces transportation space occupancy and costs, and improves installation efficiency. One person can complete installation and disassembly to meet construction needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a quick mounting mechanism for a light fireproof heat insulation plate for a cultural relic storehouse, and relates to the technical field of fireproof heat insulation plates. The fireproof heat insulation wall comprises a wall body, a first fireproof heat insulation plate is installed on the front side of the wall body, a second fireproof heat insulation plate is installed on the front side of the wall body, and the fireproof heat insulation wall further comprises two sets of combination mechanisms. According to the combined mechanism, specifically, the second fireproof heat insulation plate is pushed, the first connecting block on the right side is aligned with the connecting groove in the left side of the first fireproof heat insulation plate to be pushed in, the first connecting block extrudes the protruding block in the sliding groove to drive the gasket to compress the spring, and splicing can be completed after the groove is aligned with the protruding block and the spring resets to push the protruding block to be embedded into the groove. Therefore, the first fireproof heat insulation plate and the second fireproof heat insulation plate can be detached and stored independently during transportation, the size of a single plate is effectively reduced, the problem that a large plate is prone to being collided and damaged during transportation is solved, meanwhile, the transportation space occupancy rate is reduced, and the transportation vehicle time and cost are reduced.
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Description

Technical Field

[0001] The utility model belongs to the technical field of fireproof and heat-insulating panels, in particular to a quick installation mechanism for lightweight fireproof and heat-insulating panels used in cultural relics storehouses. Background Art

[0002] As a storage place for cultural relics, cultural relics warehouses play a vital role in the safety of cultural relics. In order to effectively prevent fire from damaging cultural relics, fireproof insulation boards are often required to be installed. Fireproof insulation boards can prevent heat transfer and delay the spread of fire when a fire occurs, thus buying precious time for cultural relics protection.

[0003] However, some existing fireproof and heat-insulating panels face many difficulties during transportation due to their large size. On the one hand, large-volume fireproof and heat-insulating panels are difficult to adapt to conventional transportation tools and require special large-scale transportation equipment, which greatly increases transportation costs; on the other hand, in some places with complex road conditions or limited space, large-scale transportation equipment has difficulty passing, resulting in the fireproof and heat-insulating panels being difficult to deliver to the installation site smoothly, seriously affecting the construction progress of the fire protection project of the cultural relics warehouse, leaving the cultural relics warehouse in a relatively weak state of fire protection for a period of time. Utility Model Content

[0004] The purpose of the utility model is to provide a quick installation mechanism for lightweight fireproof and heat-insulating panels for cultural relics warehouses, which is achieved by setting a combined mechanism, specifically pushing the second fireproof and heat-insulating panel so that the connecting block one on the right is aligned with the connecting groove on the left side of the first fireproof and heat-insulating panel and pushed in. The connecting block one squeezes the protrusion in the slide groove, driving the gasket to compress the spring. When the groove is aligned with the protrusion, the spring resets and pushes the protrusion into the groove to complete the splicing, so that the first fireproof and heat-insulating panel and the second fireproof and heat-insulating panel can be separated and stored separately during transportation, effectively reducing the volume of a single panel and avoiding the problem that large panels are easily damaged during transportation. At the same time, the transportation space occupancy rate is reduced, the number of transportation vehicles and the cost are reduced, and the problem that some existing fireproof and heat-insulating panels face many difficulties during transportation due to their large volume is solved.

[0005] In order to solve the above technical problems, the present invention is achieved through the following technical solutions:

