Acoustic material module structure for building decoration and installation method

By designing a module structure for building decoration including support mechanism, reinforcement mechanism, acoustic material module mechanism, tensioning integral structural mechanism, heightening mechanism and amplification mechanism, the problems of complex construction of existing diffusion material modules and unsatisfactory sound diffusion capabilities are solved, and a more stable and efficient acoustic material module construction and sound diffusion effect are achieved.

CN119981302AInactive Publication Date: 2025-05-13GUANGZHOU SAC ACOUSTIC LIGHTING ENG CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202510464563.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-14
Publication Date
2025-05-13
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing diffusion material modules are complex to build, have a long construction time, and the sound diffusion ability and effect are not ideal.

Method used

A module structure of acoustic material for building decoration is designed, including support mechanism, reinforcement mechanism, acoustic material module mechanism, tensioning integral structural mechanism, height-enhancing mechanism and sound amplification mechanism. Through the cooperation of these mechanisms, a more stable and efficient construction of acoustic material modules and sound diffusion can be achieved.

Benefits of technology

Through the cooperation of the reinforcement mechanism and the support mechanism, the support area of ​​the acoustic material module is increased, and the stability is improved; the buffer assembly disperses the pressure of the external expansion assembly and improves the load-bearing capacity; the tensioning overall structural mechanism improves the load-bearing capacity of the external expansion plate and the triangle plate, and simplifies the installation process; the heightening mechanism and the amplification mechanism improve the sound reception and diffusion ability, and improves the sound diffusion effect.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119981302A_ABST
    Figure CN119981302A_ABST
Patent Text Reader

Abstract

The invention belongs to the technical field of diffusion material module installation, and particularly relates to an acoustic material module structure for building decoration and an installation method.The acoustic material module structure comprises a supporting mechanism, the supporting mechanism is placed on the ground, the outer side of the supporting mechanism is connected with a reinforcing mechanism, and the supporting mechanism and the reinforcing mechanism are matched to increase the platform area; the top of the supporting mechanism is connected with the acoustic material module mechanism, the acoustic material module mechanism is used for stage performance, the outer wall of the acoustic material module mechanism is connected with the tensegrity structure mechanism, and the bottom of the tensegrity structure mechanism is connected with the reinforcing mechanism. And the sound amplification and sound mixing effects can be achieved on the emitted sound, so that the sound diffusion capability is improved.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The invention relates to the technical field of installation of diffusion material modules, and in particular to an acoustic material module structure for building decoration and an installation method. Background Art

[0002] Acoustic material modules for building decoration are prefabricated components used to improve the acoustic environment of building spaces, usually composed of sound-absorbing materials, sound-insulating materials, diffusing materials, etc.

[0003] Diffusion material module: Its function is to break up the sound waves and make them evenly distributed in space to avoid acoustic defects such as sound focusing and echo. Common diffusion materials include wooden diffusers, metal diffusers, plastic diffusers, etc. They are usually made into modules with specific shapes and sizes, such as QRD quadratic remainder diffusers, cylindrical diffusers, etc.

[0004] When constructing existing stages and performances, diffusion material modules are often required to improve the performance effect while increasing the sound diffusion capacity. However, the construction of existing diffusion material modules is relatively complicated. Most of them are based on steel structures, and the diffusion material modules are installed on the surface by bolts or buckles. Not only does it take a long time to build, but the sound diffusion capacity and effect are not ideal.

[0005] To this end, we propose an acoustic material module structure and installation method for building decoration. Summary of the invention

[0006] In order to solve the above technical problems, the present invention provides the following technical solutions: An acoustic material module structure for building decoration, comprising: a supporting mechanism; The supporting mechanism is placed on the ground, and the outer side of the supporting mechanism is connected to the reinforcing mechanism. The cooperation between the supporting mechanism and the reinforcing mechanism is used to increase the platform area. The top of the supporting mechanism is connected to the acoustic material module mechanism, and the acoustic material module mechanism is used for stage performances. The outer wall of the acoustic material module mechanism is connected to the tensegrity structure mechanism. The bottom of the tensegrity structure mechanism is connected to the reinforcing mechanism. The tensegrity structure mechanism is used to fix and support the acoustic material module mechanism. The top of the reinforcing mechanism is connected to the heightening mechanism, and the top of the heightening mechanism is connected to the sound amplification mechanism. Through the cooperation between the heightening mechanism and the sound amplification mechanism, the sound of the performance is collected and diffused after being gathered in one place.

