Noise reduction construction site house building structure

Through the multi-layer structure design and combined noise reduction structure, the problem of lack of insulation in construction site building structures during noise reduction is solved, good noise reduction and insulation effects are achieved, and living comfort is improved.

CN223214753UActive Publication Date: 2025-08-12WENZHOU SHENGUANG CONSTRUCT ENG CO LTD
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Patent Information

Application Number
CN202421679786.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-16
Publication Date
2025-08-12
Estimated Expiration
2034-07-16

AI Technical Summary

Technical Problem

The existing construction site building structures lack thermal insulation performance while reducing noise, resulting in insufficient living comfort.

Method used

It adopts a multi-layer structure design, including residential silo, functional silo and protective silo. It uses a combined noise reduction structure of foam particles and friction electrostatic plates, combined with blower structure and shock-absorbing connection structure, and realizes noise reduction through the movement of foam particles and electrostatic attraction, and uses airflow circulation to maintain the comfortable temperature of the residential silo.

Benefits of technology

It achieves good noise reduction and thermal insulation effects, while maintaining the comfort of the living bin. Through the design and combination of the noise reduction structure of the multi-layer structure, it effectively isolates noise and heat loss and improves the living experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The noise reduction construction site house building structure comprises a living bin, the outer side of the living bin is sleeved with a functional bin, damping connecting structures are arranged in the functional bin at intervals, one ends of the damping connecting structures are fixed to the inner side wall of the functional bin, and the other ends of the damping connecting structures are elastically connected with the outer side wall of the living bin; the function bin is provided with a noise reduction structure, the noise reduction structure comprises foam particles contained between the living bin and the function bin and a friction electrostatic plate slidably connected to the outer side wall of the function bin, and the friction electrostatic plate rubs with the surface of the function bin to generate static electricity and attract the foam particles; an air blowing structure is arranged between the functional bin and the living bin in a penetrating manner; the function bin is sleeved with a protection bin at intervals, and the protection bin is provided with a door structure and a window structure. The construction site house building structure has the effect that the construction site house building structure has the noise reduction function and meanwhile has the good heat preservation property.
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Description

Technical Field

[0001] The present application relates to the field of building construction technology, and in particular to a noise reduction construction site building structure. Background Art

[0002] A construction site house is a type of house built on a construction site for workers to rest or temporarily work. Generally, a construction site house uses light steel as the frame and steel plates as the enclosing material.

[0003] The existing Chinese patent with announcement number CN110080562A discloses a building structure for noise-reducing construction sites, which relates to the field of building technology and includes a frame and a body. The body is assembled from multiple wall panels, and the wall panels are spliced from multiple sound insulation panels. Mounting grooves are provided at the upper and lower ends of the frame, and a receiving cavity is provided at one end of the sound insulation panel. A plug-in plate is slidably provided in the receiving cavity. One end of the sound insulation panel is plugged into the mounting groove at the lower end of the frame, and the other end of the sound insulation panel is plugged into the mounting groove at the upper end of the frame through the plug-in plate. A locking member is provided in the receiving cavity. The sound insulation panel includes a base layer, a sound insulation layer and a decorative layer. The base layer is provided on the side away from the room and connected to the frame, and a sound insulation cavity is formed between the base layer and the decorative layer.

[0004] Although the above structure has enhanced sound insulation, it does not have the thermal insulation properties that have a great impact on the living experience. If the thermal insulation structure is further added inside the house, it will inevitably occupy the internal space or weaken the wall sound insulation. Regarding the relevant technologies mentioned above, the applicant believes that the construction site building structure should also reasonably arrange thermal insulation properties while reducing noise to improve living comfort. Utility Model Content

[0005] In order to ensure that the construction site building structure has good thermal insulation properties while having noise reduction function, the present application provides a noise reduction construction site building structure.

[0006] The noise reduction construction site building structure provided in this application adopts the following technical solutions:

[0007] The noise reduction construction site building structure includes a living warehouse, a functional warehouse is provided on the outer side of the living warehouse, a shock-absorbing connection structure is provided in the inner interval of the functional warehouse, one end of the shock-absorbing connection structure is fixed to the inner wall of the functional warehouse, and the other end is elastically connected to the outer wall of the living warehouse; a noise reduction structure is provided on the functional warehouse, the noise reduction structure includes foam particles accommodated between the living warehouse and the functional warehouse and a friction electrostatic plate slidably connected to the outer wall of the functional warehouse, the friction electrostatic plate rubs with the surface of the functional warehouse to generate static electricity and attract foam particles; an air blowing structure is provided between the functional warehouse and the living warehouse; a protective warehouse is provided in the outer interval of the functional warehouse, and a door structure and a window structure are provided on the protective warehouse.

