Super-micropore sound absorption aluminum wall plate system and construction method

Through the design of positioning holes, positioning rods and connecting components, the problems of high maintenance costs and low disassembly and assembly efficiency when connecting Great Wall Panel wall panels and honeycomb panels are solved, and the efficient disassembly and assembly and splicing effect is improved.

CN120443790APending Publication Date: 2025-08-08BEIJING CHENGJIANQI CONSTRUCT ENG CO LTD
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Patent Information

Application Number
CN202510895219.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-30
Publication Date
2025-08-08

AI Technical Summary

Technical Problem

When the existing Great Wall Panel wall panel is connected to the honeycomb panel, the maintenance cost is high or the disassembly and assembly efficiency is low, and gaps and wear problems are prone to occur during splicing.

Method used

The design of positioning holes, positioning rods and connecting components is adopted, including elastic vertical plates, guide grooves, jacks, coil springs, etc., to achieve detachable connection and positioning guidance, avoid welding and cutting, improve disassembly and assembly efficiency and reduce wear.

Benefits of technology

Efficient disassembly and assembly are achieved, avoiding gaps caused by position deviation and wear, and improving splicing effect and maintenance efficiency.

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Abstract

The invention discloses an ultra-microporous sound-absorbing aluminum wall plate system and a construction method. The ultra-microporous sound-absorbing aluminum wall plate system comprises a steel framework and a base plate arranged at one end of the steel framework. Through the arrangement of the positioning holes and the positioning rods, the two great wall plate bodies can be positioned and guided during butt joint, and the situation that a gap exists between the two butt-joint great wall plate bodies due to position deviation during butt joint of the two great wall plate bodies, so that the joint closing effect of direct butt joint of the two great wall plate bodies is poor is avoided; through the arrangement of the connecting assembly, the problem that the disassembly efficiency between the cellular board and the great wall board body is low due to the fact that the cellular board and the great wall board body need to be cut when the cellular board and the great wall board body are disassembled due to welding between the cellular board and the great wall board body is solved, and a positioning rod on the great wall board body can be contracted; therefore, the problem of abrasion caused by friction between the positioning rods on the great wall plate body and other objects during transportation can be avoided.
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Description

Technical Field

[0001] The present invention relates to the technical field of Great Wall panels, and in particular to an ultra-microporous sound-absorbing aluminum Great Wall panel system and a construction method. Background Art

[0002] Great Wall Panels are a type of building material commonly used in wall construction. They are called Great Wall Panels because their cross-section resembles the Great Wall. These panels are typically made of reinforced concrete or other high-strength materials, offering excellent compression and seismic resistance and durability. They are widely used in industrial construction, residential development, and other projects requiring structural stability.

[0003] At present, the commonly used Great Wall panels only play the role of wall construction. Due to the improvement of residents' rest environment, some Great Wall panels are provided with honeycomb panels on them to improve the noise reduction effect of the Great Wall panels, thereby reducing the impact of noise on residents. The Great Wall panels and the honeycomb panels are usually connected by welding. Although this method can make the connection between the Great Wall panels and the honeycomb panels firm, if one of the connected Great Wall panels and the honeycomb panels is damaged due to collision during transportation: the first method is to replace the connected Great Wall panels and the honeycomb panels, and the maintenance cost of this method is high; the second method is to cut the connected Great Wall panels and the honeycomb panels, Then the damaged part is cut off, and then the new part is welded together with the undamaged part. Although the maintenance cost of this method is low, the replacement efficiency of the Great Wall Panel and the Honeycomb Panel is low due to the cutting method. In addition, in order to make the wall surface of the construction smooth, some Great Wall Panels are usually spliced on the Great Wall Panel installed on the wall. The splicing of the two Great Wall Panels is spliced by the concave and convex intersection of the Great Wall Panels. When the two Great Wall Panels are spliced through the concave and convex parts thereon, there is a gap between the two Great Wall Panels spliced together due to external force, which will result in poor joint effect between the two Great Wall Panels. Summary of the Invention

[0004] In order to overcome the defects in the prior art, the present invention provides an ultra-microporous sound-absorbing aluminum Great Wall panel system and a construction method to solve the problems raised by the above background technology.

[0005] In the first aspect, the present application provides an ultra-microporous sound-absorbing aluminum Great Wall panel wall panel system adopts the following technical solution: an ultra-microporous sound-absorbing aluminum Great Wall panel wall panel system, comprising a steel frame and a substrate arranged at one end of the steel frame, the lower end face of the substrate is provided with a honeycomb panel, the lower end face of the honeycomb panel is provided with a Great Wall panel body, a connecting component is provided between the honeycomb panel and the Great Wall panel body, the connecting component is used to detachably connect the honeycomb panel and the Great Wall panel body, a plurality of groups of positioning holes are provided on the Great Wall panel body, the protrusions on the Great Wall panel body are each inserted with a plurality of positioning rods, each group of the positioning holes is provided with a plurality of positioning holes, and each group of the positioning holes is located between two adjacent protrusions on the Great Wall panel body.