[0007] As a preferred solution of the acoustic material module structure for building decoration described in the present invention, wherein: the support mechanism comprises: a support plate; The support plate is placed on the ground, a connecting column is arranged on the outer wall of the support plate, a connecting groove is arranged on the top of the connecting column, a pillar is arranged at the top center of the support plate, and a locking plate is arranged on the top of the pillar.

[0008] As a preferred solution of the acoustic material module structure for building decoration described in the present invention, the reinforcement mechanism includes: a first arc strip; The first arc bar is arranged on the outer side of the support plate, and the two ends of the first arc bar are connected to the second arc bar. The first arc bar and the second arc bar are connected by a buckle. The inner wall of the buckle is provided with a protrusion, and the inside of the buckle is provided with a straight rod. The buckle is connected to the first inner arc bar through the straight rod, and the second inner arc bar is clamped between the two groups of first inner arc bars.

[0009] As a preferred solution of the acoustic material module structure for building decoration described in the present invention, the acoustic material module structure includes: an inner platform component; The bottom of the inner platform component is connected to the top of the support mechanism, the inner platform components are connected through a weaving component, the outer wall of the inner platform component is connected to the outer expansion component, the bottom of the outer expansion component is connected to the buffer component, and the bottom of the buffer component is connected to the support mechanism.

[0010] As a preferred solution of the acoustic material module structure for building decoration described in the present invention, wherein: the inner platform component includes: a triangular plate; Both ends of the side of the triangle plate are provided with grooves, one end of the top of the triangle plate is provided with a through groove, the through groove is penetrated by the locking plate, and the outer wall of the triangle plate is provided with an external card groove; The woven assembly includes: cotton and linen strips; The cotton and linen strip is wound around the top and bottom of the triangle plate, and is installed inside the groove. A buckle groove is arranged at the top of the initial end of the cotton and linen strip, and a buckle plate is arranged at the bottom of the terminal end of the cotton and linen strip, and the buckle plate is inserted into the buckle groove.

[0011] As a preferred solution of the acoustic material module structure for building decoration described in the present invention, the external expansion component includes: an external expansion plate; The inner end of the outer expansion plate is inserted into the inner part of the outer card slot, the outer end of the outer expansion plate is connected to the tensegrity structure mechanism, a splicing block is provided at one end of the side of the outer expansion plate, a splicing groove is provided at the other end of the side of the outer expansion plate, and a plurality of groups of outer expansion plates are connected to each other through the splicing blocks and the splicing grooves; The buffer assembly includes: a first metal frame; The top of the first metal frame is inserted into the groove at the center of the bottom of the external expansion plate, and the bottom of the first metal frame is inserted into the connecting groove. The second metal frame can be detachably installed between the two groups of first metal frames.

[0012] As a preferred solution of the acoustic material module structure for building decoration described in the present invention, wherein: the tensegrity structure mechanism comprises: a tensegrity structure component; The inside of the tensegrity structural component is connected to the outer end of the outer expansion plate, the bottom of the tensegrity structural component is connected to the reinforcement mechanism, and the top of the tensegrity structural component is paved with a flat plate, which can improve the flatness of the stage; The tensegrity structural assembly comprises: an external buckle arc strip; The inner part of the outer arc strip is inserted into the outer end of the outer expansion plate, support rods are installed at both ends of the bottom of the outer arc strip, the bottom of the support rod is installed on the top of the first inner arc strip, and a first L-shaped rod is installed in the middle of the bottom of the outer arc strip. The top of the first L-shaped rod is connected to the second L-shaped rod through a pulling rod, and the bottom of the second L-shaped rod is installed on the top of the first arc strip.

[0013] As a preferred solution of the acoustic material module structure for building decoration described in the present invention, the height-increasing mechanism includes: a height-increasing column; The bottom of the heightening column is sleeved on the outer wall of the first arc strip, the top of the heightening column is connected to the sound amplification mechanism, and a sound receiving assembly is installed between the two groups of heightening columns at the rear end; The sound receiving assembly comprises: a sound receiving board; A first convex block is arranged at the bottom of the sound receiving board, and the first convex block is inserted into the grooves on the surfaces of the first and second arc strips at the rear end; a second convex block is arranged at the top of the sound receiving board, and the second convex block is inserted into the groove at the rear end of the bottom of the sound amplification mechanism.

