A foam wall formed by splicing building foams
By incorporating a two-way sound-guiding and sound-absorbing mechanism, a splicing mechanism, and a reinforcement and support mechanism into the building foam wall, the problems of reinforcement, splicing, and sound absorption during the use of the foam wall are solved, achieving efficient splicing, reinforcement, and sound absorption effects for the foam wall.
Patent Information
- Application Number
- CN202510263400.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2025-12-05
- Estimated Expiration
- 2045-03-06
AI Technical Summary
Existing foam walls in buildings are inconvenient to reinforce, splice, and soundproof during use, resulting in poor performance.
By setting up a bidirectional sound-guiding and silencing mechanism, a splicing mechanism, and a reinforcement support mechanism, and utilizing a structure that can splice and support sound-guiding foam boards, can insert bidirectional sound-guiding pipes, and can reinforce and connect support plates, the splicing, reinforcement, and sound-guiding functions of foam boards are realized.
It achieves effective splicing, reinforcement, and two-way sound absorption of foam walls, thus improving the performance of building foam walls.
Smart Images

Figure CN119981283B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of medical device technology, and in particular relates to a foam wall formed by splicing architectural foam. Background Technology
[0002] With the rapid development of cities and the increase in urban population, indoor and outdoor noise has become a significant factor affecting the living environment of citizens. Based on this, many sound-absorbing and sound-insulating building foams have emerged. Building foams are laid on the exterior of buildings to protect the structure, extend the building's lifespan, reduce stress caused by structural deformation due to temperature changes, and reduce the erosion of the structure by harmful substances and ultraviolet rays in the air. Building foams used for external wall insulation help maintain a stable room temperature. Existing foam walls, formed by splicing and combining building foams, typically consist of a foam body, an upper foam body, a lower foam body, a first foam board, a second foam board, a third foam board, a fourth foam board, a first side panel, a second side panel, and sound-absorbing pipes. However, these foam walls suffer from drawbacks such as inconvenience in reinforcement, splicing, and double-sided sound absorption during use. Summary of the Invention
[0003] To address the aforementioned technical problems, this invention provides a foam wall formed by splicing architectural foam. This wall utilizes a bidirectional sound-absorbing mechanism for noise reduction, a splicing mechanism for easy assembly, and a reinforcement and support mechanism for reinforcement.
[0004] A foam wall formed by splicing architectural foam includes a first foam board, a second foam board disposed on the right side of the first foam board, and shielding strips integrally provided on the upper inner walls of the first and second foam boards respectively; docking grooves are respectively opened on the right sides of the upper and lower ends of the second foam board; characterized in that a splicable support sound-absorbing foam board structure is provided between the first and second foam boards, and a bidirectional sound-absorbing pipe structure for insertion is provided inside the splicable support sound-absorbing foam board structure; a reinforcing connection support plate structure is provided inside the docking groove; the splicable support sound-absorbing foam board structure includes a central foam board, and insertion holes are respectively opened on the upper and lower parts of the central foam board; a connecting strip is integrally provided at the middle position of the bottom end of the central foam board; and an insertion strip is integrally provided at the bottom end of the connecting strip.
[0005] Preferably, the pluggable bidirectional silencing tube structure includes a silencing center tube, with a first silencing tube inserted sequentially from front to back on the left side of the silencing center tube; and a second silencing tube inserted sequentially from front to right on the right side of the silencing center tube.
[0006] Preferably, the reinforceable connecting support plate structure includes a reinforcing plate, wherein oblique T-shaped fixing holes are sequentially opened from front to right in the middle of the interior of the reinforcing plate; a first support rod is sequentially fixed from front to back at the bottom end of the reinforcing plate; and a second support rod is sequentially fixed from front to back at the top end of the reinforcing plate.
[0007] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0008] 1. In this invention, the first foam board, the second foam board, the central foam board, the insertion hole, the silencing central tube, the first sound guide tube, and the second sound guide tube are arranged in a cooperative manner, which facilitates the sound waves to be guided into the interior of the silencing central tube through the first and second sound guide tubes respectively during use, thereby achieving the purpose of bidirectional silencing.
