Stable sound insulation fence for constructional engineering and mounting method of stable sound insulation fence

CN119933449APending Publication Date: 2025-05-06CHINA CONSTR FIFTH ENG DIV CORP LTD
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Patent Information

Application Number
CN202510364121.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2025-05-06

AI Technical Summary

Technical Problem

The sound insulation walls temporarily built in the prior art lack structural strength and are susceptible to wind or other external factors to pour or damage. The installation and disassembly of traditional sound insulation barriers is complicated, requiring a lot of labor and time, which increases construction costs and construction periods.

Method used

A stable sound insulation enclosure of construction engineering is designed, using spacing vertical keels and composite corrugated plates. The magnetic block attracts the cooperation between the slide rod and the tie rod and the elastic reinforcement ribs, enhances the structural rigidity and deformation resistance, and realizes the automatic reset of the slide rod and the horizontal movement of the pull rod through the design of inclined chutes and inclined parts.

Benefits of technology

By enhancing the structural rigidity and deformation resistance, this sound insulation barrier can effectively resist the influence of wind and other external factors, reduce shaking, improve sound absorption effect, and realize the self-locking ability of the composite corrugated plate through the disassembly design of the magnetic block to prevent accidental falloff. At the same time, the use of liquid media reduces dust by spraying cleaning liquid, and enhances the sound insulation effect through the damping characteristics of water.

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Abstract

The invention discloses a stable building engineering sound insulation fence and a mounting method thereof, and belongs to the field of building engineering. A stable building engineering sound insulation fence comprises vertical keels, threaded holes are formed in the bottoms of the vertical keels, bottom plates, composite corrugated plates and sealing plates are sequentially inserted between the adjacent vertical keels, the stable building engineering sound insulation fence further comprises sliding rods, pulling rods are slidably installed in the sliding rods, elastic reinforcing ribs are installed in the composite corrugated plates, and the pulling rods abut against the elastic reinforcing ribs; the waterproof cap is installed on the vertical keel in a buckled mode, a magnetic block is installed in the waterproof cap, a metal part attracted by the magnetic block is arranged at the end, close to the waterproof cap, of the sliding rod, the sliding rod attracted by the magnetic block is matched with the pulling rod and the elastic reinforcing rib, the design of the inclined groove and the inclined part is combined, the rigidity and the deformation resistance of the whole structure are enhanced, and meanwhile the waterproof cap is installed on the vertical keel in a buckled mode. And the magnetic blocks can also be used for dismounting the composite corrugated plates, so that the composite corrugated plates have self-locking capability during normal enclosure, and accidental falling is prevented.
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Description

Technical Field

[0001] The invention relates to the field of construction engineering, and in particular to a stable construction engineering sound insulation enclosure and an installation method thereof. Background Art

[0002] With the acceleration of urbanization and the increasing number of construction activities, noise pollution generated by construction sites has become an important issue affecting the quality of life of surrounding residents, especially in densely populated urban areas. Construction projects often need to be carried out in limited spaces, which not only restricts the layout of construction equipment, but also puts higher requirements on how to effectively isolate construction noise.

[0003] Traditional sound insulation measures mainly include the use of simple sound barriers or temporary sound walls. However, temporary sound walls often lack sufficient structural strength and are easily affected by wind or other external factors and may collapse or be damaged. In addition, the installation and disassembly process of traditional sound barriers is complicated and requires a lot of manpower and time, which increases construction costs and construction period. Summary of the invention

[0004] The purpose of the present invention is to solve the problems that the temporary sound insulation walls constructed in the prior art often lack sufficient structural strength and are easily affected by wind or other external factors and may collapse or be damaged, and the installation and disassembly process of traditional sound insulation barriers is complicated, requiring a lot of manpower and time, which increases the construction cost and construction period, and a stable construction engineering sound insulation enclosure and its installation method are proposed.

[0005] In order to achieve the above object, the present invention adopts the following technical solutions:

[0006] A stable soundproof enclosure for construction projects, comprising vertical keels arranged at intervals, wherein a threaded hole is provided at the bottom of the vertical keels for connection with the original ground, and a base plate, a composite corrugated plate and a sealing plate are inserted in sequence between adjacent vertical keels, wherein the base plate, the composite corrugated plate and the sealing plate are interlocked with each other, and further comprising: a sliding rod slidably installed in the vertical keel, wherein a tie rod is slidably installed in the sliding rod, wherein an elastic reinforcing rib is installed in the valley of the composite corrugated plate, wherein the tie rod abuts against the elastic reinforcing rib; a waterproof cap, which is buckled and installed on the vertical keel and has a magnetic block installed inside, wherein the sliding rod has a metal portion adsorbed by the magnetic block at one end close to the waterproof cap, and when the sliding rod rises, the tie rod slides horizontally in the vertical keel and embeds into the elastic reinforcing rib.