[0006] The utility model is a quick installation mechanism for a lightweight fireproof heat insulation board for a cultural relic storehouse, comprising a wall, wherein a fireproof heat insulation board 1 is installed on the front side of the wall, and a fireproof heat insulation board 2 is installed on the front side of the wall, and further comprising: a combination mechanism, wherein the combination mechanism is provided with two groups, and the two groups of the combination mechanisms are symmetrically arranged on the fireproof heat insulation board 1 and the fireproof heat insulation board 2, and the combination mechanism is used to combine and splice the fireproof heat insulation board 1 and the fireproof heat insulation board 2, and the combination mechanism comprises connecting grooves fixedly connected to the left sides of the fireproof heat insulation board 1 and the fireproof heat insulation board 2, respectively, and a connecting block 1 is provided on the right side of the fireproof heat insulation board 1 and the fireproof heat insulation board 2, and the connecting block 1 located on the left side of the fireproof heat insulation board 2 is close to the fireproof heat insulation board 1. One side of board one extends to the interior of the corresponding connecting groove and is slidably connected to the corresponding connecting groove; a fixing mechanism, wherein the fixing mechanism is provided with four groups, and the four groups of the fixing mechanisms are symmetrically arranged on the wall. The four groups of the fixing mechanisms are used to install and fix the fireproof insulation board one and the fireproof insulation board two on the front side of the wall. The fixing mechanism includes a positioning groove opened on the front side of the wall, and the rear side of the fireproof insulation board one is fixedly connected with a positioning rod, and the rear side of the positioning rod extends to the interior of the positioning groove and is slidably connected to the positioning groove. The four groups of fixing mechanisms are evenly divided into two groups, and the two groups of fixing mechanisms are respectively used to install the fireproof insulation board one and the fireproof insulation board two, and are symmetrically distributed on the fireproof insulation board one and the fireproof insulation board two.

[0007] Furthermore, the fixing mechanism also includes a connecting component, which is used to connect the fireproof insulation board 1 and the wall; a locking component, which is arranged on the wall and is used to fix the fireproof insulation board 1 to the front side of the wall.

[0008] Furthermore, two slide grooves are provided inside the fireproof insulation board 1 and the fireproof insulation board 2, and the inner walls of the four slide grooves are slidably connected with gaskets. The four gaskets are all designed in the shape of discs, and the four gaskets are respectively adapted to the corresponding inner walls of the slide grooves.

[0009] Furthermore, the four gaskets are fixedly connected to a protrusion on one side close to the corresponding slide groove, and the top and bottom of the two connecting blocks are provided with grooves. The four protrusions extend into the interior of the corresponding groove at one end away from the corresponding gasket and are slidably connected to the corresponding groove inner wall. The inner walls of the four slide grooves are installed with springs, the four protrusions are adapted to the corresponding grooves, and the four protrusions are fixedly connected to the corresponding gaskets by welding.

[0010] Further, the connecting assembly comprises a preset slot formed in the front side of the wall body, the rear side of the fireproof and heat insulation plate one is fixedly connected with a connecting block two, the front side of the connecting block two extends to the inside of the preset slot and is slidably connected with the inner wall of the preset slot, the rear side inner wall of the preset slot is fixedly connected with a preset shell, the front side of the preset shell penetrates through the connecting block two and is slidably connected with the connecting block two, a preset slot is formed in the connecting block two and is matched with the preset shell, and the preset shell is slidably connected with the connecting block two through the preset slot.

[0011] Further, the locking assembly comprises a locking slot formed in the inner circumferential surface of the connecting block two, the outer wall of the preset shell penetrates through four locking blocks, the four locking blocks are slidably connected with the preset shell, the inner wall of the preset shell is fixedly connected with four limiting rings, the four locking blocks penetrate through the corresponding limiting rings and are slidably connected with the corresponding limiting rings, the outer side of the four locking blocks is formed with a limiting slot one, the inner wall of the four limiting rings is fixedly connected with a limiting block one, and the locking blocks are limited through the cooperation of the limiting blocks and the limiting slots.

[0012] Further, the front side inner wall of the preset shell is rotatably connected with a threaded rod, the rear end of the threaded rod penetrates through the wall body and is rotatably connected with the wall body, the outer wall of the threaded rod is threadedly connected with an inner threaded block, the inner threaded block is designed as a taper, and the area of the front side is larger than that of the rear side.

[0013] Further, the inner wall of the preset shell is fixedly connected with two limiting rods, the two limiting rods penetrate through the inner threaded block, the inner threaded block is slidably connected with the two limiting rods, the side, close to the inner threaded block, of the four threaded rods is fixedly connected with a sliding block, the four sliding blocks are slidably connected with the inner threaded block, the outer side of the inner threaded block is formed with four limiting sliding grooves two, the oblique edges of the four sliding blocks are fixedly connected with limiting sliding blocks two, and the sides, away from the corresponding sliding blocks, of the four limiting sliding blocks two extend to the inside of the corresponding limiting sliding grooves two and are slidably connected with the corresponding limiting sliding grooves two.