[0014] As a preferred solution of the acoustic material module structure for building decoration described in the present invention, the sound amplification mechanism includes: a connecting ring; The outer wall of the connecting ring is connected to the top of the heightening column, and vertical poles are arranged around the top of the connecting ring. The inner wall of the connecting ring is slidably connected to the sound expansion board, and the outer wall of the sound expansion board is connected to the other end of the vertical pole. A caisson groove is arranged inside the sound expansion board, and the caisson groove is arranged in a stepped shape.

[0015] A method for installing an acoustic material module structure for building decoration, comprising the following steps: S1: The support mechanism is placed on the ground, by connecting the connection column with the reinforcement mechanism, and then placing the reinforcement mechanism on the ground after it is spliced; S2: The triangular plate is placed on the locking plate, and then a plurality of sets of triangular plates are wound together by a weaving assembly, and the ends of the weaving assembly are fixed, so as to complete the installation of the triangular plate; S3: Install the external expansion plate at the external slot of the triangular plate, and then connect the buffer assembly and the external expansion plate to each other, so that the buffer assembly is installed between the external expansion plate and the connecting column, thereby completing the installation of the external expansion plate; S4: By assembling the tensegrity structure mechanism, and then connecting the outer buckle arc strip of the tensegrity structure mechanism with the outer end of the outer expansion plate, the installation of the stage deck is completed; S5: The sound amplification mechanism is installed by installing the vertical pole so that the vertical pole supports the sound amplification board, and the sound amplification mechanism is installed on the top of the acoustic material module mechanism through the heightening mechanism and fixed by bolts, thereby completing the installation of the acoustic material module structure.

[0016] Compared with existing technologies: By cooperating with the reinforcement mechanism and the support mechanism, the support area of ​​the acoustic material module mechanism can be increased, making the acoustic material module mechanism more stable; The buffer assembly can disperse the pressure on the external expansion assembly, thereby improving the load-bearing capacity of the external expansion assembly. The buffer assembly can also support and disperse the pressure on the external expansion plate, thereby improving the load-bearing capacity of the external expansion plate and preventing the buffer assembly from being damaged. Through the cooperation of the acoustic material module mechanism and the tensegrity structure mechanism, the outer buckle arc strip and the reinforcement mechanism present a tensegrity structure, thereby improving the load-bearing capacity of the outer expansion plate and the triangular plate, and being able to squeeze and limit the outer expansion plate and the triangular plate. The greater the pressure on the outer expansion plate and the triangular plate, the greater the squeezing force of the outer buckle arc strip on the outer expansion plate and the triangular plate, thereby reinforcing the outer expansion plate and the triangular plate. The installation structure is relatively flexible and simple, which can improve the assembly rate of the acoustic material module. Through the cooperation of the height-increasing mechanism and the sound-amplifying mechanism, the sound source can be gathered, and after being gathered, it can be quickly diffused outward, thereby causing the effect of amplifying and mixing the sound emitted, thereby improving the sound diffusion capacity. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 A schematic diagram of the overall structure provided by the present invention; Figure 2 A schematic diagram of the overall split structure provided by the present invention; Figure 3 A schematic diagram of the split structure of the reinforcement mechanism, acoustic material module mechanism and tensegrity structure mechanism provided by the present invention; Figure 4 A schematic diagram of the split structure of the reinforcement mechanism and the acoustic material module mechanism provided by the present invention; Figure 5 A schematic diagram of the support mechanism structure provided by the present invention; Figure 6 A schematic diagram of the reinforcement mechanism structure provided by the present invention; Figure 7 A schematic diagram of the split structure of the acoustic material module provided by the present invention; Figure 8 A schematic diagram of the structure of the inner platform component provided by the present invention; Fig. 9 A schematic diagram of the structure of a braided assembly provided by the present invention; Fig.10 A left-side structural schematic diagram of an external expansion assembly provided by the present invention; Fig.11 A right-side structural schematic diagram of an external expansion assembly provided by the present invention; Fig.12 A schematic diagram of the structure of the tensegrity structure provided by the present invention; Fig.13 A schematic diagram of the structure of the tensegrity structure assembly provided by the present invention; Fig.14 A schematic diagram of the height-increasing mechanism provided by the present invention; Fig.15 A schematic diagram of the structure of the sound receiving assembly provided by the present invention; Fig.16 A structural schematic diagram of a sound amplification mechanism provided by the present invention; Fig.17 This is a structural schematic diagram of the second sound amplification mechanism provided by the present invention.