[0006] Preferably, the connecting component includes elastic vertical plates arranged on both sides of the lower end surface of the honeycomb panel and guide grooves provided at both ends of the Great Wall panel body. There are multiple elastic vertical plates and guide grooves, and multiple elastic vertical plates are respectively inserted into the inner sides of the multiple guide grooves. A socket is provided in the guide groove, and a first coil spring is provided at the bottom end of the inner side of the socket. A plug-in plate is inserted into the inner side of the socket. The first coil spring inside the socket is connected to the plug-in plate inserted into the inner side of the socket. One end of the positioning rod passes through the Great Wall panel body and extends to the bottom of the raised portion on the Great Wall panel body, and the other end of the positioning rod extends to the inner side of the socket on the Great Wall panel body. The positioning rod extending to the inner side of the socket is pressed against the plug-in plate inside the socket.

[0007] Preferably, a card block is provided on the wall surface of the side opposite to the great wall board body of the elastic vertical plate, and the end of the card block away from the elastic vertical plate is inserted into the socket on the great wall board body. The corner of the lower side of the end of the card block away from the elastic vertical plate is chamfered, and a plurality of protrusions are provided on the lower end surface of the plugging plate, and the ends of the plurality of protrusions away from the plugging plate are pressed against the inner wall surface of the socket in which the plugging plate is inserted, and a plurality of accommodating cavities are provided inside the raised portion on the great wall board body.

[0008] Preferably, the plurality of accommodating cavities respectively correspond to the positions of the plurality of positioning rods on the great wall plate body, and the plurality of positioning rods respectively pass through the plurality of accommodating cavities inside the great wall plate body.

[0009] Preferably, a second coil spring is provided on the inner side of the accommodating cavity, the second coil spring is sleeved on the positioning rod, a fixing ring is provided on the positioning rod, the fixing ring on the positioning rod is located on the inner side of the accommodating cavity through which the positioning rod passes, and the second coil spring on the inner side of the accommodating cavity through which the positioning rod passes is connected to the fixing ring on the positioning rod.

[0010] Preferably, sinking grooves are provided on the wall surfaces at both ends of the Great Wall plate body, and the sinking groove is L-shaped. The sinking groove is located below the guide groove, and the elastic vertical plate extends to the sinking groove at one end away from the honeycomb plate. A push plate is rotatably provided on the inside of the sinking groove, and the two side walls of one end of the push plate are respectively abutted against the bottom end of the inner side of the sinking groove and the elastic vertical plate extending to the inner side of the sinking groove. Grooves are provided on the wall surfaces at both sides of the Great Wall plate body, and the grooves are located below the sinking groove.

[0011] Preferably, a connecting rod is provided on the push plate, and a fixed block is provided between the push plate and the Great Wall plate body, one end of the fixed block is provided with a first connecting column, the first connecting column is rotatably connected to the groove on the Great Wall plate body, the other end of the fixed block is provided with a slot, a third coil spring is provided at the bottom end of the inner side of the slot, a fixing rod is inserted inside the slot, one end of the third coil spring inside the slot is connected to the fixing rod inserted inside the slot, and a second connecting column is provided at the end of the fixing rod away from the fixed block, and the second connecting column is sleeved on the connecting rod on the push plate.

[0012] Preferably, the cross section of the protrusion is in the shape of an isosceles trapezoid, and the cross section of one end of the positioning rod extending to the inner side of the socket is in the shape of a semicircular arc.

[0013] In the first aspect, the present application provides an ultra-microporous sound-absorbing aluminum Great Wall panel wall panel system adopts the following technical solution: an L-shaped connecting plate is provided at the end of the steel frame away from the substrate, a receiving opening is provided inside the substrate, and the inside of the receiving opening is filled with fire-proof attraction cotton. A conical hole is provided on the lower end face of the Great Wall panel body, and the cross-section of the conical hole is conical, and the cone passes through the Great Wall panel body. Positioning plates are provided on the front and rear sides of the lower end face of the honeycomb panel, and positioning grooves are provided on the front and rear side walls of the Great Wall panel body. The positioning plates on the honeycomb panel are inserted into the positioning grooves on the Great Wall panel body, and the Great Wall panel body is made of metal aluminum.