[0014] The utility model has the following beneficial effects:

[0015] 1、the utility model discloses a combination mechanism is set up, specifically is the fireproof and heat insulation plate two are pushed, make the right side's connecting block one align the connecting slot of the left side of fireproof and heat insulation plate one and push in, and the connecting block one extrudes the convex block in the sliding slot, drives the gasket compression spring, and when the recess and the convex block are aligned, the spring resets and pushes the convex block to embed the recess, and the splicing can be completed, so that the fireproof and heat insulation plate one and the fireproof and heat insulation plate two can be separately stored when transporting, the volume of single plate material is effectively reduced, the problem that bulk plate material is easy to knock and damage when transporting is avoided, the transportation space occupancy is reduced, and the transportation frequency and cost are reduced.

[0016] 2. The utility model sets a fixing mechanism. Specifically, when installing the fireproof and heat-insulating board, the positioning rod on the rear side is inserted into the positioning groove of the wall for preliminary positioning, and the connecting block 2 is simultaneously inserted into the preset groove, and the preset shell passes through the connecting block 2; the threaded rod is rotated to drive the internal threaded block to move along the limit rod, and the internal threaded block squeezes the slider to push the locking block out and embed it into the locking groove to complete the fixation. The whole process does not require complicated tools and keel construction, and can be operated by one person. Compared with the traditional bolt installation, the time is greatly shortened. The reverse rotation of the threaded rod can also be quickly disassembled to meet the later maintenance needs and effectively improve the installation efficiency of the fireproof and heat-insulating board and the wall.

[0017] Of course, any product implementing the present invention does not necessarily need to achieve all of the advantages described above at the same time. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without creative work.

[0019] Figure 1 It is a schematic diagram of the overall structure of the utility model;

[0020] Figure 2 This is a rear view structural diagram of the utility model;

[0021] Figure 3 This is a schematic diagram of the explosion structure of the utility model;

[0022] Figure 4 This is a structural diagram of the chute of the utility model;

[0023] Figure 5 This is a schematic diagram of the cross-sectional structure of the connecting block of the utility model;

[0024] Figure 6 This is a schematic diagram of the cross-sectional structure of the preset shell of the utility model;

[0025] Figure 7 This is a structural diagram of the threaded rod of the utility model.

[0026] In the accompanying drawings, the components represented by the reference numerals are as follows:

[0027] 1. Wall; 11. Fireproof insulation board 1; 12. Fireproof insulation board 2; 2. Combination mechanism; 21. Connecting groove; 211. Connecting block 1; 22. Slide groove; 221. Gasket; 222. Bump; 223. Groove; 224. Spring; 3. Fixing mechanism; 31. Positioning groove; 311. Positioning rod; 32. Connecting assembly; 321. Preset groove; 322. Connecting block 2; 323. Preset shell; 33. Locking assembly; 331. Locking groove; 332. Locking block; 333. Limiting ring; 334. Threaded rod; 335. Internal thread block; 336. Limiting rod; 337. Slider. DETAILED DESCRIPTION