[0007] In order to convert the up and down movement of the slide bar into the horizontal movement of the tie rod, preferably, an inclined groove is provided in the slide bar, and one end of the tie rod located in the vertical keel is an inclined portion, and the inclined portion is adapted to the inclined groove.

[0008] In order to realize automatic resetting of the slide bar, preferably, a first limit plate is fixedly mounted on the slide bar, a first spring is sleeved on the slide bar, and two ends of the first spring are respectively fixedly connected to the first limit plate and the inner bottom surface of the vertical keel.

[0009] In order to increase the wind resistance of the composite corrugated plate, preferably, the elastic reinforcement rib includes a mounting sleeve fixedly installed in the valley, a push rod is slidably installed in the mounting sleeve, a second limiting plate is fixedly installed on the outer edge surface of the push rod located in the mounting sleeve, an embedded sleeve is fixedly installed at one end of the push rod close to the tie rod, and a support rod is rotatably installed between the other end of the push rod and the inner walls on both sides of the valley; wherein a second spring is sleeved on the push rod, and the two ends of the second spring are respectively fixedly connected to the second limiting plate and the inner side surface of the mounting sleeve.

[0010] In order to facilitate the alignment of the tie rod and the embedded sleeve, further, the embedded sleeve has a placement cavity inside, and the cross-sectional diameter of the opening end of the placement cavity is larger than the bottom diameter.

[0011] In order to increase the noise reduction performance of the enclosure, preferably, the composite corrugated plate includes a corrugated core layer, and a sound absorbing layer, a damping layer and a protective layer which are symmetrically arranged in sequence with the corrugated core layer as the center.

[0012] In order to achieve self-locking capability, further, an insertion pin is fixedly installed on one side of the composite corrugated plate, a groove portion is opened on the insertion pin, and an insertion groove is correspondingly opened on the other side of the composite corrugated plate, a double-layer cover is fixedly installed in the insertion groove, and a ball is movably installed in the double-layer cover, and when the insertion pin is inserted into the double-layer cover, the ball is embedded in the groove portion; wherein, the double-layer cover comprises an outer shell fixedly connected to the inner wall of the insertion groove, and an inner shell movably installed in the outer shell, the outer shell and the inner shell have the same shape, both have a first insertion hole, and the cross-section of the insertion end is smaller than the other end, a partition is fixedly installed in the inner shell, the partition has a second insertion hole, and through holes are equidistantly opened on the outer edge surface of the inner shell between the partition and the first insertion hole, the diameter of the through hole is smaller than the ball, and a third spring is fixedly connected between the partition and the inner bottom surface of the insertion groove.

[0013] In order to facilitate nighttime lighting and warning, preferably, an LED lighting lamp is installed on the waterproof cap, and a solar panel is installed on the sealing plate, and the solar panel is electrically connected to the LED lighting lamp.

[0014] In order to reduce dust during construction work within the enclosure, the base plate is further provided with a accommodating cavity and a serpentine groove, a hose is embedded in the serpentine groove, one end of the hose passes through the accommodating cavity and is connected to a pump body, the other end of the hose is coaxially installed in the sliding rod, a nozzle is fixedly installed on the vertical keel, and the nozzle is fixedly connected to the hose.

[0015] A method for installing a stable sound insulation enclosure for a construction project comprises the following steps:

[0016] Step 1: Position and lay out the lines to ensure uniform spacing;

[0017] Step 2: Install the enclosure with expansion bolts to ensure its verticality and stability;

[0018] Step 3: Check whether each joint is tight and has no gaps. If necessary, add sealing strips or other waterproof materials to prevent rainwater from penetrating.

[0019] Step 4: For special design parts with integrated lighting functions, carry out corresponding functional tests to ensure normal operation.