[0008] By adopting the above technical solution, the entire structure is arranged in multiple layers with gaps between each layer, which can effectively prevent heat loss. At the same time, by arranging a noise reduction structure on the functional compartment, noise can be well isolated. At the same time, the noise reduction structure has an adjustment function, and the foam particles therein can automatically move to the side with louder noise, thereby better reducing noise. The setting of the door structure and window structure ensures good sound insulation and heat preservation functions while ensuring ease of use.

[0009] Preferably, the shock-absorbing connection structure includes a fixed frame, a fixed column and a cable, the fixed frames are fixed at intervals on the inner walls of the functional warehouse; the fixed columns are fixed at intervals on the outer walls of the living warehouse and are arranged corresponding to the fixed frames, and the fixed columns are passed through the fixed frames; the cables are fixed to the side walls of the fixed columns, and the cables extend and are fixed to the inner walls of the fixed frames.

[0010] By adopting the above technical solution, the cables can have good weighing performance and good shock absorption at the same time. When vibration is transmitted to the cables, hard links such as the cable intersection pipe structure can quickly absorb it to prevent the spread of noise and vibration. At the same time, the cables reduce the connection area between the living compartment and the functional compartment to effectively keep warm.

[0011] Preferably, the blowing structure includes an air inlet pipe, an air outlet pipe and a blower, the air inlet pipe is arranged between the living compartment and the functional compartment; the air outlet pipe is arranged between the living compartment and the functional compartment, and the air inlet pipe and the air outlet pipe are staggered in direction; the blower is respectively connected to and fixed with the air inlet pipe and the air outlet pipe; the air inlet pipe and the air outlet pipe are both provided with a filter at one end relative to the blower.

[0012] By adopting the above technical solution, the blowing structure can not only make the foam particles move in a regular cycle, but also because the air flow is constantly circulating, the heat of the blower can heat the living cabin to keep the living cabin comfortable.

[0013] In summary, this application includes at least one of the following beneficial technical effects:

[0014] 1. The entire structure is multi-layered with gaps between each layer, which can effectively prevent heat loss. At the same time, the noise reduction structure set on the functional compartment can effectively isolate noise. At the same time, the noise reduction structure has an adjustment function, and the foam particles in it can automatically move to the side with louder noise, thereby better reducing noise. The door structure and window structure are set to ensure good sound insulation and heat preservation while ensuring ease of use;

[0015] 2. The cables have excellent weighing performance and can also effectively absorb vibrations. When vibrations are transmitted to the cables, the hard links such as the cable intersection pipe structure can quickly absorb them, preventing the spread of noise and vibrations. At the same time, the cables reduce the connection area between the living compartment and the functional compartment, which can effectively keep the heat in.

[0016] 3. The blowing structure can not only make the foam particles move in a regular cycle, but also because the air flow is constantly circulating, the heat of the blower can heat the living cabin to keep the living cabin comfortable. BRIEF DESCRIPTION OF THE DRAWINGS

[0017] Figure 1 is a half-section view of an embodiment of the present application;

[0018] Figure 2 This is a partial enlarged view of the outer side of the functional compartment shown in the embodiment of the present application;

[0019] Figure 3 This is a partial enlarged view showing the outside of the living cabin in the embodiment of the present application;

[0020] Figure 4 yes Figure 1 An enlarged view of part A;

[0021] Figure 5 yes Figure 1 Magnified view of part B.

[0022] Explanation of the accompanying symbols: 1. Living compartment; 2. Functional compartment; 3. Shock-absorbing connection structure; 31. Fixed frame; 32. Fixed column; 33. Cable; 4. Noise reduction structure; 41. Foam particles; 42. Friction electrostatic plate; 43. Reed; 5. Blowing structure; 51. Air inlet pipe; 52. Air outlet pipe; 53. Blower; 6. Protection compartment; 7. Door structure; 71. Door panel; 72. Elastic sealing ring; 8. Window structure; 81. Inner window; 82. Outer window; 83. Isolation bushing; 9. Fixed block;. DETAILED DESCRIPTION

[0023] The present application is further described in detail below with reference to the accompanying drawings.

[0024] The embodiment of the present application discloses a noise reduction construction site building structure, referring to Figure 1 、 2 , including a protection compartment 6 for bearing weight, with fixed blocks 9 fixed at intervals on the inner wall of the protection compartment 6, and a functional compartment 2 fixed to the fixed blocks 9 is contained in the protection compartment 6, and the functional compartment 2 is elastically connected to the living compartment 1 through a shock-absorbing connection structure 3.