[0014] The construction method of the ultra-microporous sound-absorbing aluminum Great Wall panel system includes the following steps: a. First, weld the steel frame to the base plate, then move the Great Wall panel body toward the honeycomb panel with the upper honeycomb panel on the base plate. At this time, the elastic vertical plates on the honeycomb panel will be inserted into the guide grooves on the Great Wall panel body; b. As the Great Wall panel body continues to push, the chamfered corner of the clamping block on the elastic vertical plate will press against the Great Wall panel body. The chamfered corner gives the elastic vertical plate an oblique upward thrust, and the elastic vertical plate will tilt away from the Great Wall panel body. c. When the block on the elastic riser corresponds to the position of the socket on the Great Wall board body, the block will be locked in the socket, and the block locked in the socket will push the plug plate inside the socket to move. The movement of the plug plate causes the protrusion on the plug plate to press against one end of the positioning rod extending to the inside of the socket. At this time, the positioning rod extends from the Great Wall board body; d. When joining the Great Wall panels, cross-join the concave and convex parts of the other Great Wall panel with the Great Wall panel on the honeycomb panel, and connect the positioning rods and positioning holes on the two Great Wall panels, and then join the two Great Wall panels together; e. When removing the Great Wall panel body from the honeycomb panel, press the push plate toward the Great Wall panel body. The push plate rotates under the force, pushing the elastic vertical plate to bend in the opposite direction of the honeycomb panel until the block on the elastic vertical plate is pulled out of the socket on the Great Wall panel body. In addition, the plug-in plate in the socket returns to its original position under the action of the first coil spring, and the protrusion on the plug-in plate is offset from the positioning rod. Then the Great Wall panel body can be removed from the honeycomb panel.

[0015] The present invention provides an ultra-microporous sound-absorbing aluminum Great Wall panel system and construction method, which has the following beneficial effects: 1. The positioning holes and positioning rods can be used to position and guide the two Great Wall panels when they are docked, thus avoiding a gap between the two docked Great Wall panels due to position offset when the two Great Wall panels are docked, which results in a poor joint effect when the two Great Wall panels are directly docked. The setting of the connecting assembly not only avoids the problem that the honeycomb panel and the Great Wall panel need to be cut when disassembling due to welding, thereby reducing the efficiency of disassembly and assembly between the honeycomb panel and the Great Wall panel, but also allows the positioning rods on the Great Wall panel to be retracted, thereby avoiding the problem of wear caused by friction between the positioning rods on the Great Wall panel and other objects during transportation. 2. The first coil spring not only maintains the plug-in plate in the socket at a specified position when no external force is applied, but also allows the plug-in plate to move along the socket toward the bottom of the socket when an external force is applied. The chamfered corners on the clamping block prevent the clamping block from conflicting with the Great Wall plate body during downward movement. 3. The arrangement of the push plate, the fixing block, the fixing rod and the third coil spring not only allows the card block inserted in the socket to be pulled out from the Great Wall panel body, thereby disassembling the honeycomb panel and the Great Wall panel body, but also allows the push plate to return to its original position after being pressed, thereby avoiding the problem that the tilt of the push plate affects the connection between the honeycomb panel and the Great Wall panel body. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1It is a schematic diagram of the overall structure of the ultra-microporous sound-absorbing aluminum Great Wall panel system and its construction method; Figure 2 It is an exploded diagram of the ultra-microporous sound-absorbing aluminum Great Wall panel system and construction method; Figure 3 An ultra-microporous sound-absorbing aluminum Great Wall panel system and construction method Figure 2 Enlarged view of point B in the middle; Figure 4 A partial cross-sectional view of an ultra-microporous sound-absorbing aluminum Great Wall panel system and construction method; Figure 5 An ultra-microporous sound-absorbing aluminum Great Wall panel system and construction method Figure 4 Enlarged view of point A in the middle; Figure 6 A super-microporous sound-absorbing aluminum Great Wall panel system and construction method, with the push panel and the Great Wall panel body disassembled. Figure 7 A cross-sectional view of a substrate of an ultra-microporous sound-absorbing aluminum Great Wall panel system and construction method; Figure 8 A partial cross-sectional view of a fixed block of an ultra-microporous sound-absorbing aluminum Great Wall panel system and construction method.

[0017] Description of reference numerals: 1. Base plate; 100. Fireproof attraction cotton; 101. Steel frame; 102. L-shaped connecting plate; 2. Honeycomb panel; 3. Great Wall panel body; 30. Conical hole; 4. Connecting assembly; 41. Elastic vertical plate; 42. Guide groove; 44. Insert plate; 45. Block; 46. Protrusion; 47. Positioning hole; 48. Accommodating cavity; 49. Positioning rod; 410. Fixing ring; 411. Second coil spring; 412. First coil spring; 413. Sinking groove; 414. Push plate; 415. Groove; 416. Connecting rod; 417. First connecting column; 418. Fixing block; 419. Fixing rod; 420. Second connecting column; 421. Third coil spring; 5. Positioning plate; 6. Positioning groove. DETAILED DESCRIPTION

[0018] The following is combined with Figure 1 -Attached Figure 8 , further details of this application are given.