[0020] Compared with the prior art, the present invention provides a stable construction engineering sound insulation enclosure and an installation method thereof, which has the following beneficial effects:

[0021] 1. This stable construction engineering sound insulation enclosure, through the cooperation of the sliding rod attracted by the magnetic block, the tie rod, the elastic reinforcement rib, combined with the design of the inclined groove and the inclined part, enhances the rigidity and anti-deformation ability of the overall structure. At the same time, the magnetic block can also be used for the disassembly between the composite corrugated plates, so that in normal enclosure, the composite corrugated plates have self-locking ability to prevent accidental falling off;

[0022] 2. The stable soundproof enclosure for construction projects adds liquid medium into the accommodating cavity. The liquid flows along the hose in the serpentine groove and finally reaches the nozzle. When the liquid reaches the nozzle, it is sprayed out in the form of a spray. It can be used to spray cleaning liquid to reduce dust and keep the construction site clean. At the same time, water, as a fluid, has good damping properties. When sound waves are transmitted into the water, the friction between water molecules consumes the energy of the sound waves, thereby playing a certain role in sound insulation and effectively reducing structural sound transmission. BRIEF DESCRIPTION OF THE DRAWINGS

[0023] Figure 1 This is a schematic diagram of the overall structure of a stable sound insulation enclosure for building engineering proposed by the present invention;

[0024] Figure 2 A schematic diagram of the structure of a composite corrugated plate for a stable sound insulation enclosure for a building project proposed by the present invention;

[0025] Figure 3A schematic diagram of the internal structure of the bottom plate of a stable sound insulation enclosure for construction projects proposed by the present invention;

[0026] Figure 4 A schematic diagram of the structure of a composite corrugated plate for a stable sound insulation enclosure for a building project proposed by the present invention;

[0027] Figure 5 A schematic diagram of the internal structure of a vertical keel of a stable sound insulation enclosure for building engineering proposed by the present invention;

[0028] Figure 6 Schematic diagram of the elastic reinforcement structure of a stable sound insulation enclosure for building engineering proposed by the present invention

[0029] Figure 7 A schematic diagram of the internal structure of a waterproof cap of a stable soundproof enclosure for a construction project proposed by the present invention;

[0030] Figure 8 The present invention is a schematic diagram of the double-layer cover structure of a stable sound insulation enclosure for construction projects.

[0031] In the figure: 1, vertical keel; 101, threaded hole;

[0032] 2. Bottom plate; 201. Accommodation cavity; 202. Serpentine groove;

[0033] 3. Composite corrugated board; 301. Corrugated core layer; 302. Sound absorbing layer; 303. Damping layer; 304. Protective layer; 305. Insertion groove;

[0034] 4. Sealing plate; 5. Magnetic block;

[0035] 6. Sliding rod; 601. Metal part; 602. Inclined groove; 603. First limiting plate; 604. First spring;

[0036] 7. Tie rod; 701. Inclined part

[0037] 8. Elastic reinforcing rib; 801. Mounting sleeve; 802. Push rod; 803. Embedding sleeve; 804. Support rod; 805. Second limit plate; 806. Second spring; 807. Placement cavity

[0038] 9. Waterproof cap;

[0039] 10. Insert pin; 1001. Groove portion;

[0040] 11. Double-layer cover; 1101. Outer shell; 1102. Inner shell; 1103. First insertion hole; 1104. Partition plate; 1105. Second insertion hole; 1106. Through hole; 1107. Third spring

[0041] 12. Ball bearing; 13. LED lighting; 14. Solar panel; 15. Hose; 16. Nozzle. DETAILED DESCRIPTION

[0042] The technical solutions in the embodiments of the present invention will be described clearly and completely below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0043] Example:

[0044] Reference Figure 1-8 A stable sound insulation enclosure for construction engineering comprises vertical keels 1 arranged at intervals, a threaded hole 101 is provided at the bottom of the vertical keel 1, which is connected to the original ground through expansion bolts to ensure the stability of the foundation of the entire enclosure, a bottom plate 2, a composite corrugated plate 3 and a sealing plate 4 are inserted in sequence between adjacent vertical keels 1, and the bottom plate 2, the composite corrugated plate 3 and the sealing plate 4 are interlocked with each other, and also comprises: a sliding rod 6 slidably installed in the vertical keel 1, a tie rod 7 is slidably installed in the sliding rod 6, an elastic reinforcement rib 8 is installed on the outside of the composite corrugated plate 3, and the tie rod 7 abuts against the elastic reinforcement rib 8; a waterproof cap 9, which is buckled and installed on the vertical keel 1, and a magnetic block 5 is installed inside, wherein the end of the sliding rod 6 close to the waterproof cap 9 has a metal part 601 adsorbed by the magnetic block 5, and when the sliding rod 6 rises, the tie rod 7 slides horizontally in the vertical keel 1 and is embedded in the elastic reinforcement rib 8.