[0018] In the figure: Support mechanism 1, support plate 11, connecting column 12, connecting groove 13, pillar 14, locking plate 15, reinforcement mechanism 2, first arc strip 21, second arc strip 22, buckle 23, first inner arc strip 24, second inner arc strip 25, acoustic material module mechanism 3, inner platform component 31, triangle plate 311, groove 312, through groove 313, outer card slot 314, woven component 32, cotton and linen strip 321, buckle slot 322, buckle plate 323, outer expansion component 33, outer expansion plate 331, splicing block 332, splicing Connecting groove 333, buffer assembly 34, first metal frame 341, second metal frame 342, tensile structure mechanism 4, tensile structure assembly 41, outer arc strip 411, support rod 412, first L-shaped rod 413, second L-shaped rod 414, pulling rod 415, paving plate 42, height increasing mechanism 5, height increasing column 51, sound receiving assembly 52, sound receiving board 521, first protrusion 522, second protrusion 523, sound amplifying mechanism 6, connecting ring 61, vertical rod 62, sound amplifying board 63, caisson groove 64. DETAILED DESCRIPTION

[0019] In order to make the objectives, technical solutions and advantages of the present invention more clear, the embodiments of the present invention will be further described in detail below with reference to the accompanying drawings.

[0020] The present invention provides an acoustic material module structure and installation method for building decoration. Figure 1-Figure 17 , including a supporting mechanism 1, a reinforcing mechanism 2, an acoustic material module mechanism 3, a tensegrity structure mechanism 4, a height increasing mechanism 5 and a sound amplifying mechanism 6; The support mechanism 1 is placed on the ground, and the acoustic material module mechanism 3 can be vertically supported by the support mechanism 1. The support mechanism 1 includes: a support plate 11, a connecting column 12, a connecting groove 13, a pillar 14 and a locking plate 15. The support plate 11 is placed on the ground, and the outer wall of the support plate 11 is provided with a connecting column 12, and the top of the connecting column 12 is provided with a connecting groove 13, and the acoustic material module mechanism 3 can be connected and supported by the connecting groove 13. A pillar 14 is provided at the top center of the support plate 11, and the acoustic material module mechanism 3 can be supported by the pillar 14. A locking plate 15 is provided on the top of the pillar 14, and the center of the acoustic material module mechanism 3 can be connected by the locking plate 15; The inner side of the reinforcement mechanism 2 is connected to the outer side of the support mechanism 1, and the support mechanism 1 and the reinforcement mechanism 2 cooperate to increase the platform area. The reinforcement mechanism 2 includes: a first arc bar 21, a second arc bar 22, a buckle 23, a first inner arc bar 24 and a second inner arc bar 25. The first arc bar 21 is arranged on the outer side of the support plate 11, and the two ends of the first arc bar 21 are connected to the second arc bar 22. The first arc bar 21 and the second arc bar 22 are connected by the buckle 23. The inner wall of the buckle 23 is provided with a protrusion. Inserting into the grooves of the first arc bar 21 and the second arc bar 22, the first arc bar 21 and the second arc bar 22 can be connected and fixed. A straight rod is provided inside the buckle 23, and the buckle 23 is connected to the first inner arc bar 24 through the straight rod. The second inner arc bar 25 is clamped between the two groups of first inner arc bars 24. Through the cooperation of the first arc bar 21 and the second arc bar 22 and the first inner arc bar 24 and the second inner arc bar 25, the support area of ​​the acoustic material module mechanism 3 can be increased, making the acoustic material module mechanism 3 more stable; The acoustic material module mechanism 3 is connected to the top of the supporting mechanism 1. The acoustic material module mechanism 3 is used for stage performances and to transmit the sound source to the sound amplifying mechanism 6. The acoustic material module mechanism 3 includes: an inner platform component 31, a triangular plate 311, a groove 312, a through groove 313, an outer card slot 314, a woven component 32, a cotton and linen cloth strip 321, a buckle slot 322, a buckle plate 323, an outer expansion component 33, an outer expansion plate 331, a splicing block 332, a splicing slot 333, a buffer component 34, a first metal frame 341 and a second metal frame 342. The bottom of the inner platform component 31 is connected to the top of the supporting mechanism 1. Grooves 312 are provided at both ends of the side of the triangular plate 311. A through groove 313 is provided at one end of the top of the triangular plate 311. The