Splicing type sound insulation building wallboard and splicing method
By designing spliced sound-insulating building wall panels, vacuum pipes and intercepting nets are used to solve the problems of dust adhesion and tiles debris during tiles cutting, and the effect of reducing dust rise and extending the life of sound-insulating cotton is achieved.
Patent Information
- Application Number
- CN202510207085.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-24
- Publication Date
- 2025-05-13
Smart Images

Figure CN119981309A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of prefabricated buildings, and in particular to a spliced sound insulation building wallboard and a splicing method. Background Art
[0002] In modern industrial production and construction, tile cutting is an inevitable part. There are two main problems in this process: one is noise, and the other is dust pollution. In order to reduce the impact of noise on the surrounding environment, soundproof building wall panels are usually used indoors to isolate a special space for tile cutting, which can reduce the spread of noise to a certain extent. Although soundproof building wall panels can effectively isolate noise, a large amount of dust generated during the tile cutting process is easy to adhere to the soundproof building board wall. When the door is opened to transport the cut tiles, the adhered dust will be raised and spread to other areas, causing secondary pollution. Summary of the invention
[0003] In order to overcome the disadvantage that dust generated during the tile cutting process adheres to the sound insulation building panel wall used to absorb the noise generated by the tile cutting, resulting in dust being raised and spread when the door is opened to transport the tiles, causing secondary pollution, the present invention provides a spliced sound insulation building wall panel and a splicing method.
[0004] The technical implementation scheme of the present invention is: a spliced sound-proof building wall panel, including a fixed plate and sound-proof cotton; the fixed plate is provided with sound-proof cotton for isolating noise; it also includes a dust suction pipe, an interception net and a connecting block; the sound-proof cotton is provided with a plurality of dust suction pipes for absorbing dust generated by cutting tiles; a connecting cavity is opened on the fixed plate; all dust suction pipes are connected to the connecting cavity; an interception net for intercepting tile fragments is provided on the fixed plate; two fixed strips are provided on the interception net; two connecting strips are provided on the fixed plate; and a connecting block is provided on each connecting strip.
[0005] Optionally, each dust suction pipe is connected to the connecting cavity at an angle downward.
[0006] Optionally, the sound insulation cotton is detachably connected to the fixing plate.
[0007] Optionally, the intercepting net is detachably connected to the fixing plate.
[0008] Optionally, the dust suction tube is coated with a fluorocarbon coating.
[0009] Optionally, a lifting handle is also included; each fixing bar on the intercepting net is provided with a lifting handle for pulling the intercepting net.
[0010] Optionally, the lifting handle is made of soft material.
[0011] Optionally, bristles are also included; the intercepting net is provided with bristles.
[0012] Optionally, both fixing strips on the interception net are made of deformable materials.
[0013] A method for splicing spliced sound insulation building wall panels comprises the following steps: step 1: determining the number of sound insulation building wall panels and the number of connection blocks according to the area required for tile cutting operation; step 2: opening a top blowing hole within the determined operation range, and installing a bottom annular strip on the ground; step 3: first fixing the connection block at the corner, then fixing the connection strip on the fixing plate on the connection block, and completing the installation of the sound insulation building wall panels by fixing the connection strip on the connection block in turn; step 4: determining the size of a door assembled from the sound insulation building wall panels by the size of the cut tiles during the installation process.