[0045] The stable soundproof enclosure for construction engineering first marks the position of the vertical keel 1 at the construction site according to the design drawings, and uses expansion bolts or chemical anchors to firmly fix the vertical keel 1 to the ground through the threaded holes 101 to ensure that the vertical keel 1 is vertical and stable. Next, the base plate 2 is inserted between adjacent vertical keels 1 to provide a flat foundation for subsequent layers. Then, the composite corrugated plate 3 is inserted onto the base plate 2. Finally, the sealing plate 4 is installed to cover the entire structure and fit tightly with other components. A waterproof cap 9 is installed on the top of the vertical keel 1 to prevent rainwater from entering the interior and protect the internal structure from corrosion and damage. At the same time, its metal part 601 is adsorbed by the magnetic block 5 in the waterproof cap 9 to keep it in a high position, so that the cooperation between the slide rod 6, the tie rod 7 and the elastic reinforcement rib 8 increases the structural rigidity and optimizes the sound absorption effect.

[0046] Since the enclosure may shake unexpectedly due to external factors, such as wind, after installation, preferably, referring to the figure, an inclined groove 602 is opened in the slide rod 6, and one end of the tie rod 7 located in the vertical keel 1 is an inclined portion 701, and the inclined portion 701 is adapted to the inclined groove 602.

[0047] Through the arrangement of the above structure, an inclined groove 602 with a specific angle is opened inside the slide rod 6, and one end of the tie rod 7 is designed as an inclined portion 701 matching it. When the slide rod 6 moves up and down, the inclined portion 701 slides along the inclined groove 602, converting the original up and down movement of the slide rod 6 into horizontal movement of the tie rod 7, and then embedding into the elastic reinforcement rib 8 inside the composite corrugated plate 3, thereby increasing the rigidity of the composite corrugated plate 3, and at the same time strengthening the connection between the composite corrugated plate 3 and the vertical keel 1, reducing shaking, so as to achieve the best sound absorption effect and structural stability.

[0048] Furthermore, a first limiting plate 603 is fixedly mounted on the slide bar 6 , a first spring 604 is sleeved on the slide bar 6 , and two ends of the first spring 604 are fixedly connected to the first limiting plate 603 and the inner bottom surface of the vertical keel 1 , respectively.

[0049] When the slide bar 6 is subjected to external force, the first spring 604 is stretched; once the external force disappears, the first spring 604 will provide a reverse reset force to help the slide bar 6 return to its initial position. At the same time, the first spring 604 also has a buffering effect, which can absorb vibrations from the outside, reduce the noise generated by vibration inside the structure, and further improve the sound insulation effect.

[0050] Preferably, the elastic reinforcement rib 8 includes a mounting sleeve 801 fixedly installed in the valley, a push rod 802 is slidably installed in the mounting sleeve 801, a second limit plate 805 is fixedly installed on the outer edge surface of the push rod 802 located in the mounting sleeve 801, an embedded sleeve 803 is fixedly installed at one end of the push rod 802 close to the tie rod 7, and a support rod 804 is rotatably installed between the other end of the push rod 802 and the inner walls on both sides of the valley; wherein, a second spring 806 is sleeved on the push rod 802, and the two ends of the second spring 806 are respectively fixedly connected to the second limit plate 805 and the inner side surface of the mounting sleeve 801.

[0051] The insert sleeve 803 has a placement cavity 807 inside, and the cross-sectional diameter of the opening end of the placement cavity 807 is larger than the bottom diameter.

[0052] Through the arrangement of the above structure, when the tie rod 7 moves horizontally to abut against the push rod 802, it is inserted into the embedded sleeve 803 and continues to push the push rod 802 to slide in the installation sleeve 801. The support rod 804 will automatically adjust the angle when the push rod 802 moves to adapt to the new position, thereby providing the best support for the composite corrugated plate 3, helping to maintain the overall shape of the composite corrugated plate 3, and reducing deformation caused by external factors such as wind. The second spring 806 not only provides a reset force, but also plays a buffering role during the movement of the push rod 802, absorbing part of the vibration energy and reducing the noise generated by vibration inside the structure. During the horizontal movement of the tie rod 7, since there is a placement cavity 807 inside the embedded sleeve 803, the cross-sectional diameter of the open end of the placement cavity 807 is larger than the bottom diameter, making it easier for the tie rod 7 to enter and be firmly embedded therein, which not only improves the connection strength between the two, but also ensures the reliability of the connection.

[0053] Better, refer to Figure 4 The composite corrugated plate 3 includes a corrugated core layer 301, and a sound absorbing layer 302, a damping layer 303 and a protective layer 304 which are symmetrically arranged in sequence with the corrugated core layer 301 as the center.