through groove 313 is locked by the buckle plate 15. Through the through slot 313, the lock plate 15 cooperates with the through slot 313 to connect several groups of triangular plates 311. The outer wall of the triangular plate 311 is provided with an outer slot 314, and the outer expansion component 33 can be connected and installed through the outer slot 314. The triangular plate 311 is set as a diffusion material module. The inner platform components 31 are connected by a woven component 32. The support mechanism 1 cooperates with the woven component 32 to increase the splicing stability of the inner platform component 31 and prevent the inner platform component 31 from collapsing. The cotton-linen strip 321 is wrapped around the top and bottom of the triangular plate 311. The cotton-linen strip 321 is installed in the groove 312. The position of the cotton-linen strip 321 can be limited by the groove 312. The friction and toughness of the cotton-linen strip 321 The squeezing force can increase the splicing stability of the triangular plate 311. A buckle groove 322 is provided at the top of the initial end of the cotton-linen cloth strip 321, and a buckle plate 323 is provided at the bottom of the end of the cotton-linen cloth strip 321. The buckle plate 323 is inserted into the buckle groove 322. The buckle plate 323 is inserted into the buckle groove 322 to connect the cotton-linen cloth strip 321 head to tail. A wooden board is provided at the initial end of the cotton-linen cloth strip 321. By opening a buckle groove 322 at the top of the wooden board, the buckle plate 323 can be inserted into the buckle groove 322. The outer wall of the inner platform component 31 is connected to the outer expansion component 33. The outer expansion component 33 can increase the area of ​​the stage. The inner end of the outer expansion plate 331 is inserted into the outer card slot 314. The outer end of the outer expansion plate 331 is connected to the tensegrity structure mechanism 4. 4 and the tensegrity structure mechanism 4 can extrude and fix the installation of the external expansion plate 331 and the triangular plate 311, wherein the external expansion plate 331 is set as a diffusion material module, a splicing block 332 is provided at one end of the side of the external expansion plate 331, and a splicing groove 333 is provided at the other end of the side of the external expansion plate 331, and a plurality of groups of external expansion plates 331 are connected to each other through the splicing block 332 and the splicing groove 333, the bottom of the external expansion component 33 is connected to the buffer component 34, and the bottom of the buffer component 34 is connected to the support mechanism 1, and the pressure on the external expansion component 33 can be dispersed through the buffer component 34, so as to improve the bearing capacity of the external expansion component 33, the top of the first metal frame 341 is inserted into the groove at the bottom center of the external expansion plate 331, and the bottom of the first metal frame 341 is inserted into the connection groove 13,The first metal frame 341 can support the external expansion plate 331, and the second metal frame 342 can be detachably installed between the two groups of first metal frames 341. The first metal frame 341 and the second metal frame 342 cooperate with each other to support and disperse the pressure on the external expansion plate 331, thereby improving the load-bearing capacity of the external expansion plate 331 and preventing the first metal frame 341 and the second metal frame 342 from being damaged; The tensegrity structure mechanism 4 is connected to the outer wall of the acoustic material module mechanism 3, and the bottom of the tensegrity structure mechanism 4 is connected to the reinforcement mechanism 2. The tensegrity structure mechanism 4 is used to fix and support the acoustic material module mechanism 3. The tensegrity structure mechanism 4 includes: a tensegrity structure component 41, an outer buckle arc strip 411, a support rod 412, a first L-shaped rod 413, a second L-shaped rod 414, a pulling rod 415 and a flat plate 42. The interior of the tensegrity structure component 41 is connected to the outer end of the outer expansion plate 331. Through the tensegrity structure component 41, several groups of outer expansion plates 331 can be fixed. The bottom of the tensegrity structural component 41 is connected to the reinforcement mechanism 2. The tensegrity structural design of the tensegrity structural component 41 can improve the load-bearing capacity of the triangular plate 311 and the outer expansion plate 331, and simplify the installation of the triangular plate 311 and the outer expansion plate 331. The inner part of the outer arc strip 411 is inserted into the outer end of the outer expansion plate 331. The outer