[0014] The present invention has the following advantages: the present invention uses a sound-proof building board wall to isolate a space for cutting tiles, thereby preventing the noise generated by cutting tiles from affecting other areas;
[0015] The bottom ring strip drives the vacuum tube to absorb the dust adhering to the sound insulation board wall, which greatly reduces the probability of dust adhering to the sound insulation board wall being lifted up and dispersed to other areas when the door is opened to transport tiles;
[0016] The tile fragments splashing onto the sound insulation cotton are intercepted by the interception net to prevent the tile fragments from scratching the sound insulation cotton;
[0017] By manually pulling the interception net, the dust on the sound insulation cotton can be cleaned simply and quickly, reducing the steps of manually brushing to clean the sound insulation cotton. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the three-dimensional structure of the spliced sound insulation building wall panel of the present invention;
[0019] Figure 2 It is a schematic diagram of the three-dimensional structure of the fixing plate, sound insulation cotton, interception net, bristles and lifting handle combination of the present invention;
[0020] Figure 3 It is a schematic diagram of the three-dimensional structure of the fixing plate, the sound insulation cotton and the dust suction pipe combination of the present invention;
[0021] Figure 4 It is a schematic diagram of the three-dimensional structure of the dust suction pipe and the connecting cavity combination of the present invention;
[0022] Figure 5 This is a schematic diagram of the three-dimensional structure of the interception net, bristles and lifting handle combination of the present invention;
[0023] Figure 6 It is a schematic diagram of the combined three-dimensional structure of the connecting cavity and the communicating groove of the present invention.
[0024] The meanings of the reference numerals in the figure are: 1-fixed plate, 1001-connecting strip, 1002-connecting chamber, 2-sound insulation cotton, 101-dust suction tube, 102-interception net, 103-bristles, 104-lifting handle, 105-connecting block, 201-top blowing hole, 202-bottom annular strip, 20201-dust suction groove, 20202-connecting groove. DETAILED DESCRIPTION
[0025] In order to make the purpose, technical solution and advantages of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings. It is hereby stated that the directional terms such as up, down, left, right, front, back, inside, outside, etc. that appear or will appear in the text of the present invention are only based on the accompanying drawings of the present invention, and are not specific limitations of the present invention.
[0026] Example 1
[0027] like Figure 1-Figure 4 As shown, a spliced sound insulation building wall panel includes a fixed plate 1 and sound insulation cotton 2; the sound insulation cotton 2 is arranged on the fixed plate 1;
[0028] It also includes a dust suction tube 101, an intercepting net 102 and a connecting block 105; a plurality of dust suction tubes 101 are arranged on the sound insulation cotton 2; a connecting cavity 1002 is opened on the fixed plate 1; all dust suction tubes 101 are connected to the connecting cavity 1002; an intercepting net 102 is arranged on the fixed plate 1; two fixing strips are arranged on the intercepting net 102; two connecting strips 1001 are arranged on the fixed plate 1; each connecting strip 1001 is arranged with a connecting block 105, and the fixed plates 1 are connected via the connecting blocks 105.
[0029] Each dust suction pipe 101 is tilted downward and connected to the connecting cavity 1002, which is convenient for reducing the deposition of dust in the pipe, reducing the risk of blockage, and improving the dust removal effect.
[0030] The sound insulation cotton 2 is detachably connected to the fixing plate 1. When the sound insulation cotton 2 has poor sound insulation effect, the sound insulation cotton 2 can be disassembled and replaced in time to ensure the sound insulation effect of the sound insulation building wallboard.
[0031] The intercepting net 102 is detachably connected to the fixing plate 1 , so that the intercepting net 102 can be quickly removed and the sound insulation cotton 2 can be replaced.
[0032] The dust suction tube 101 is coated with a fluorocarbon coating, which can achieve a friction-resistant effect and prevent the dust suction tube 101 from being damaged by friction from small tile fragments during the adsorption process.
[0033] In order to reduce the impact of the noise generated by cutting tiles on the surrounding environment, the sound insulation building wall panel of the present invention is used to isolate a special space indoors for cutting tiles, a connecting block 105 is fixed to the bottom annular strip 202, the connecting strip 1001 is spliced to the connecting block 105, and the sound insulation building wall panels are spliced into a plurality of connecting blocks 105. Figure 1 As shown, the space is isolated, and a board formed by splicing two soundproof building wall panels is used as a door. In order to ensure the health of workers cutting tiles, a top blowing hole 201 and a bottom annular strip 202 are usually opened in the space isolated by the soundproof building wall panels. The top blowing hole 201 is connected to an external blowing device, and the bottom annular strip 202 is connected to an external suction device. The soundproof building wall panels are arranged on the upper side of the bottom annular strip 202, and the connecting cavity 1002 is connected to the connecting groove 20202. A valve for controlling the connecting groove 20202 is arranged in the bottom annular strip 202. A space is isolated separately for cutting tiles by using the soundproof building board wall to prevent noise from affecting other areas.