[0054] The corrugated core layer 301 is the core part of the composite corrugated board 3. Its unique corrugated shape increases the surface area of ​​the board, which helps to break the straight-line propagation path of sound waves, thereby improving the sound absorption efficiency. In addition, the corrugated structure also enhances the overall rigidity and deformation resistance of the board. The sound-absorbing layer 302 is located on both sides of the corrugated core layer 301 and is mainly responsible for absorbing medium and high-frequency noise. This layer converts sound energy into heat energy through its internal microporous structure or fiber structure, thereby reducing the reflection and penetration of noise. The material of the sound-absorbing layer 302 includes but is not limited to high-density glass fiber, mineral fiber wool, etc. The damping layer 303 is mainly used to reduce vibration propagation. When sound waves cause When the plate vibrates, the damping layer 303 can consume part of the energy and prevent the vibration from being transmitted to other structures, thereby reducing the noise level. The damping layer 303 is usually made of materials with good damping properties such as rubber or soft plastic. These materials can generate greater internal friction when subjected to force and effectively dissipate energy. The protective layer 304 is located on the outermost side, providing physical protection for the entire composite corrugated plate 3 and reflecting part of the sound waves. This layer not only improves the weather resistance of the plate, but also extends its service life and enhances its overall aesthetics. The protective layer 304 can be made of galvanized steel plate, aluminum plate or high-strength polymer plate, which has good corrosion resistance and mechanical strength.

[0055] When sound waves contact the composite corrugated board 3, they will first be absorbed by the sound-absorbing layer 302. The microporous structure or fiber structure inside the sound-absorbing layer 302 will convert the sound energy into heat energy, thereby reducing the reflection and penetration of noise. If some sound waves are not completely absorbed and cause the board to vibrate, the damping layer 303 will consume this part of the vibration energy, reduce the transmission of vibration to other structures, and further reduce the noise level. The unique design of the corrugated core layer 301 increases the surface area of ​​the board, so that the sound waves need to pass through more paths during the propagation process, thereby consuming more energy. In addition, the corrugated structure also enhances the overall rigidity and deformation resistance of the board, ensuring that it remains stable during long-term use.

[0056] Furthermore, an insertion pin 10 is fixedly installed on one side of the composite corrugated plate 3, and a groove portion 1001 is opened on the insertion pin 10. An insertion groove 305 is correspondingly opened on the other side of the composite corrugated plate 3. A double-layer cover 11 is fixedly installed in the insertion groove 305, and a ball 12 is movably installed in the double-layer cover 11. When the insertion pin 10 is inserted into the double-layer cover 11, the ball 12 is embedded in the groove portion 1001; wherein the double-layer cover 11 includes an outer shell 1101 fixedly connected to the inner wall of the insertion groove 305, and an inner shell 110 movably installed in the outer shell 1101. 2. The outer shell 1101 and the inner shell 1102 have the same shape and both have a first insertion hole 1103, and the cross-section of the insertion end is smaller than the other end. A partition 1104 is fixedly installed in the inner shell 1102, and the partition 1104 has a second insertion hole 1105. Through holes 1106 are equidistantly opened on the outer edge surface of the inner shell 1102 between the partition 1104 and the first insertion hole 1103. The diameter of the through hole 1106 is smaller than the ball 12. A third spring 1107 is fixedly connected between the partition 1104 and the bottom surface of the insertion groove 305.

[0057] Through the above-mentioned structure, when two composite corrugated plates 3 need to be connected, the insertion pin 10 on one plate is aligned with the insertion groove 305 on the other plate, and then slowly pushed in. During the insertion process, the insertion pin 10 first contacts the ball 12 in the double-layer cover 11. Due to the tapered design of the insertion pin 10, the ball 12 will be pushed to both sides and enter the through hole 1106. When the insertion pin 10 continues to advance until the groove portion 1001 reaches the position of the ball 12, the reset force provided by the third spring 1107 will make the ball 12 embedded in the groove portion 1001, forming a tight mechanical locking state, which not only ensures the firm connection between the insertion pin 10 and the double-layer cover 11, but also provides a self-locking function to prevent accidental falling off. When disassembly is required, the magnetic block 5 originally installed in the waterproof cap 9 is taken out and adsorbed on the double-layer cover 11, so that the inner shell 1102 inside is adsorbed by magnetic force and displaced. At this time, the ball 12 will be temporarily moved away under the action of the third spring 1107, allowing the insertion pin 10 to withdraw smoothly.

[0058] It should be noted that the bottom plate 2 is also provided with an insertion groove 305 and a double-layer cover 11 that are matched with the composite corrugated plate 3 .

[0059] Reference Figure 1 and Figure 7 An LED lighting lamp 13 is installed on the waterproof cap 9, and a solar panel 14 is installed on the sealing plate 4. The solar panel 14 is electrically connected to the LED lighting lamp 13 to realize the function of collecting energy through the solar panel 14 during the day and automatically lighting the LED lighting lamp 13 at night.