[0025] Reference Figure 1 、 3 The shock-absorbing connection structure 3 includes a fixed frame 31, a fixed column 32 and a cable 33. The fixed frames 31 are fixed at intervals on the inner wall of the functional warehouse 2; the fixed columns 32 are fixed at intervals on the outer wall of the living warehouse 1 and are arranged corresponding to the fixed frames 31, and the fixed columns 32 are passed through the fixed frames 31; the cables 33 are fixed on the side walls of the fixed columns 32, and the cables 33 extend and are fixed to the inner walls of the fixed frames 31.

[0026] Reference Figure 1 、 4 The living compartment 1 is connected to the outside of the protection compartment 6 through the door structure 7 and the window structure 8. The door structure 7 includes a door panel 71 and an elastic sealing ring 72. The door panel 71 is rotatably connected to the protection compartment 6, and the door panel 71 can be passed through the protection compartment 6, the functional compartment 2 and the living compartment 1; the elastic sealing ring 72 is sleeved on the corresponding door panel 71 of the living compartment 1, the door panel 71 can be passed through the elastic sealing ring 72, and the elastic sealing ring 72 extends and abuts against the side wall of the functional compartment 2.

[0027] Reference Figure 1 、 5 The window structure 8 includes an inner window 81, an outer window 82 and an isolation sleeve 83. The inner window 81 can be rotated and passed through the inner side of the living warehouse 1; the outer window 82 is rotatably connected to the protection warehouse 6, and the outer window 82 can be passed through the protection warehouse 6 and the functional warehouse 2; the isolation sleeve 83 is arranged in a ring corresponding to the inner window 81, and one side of the isolation sleeve 83 is fixed to the outer wall of the living warehouse 1, and the other side extends and abuts against the inner wall of the functional warehouse 2.

[0028] Reference Figure 2 、 5 A noise reduction structure 4 is provided on the functional warehouse 2, and the noise reduction structure 4 includes foam particles 41, a friction electrostatic plate 42 and a reed 43. The foam particles 41 are placed between the living warehouse 1 and the functional warehouse 2; the friction electrostatic plate 42 is slidably connected to the outer wall of the functional warehouse 2, and the fixed block 9 and the friction electrostatic plate 42 are staggered; the reeds 43 are respectively arranged corresponding to the friction electrostatic plates 42, and one side of the reed 43 is fixed to the protective warehouse 6, and the other side is fixed to the side wall of the friction electrostatic plate 42; the friction electrostatic plate 42 can be made of fur, and the functional warehouse 2 is made of rubber. While having good thermal insulation and noise reduction performance, the friction electrostatic plate 42 and the surface of the functional warehouse 2 rub to generate static electricity and attract light and small foam particles 41; a blowing structure 5 for driving the transfer of foam particles 41 is provided between the functional warehouse 2 and the living warehouse 1.

[0029] Reference Figure 5 The blowing structure 5 includes an air inlet pipe 51, an air outlet pipe 52 and a blower 53. The air inlet pipe 51 is arranged between the living compartment 1 and the functional compartment 2; the air outlet pipe 52 is arranged between the living compartment 1 and the functional compartment 2, and the air inlet pipe 51 and the air outlet pipe 52 are staggered in direction; the blower 53 is respectively connected to and fixed with the air inlet pipe 51 and the air outlet pipe 52; the air inlet pipe 51 and the air outlet pipe 52 are both provided with a filter at one end relative to the blower 53 to prevent the foam particles 41 from being sucked into the blower 53.

[0030] The working process of this application is: when the sound is transmitted to the protection chamber 6, the protection chamber 6 is affected by the sound waves and vibrates, and the vibration is transmitted to the friction electrostatic plate 42 through the reed 43. The friction electrostatic plate 42 vibrates and rubs with the functional chamber 2 to generate static electricity. At the same time, the blower 53 blows air to the foam particles 41. The foam particles 41 are attracted by the static electricity while being transferred. The stronger the vibration, the greater the amount of static electricity and the greater the ability to attract the foam particles 41. The foam particles 41 are more concentrated and the noise reduction effect is better.

[0031] At the same time, in order to further improve the thermal insulation performance, the living chamber 1, the functional chamber 2 and the protective chamber 6 are all in point contact, and gaps are left between them, thereby improving the thermal insulation performance; and the circulation of the blower 53 also utilizes the air between the living chamber 1 and the functional chamber 2, and the heat generated by the operation of the blower 53 is transferred to the living chamber 1.