[0019] Example 1: An ultra-microporous sound-absorbing aluminum Great Wall panel system includes a steel frame 101 and a base plate 1 arranged at one end of the steel frame 101, the lower end surface of the base plate 1 is provided with a honeycomb panel 2, the lower end surface of the honeycomb panel 2 is provided with a Great Wall panel body 3, a connecting component 4 is provided between the honeycomb panel 2 and the Great Wall panel body 3, the connecting component 4 is used to detachably connect the honeycomb panel 2 to the Great Wall panel body 3, a plurality of groups of positioning holes 47 are provided on the Great Wall panel body 3, the protrusions on the Great Wall panel body 3 are each inserted with a plurality of positioning rods 49, each group of the positioning holes 47 is provided with a plurality of, and each group of the positioning holes 47 is located between two adjacent protrusions on the Great Wall panel body 3.

[0020] The arrangement of the positioning holes 47 and the positioning rods 49 can play a role in positioning and guiding the two Great Wall panel bodies 3 when docking, thereby avoiding a gap between the two docked Great Wall panel bodies 3 due to position offset when docking the two Great Wall panel bodies 3, thereby making the joint effect of the two Great Wall panel bodies 3 directly docked poor. The arrangement of the connecting assembly 4 not only avoids the problem that the honeycomb panel 2 and the Great Wall panel body 3 need to be cut when disassembling due to welding, thereby reducing the disassembly efficiency between the honeycomb panel 2 and the Great Wall panel body 3, but also allows the positioning rods 49 on the Great Wall panel body 3 to be retracted, thereby avoiding the problem of wear caused by friction between the positioning rods 49 on the Great Wall panel body 3 and other objects during transportation.

[0021] The connecting component 4 includes elastic vertical plates 41 arranged on both sides of the lower end surface of the honeycomb panel 2 and guide grooves 42 opened at both ends of the Great Wall panel body 3. There are multiple elastic vertical plates 41 and guide grooves 42. Multiple elastic vertical plates 41 are respectively inserted into the inner sides of multiple guide grooves 42. A socket is opened in the guide groove 42. A first coil spring 412 is provided at the bottom end of the inner side of the socket. A plug-in plate 44 is inserted into the inner side of the socket. The first coil spring 412 inside the socket is connected to the plug-in plate 44 inserted into the inner side of the socket. One end of the positioning rod 49 passes through the Great Wall panel body 3 and extends to the bottom of the protrusion on the Great Wall panel body 3. The other end of the positioning rod 49 extends to the inner side of the socket on the Great Wall panel body 3. The positioning rod 49 extending to the inner side of the socket is pressed against the plug-in plate 44 inside the socket. A clamping block 45 is provided on the wall surface of the elastic vertical plate 41 on the side opposite to the great wall plate body 3, and the end of the clamping block 45 away from the elastic vertical plate 41 is inserted into the socket on the great wall plate body 3. The corner of the lower side of the end of the clamping block 45 away from the elastic vertical plate 41 is chamfered, and the lower end surface of the plugging plate 44 is provided with a plurality of protrusions 46, and the ends of the plurality of protrusions 46 away from the plugging plate 44 are pressed against the inner wall surface of the socket in which the plugging plate 44 is inserted, and a plurality of accommodating cavities 48 are provided inside the raised portion on the great wall plate body 3.

[0022] The setting of the first coil spring 412 not only allows the plug plate 44 in the socket to be maintained at a specified position when not subjected to external force, but also allows the plug plate 44 to move along the socket toward the bottom inner end of the socket when subjected to external force. The chamfered setting on the block 45 avoids the problem of movement conflict between the block 45 and the Great Wall board body 3 during the downward movement.

[0023] The multiple accommodating cavities 48 correspond to the positions of the multiple positioning rods 49 on the Great Wall panel body 3, and the multiple positioning rods 49 pass through the multiple accommodating cavities 48 inside the Great Wall panel body 3. A second coil spring 411 is disposed inside the accommodating cavity 48, and the second coil spring 411 is sleeved on the positioning rod 49. The positioning rod 49 is provided with a fixing ring 410. The fixing ring 410 on the positioning rod 49 is located inside the accommodating cavity 48 through which the positioning rod 49 passes. The second coil spring 411 inside the accommodating cavity 48 through which the positioning rod 49 passes is connected to the fixing ring 410 on the positioning rod 49.

[0024] By configuring the accommodating cavity 48 , the fixing ring 410 and the second coil spring 411 , the positioning rod 49 can be retracted at the raised portion on the Great Wall plate body 3 .

[0025] The walls at both ends of the Great Wall panel body 3 are provided with sinking grooves 413, and the sinking grooves 413 are L-shaped. The sinking grooves 413 are located below the guide grooves 42. The elastic vertical plate 41 extends to the sinking groove 413 at one end away from the honeycomb panel 2. A push plate 414 is rotatably provided inside the sinking groove 413. The two side walls of one end of the push plate 414 are respectively abutted against the inner bottom end of the sinking groove 413 and the elastic vertical plate 41 extending to the inner side of the sinking groove 413. The walls at both sides of the Great Wall panel body 3 are provided with grooves 415, and the grooves 415 are located below the sinking groove 413. A connecting rod 416 is provided on the push plate 414, and a fixed block 418 is provided between the push plate 414 and the great wall plate body 3. A first connecting column 417 is provided at one end of the fixed block 418, and the first connecting column 417 is rotatably connected to the groove 415 on the great wall plate body 3. A slot is provided at the other end of the fixed block 418, and a third coil spring 421 is provided at the bottom end of the inner side of the slot. A fixing rod 419 is inserted into the inner side of the slot, and one end of the third coil spring 421 inside the slot is connected to the fixing rod 419 inserted into the inner side of the slot. A second connecting column 420 is provided at the end of the fixing rod 419 away from the fixed block 418, and the second connecting column 420 is sleeved on the connecting rod 416 on the push plate 414.