[0060] One of the application scenarios of the LED lighting lamp 13 when in use:

[0061] 1. Install solar panels 14:

[0062] The solar panel 14 is fixedly mounted on the cover plate 4, ensuring that it faces the direction with the most sunlight, and the optimal tilt angle is adjusted according to the geographical location.

[0063] 2. Install LED lighting 13:

[0064] An LED lighting lamp 13 is installed on the waterproof cap 9 and connected to a light sensor and a control module to ensure that it can be automatically switched on and off according to the ambient light.

[0065] 3. Connect energy storage and control systems:

[0066] Connecting the solar panel 14 to the battery via a charge controller ensures efficient storage and management of electrical energy;

[0067] The battery is electrically connected to the LED lighting lamp 13 to ensure the stability of power supply at night.

[0068] 4. Testing and debugging:

[0069] Test the entire system to ensure that the connections between components are normal and that all functions (such as automatic switches, energy storage, etc.) are working properly;

[0070] Adjust parameter settings based on actual test results to ensure optimal system performance.

[0071] Reference Figure 3 The bottom plate 2 has a receiving cavity 201 and a serpentine groove 202, a hose 15 is embedded in the serpentine groove 202, one end of the hose 15 passes through the receiving cavity 201 and is connected to the pump body, the other end of the hose 15 is coaxially installed in the slide rod 6, and a nozzle 16 is fixedly installed on the vertical keel 1, and the nozzle 16 is fixedly connected to the hose 15.

[0072] Through the arrangement of the above structure, after the pump body is started, the liquid is sucked from the accommodating chamber 201 and transported through the hose 15. The liquid flows along the hose 15 in the serpentine groove 202 and finally reaches the nozzle 16. When the liquid reaches the nozzle 16, the liquid is sprayed out in the form of a spray, which can be used to spray cleaning liquid to reduce dust and keep the construction site clean. At the same time, water, as a fluid, has good damping properties. When sound waves are transmitted into water, the friction between water molecules consumes the energy of the sound waves, thereby playing a certain role in sound insulation, which can effectively reduce structural sound transmission.

[0073] It should be noted that the accommodating chamber 201 has an opening for adding water and can be closed by a valve.

[0074] A method for installing a stable sound insulation enclosure for a construction project comprises the following steps:

[0075] Step 1: Preparation before construction

[0076] Design confirmation: Confirm the design drawings and technical parameters of the sound insulation enclosure according to the specific conditions and needs of the construction site;

[0077] Material preparation: ensure all required components are complete and conduct quality checks;

[0078] Step 2: Basic processing and marking

[0079] Site cleaning: Clean the installation area and remove any obstacles that may affect the installation;

[0080] Ground leveling: Ensure that the ground in the installation area is level and perform leveling if necessary;

[0081] Position marking: According to the design drawings, accurately mark the position of the vertical keel 1 on the ground to ensure that the spacing is uniform and perpendicular to the ground;

[0082] Step 3: Installation of vertical keel 1

[0083] Fixing the vertical keel 1: Use expansion bolts or chemical bolts to firmly fix the vertical keel 1 on the ground through the threaded holes 101 at the bottom to ensure its verticality and stability;

[0084] Horizontal calibration: Use a level to calibrate the verticality and flatness of the vertical keel 1 to ensure that each vertical keel 1 is in the correct position;

[0085] Step 4: Installation of base plate 2

[0086] Laying the bottom plate 2: inserting the bottom plate 2 between adjacent vertical keels 1 provides a flat foundation for subsequent layers;

[0087] Sealing: Check whether each joint is tight and has no gaps. If necessary, add sealing strips or other waterproof materials to prevent rainwater from penetrating.

[0088] Step 5: Installation of composite corrugated sheet 3

[0089] Inserting the composite corrugated plate 3: inserting the prefabricated composite corrugated plate 3 piece by piece onto the bottom plate 2 from one side until the entire space is filled;

[0090] Align the insertion pin 10 on one board with the insertion groove 305 on the other board, and then push it in slowly. During the insertion process, the insertion pin 10 first contacts the ball 12 in the double-layer cover 11. Due to the conical design of the insertion pin 10, the ball 12 will be pushed to both sides and enter the through hole 1106. When the insertion pin 10 continues to advance until the groove portion 1001 reaches the position of the ball 12, the reset force provided by the third spring 1107 will cause the ball 12 to be embedded in the groove portion 1001, forming a tight mechanical locking state, which not only ensures the firm connection between the insertion pin 10 and the double-layer cover 11, but also provides a self-locking function to prevent accidental falling off. When disassembly is required, the magnetic block 5 originally installed in the waterproof cap 9 is taken out and adsorbed on the double-layer cover 11, so that the inner shell 1102 inside is adsorbed by magnetic force and displaced. At this time, the ball 12 will be temporarily moved away under the action of the third spring 1107, allowing the insertion pin 10 to withdraw smoothly;