[0028] The following will be combined with the accompanying drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0029] See also Figure 1-7As shown, the utility model is a quick installation mechanism for lightweight fireproof insulation panels for cultural relics warehouses, including a wall 1, a fireproof insulation panel 11 is installed on the front side of the wall 1, and a fireproof insulation panel 2 12 is installed on the front side of the wall 1. It also includes: a combination mechanism 2, the combination mechanism 2 is provided with two groups, and the two groups of combination mechanisms 2 are symmetrically arranged on the fireproof insulation panel 1 11 and the fireproof insulation panel 2 12. The combination mechanism 2 is used to combine and splice the fireproof insulation panel 1 11 and the fireproof insulation panel 2 12, and the combination mechanism 2 includes a connecting groove 21 fixedly connected to the left side of the fireproof insulation panel 1 11 and the fireproof insulation panel 2 12, and a connecting block 1 211 is provided on the right side of the fireproof insulation panel 1 11 and the fireproof insulation panel 2 12. The connecting block 1 211 located on the left side of the fireproof insulation panel 2 12 extends to the inside of the corresponding connecting groove 21 near the side of the fireproof insulation panel 1 11 and is slidably connected to the corresponding connecting groove 21; a fixing mechanism 3, a fixing mechanism The structure 3 is provided with four groups, and the four groups of fixing mechanisms 3 are symmetrically arranged on the wall 1. The four groups of fixing mechanisms 3 are used to install and fix the fireproof insulation board 11 and the fireproof insulation board 2 12 on the front side of the wall 1. The fixing mechanism 3 includes a positioning groove 31 opened on the front side of the wall 1, and the rear side of the fireproof insulation board 11 is fixedly connected with a positioning rod 311. The rear side of the positioning rod 311 extends to the interior of the positioning groove 31 and is slidably connected to the positioning groove 31. The four groups of fixing mechanisms 3 are evenly divided into two groups, and the two groups of fixing mechanisms 3 are respectively used to install the fireproof insulation board 11 and the fireproof insulation board 2 12, and are symmetrically distributed on the fireproof insulation board 11 and the fireproof insulation board 2 12; the fixing mechanism 3 also includes a connecting component 32, the connecting component 32 is used to connect the fireproof insulation board 11 and the wall 1; a locking component 33, the locking component 33 is arranged on the wall 1, and the locking component 33 is used to fix the fireproof insulation board 11 on the front side of the wall 1.

[0030] The interior of the fireproof heat insulation board 11 and the fireproof heat insulation board 2 12 are both provided with two slide grooves 22, and the inner walls of the four slide grooves 22 are slidably connected with gaskets 221; the four gaskets 221 are fixedly connected to the side of the corresponding slide groove 22, and the top and bottom of the two connecting blocks 211 are provided with grooves 223, and the ends of the four protrusions 222 away from the corresponding gaskets 221 extend into the interior of the corresponding groove 223 and are slidably connected to the inner walls of the corresponding grooves 223, and the inner walls of the four slide grooves 22 are installed with springs 224, one end of the four springs 224 is fixedly connected to the corresponding gasket 221, and the other end is fixed to the corresponding slide groove 22 away from the corresponding gasket 221 One side of the inner wall is fixedly connected, and a combination mechanism 2 is set, specifically to push the fireproof insulation board 2 12, so that the connecting block 1 211 on the right is aligned with the connecting groove 21 on the left side of the fireproof insulation board 1 11 and pushed in. The connecting block 1 211 squeezes the protrusion 222 in the slide groove 22, driving the gasket 221 to compress the spring 224. When the groove 223 is aligned with the protrusion 222, the spring 224 is reset to push the protrusion 222 into the groove 223 to complete the splicing, so that the fireproof insulation board 11 and the fireproof insulation board 2 12 can be disassembled and stored separately during transportation, effectively reducing the volume of a single plate, avoiding the problem of large plates being easily damaged during transportation, and at the same time reducing the transportation space occupancy rate, reducing the number of transportation vehicles and costs.