[0026] By setting the push plate 414, the fixing block 418, the fixing rod 419 and the third coil spring 421, not only can the block 45 inserted in the insertion hole be pulled out from the Great Wall panel body 3, thereby disassembling the honeycomb panel 2 and the Great Wall panel body 3, but also the push plate 414 can be restored to its original position after being pressed, thereby avoiding the problem that the tilt of the push plate 414 affects the connection between the honeycomb panel 2 and the Great Wall panel body 3.

[0027] The cross section of the protrusion 46 is an isosceles trapezoid, and the cross section of one end of the positioning rod 49 extending to the inner side of the socket is semicircular. The arrangement of the protrusion 46 with an isosceles trapezoidal cross section and the positioning rod 49 with a semicircular cross section at one end allows the one end of the positioning rod 49 to more smoothly contact and stagger with the protrusion 46 on the inserting plate 44.

[0028] The implementation principle of the embodiment of this application is: First, the steel frame 101 is welded to the base plate 1, and then the Great Wall panel body 3 is moved toward the honeycomb panel 2 provided with the upper honeycomb panel 2 on the base plate 1. At this time, the elastic vertical plate 41 on the honeycomb panel 2 will be inserted into the guide groove 42 on the Great Wall panel body 3. As the Great Wall panel body 3 continues to push, the chamfered corner of the block 45 on the elastic vertical plate 41 will be against the Great Wall panel body 3. As the Great Wall panel body 3 continues to push, the chamfered corner of the block 45 gives the elastic vertical plate 41 an oblique upward thrust. At this time, the elastic vertical plate 41 will tilt away from the Great Wall panel body 3. When the block 45 on the elastic vertical plate 41 corresponds to the position of the socket on the Great Wall plate body 3, the block 45 will be stuck in the socket, and the block 45 stuck in the socket will push the plug plate 44 inside the socket to move. The movement of the plug plate 44 will squeeze the first coil spring 412 at the bottom end of the inner side of the socket, and the movement of the plug plate 44 will drive the protrusion 46 on it to move. When one end of the positioning rod 49 contacts the protrusion 46, the positioning rod 49 slides along the inclined surface of the protrusion 46 to the top of the protrusion 46, and the protrusion 46 pushes the positioning rod 49 to move, and the positioning rod 4 One end of 9 extends from the Great Wall plate body 3, and during the movement of the positioning rod 49, the fixing ring 410 on the positioning rod 49 squeezes the second coil spring 411 in the accommodating cavity 48; when the Great Wall plate body 3 is to be joined, the other Great Wall plate body 3 is cross-joined with the concave and convex parts of the Great Wall plate body 3 on the honeycomb panel 2, and the positioning rods 49 and positioning holes 47 on the two Great Wall plate bodies 3 are plugged in, and then the two Great Wall plate bodies 3 are combined together; if the Great Wall plate body 3 on the honeycomb panel 2 is to be disassembled, the Great Wall plate body 3 is to be moved in the direction of the Great Wall plate body 3. The push plate 414 is pressed forward, and the push plate 414 is rotated under the force. The push plate 414 pushes the elastic vertical plate 41 to bend in the opposite direction of the honeycomb panel 2 until the block 45 on the elastic vertical plate 41 is pulled out from the socket on the great wall panel body 3. In addition, the plug plate 44 in the socket returns to its original position under the action of the first coil spring 412, and the protrusion 46 on the plug plate 44 is staggered with the positioning rod 49. The second coil spring 411 shrinks the positioning rod 49 on the great wall panel body 3 connected to the honeycomb panel 2 inside the great wall panel body 3, and then the great wall panel body 3 can be removed from the honeycomb panel 2.

[0029] Example 2: An ultra-microporous sound-absorbing aluminum Great Wall panel system, wherein an L-shaped connecting plate 102 is provided at one end of the steel frame 101 away from the substrate 1, a receiving opening is provided inside the substrate 1, and the inside of the receiving opening is filled with fire-proof suction cotton 100, a conical hole 30 is provided on the lower end face of the Great Wall panel body 3, the cross-section of the conical hole 30 is conical, and the cone passes through the Great Wall panel body 3, positioning plates 5 are provided on the front and rear sides of the lower end face of the honeycomb panel 2, and positioning grooves 6 are provided on the front and rear side walls of the Great Wall panel body 3, the positioning plates 5 on the honeycomb panel 2 are inserted into the positioning grooves 6 on the Great Wall panel body 3, and the Great Wall panel body 3 is made of metal aluminum.