[0091] Stiffness adjustment:

[0092] The sliding rod 6 slidably installed in the vertical keel 1 and the tie rod 7 rotatably installed thereon are embedded in the elastic reinforcing rib 8 inside the composite corrugated plate 3, thereby increasing the rigidity of the composite corrugated plate 3 and strengthening the connection between the composite corrugated plate 3 and the vertical keel 1 to reduce shaking;

[0093] Step 6: Installation of sealing plate 4

[0094] Install the sealing plate 4: Install the sealing plate 4 on the composite corrugated plate 3, and also tightly connect it with other components through the connecting pieces to form a sealed overall structure;

[0095] Surface treatment: Check the flatness and sealing of the sealing plate 4 and make adjustments if necessary;

[0096] Step 7: Installation of waterproof cap 9

[0097] Installing the waterproof cap 9: Installing the waterproof cap 9 on the top of the vertical keel 1 to prevent rainwater from entering the interior of the vertical keel 1 and protect the internal structure from corrosion and damage;

[0098] Adsorption of the magnetic block 5: ensure that the end of the slide bar 6 close to the waterproof cap 9 has a metal part 601 adsorbed by the magnetic block 5, and when the slide bar 6 rises, it remains in a high position, thereby promoting the horizontal movement of the tie rod 7;

[0099] Step 8: Installation of LED lighting 13 and solar panels 14

[0100] Install the solar panel 14: Fix the solar panel 14 on the cover plate 4, make sure it faces the direction with the most sunshine, and adjust the optimal tilt angle according to the geographical location;

[0101] Installing LED lighting 13: Installing LED lighting 13 on the waterproof cap 9, and connecting the light sensor and the control module to ensure that it can automatically switch on and off according to the ambient light;

[0102] Electrical connection: connect the solar panel 14 to the battery through the charge controller, and electrically connect the battery to the LED lighting lamp 13 to ensure the stability of power supply at night;

[0103] Step 9: Installation of hose 15 system and nozzle 16

[0104] Installation of the hose 15: insert the hose 15 into the serpentine groove 202, and ensure that one end of the hose 15 is connected to the pump body, and the other end is coaxially installed in the slide bar 6, and finally connected to the outside world through the nozzle 16 on the vertical keel 1;

[0105] Installation of the nozzle 16: The nozzle 16 is fixedly installed on the vertical keel 1 and connected to the hose 15 to ensure good sealing to prevent leakage;

[0106] Step 10: Final inspection and debugging

[0107] Overall inspection: Conduct a comprehensive inspection of the structural stability and sealing of the entire sound insulation enclosure to ensure there are no loose parts or obvious gaps;

[0108] Functional testing: For specially designed parts that integrate functions such as lighting, solar photovoltaic panels, etc., corresponding functional testing is carried out to ensure normal operation;

[0109] Cleaning and Maintenance: Clean up the construction site and ensure all tools and excess materials are properly disposed of.

[0110] The above description is only a preferred specific implementation manner of the present invention, but the protection scope of the present invention is not limited thereto. Any technician familiar with the technical field can make equivalent replacements or changes according to the technical scheme and inventive concept of the present invention within the technical scope disclosed by the present invention, which should be covered by the protection scope of the present invention.

Claims

1. A stable soundproof enclosure for construction engineering, comprising vertical keels (1) arranged at intervals, wherein the bottom of the vertical keels (1) is provided with threaded holes (101) for connecting with the original ground, characterized in that: A bottom plate (2), a composite corrugated plate (3) and a sealing plate (4) are sequentially inserted between adjacent vertical keels (1), and the bottom plate (2), the composite corrugated plate (3) and the sealing plate (4) are interlocked with each other, and further comprising: A sliding rod (6) is slidably mounted in the vertical keel (1), a tie rod (7) is slidably mounted in the sliding rod (6), an elastic reinforcing rib (8) is mounted at the tail of the composite corrugated plate (3), and the tie rod (7) abuts against the elastic reinforcing rib (8); The waterproof cap (9) is snap-fitted and mounted on the vertical keel (1), and a magnetic block (5) is installed inside. The end of the slide bar (6) close to the waterproof cap (9) has a metal part (601) adsorbed by the magnetic block (5), and when the slide bar (6) rises, the tie rod (7) slides horizontally in the vertical keel (1) and is embedded in the elastic reinforcing rib (8).