[0034] In this space isolated by the soundproof building wall panels, workers can perform tile cutting operations. During the tile cutting process, start the external blowing equipment and the external suction equipment. The top blowing hole 201 blows downward so that the dust generated by the cutting is adsorbed by the bottom annular strip 202, thereby collecting the dust. The dust enters the bottom annular strip 202 through the dust suction groove 20201. Although the top blowing hole 201 and the bottom annular strip 202 can collect most of the dust, some dust will still adhere to the soundproof building wall panels. When the door is opened to transport the cut tiles, the dust adhered to the door will be lifted up and spread to other areas, causing secondary pollution. In order to solve this problem, the present invention designs the soundproof building wall panels as soundproof cotton 2 exposed in the isolation In the space created, the sound insulation cotton 2 can absorb the noise generated when cutting tiles to reduce noise propagation. A number of dust suction pipes 101 inclined downward are arranged on the sound insulation cotton 2. The bottom of the connecting cavity 1002 connected to these dust suction pipes 101 is connected to the connecting groove 20202. The valve in the bottom annular strip 202 for controlling the connecting groove 20202 is opened regularly, and the dust suction pipe 101 is driven by the bottom annular strip 202 to absorb the dust adhered to the sound insulation building board wall, which greatly reduces the probability of dust adhered to the sound insulation building board wall being lifted up and dispersed to other areas when the door is opened to transport tiles.
[0035] Furthermore, since some tile fragments will fly when cutting tiles, the flying tile fragments may scratch the sound insulation cotton 2 on the sound insulation building board wall, accelerating the loss of the sound insulation cotton 2. Therefore, an interception net 102 is provided. When workers are performing tile cutting operations, the interception net 102 can intercept the tile fragments flying onto the sound insulation cotton 2 to prevent the tile fragments from scratching the sound insulation cotton 2.
[0036] Example 2
[0037] On the basis of Example 1, Figure 2 , Figure 5 and Figure 6 As shown, a lifting handle 104 is also included; each fixing bar on the intercepting net 102 is provided with a lifting handle 104.
[0038] The lifting handle 104 is made of soft material. While facilitating the lifting of the intercepting net 102, the lifting handle 104 can also be embedded in the intercepting net 102 to be flush with the intercepting net 102, thereby preventing the lifting handle 104 from protruding and affecting the internal space.
[0039] Brushes 103 are also included; the intercepting net 102 is provided with brushes 103 .
[0040] The two fixing strips on the intercepting net 102 are both made of deformable materials, which facilitates pulling the intercepting net 102 to deform the intercepting net 102, and the sound insulation cotton 2 is bounced by the intercepting net 102 to clean the dust adsorbed on the sound insulation cotton 2.
[0041] A spliced sound insulation building wall panel and a splicing method, comprising the following steps:
[0042] Step 1: Determine the number of sound insulation building wall panels and the number of connecting blocks 105 according to the area required for the tile cutting operation;
[0043] Step 2: Open the top blowing hole 201 within the determined working range and install the bottom ring strip 202 on the ground;
[0044] Step 3: first fix the connecting block 105 at the corner, then fix the connecting strip 1001 on the fixing plate 1 to the connecting block 105, and complete the installation of the sound insulation building wall panel by fixing the connecting strip 1001 to the connecting block 105 in turn;
[0045] Step 4: During the installation process, the size of the door assembled from the soundproof building wall panels is determined by the size of the cut tiles.