[0030] The provision of the fireproof attraction cotton 100 improves the noise absorption of the substrate 1 and plays a certain fireproof role. The provision of the tapered hole 30 improves the noise absorption of the Great Wall panel body 3. The provision of the positioning plate 5 and the positioning groove 6 serves to reinforce the connected Great Wall panel body 3 and the honeycomb panel 2 and to guide the connection between the Great Wall panel body 3 and the honeycomb panel 2.

[0031] The construction method of the ultra-microporous sound-absorbing aluminum Great Wall panel system includes the following steps: a. First, weld the steel frame 101 to the base plate 1, then move the Great Wall panel body 3 toward the honeycomb panel 2 with the upper honeycomb panel 2 provided on the base plate 1. At this time, the elastic risers 41 on the honeycomb panel 2 will be inserted into the guide grooves 42 on the Great Wall panel body 3; b. As the Great Wall panel body 3 continues to push, the chamfered corner of the block 45 on the elastic vertical plate 41 will abut against the Great Wall panel body 3. The chamfered corner gives the elastic vertical plate 41 an oblique upward thrust, and the elastic vertical plate 41 will tilt away from the Great Wall panel body 3. c. When the block 45 on the elastic riser 41 corresponds to the position of the socket on the Great Wall board body 3, the block 45 is locked in the socket. The block 45 locked in the socket pushes the plug plate 44 inside the socket to move. The movement of the plug plate 44 causes the protrusion 46 on the plug plate 44 to press against one end of the positioning rod 49 extending to the inside of the socket. At this time, the positioning rod 49 extends from the Great Wall board body 3. d. When joining the Great Wall panel body 3, cross-join the other Great Wall panel body 3 with the concave and convex parts of the Great Wall panel body 3 on the honeycomb panel 2, and connect the positioning rods 49 and positioning holes 47 on the two Great Wall panel bodies 3, and then merge the two Great Wall panel bodies 3 together; e. When the Great Wall panel body 3 on the honeycomb panel 2 is to be disassembled, the push plate 414 is pressed toward the Great Wall panel body 3. The push plate 414 is rotated under the force, and the push plate 414 pushes the elastic vertical plate 41 to bend in the opposite direction of the honeycomb panel 2 until the block 45 on the elastic vertical plate 41 is pulled out from the socket on the Great Wall panel body 3. In addition, the plug plate 44 in the socket returns to its original position under the action of the first coil spring 412, and the protrusion 46 on the plug plate 44 is staggered with the positioning rod 49. Then the Great Wall panel body 3 can be removed from the honeycomb panel 2.

[0032] Working method and principle of the present invention: First, weld the steel frame 101 to the base plate 1, and then move the Great Wall panel body 3 toward the honeycomb panel 2 with the upper honeycomb panel 2 provided on the base plate 1. At this time, the elastic vertical plate 41 on the honeycomb panel 2 will be inserted into the guide groove 42 on the Great Wall panel body 3, and the positioning plate 5 on the honeycomb panel 2 will be inserted into the positioning groove 6 on the Great Wall panel body 3. As the Great Wall panel body 3 continues to push, the chamfered corner of the block 45 on the elastic vertical plate 41 will be against the Great Wall panel body 3. As the Great Wall panel body 3 continues to push, the chamfered corner of the block 45 gives the elastic vertical plate 41 an oblique upward thrust, and the elastic vertical plate 41 will move away from the Great Wall panel body 3. When the block 45 on the elastic vertical plate 41 corresponds to the position of the socket on the Great Wall plate body 3, the block 45 will be stuck in the socket, and the block 45 stuck in the socket will push the plugging plate 44 inside the socket to move. The movement of the plugging plate 44 will squeeze the first coil spring 412 at the bottom end of the inner side of the socket, and the movement of the plugging plate 44 will drive the protrusion 46 thereon to move. When one end of the positioning rod 49 contacts the protrusion 46, the positioning rod 49 slides along the inclined surface of the protrusion 46 to the top of the protrusion 46, and the protrusion 46 pushes the positioning rod 49 to move, and makes one end of the positioning rod 49 extend from the Great Wall plate body 3. The positioning rod 49 moves During the movement, the fixing ring 410 on the positioning rod 49 squeezes the second coil spring 411 in the accommodating cavity 48; when the Great Wall panel body 3 is to be joined, the concave and convex parts of the other Great Wall panel body 3 and the Great Wall panel body 3 on the honeycomb panel 2 are cross-spliced, and the positioning rods 49 and positioning holes 47 on the two Great Wall panel bodies 3 are plugged in, and then the two Great Wall panel bodies 3 are merged together, and finally the merged Great Wall panel bodies 3 are connected together by gluing or other methods, and the merged Great Wall panel bodies 3 are connected to the designated building wall through the L-shaped connecting plate 102 on the steel frame 101; if the honeycomb panel is When the Great Wall panel body 3 on the board 2 is disassembled, the push plate 414 is pressed toward the Great Wall panel body 3. The push plate 414 is rotated under the force, and the push plate 414 pushes the elastic vertical plate 41 to bend in the opposite direction of the honeycomb panel 2 until the block 45 on the elastic vertical plate 41 is pulled out from the socket on the Great Wall panel body 3. In addition, the plug-in plate 44 in the socket returns to its original position under the action of the first coil spring 412, and the protrusion 46 on the plug-in plate 44 is staggered with the positioning rod 49. The second coil spring 411 shrinks the positioning rod 49 on the Great Wall panel body 3 connected to the honeycomb panel 2 inside the Great Wall panel body 3, and then the Great Wall panel body 3 can be removed from the honeycomb panel 2.