arc strip 411 can be used to extrude the assembly of the outer expansion plate 331 and the triangular plate 311. Support rods 412 are installed at both ends of the bottom of the outer arc strip 411. The bottom of the support rod 412 is installed on the top of the first inner arc strip 24. The installation of the outer buckle arc strip 411 can be supported and limited by the support rod 412. A first L-shaped rod 413 is installed in the middle of the bottom of the outer buckle arc strip 411. The top of the first L-shaped rod 413 is connected to the second L-shaped rod 414 through a pulling rod 415. The bottom of the second L-shaped rod 414 is installed on the top of the first arc strip 21. Through the design of the first L-shaped rod 413, the pulling rod 415 and the second L-shaped rod 414, the outer buckle arc strip 411 and the reinforcement mechanism 2 present a tensile integral structure, thereby improving the load-bearing capacity of the outer expansion plate 331 and the triangular plate 311, and can be used for the outer expansion plate 331. 1 and the triangular plate 311 are squeezed and limited. When the pressure on the outer expansion plate 331 and the triangular plate 311 is greater, the extrusion force of the outer buckle arc strip 411 on the outer expansion plate 331 and the triangular plate 311 is greater, so that the outer expansion plate 331 and the triangular plate 311 are reinforced again, and the installation structure is relatively flexible and simple, which can improve the construction rate of the acoustic material module. The flattening plate 42 is laid on the top of the tensegrity structure component 41, and the flatness of the stage can be improved by the flattening plate 42. The flattening plate 42 is set as a diffusion material module, so that the flattening plate 42 can diffuse and transmit the received sound waves to the upper end; The heightening mechanism 5 is connected to the top of the reinforcement mechanism 2, and the heightening mechanism 5 includes: a heightening column 51, a sound receiving assembly 52, a sound receiving board 521, a first protrusion 522 and a second protrusion 523. The bottom of the heightening column 51 is sleeved on the outer wall of the first arc strip 21, and the top of the heightening column 51 is connected to the sound amplification mechanism 6. The heightening column 51 can support the installation of the sound amplification mechanism 6. A sound receiving assembly 52 is installed between the two groups of heightening columns 51 at the rear end. The sound receiving assembly 52 can be used to soundproof the sound source at the rear end and transmit the sound. The sound source at the sound material module mechanism 3 is diffused toward the upper outer end, a first protrusion 522 is provided at the bottom of the sound receiving plate 521, the first protrusion 522 is inserted into the groove on the surface of the first arc strip 21 and the second arc strip 22 at the rear end, a second protrusion 523 is provided at the top of the sound receiving plate 521, the second protrusion 523 is inserted into the groove at the rear end of the bottom of the sound amplifying mechanism 6, and the sound receiving plate 521 can be installed by squeezing the sound amplifying mechanism 6 and the first arc strip 21 and the second arc strip 22, wherein the sound receiving plate 521 is set as a diffusion material module; The sound amplification mechanism 6 is connected to the top of the heightening mechanism 5. Through the cooperation of the heightening mechanism 5 and the sound amplification mechanism 6, the sound of the performance is collected and diffused after being gathered in one place. The sound amplification mechanism 6 includes: a connecting ring 61, a vertical pole 62, a sound amplification plate 63 and a caisson groove 64. The outer wall of the connecting ring 61 is connected to the top of the heightening column 51. The vertical pole 62 is arranged around the top of the connecting ring 61. The inner wall of the connecting ring 61 is slidably connected to the sound amplification plate 63. The outer wall of the sound amplification plate 63 is connected to the other end of the vertical pole 62. The sound expansion board 63 is connected by the vertical rod 62, so that the sound expansion board 63 slides to the highest point of the inner wall groove of the connecting ring 61. At this time, the depth of the sound expansion board 63 is the largest. A caisson groove 64 is provided inside the sound expansion board 63. The caisson groove 64 is arranged in a stepped shape. The sound source can be gathered through the caisson groove 64, and after the gathering, it can be quickly diffused outward, thereby causing the effect of amplifying and mixing the emitted sound, thereby improving the diffusion ability of the sound, wherein the sound expansion board 63 is arranged as a diffusion material module.