2. A stable soundproof enclosure for construction engineering according to claim 1, characterized in that: The sliding rod (6) is provided with an inclined groove (602), and one end of the tie rod (7) located in the vertical keel (1) is an inclined portion (701), and the inclined portion (701) is adapted to the inclined groove (602).

3. The stable construction engineering sound insulation enclosure according to claim 1 is characterized in that: A first limiting plate (603) is fixedly mounted on the sliding rod (6), and a first spring (604) is sleeved on the sliding rod (6). Two ends of the first spring (604) are respectively fixedly connected to the first limiting plate (603) and the inner bottom surface of the vertical keel (1).

4. A stable soundproof enclosure for construction engineering according to claim 1, characterized in that: The elastic reinforcing rib (8) comprises a mounting sleeve (801) fixedly mounted in the valley portion, a push rod (802) being slidably mounted in the mounting sleeve (801), a second limit plate (805) being fixedly mounted on the outer edge surface of the push rod (802) located in the mounting sleeve (801), an embedded sleeve (803) being fixedly mounted at one end of the push rod (802) close to the tie rod (7), and a support rod (804) being rotatably mounted between the other end of the push rod (802) and the inner walls on both sides of the valley portion; Wherein, a second spring (806) is sleeved on the push rod (802), and two ends of the second spring (806) are respectively fixedly connected to the second limiting plate (805) and the inner side surface of the mounting sleeve (801).

5. A stable construction engineering sound insulation enclosure according to claim 4, characterized in that: The insert sleeve (803) has a placement cavity (807) inside, and the cross-sectional diameter of the opening end of the placement cavity (807) is larger than the bottom diameter.

6. A stable soundproof enclosure for construction engineering according to claim 1, characterized in that: The composite corrugated plate (3) comprises a corrugated core layer (301), and With the corrugated core layer (301) as the center, a sound absorbing layer (302), a damping layer (303) and a protective layer (304) are symmetrically arranged in sequence.

7. A stable construction engineering sound insulation enclosure according to claim 6, characterized in that: An insertion pin (10) is fixedly installed on one side of the composite corrugated plate (3), and a groove portion (1001) is provided on the insertion pin (10); an insertion groove (305) is correspondingly provided on the other side of the composite corrugated plate (3); a double-layer cover (11) is fixedly installed in the insertion groove (305), and a ball (12) is movably installed in the double-layer cover (11); when the insertion pin (10) is inserted into the double-layer cover (11), the ball (12) is embedded in the groove portion (1001); The double-layer cover (11) comprises an outer shell (1101) fixedly connected to the inner wall of the insertion groove (305), and An inner shell (1102) is movably mounted in the outer shell (1101), the outer shell (1101) and the inner shell (1102) are of the same shape, both have a first insertion hole (1103), and the cross section of the insertion end is smaller than that of the other end. A partition (1104) is fixedly installed in the inner shell (1102), and the partition (1104) has a second insertion hole (1105). Through holes (1106) are equidistantly provided on the outer edge surface of the inner shell (1102) between the partition (1104) and the first insertion hole (1103), and the diameter of the through holes (1106) is smaller than that of the ball (12). A third spring (1107) is fixedly connected between the partition (1104) and the bottom surface of the insertion groove (305).

8. A stable soundproof enclosure for construction engineering according to claim 1, characterized in that: An LED lighting lamp (13) is installed on the waterproof cap (9), and a solar panel (14) is installed on the sealing plate (4), and the solar panel (14) is electrically connected to the LED lighting lamp (13).

9. A stable soundproof enclosure for construction engineering according to claim 8, characterized in that: The bottom plate (2) has a receiving cavity (201) and a serpentine groove (202), a hose (15) is embedded in the serpentine groove (202), one end of the hose (15) passes through the receiving cavity (201) and is connected to a pump body, the other end of the hose (15) is coaxially mounted in the sliding rod (6), a nozzle (16) is fixedly mounted on the vertical keel (1), and the nozzle (16) is fixedly connected to the hose (15).

10. A method for installing a stable soundproof enclosure for construction engineering, according to the stable soundproof enclosure for construction engineering according to any one of claims 1 to 9, characterized in that: The steps include: Step 1: Position and lay out the lines to ensure uniform spacing; Step 2: Install the enclosure with expansion bolts to ensure its verticality and stability; Step 3: Check whether each joint is tight and has no gaps. If necessary, add sealing strips or other waterproof materials to prevent rainwater from penetrating. Step 4: For special design parts with integrated lighting functions, carry out corresponding functional tests to ensure normal operation.