[0031] The connecting assembly 32 includes a preset groove 321 provided on the front side of the wall 1, a connecting block 2 322 is fixedly connected to the rear side of the fireproof heat insulation board 11, the front side of the connecting block 2 322 extends to the interior of the preset groove 321 and is slidably connected to the inner wall of the preset groove 321, a preset shell 323 is fixedly connected to the rear inner wall of the preset groove 321, the front side of the preset shell 323 passes through the connecting block 2 322 and is slidably connected to the connecting block 2 322, and the preset shell 323 is fixedly connected to the rear inner wall of the preset groove 321 by welding; the locking assembly 33 includes a connecting block 2 32 2 The locking groove 331 of the inner circular wall, the outer wall of the preset shell 323 is penetrated by four locking blocks 332, the four locking blocks 332 are all slidably connected to the preset shell 323, the inner wall of the preset shell 323 is fixedly connected to four limiting rings 333, the four locking blocks 332 are penetrated by the corresponding limiting rings 333 and are slidably connected to the corresponding limiting rings 333; the front inner wall of the preset shell 323 is rotatably connected to a threaded rod 334, the rear end of the threaded rod 334 penetrates the wall 1 and is rotatably connected to the wall 1, and the outer wall of the threaded rod 334 is threadedly connected to an internal thread block 335; the preset shell 32 3, the inner wall of the fixed connection is connected to two limiting rods 336, the two limiting rods 336 are passed through the internal thread block 335, the internal thread block 335 is slidably connected to the two limiting rods 336, the four threaded rods 334 are fixedly connected to the side of the internal thread block 335, the four sliders 337 are slidably connected to the internal thread block 335, the two limiting rods 336 are fixedly connected to the inner wall of the preset shell 323 by welding, by setting the fixing mechanism 3, specifically when installing the fireproof insulation board 11, the rear positioning rod 311 is inserted into the positioning groove 311 of the wall 1 After preliminary positioning, the second connecting block 322 is simultaneously inserted into the preset groove 321, and the preset shell 323 passes through the second connecting block 322; the threaded rod 334 is rotated to drive the internal threaded block 335 to move along the limit rod 336, and the internal threaded block 335 squeezes the slider 337 to push the locking block 332 out and embed it into the locking groove 331 to complete the fixation. The whole process does not require complicated tools and keel construction, and can be operated by one person. Compared with traditional bolt installation, the time is greatly shortened. Reverse rotation of the threaded rod 334 can also be quickly disassembled to meet the needs of later maintenance and effectively improve the installation efficiency of the fireproof insulation board and the wall 1.

[0032] A specific application of this embodiment is as follows: when it is necessary to combine and splice the fireproof heat insulation board 2 12 with the fireproof heat insulation board 1 11, first push the fireproof heat insulation board 2 12 closer to the fireproof heat insulation board 1 11, align the connecting block 1 211 on the right side of the fireproof heat insulation board 2 12 with the connecting groove 21 on the left side of the fireproof heat insulation board 1 11, and push the connecting block 1 211 into the connecting groove 21 in the horizontal direction. Since the side of the connecting block 1 211 close to the connecting groove 21 is rounded, in the initial stage of pushing, the top edge and the bottom edge of the connecting block 1 211 will first enter the connecting groove 21 and directly contact the protrusions 222 in the top and bottom slide grooves 22 of the connecting groove 21. The cam 222 is pressed against the outer wall of the sliding groove 22 so that the cam 222 is pushed against the inner wall of the sliding groove 22 and the cam 222 is pushed against the inner wall of the sliding groove 22. When the connecting block 211 is continuously pushed in to the preset depth, the grooves 223 opened at the top and bottom thereof just move to the position corresponding to the opening of the slide groove 22, and the squeezing force of the connecting block 211 on the protrusion 222 disappears; at this time, the spring 224 is no longer subjected to the compression force, begins to release the elastic potential energy and resets, pushing the gasket 221 to slide in the direction close to the connecting block 211, and the gasket 221 simultaneously drives the protrusion 222 to move toward the opening of the slide groove 22, and finally, the end of the protrusion 222 away from the gasket 221 will be accurately embedded in the groove 223 of the connecting block 211. Through the engagement of the protrusion 222 and the groove 223, the front and rear sliding and left and right displacement of the connecting block 211 in the connecting groove 21 can be restricted, thereby completing the combined splicing of the fireproof heat insulation board 11 and the fireproof heat insulation board 2 12, ensuring that the structure of the two boards is stable after splicing and will not be easily separated.