[0033] Finally, it should be noted that the above descriptions are merely preferred embodiments of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art will be able to modify the technical solutions described in the aforementioned embodiments or substitute equivalents for some of the technical features. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. An ultra-microporous sound-absorbing aluminum Great Wall panel system, comprising a steel frame (101) and a base plate (1) arranged at one end of the steel frame (101), characterized in that: The lower end surface of the base plate (1) is provided with a honeycomb panel (2), and the lower end surface of the honeycomb panel (2) is provided with a Great Wall panel body (3). A connecting component (4) is provided between the honeycomb panel (2) and the Great Wall panel body (3), and the connecting component (4) is used to detachably connect the honeycomb panel (2) and the Great Wall panel body (3). The Great Wall panel body (3) is provided with a plurality of groups of positioning holes (47), and the protrusions on the Great Wall panel body (3) are all inserted with a plurality of positioning rods (49). Each group of the positioning holes (47) is provided with a plurality of positioning rods (49), and each group of the positioning holes (47) is located between two adjacent protrusions on the Great Wall panel body (3).

2. The ultra-microporous sound-absorbing aluminum Great Wall panel system according to claim 1 is characterized by: The connecting assembly (4) comprises elastic vertical plates (41) arranged on both sides of the lower end surface of the honeycomb panel (2) and guide grooves (42) opened at both ends of the Great Wall panel body (3). The elastic vertical plates (41) and the guide grooves (42) are both provided in plurality. The plurality of elastic vertical plates (41) are respectively inserted into the inner sides of the plurality of guide grooves (42). A plug hole is provided in the guide groove (42). A first coil spring (412) is provided at the bottom end of the inner side of the plug hole. A plug plate (44) is inserted into the inner side of the plug hole. The first coil spring (412) inside the plug hole is connected to the plug plate (44) inserted into the inner side of the plug hole. One end of the positioning rod (49) passes through the Great Wall panel body (3) and extends to the bottom of the protrusion on the Great Wall panel body (3). The other end of the positioning rod (49) extends to the inner side of the plug hole on the Great Wall panel body (3). The positioning rod (49) extended to the inner side of the plug hole presses against the plug plate (44) inside the plug hole.

3. The ultra-microporous sound-absorbing aluminum Great Wall panel system according to claim 2 is characterized by: A clamping block (45) is provided on a wall surface of a side of the elastic vertical plate (41) opposite to the Great Wall plate body (3), and an end of the clamping block (45) away from the elastic vertical plate (41) is inserted into the socket on the Great Wall plate body (3). A chamfer is provided at the corner of the lower side of the end of the clamping block (45) away from the elastic vertical plate (41). A plurality of protrusions (46) are provided on the lower end surface of the plugging plate (44), and an end of the plurality of protrusions (46) away from the plugging plate (44) presses against the inner wall surface of the socket in which the plugging plate (44) is inserted. A plurality of accommodating cavities (48) are provided inside the raised portion on the Great Wall plate body (3).

4. The ultra-microporous sound-absorbing aluminum Great Wall panel system according to claim 3 is characterized by: The plurality of accommodating cavities (48) respectively correspond to the positions of the plurality of positioning rods (49) on the Great Wall plate body (3), and the plurality of positioning rods (49) respectively pass through the plurality of accommodating cavities (48) inside the Great Wall plate body (3).

5. The ultra-microporous sound-absorbing aluminum Great Wall panel system according to claim 3 is characterized by: A second coil spring (411) is provided inside the accommodating cavity (48), and the second coil spring (411) is sleeved on the positioning rod (49). A fixing ring (410) is provided on the positioning rod (49), and the fixing ring (410) on the positioning rod (49) is located inside the accommodating cavity (48) through which the positioning rod (49) passes. The second coil spring (411) inside the accommodating cavity (48) through which the positioning rod (49) passes and the fixing ring (410) on the positioning rod (49) are connected to each other.