[0021] During specific use, the technicians in this field place the support mechanism 1 on the ground, connect the connecting column 12 with the reinforcement mechanism 2, and then place the reinforcement mechanism 2 on the ground after splicing. The triangle plate 311 is placed on the locking plate 15, and then a plurality of groups of triangle plates 311 are wound together by the weaving component 32, and the weaving component 32 is fixed at the head and tail, thereby completing the installation of the triangle plate 311. The outer expansion plate 331 is installed at the outer card slot 314 of the triangle plate 311, and then the buffer component 34 is connected to the outer expansion plate 331 to make the buffer component 34 is installed between the outer expansion plate 331 and the connecting column 12, thereby completing the installation of the outer expansion plate 331, by assembling the tensile structure mechanism 4, and then connecting the outer buckle arc strip 411 of the tensile structure mechanism 4 to the outer end of the outer expansion plate 331, thereby completing the installation of the stage table top, by installing the vertical pole 62 of the sound amplification mechanism 6 so that the vertical pole 62 supports the sound amplification plate 63, and then by installing the sound amplification mechanism 6 on the top of the acoustic material module mechanism 3 through the heightening mechanism 5, and fixing it with bolts, thereby completing the installation of the acoustic material module structure.

[0022] Although the present invention has been described above with reference to the embodiments, various modifications may be made thereto and parts thereof may be replaced by equivalents without departing from the scope of the present invention. In particular, as long as there is no structural conflict, the various features in the embodiments disclosed in the present invention may be used in combination with each other in any manner, and the fact that these combinations are not exhaustively described in this specification is only for the sake of omitting space and saving resources. Therefore, the present invention is not limited to the specific embodiments disclosed herein, but includes all technical solutions falling within the scope of the claims.

Claims

1. A modular structure of acoustic materials for building decoration, comprising: The supporting mechanism (1) is characterized in that: The support mechanism (1) is placed on the ground, the outer side of the support mechanism (1) is connected to the reinforcement mechanism (2), and the support mechanism (1) and the reinforcement mechanism (2) cooperate to increase the platform area, the top of the support mechanism (1) is connected to the acoustic material module mechanism (3), the acoustic material module mechanism (3) is used for stage performances, the outer wall of the acoustic material module mechanism (3) is connected to the tensegrity structure mechanism (4), the bottom of the tensegrity structure mechanism (4) is connected to the reinforcement mechanism (2), the tensegrity structure mechanism (4) is used to fix and support the acoustic material module mechanism (3), the top of the reinforcement mechanism (2) is connected to the heightening mechanism (5), the top of the heightening mechanism (5) is connected to the sound amplification mechanism (6), and the heightening mechanism (5) and the sound amplification mechanism (6) cooperate to collect the sound of the performance and diffuse it after gathering it in one place.

2. The acoustic material module structure for building decoration according to claim 1, characterized in that: The support mechanism (1) comprises: a support plate (11); The support plate (11) is placed on the ground, a connecting column (12) is provided on the outer wall of the support plate (11), a connecting groove (13) is provided on the top of the connecting column (12), a pillar (14) is provided at the center of the top of the support plate (11), and a locking plate (15) is provided on the top of the pillar (14).

3. The acoustic material module structure for building decoration according to claim 2, characterized in that: The reinforcement mechanism (2) comprises: a first arc strip (21); The first arc bar (21) is arranged on the outer side of the support plate (11), and the two ends of the first arc bar (21) are connected to the second arc bar (22). The first arc bar (21) and the second arc bar (22) are connected via a buckle (23). The inner wall of the buckle (23) is provided with a protrusion, and the inside of the buckle (23) is provided with a straight rod. The buckle (23) is connected to the first inner arc bar (24) via the straight rod, and the second inner arc bar (25) is clamped between the two groups of first inner arc bars (24).

4. The acoustic material module structure for building decoration according to claim 3 is characterized in that: The acoustic material module structure (3) comprises: an inner platform component (31); The bottom of the inner platform component (31) is connected to the top of the support mechanism (1), the inner platform components (31) are connected via a braiding component (32), the outer wall of the inner platform component (31) is connected to the outer expansion component (33), the bottom of the outer expansion component (33) is connected to the buffer component (34), and the bottom of the buffer component (34) is connected to the support mechanism (1).

5. The acoustic material module structure for building decoration according to claim 4, characterized in that: The inner platform component (31) comprises: a triangular plate (311); Both ends of the side surface of the triangular plate (311) are provided with grooves (312), a through groove (313) is provided at one end of the top of the triangular plate (311), the through groove (313) is penetrated by the locking plate (15), and an outer wall of the triangular plate (311) is provided with an outer slot (314); The woven assembly (32) comprises: a cotton and linen cloth strip (321); The cotton-linen strip (321) is wound around the top and bottom of the triangular plate (311), the cotton-linen strip (321) is installed inside the groove (312), a buckle groove (322) is provided at the top of the initial end of the cotton-linen strip (321), a buckle plate (323) is provided at the bottom of the terminal end of the cotton-linen strip (321), and the buckle plate (323) is inserted into the buckle groove (322).