[0009] 2. In this invention, the first foam board, the second foam board, the central foam board, the insertion hole, the connecting strip, and the interlocking strip are arranged in a cooperative manner, which facilitates the insertion of the interlocking strip into the upper interior between the first foam board and the second foam board during use. At the same time, the shielding strip is engaged with the left and right ends of the connecting strip, which facilitates splicing during use.
[0010] 3. In this invention, the first foam board, the second foam board, the shielding strip, the connecting groove, the central foam board, the reinforcing plate, the oblique T-shaped fixing hole, the first support rod, and the second support rod are arranged in a cooperative manner. This facilitates the installation of the reinforcing plate on the upper part of the wall using expansion bolts through the oblique T-shaped fixing hole during use. During assembly, the first and second support rods are respectively inserted into the interior of the second foam board, which is convenient for reinforcement and support during use. Attached Figure Description
[0011] Figure 1 This is a schematic diagram of the structure of the present invention.
[0012] Figure 2 This is a schematic diagram of the structure of the splicable support sound-absorbing foam board of the present invention.
[0013] Figure 3 This is a schematic diagram of the pluggable bidirectional conveying silencer tube structure of the present invention.
[0014] Figure 4This is a structural schematic diagram of the reinforceable connection support plate structure of the present invention.
[0015] In the picture:
[0016] 1. First foam board; 2. Second foam board; 3. Barrier strip; 4. Connecting groove; 5. Splicable support structure for sound-absorbing foam boards; 51. Central foam board; 52. Insertion hole; 53. Connecting strip; 54. Insertion strip; 6. Structure for inserting bidirectional sound-absorbing pipes; 61. Sound-absorbing central pipe; 62. First sound guide pipe; 63. Second sound guide pipe; 7. Structure for reinforcing and connecting support plates; 71. Reinforcing plate; 72. Slanted T-shaped fixing hole; 73. First support rod; 74. Second support rod. Detailed Implementation
[0017] Example 1: The present invention will now be described in detail with reference to the accompanying drawings, as shown below. Figure 1 and attached Figure 2 As shown, a foam wall formed by splicing architectural foam includes a first foam board 1, a second foam board 2, a shielding strip 3, a connecting groove 4, a splicable support and sound-absorbing foam board structure 5, a bidirectional sound-absorbing pipe structure 6, and a reinforcing connection and support plate structure 7. The second foam board 2 is located on the right side of the first foam board 1, and the shielding strip 3 is integrally formed on the upper part of the inner walls of both the first and second foam boards 1. Connecting grooves 4 are respectively opened on the right sides of the upper and lower ends of the second foam board 2. The splicable support and sound-absorbing foam board structure 5 is provided between the first foam board 1 and the second foam board 2, and the bidirectional sound-absorbing pipe structure 6 is installed inside the splicable support and sound-absorbing foam board structure 5. The connecting groove 4 contains a reinforcing connection and support plate structure. Structure 7; The splicable support sound-absorbing foam board structure 5 includes a central foam board 51, insertion holes 52, connecting strips 53 and 54. Insertion holes 52 are respectively opened at the top and bottom of the central foam board 51. A connecting strip 53 is integrally provided at the middle position of the bottom end of the central foam board 51. An entanglement strip 54 is integrally provided at the bottom end of the connecting strip 53. In use, the first foam board 1, the second foam board 2 and the central foam board 51 are fixed in a suitable position. During the fixing process, the entanglement strip 54 is inserted into the slot formed at the upper end of the first foam board 1 and the second foam board 2, and is clamped to the left and right ends of the connecting strip 53 by the shielding strip 3, realizing the splicing work in the installation and fixing process, and the docking groove 4 is set accordingly during the splicing process.
[0018] In this implementation plan, in conjunction with the appendix Figure 3As shown, the pluggable bidirectional sound-conducting silencing tube structure 6 includes a sound-conducting central tube 61, a first sound-conducting tube 62, and a second sound-conducting tube 63. The first sound-conducting tube 62 is inserted into the left side of the sound-conducting central tube 61 from front to back; the second sound-conducting tube 63 is inserted into the right side of the sound-conducting central tube 61 from front to right. During the splicing and fixing process, the sound-conducting central tube 61 is passed through the interior of the insertion hole 52 in sequence, and then the first sound-conducting tube 62 and the second sound-conducting tube 63 are passed through the interior of the first foam board 1 and the second foam board 2 in sequence, so that bidirectional sound absorption can be achieved by using the first sound-conducting tube 62 and the second sound-conducting tube 63 in conjunction with the sound-conducting central tube 61 during use.