[0033] When the fireproof insulation plate one 11 is installed and fixed to the front side of the wall body 1, first, the positioning rod 311 on the rear side of the fireproof insulation plate one 11 is aligned with the positioning slot 31 on the front side of the wall body 1, and the positioning rod 311 is inserted into the inside of the positioning slot 31, the fireproof insulation plate one 11 is preliminarily positioned through the sliding fit of the positioning rod 311 and the positioning slot 31, and the fireproof insulation plate one 11 is prevented from deviating during installation. Meanwhile, the connecting block two 322 on the rear side of the fireproof insulation plate one 11 is aligned with the preset slot 321 on the front side of the wall body 1, and the connecting block two 322 is inserted into the inside of the preset slot 321 along with the movement of the fireproof insulation plate one 11. The preset shell 323 on the rear side of the preset slot 321 is penetrated through the preset hole on the connecting block two 322, and the preliminary fit of the connecting assembly 32 is completed. Then, the knob at the rear end of the threaded rod 334 is rotated. Since the threaded rod 334 is rotatably connected with the preset shell 323 and the wall body 1 through the bearing, and the threaded rod 334 is threadedly connected with the internal threaded block 335, and the internal threaded block 335 is difficult to rotate and is limited by the two limiting rods 336, the threaded rod 334 rotates to drive the internal threaded block 335 to move along the limiting rod 336. During the movement of the internal threaded block 335, the tapered outer wall thereof is in contact with the sliding block 337 on the four locking blocks 332. Since the sliding block 337 is designed as a right trapezoid and the hypotenuse thereof is in contact with the hypotenuse of the internal threaded block 335, the internal threaded block 335 generates an outward pushing force on the sliding block 337 to push the locking block 332 to slide outwardly along the penetration hole of the preset shell 323. Meanwhile, the locking block 332 is stably slid under the limiting action of the limiting ring 333 and cannot deviate. With the continuous rearward movement of the internal threaded block 335, the locking block 332 gradually extends out of the preset shell 323 and extends into the locking slot 331 on the inner circumferential surface of the connecting block two 322. Through the fit of the locking block 332 and the locking slot 331, the movement of the connecting block two 322 in the preset slot 321 is limited, so that the fireproof insulation plate one 11 is firmly fixed to the front side of the wall body 1. Conversely, the fireproof insulation plate one 11 can be detached from the wall body 1 by reversely rotating the threaded rod 334. Similarly, the corresponding fixing mechanism 3 is operated according to the same steps, so that the fireproof insulation plate two 12 is also fixed to the front side of the wall body 1 and is detached, and the overall fixing, installation and detachment of the two plate materials and the wall body 1 are completed.

[0034] In the description of this specification, the description of the terms "one embodiment", "example", "specific example" and the like means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are contained in at least one embodiment or example of the utility model. In this specification, the illustrative description of the above terms does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0035] The preferred embodiments of the present invention disclosed above are intended only to help illustrate the present invention. The preferred embodiments do not describe all details in detail, nor do they limit the present invention to the specific embodiments described. Obviously, many modifications and variations are possible based on the contents of this specification. These embodiments are selected and described in detail in this specification to better explain the principles and practical applications of the present invention, thereby enabling those skilled in the art to better understand and utilize the present invention. The present invention is limited only by the claims and their full scope and equivalents.

Claims

1. A quick installation mechanism for lightweight fireproof and heat-insulating panels for cultural relics storage, comprising a wall, a first fireproof and heat-insulating panel installed on the front side of the wall, and a second fireproof and heat-insulating panel installed on the front side of the wall, characterized in that: Also includes: A combination mechanism, wherein the combination mechanism is provided with two groups, and the two groups of the combination mechanism are symmetrically arranged on the fireproof heat insulation board 1 and the fireproof heat insulation board 2, and the combination mechanism is used to combine and splice the fireproof heat insulation board 1 and the fireproof heat insulation board 2, and the combination mechanism includes connecting grooves fixedly connected to the left sides of the fireproof heat insulation board 1 and the fireproof heat insulation board 2, respectively. The right sides of the fireproof heat insulation board 1 and the fireproof heat insulation board 2 are each provided with a connecting block 1, and the connecting block 1 located on the left side of the fireproof heat insulation board 2 extends to the interior of the corresponding connecting groove near the fireproof heat insulation board 1 and is slidably connected to the corresponding connecting groove; and A fixing mechanism, wherein four groups of the fixing mechanisms are provided, and the four groups of the fixing mechanisms are symmetrically arranged on the wall. The four groups of the fixing mechanisms are used to install and fix the fireproof insulation board 1 and the fireproof insulation board 2 on the front side of the wall. The fixing mechanism includes a positioning groove opened on the front side of the wall. The rear side of the fireproof insulation board 1 is fixedly connected to a positioning rod. The rear side of the positioning rod extends into the interior of the positioning groove and is slidably connected to the positioning groove; Among them, the four groups of fixing mechanisms are evenly divided into two groups, and the two groups of fixing mechanisms are respectively used to install the fireproof insulation board 1 and the fireproof insulation board 2, and are symmetrically distributed on the fireproof insulation board 1 and the fireproof insulation board 2.