6. The acoustic material module structure for building decoration according to claim 5, characterized in that: The external expansion component (33) comprises: an external expansion plate (331); The inner end of the outer expansion plate (331) is inserted into the outer slot (314), the outer end of the outer expansion plate (331) is connected to the tensegrity structure (4), a splicing block (332) is provided at one end of the side of the outer expansion plate (331), a splicing groove (333) is provided at the other end of the side of the outer expansion plate (331), and a plurality of groups of outer expansion plates (331) are connected to each other via the splicing blocks (332) and the splicing grooves (333); The buffer assembly (34) comprises: a first metal frame (341); The top of the first metal frame (341) is inserted into the groove at the center of the bottom of the external expansion plate (331), and the bottom of the first metal frame (341) is inserted into the connecting groove (13). The second metal frame (342) is detachably installed between the two sets of first metal frames (341).

7. The acoustic material module structure for building decoration according to claim 6, characterized in that: The tensegrity structure mechanism (4) comprises: a tensegrity structure component (41); The interior of the tensegrity structural component (41) is connected to the outer end of the outer expansion plate (331), the bottom of the tensegrity structural component (41) is connected to the reinforcement mechanism (2), and a flattening plate (42) is laid on the top of the tensegrity structural component (41), so that the flatness of the stage can be improved by the flattening plate (42); The tensegrity structural component (41) comprises: an external buckled arc strip (411); The outer end of the outer expansion plate (331) is inserted into the inner part of the outer arc strip (411), support rods (412) are installed at both ends of the bottom of the outer arc strip (411), the bottom of the support rod (412) is installed on the top of the first inner arc strip (24), and a first L-shaped rod (413) is installed in the middle of the bottom of the outer arc strip (411), the top of the first L-shaped rod (413) is connected to the second L-shaped rod (414) through a pulling rod (415), and the bottom of the second L-shaped rod (414) is installed on the top of the first arc strip (21).

8. The acoustic material module structure for building decoration according to claim 7, characterized in that: The height-increasing mechanism (5) comprises: a height-increasing column (51); The bottom of the heightening column (51) is sleeved on the outer wall of the first arc strip (21), the top of the heightening column (51) is connected to the sound amplification mechanism (6), and a sound receiving assembly (52) is installed between the two groups of heightening columns (51) at the rear end; The sound receiving component (52) comprises: a sound receiving board (521); A first protrusion (522) is provided at the bottom of the sound receiving plate (521), and the first protrusion (522) is inserted into the grooves on the surfaces of the first arc strip (21) and the second arc strip (22) at the rear end. A second protrusion (523) is provided at the top of the sound receiving plate (521), and the second protrusion (523) is inserted into the groove at the rear end of the bottom of the sound amplification mechanism (6).

9. The acoustic material module structure for building decoration according to claim 8, characterized in that: The sound amplification mechanism (6) comprises: a connecting ring (61); The outer wall of the connecting ring (61) is connected to the top of the height-enhancing column (51) at four sides, and vertical poles (62) are arranged at four sides of the top of the connecting ring (61). The inner wall of the connecting ring (61) is slidably connected to the sound expansion board (63). The outer wall of the sound expansion board (63) is connected to the other end of the vertical pole (62). The sound expansion board (63) is provided with a caisson groove (64) inside, and the caisson groove (64) is arranged in a stepped shape.

10. A method for installing the acoustic material module structure for building decoration according to claim 9, characterized in that: The steps include: S1: The support mechanism (1) is placed on the ground, and the connection column (12) is connected to the reinforcement mechanism (2), and the reinforcement mechanism (2) is spliced ​​and placed on the ground; S2: placing the triangular plate (311) on the locking plate (15), winding a plurality of sets of triangular plates (311) through a braiding assembly (32), and fixing the braiding assembly (32) at both ends, thereby completing the installation of the triangular plate (311); S3: installing the outer expansion plate (331) at the outer slot (314) of the triangular plate (311), and then connecting the buffer assembly (34) and the outer expansion plate (331) to each other, so that the buffer assembly (34) is installed between the outer expansion plate (331) and the connecting column (12), thereby completing the installation of the outer expansion plate (331); S4: Assembling the tensegrity structure (4), and then connecting the outer buckle arc strip (411) of the tensegrity structure (4) to the outer end of the outer expansion plate (331), thereby completing the installation of the stage deck; S5: The upright pole (62) of the sound amplifying mechanism (6) is installed so that the upright pole (62) supports the sound amplifying board (63), and the sound amplifying mechanism (6) is installed on the top of the acoustic material module mechanism (3) through the height increasing mechanism (5) and fixed with bolts, thereby completing the installation of the acoustic material module structure.