[0019] In this implementation plan, in conjunction with the appendix Figure 4 As shown, the reinforceable connecting support plate structure 7 includes a reinforcing plate 71, oblique T-shaped fixing holes 72, a first support rod 73, and a second support rod 74. The reinforcing plate 71 has oblique T-shaped fixing holes 72 arranged sequentially from front to right in the middle of its interior. The bottom end of the reinforcing plate 71 is fixed with the first support rod 73 sequentially from front to back. The top end of the reinforcing plate 71 is fixed with the second support rod 74 sequentially from front to back. During assembly, the reinforcing plate 71 is sequentially fixed to suitable positions on the wall. Then, during the assembly process, it is connected to the outer walls of the first support rod 73 and the second support rod 74 through the insertion holes opened inside the mating groove 4. This facilitates the overall reinforcement of the foam wall during use, and also facilitates the overall reinforcement and support of the foam wall, thereby completing the foam wall installation.
[0020] In this embodiment, specifically, the first foam board 1 and the second foam board 2 have insertion holes sequentially opened from front to back inside; the bottom of the upper docking groove 4 has insertion holes sequentially opened from front to back inside; and the top of the lower docking groove 4 has insertion holes sequentially opened from front to back inside.
[0021] In this embodiment, specifically, the connector strip 54 is a foam strip with both ends set as arcs and elastic, and the connector strip 54 is located at the lower middle position of the central foam board 51.
[0022] In this embodiment, specifically, the first foam board 1, the second foam board 2, and the central foam board 51 are integrally formed and have slots at the upper end corresponding to the position of the insertion strip 54; the shielding strips 3 are respectively set at the left and right ends of the connecting strip 53 and are snapped together with the insertion strip 54; the insertion hole 52 inside the central foam board 51 is connected to the insertion hole inside the first foam board 1 and the second foam board 2.
[0023] In this embodiment, specifically, the silencing center tube 61 is connected to the first sound guide tube 62 and the second sound guide tube 63 respectively, and the silencing center tube 61, the first sound guide tube 62 and the second sound guide tube 63 are respectively made of felt tubes.
[0024] In this embodiment, specifically, the first sound guide tube 62 and the second sound guide tube 63 pass through the interior of the first foam board 1 and the second foam board 2 from front to back; the sound-absorbing center tube 61 passes through the interior of the insertion hole 52.
[0025] In this embodiment, specifically, the reinforcing plate 71, the oblique T-shaped fixing hole 72, the first support rod 73, and the second support rod 74 are integrally cast and formed; the first support rod 73 and the second support rod 74 are correspondingly arranged.
[0026] In this embodiment, specifically, the reinforcing plate 71 is inserted into the inside of the docking groove 4; the first support rod 73 is inserted into the bottom end of the docking groove 4 opened at the upper end; and the second support rod 74 is inserted into the top end of the docking groove 4 opened at the lower end.
[0027] Example 2: The present invention will now be described in detail with reference to the accompanying drawings, as shown below. Figure 1 To be continued Figure 4 As shown, during use, the first foam board 1, the second foam board 2, and the central foam board 51 are fixed in suitable positions. During the fixing process, the insert strip 54 is inserted into the slot formed at the upper end of the first foam board 1 and the second foam board 2, and then secured to the left and right ends of the connecting strip 53 by the shielding strip 3, thus realizing the splicing work during the installation and fixing process. During the splicing process, the mating grooves 4 are aligned. During the splicing and fixing process, the sound-absorbing central tube 61 is sequentially passed through the insert hole 52, and then the first sound guide tube 62 and the second sound guide tube 63 are sequentially inserted. The first foam board 1 and the second foam board 2 are connected inside the first sound guide tube 62 and the second sound guide tube 63 to work with the sound-absorbing center tube 61 to achieve bidirectional sound absorption during use. During splicing, the reinforcing plate 71 is fixed to the appropriate position on the wall in sequence. Then, during the splicing process, it is connected to the outer wall of the first support rod 73 and the second support rod 74 through the insertion hole opened in the docking groove 4. This facilitates the overall reinforcement of the foam wall during use and the overall reinforcement and support of the foam wall, thereby completing the work of the foam wall.