2. The rapid installation mechanism for lightweight fireproof and heat-insulating panels for cultural relics storehouses according to claim 1 is characterized in that: The fixing mechanism further includes a connecting assembly, which is used to connect the fireproof insulation board and the wall; and A locking assembly is provided on the wall and is used to fix the fireproof insulation board to the front side of the wall.

3. The rapid installation mechanism for lightweight fireproof and heat-insulating panels for cultural relics storehouses according to claim 2 is characterized in that: The first fireproof heat insulation board and the second fireproof heat insulation board are each provided with two slide grooves, and the inner walls of the four slide grooves are all slidably connected with gaskets; The four chutes are respectively located at the top and bottom of the two connecting grooves, and the four chutes are all connected to the corresponding connecting grooves.

4. The rapid installation mechanism for lightweight fireproof and heat-insulating panels for cultural relics storehouses according to claim 3 is characterized in that: The four gaskets are fixedly connected to a protrusion on one side close to the corresponding slide groove, and the top and bottom of the two connecting blocks are provided with a groove. The ends of the four protrusions away from the corresponding gaskets extend into the interior of the corresponding groove and are slidably connected to the inner wall of the corresponding groove. The inner walls of the four slide grooves are all installed with springs. Among them, the ends of the four protrusions away from the corresponding gaskets are designed to be hemispherical, and the sides of the two connecting blocks close to the corresponding connecting grooves are rounded.

5. The rapid installation mechanism for lightweight fireproof and heat-insulating panels for cultural relics storehouses according to claim 4 is characterized in that: The connecting assembly includes a preset groove opened on the front side of the wall, the rear side of the fireproof and heat-insulating board 1 is fixedly connected to the connecting block 2, the front side of the connecting block 2 extends into the interior of the preset groove and is slidably connected to the inner wall of the preset groove, the rear inner wall of the preset groove is fixedly connected to a preset shell, the front side of the preset shell passes through the connecting block 2 and is slidably connected to the connecting block 2; Among them, the preset groove and the second connecting block are both designed to be rectangular, and the preset groove is adapted to the second connecting block.

6. The rapid installation mechanism for lightweight fireproof and heat-insulating panels for cultural relics storehouses according to claim 5 is characterized in that: The locking assembly includes a locking groove provided on the inner wall surface of the second connecting block, the outer wall of the preset shell is penetrated by four locking blocks, the four locking blocks are all slidably connected to the preset shell, the inner wall of the preset shell is fixedly connected to four limiting rings, the four locking blocks are all penetrated by the corresponding limiting rings and are slidably connected to the corresponding limiting rings; The locking groove is designed to be annular, and the height of the locking groove is adapted to the height of the four locking blocks.

7. The rapid installation mechanism for lightweight fireproof and heat-insulating panels for cultural relics storehouses according to claim 6 is characterized in that: The front inner wall of the preset shell is rotatably connected to a threaded rod, the rear end of the threaded rod passes through the wall and is rotatably connected to the wall, and the outer wall of the threaded rod is threadedly connected to an internal thread block; The threaded rod is rotatably connected to the preset shell and the wall through bearings, and the rear end of the threaded rod is fixedly connected to a knob, and the outer wall of the knob is anti-slip.

8. The rapid installation mechanism for lightweight fireproof and heat-insulating panels for cultural relics storehouses according to claim 7 is characterized in that: The inner wall of the preset shell is fixedly connected to two limit rods, and the two limit rods both pass through the internal thread block. The internal thread block is slidably connected to the two limit rods. The four threaded rods are fixedly connected to a slider on one side close to the internal thread block, and the four sliders are slidably connected to the internal thread block. Among them, the four sliding blocks are all designed to be in the shape of a right-angled trapezoid, and the oblique sides are in contact with the corresponding oblique sides on the internal thread block.