[0046] In order to clean the dust absorbed on the sound insulation cotton 2, the intercepting net 102 is manually pulled away from the sound insulation cotton 2 to deform it. After the intercepting net 102 is manually loosened, the intercepting net 102 will rebound and hit the sound insulation cotton 2. This action can bounce the dust on the sound insulation cotton 2 off. When the intercepting net 102 rebounds, the dust suction pipe 101 is started to promptly absorb the dust bounced off by the rebound action to achieve a cleaning effect. By manually pulling the intercepting net 102, the dust on the sound insulation cotton 2 can be cleaned simply and quickly, reducing the steps of manually brushing to clean the sound insulation cotton 2. In order to further enhance the cleaning effect, a brush 103 is provided. By manually pulling the intercepting net 102, the bristles 103 are brought into contact with the sound insulation cotton 2 to clean the sound insulation cotton 2.
[0047] In order to facilitate manual pulling of the intercepting net 102, a lifting handle 104 is specially provided to facilitate manual lifting operation. The lifting handle 104 is made of soft material, which is not only convenient for lifting the intercepting net 102, but also can be embedded in the intercepting net 102 and be flush with the intercepting net 102, thereby avoiding the lifting handle 104 protruding and affecting the internal space.
[0048] The above embodiments are only for illustrating the technical concept and features of the present invention, and their purpose is to enable people familiar with the technology to understand the content of the present invention and implement it accordingly, and they cannot be used to limit the protection scope of the present invention. Any equivalent changes or modifications made according to the spirit of the present invention should be included in the protection scope of the present invention.
Claims
1. A spliced sound-insulating building wall panel, comprising a fixing plate (1) and sound-insulating cotton (2); the fixing plate (1) is provided with sound-insulating cotton (2) for isolating noise; the characteristics are: The invention also comprises a dust suction pipe (101), an interception net (102) and a connection block (105); the sound insulation cotton (2) is provided with a plurality of dust suction pipes (101) for absorbing dust generated by cutting tiles; the fixing plate (1) is provided with a connection cavity (1002); all the dust suction pipes (101) are connected to the connection cavity (1002); the fixing plate (1) is provided with an interception net (102) for intercepting tile fragments; two fixing bars are provided on the interception net (102); two connection bars (1001) are provided on the fixing plate (1); and a connection block (105) is provided on each connection bar (1001).
2. A spliced sound insulation building wall panel according to claim 1, characterized in that: Each dust suction pipe (101) is inclined downward and communicates with the connecting cavity (1002).
3. A spliced sound insulation building wall panel according to claim 2, characterized in that: The sound insulation cotton (2) is detachably connected to the fixing plate (1).
4. A spliced sound insulation building wall panel according to claim 1, characterized in that: The interception net (102) is detachably connected to the fixing plate (1).
5. A spliced sound insulation building wall panel according to claim 1, characterized in that: The dust suction pipe (101) is coated with a fluorocarbon coating.
6. A spliced sound insulation building wall panel according to claim 1, characterized in that: It also includes a lifting handle (104); each fixing bar on the intercepting net (102) is provided with a lifting handle (104) for pulling the intercepting net (102).
7. A spliced sound insulation building wall panel according to claim 6, characterized in that: The lifting handle (104) is made of soft material.
8. A spliced sound insulation building wall panel according to claim 6, characterized in that: It also includes bristles (103); the interception net (102) is provided with bristles (103).
9. A spliced sound insulation building wall panel according to claim 1, characterized in that: The two fixing strips on the interception net (102) are both made of deformable materials.
10. A method for splicing spliced sound insulation building wall panels, characterized by: The method uses the spliced sound insulation building wall panel of claim 9, The method comprises the following steps: step 1: determining the number of sound insulation building wall panels and the number of connecting blocks (105) according to the area required for the tile cutting operation; step 2: opening a top blowing hole (201) within the determined operation range, and installing a bottom annular strip (202) on the ground; step 3: first fixing the connecting block (105) at the corner, then fixing the connecting strip (1001) on the fixing plate (1) to the connecting block (105), and completing the installation of the sound insulation building wall panels by fixing the connecting strip (1001) to the connecting block (105) in turn; and step 4: determining the size of a door assembled from the sound insulation building wall panels according to the size of the cut tiles during the installation process.