6. The ultra-microporous sound-absorbing aluminum Great Wall panel system according to claim 2 is characterized by: The wall surfaces at both ends of the Great Wall panel body (3) are provided with sinking grooves (413), the sinking grooves (413) are L-shaped, and the sinking grooves (413) are located below the guide grooves (42). The elastic vertical plate (41) extends to the sinking grooves (413) at one end away from the honeycomb panel (2). A push plate (414) is rotatably provided inside the sinking groove (413), and the wall surfaces at both sides of one end of the push plate (414) are respectively abutted against the bottom end inside the sinking groove (413) and the elastic vertical plate (41) extending to the inside of the sinking groove (413). The wall surfaces at both sides of the Great Wall panel body (3) are provided with grooves (415), and the grooves (415) are located below the sinking grooves (413).

7. The ultra-microporous sound-absorbing aluminum Great Wall panel system according to claim 6 is characterized by: A connecting rod (416) is provided on the push plate (414), and a fixed block (418) is provided between the push plate (414) and the Great Wall plate body (3). A first connecting column (417) is provided at one end of the fixed block (418), and the first connecting column (417) is rotatably connected to the groove (415) on the Great Wall plate body (3). A slot is provided at the other end of the fixed block (418), and a third coil spring (421) is provided at the bottom end of the inner side of the slot. A fixing rod (419) is inserted into the inner side of the slot, and one end of the third coil spring (421) inside the slot is connected to the fixing rod (419) inserted into the inner side of the slot. A second connecting column (420) is provided at one end of the fixing rod (419) away from the fixed block (418), and the second connecting column (420) is sleeved on the connecting rod (416) on the push plate (414).

8. The ultra-microporous sound-absorbing aluminum Great Wall panel system according to claim 3 is characterized by: The cross section of the protrusion (46) is in the shape of an isosceles trapezoid, and the cross section of one end of the positioning rod (49) extending to the inner side of the socket side is in the shape of a semicircular arc.

9. The ultra-microporous sound-absorbing aluminum Great Wall panel system according to claim 1 is characterized by: An L-shaped connecting plate (102) is provided at one end of the steel frame (101) away from the base plate (1), a receiving opening is provided inside the base plate (1), and the inside of the receiving opening is filled with fire-proof suction cotton (100), a conical hole (30) is provided on the lower end surface of the Great Wall plate body (3), the cross section of the conical hole (30) is conical, and the cone passes through the Great Wall plate body (3), positioning plates (5) are provided on the front and rear sides of the lower end surface of the honeycomb panel (2), and positioning grooves (6) are provided on the front and rear side walls of the Great Wall plate body (3), the positioning plates (5) on the honeycomb panel (2) are inserted into the positioning grooves (6) on the Great Wall plate body (3), and the Great Wall plate body (3) is made of metal aluminum.

10. A construction method for an ultra-microporous sound-absorbing aluminum Great Wall panel system, based on the ultra-microporous sound-absorbing aluminum Great Wall panel system according to any one of claims 1 to 9, characterized in that: a. First, the steel frame (101) is welded to the base plate (1), and then the Great Wall plate body (3) is moved toward the honeycomb plate (2) provided with the upper honeycomb plate (2) on the base plate (1), and then the elastic vertical plate (41) on the honeycomb plate (2) is inserted into the guide groove (42) on the Great Wall plate body (3); b. As the Great Wall plate body (3) continues to push, the chamfered corner of the block (45) on the elastic vertical plate (41) will be against the Great Wall plate body (3), and the chamfered corner will give the elastic vertical plate (41) an oblique upward thrust, and at this time the elastic vertical plate (41) will tilt away from the Great Wall plate body (3); c. When the block (45) on the elastic vertical plate (41) corresponds to the position of the socket on the Great Wall plate body (3), the block (45) is locked in the socket, and the block (45) locked in the socket pushes the plug (44) inside the socket to move. The movement of the plug (44) causes the protrusion (46) on the plug to press against one end of the positioning rod (49) extending to the inside of the socket. At this time, the positioning rod (49) extends from the Great Wall plate body (3); d. When the Great Wall plate body (3) is to be joined, the concave and convex parts of the Great Wall plate body (3) on the honeycomb panel (2) are cross-joined, and the positioning rods (49) and positioning holes (47) on the two Great Wall plate bodies (3) are plugged in, and then the two Great Wall plate bodies (3) are joined together; e. When the Great Wall panel body (3) on the honeycomb panel (2) is disassembled, the push plate (414) is pressed in the direction of the Great Wall panel body (3), and the push plate (414) is rotated by force, and the push plate (414) pushes the elastic vertical plate (41) to bend in the opposite direction of the honeycomb panel (2) until the block (45) on the elastic vertical plate (41) is pulled out from the socket on the Great Wall panel body (3). In addition, the plug plate (44) in the socket is restored to its original position under the action of the first coil spring (412), and the protrusion (46) on the plug plate (44) is staggered with the positioning rod (49), and then the Great Wall panel body (3) is removed from the honeycomb panel (2).