[0028] Any technical solution that achieves the above-mentioned technical effects by utilizing the technical solutions described in this invention, or by designing similar technical solutions by those skilled in the art under the inspiration of the technical solutions described in this invention, falls within the protection scope of this invention.
Claims
1. A foam wall formed by splicing building foams, comprising a first foam board (1), a second foam board (2) arranged on the right side of the first foam board (1), and a blocking strip (3) integrally arranged on the inner wall of the first foam board (1) and the second foam board (2) respectively; and a butt joint groove (4) arranged on the right side of the upper and lower ends of the second foam board (2) respectively; characterized in that, The first foam board (1) and the second foam board (2) in the foam wall formed by splicing the building foam are provided with a splicable supporting sound-absorbing foam board structure (5), and the inside of the splicable supporting sound-absorbing foam board structure (5) is provided with a splicable bidirectional guide sound-absorbing pipe structure (6); the inside of the butt joint groove (4) is provided with a reinforced connecting support plate structure (7); the splicable supporting sound-absorbing foam board structure (5) comprises a center foam board (51), the inside of the center foam board (51) is provided with a splicing hole (52) at the upper and lower positions, respectively; the bottom end of the center foam board (51) is integrally provided with a connecting strip (53) at the middle position; the bottom end of the connecting strip (53) is integrally provided with a splicing strip (54); the reinforced connecting support plate structure (7) comprises a reinforcing plate (71), the inside of the reinforcing plate (71) is provided with a T-shaped fixing hole (72) at the front and right positions, respectively; the bottom end of the reinforcing plate (71) is fixed with a first supporting rod (73) from front to back; the upper end of the reinforcing plate (71) is fixed with a second supporting rod (74) from front to back; the reinforcing plate (71) is spliced in the inside of the butt joint groove (4); the first supporting rod (73) is spliced in the inside of the bottom end of the butt joint groove (4) provided at the upper end; the second supporting rod (74) is spliced in the inside of the top end of the butt joint groove (4) provided at the lower end.
2. The foam wall formed of spliced building foam of claim 1, wherein, The splicable bidirectional guide sound-absorbing pipe structure (6) comprises a sound-absorbing center pipe (61), the left side of the sound-absorbing center pipe (61) is spliced with a first sound guide pipe (62) from front to back; the right side of the sound-absorbing center pipe (61) is spliced with a second sound guide pipe (63) from front to back.
3. The foam wall formed of spliced building foam of claim 1, wherein, The inside of the first foam board (1) and the second foam board (2) is provided with a splicing hole from front to back; the inside of the bottom end of the butt joint groove (4) provided at the upper end is provided with a splicing hole from front to back; the inside of the top end of the butt joint groove (4) provided at the lower end is provided with a splicing hole from front to back.
4. The foam wall formed of spliced building foam of claim 1, wherein, The first foam board (1) and the second foam board (2) and the center foam board (51) are integrally formed and provided with a splicing groove at the position corresponding to the splicing strip (54) at the upper end; the blocking strips (3) are respectively arranged at the left and right ends of the connecting strip (53) and are clamped after cooperating with the splicing strip (54); the splicing hole (52) arranged in the inside of the center foam board (51) is in communication with the splicing hole arranged in the inside of the first foam board (1) and the second foam board (2).
5. The foam wall formed of spliced building foam of claim 2, wherein, The sound-absorbing center pipe (61) is in communication with the first sound guide pipe (62) and the second sound guide pipe (63), respectively, and the sound-absorbing center pipe (61), the first sound guide pipe (62) and the second sound guide pipe (63) are respectively made of a felt pipe.
6. The foam wall formed of spliced building foam of claim 2, wherein, The first sound guide pipe (62) and the second sound guide pipe (63) penetrate the inside of the first foam board (1) and the second foam board (2) from front to back; the sound-absorbing center pipe (61) penetrates the inside of the splicing hole (52), respectively.
Citation Information
Patent Citations
Splicing EPS (Expandable Polystyrene) foam board
CN215763990U
Novel environment-friendly insulation board
CN220725615U