[0032] The sealing ring strip not only ensures the sealing of the functional compartment 2, but also facilitates the opening, closing and sealing of the door panel 71, thereby further improving the sound insulation and heat preservation performance.

[0033] The isolation bushing 83 not only retains the window, but also improves the sealing of the functional compartment 2, so that the inner window 81 and the outer window 82 can be opened and closed while being movably connected.

[0034] The above are all preferred embodiments of the present application, and are not intended to limit the scope of protection of the present application. Therefore, any equivalent changes made based on the structure, shape, and principle of the present application should be included in the scope of protection of the present application.

Claims

1. A noise reduction construction site building structure, comprising a living chamber (1), characterized in that: The living chamber (1) is provided with a functional chamber (2) on the outside, and a shock-absorbing connection structure (3) is provided inside the functional chamber (2), one end of the shock-absorbing connection structure (3) is fixed to the inner wall of the functional chamber (2), and the other end is elastically connected to the outer wall of the living chamber (1); a noise reduction structure (4) is provided on the functional chamber (2), and the noise reduction structure (4) includes foam particles (41) accommodated between the living chamber (1) and the functional chamber (2) and a friction electrostatic plate (42) slidably connected to the outer wall of the functional chamber (2), and the friction electrostatic plate (42) generates static electricity by friction with the surface of the functional chamber (2) and attracts the foam particles (41); an air blast structure (5) is provided between the functional chamber (2) and the living chamber (1); a protective chamber (6) is provided outside the functional chamber (2), and a door structure (7) and a window structure (8) are provided on the protective chamber (6).

2. The noise reduction construction site building structure according to claim 1, characterized in that: The shock-absorbing connection structure (3) comprises a fixed frame (31), a fixed column (32) and a cable (33); the fixed frame (31) is fixed at intervals to the inner wall of the functional compartment (2); the fixed column (32) is fixed at intervals to the outer wall of the living compartment (1) and is arranged corresponding to the fixed frame (31), and the fixed column (32) is passed through the fixed frame (31); the cable (33) is fixed to the side wall of the fixed column (32), and the cable (33) extends and is fixed to the inner wall of the fixed frame (31).

3. The noise reduction construction site building structure according to claim 1, characterized in that: The air blowing structure (5) comprises an air inlet pipe (51), an air outlet pipe (52) and a blower (53); the air inlet pipe (51) is arranged between the living compartment (1) and the functional compartment (2); the air outlet pipe (52) is arranged between the living compartment (1) and the functional compartment (2), and the air inlet pipe (51) and the air outlet pipe (52) are arranged in a staggered manner; the blower (53) is respectively connected to and fixed on the air inlet pipe (51) and the air outlet pipe (52); and a filter is provided at one end of the air inlet pipe (51) and the air outlet pipe (52) relative to the blower (53).

4. The noise reduction construction site building structure according to claim 1, characterized in that: The door structure (7) comprises a door panel (71) and an elastic sealing ring (72); the door panel (71) is rotatably connected to the protection compartment (6), and the door panel (71) can be inserted into the protection compartment (6), the functional compartment (2), and the living compartment (1); the elastic sealing ring (72) is sleeved on the corresponding door panel (71) of the living compartment (1); the door panel (71) can be inserted into the elastic sealing ring (72), and the elastic sealing ring (72) extends and abuts against the side wall of the functional compartment (2).

5. The noise reduction construction site building structure according to claim 1, characterized in that: The window structure (8) comprises an inner window (81), an outer window (82) and an isolation bushing (83); the inner window (81) is rotatable and can be inserted into the inner side of the living compartment (1); the outer window (82) is rotatably connected to the protection compartment (6), and can be inserted into the protection compartment (6) and the functional compartment (2); the isolation bushing (83) is arranged in an annular shape corresponding to the inner window (81), and one side of the isolation bushing (83) is fixed to the outer side wall of the living compartment (1), and the other side extends and abuts against the inner side wall of the functional compartment (2).

6. The noise reduction construction site building structure according to claim 1, characterized in that: The noise reduction structure (4) further includes a reed (43), which is respectively arranged corresponding to the friction electrostatic plates (42), and one side of the reed (43) is fixed to the protection chamber (6), and the other side is fixed to the side wall of the friction electrostatic plate (42).

7. The noise reduction construction site building structure according to claim 1, characterized in that: A fixing block (9) extending from and fixed to the outer wall of the functional compartment (2) is fixed at intervals on the inner wall of the protection compartment (6), and the fixing block (9) and the friction electrostatic plate (42) are staggered.

Citation Information

Patent Citations

  • Building structure for noise reduction construction site house

    CN110080562A