CN210362840U - Heat-insulating and sound-insulating structure of molded polyphenyl plate wall - Google Patents
Heat-insulating and sound-insulating structure of molded polyphenyl plate wall Download PDFInfo
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- CN210362840U CN210362840U CN201921247786.1U CN201921247786U CN210362840U CN 210362840 U CN210362840 U CN 210362840U CN 201921247786 U CN201921247786 U CN 201921247786U CN 210362840 U CN210362840 U CN 210362840U
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Abstract
The utility model discloses a moulding polyphenyl board wall heat preservation sound-proof structure, including base plate and soundproof hole, the base plate surface is pasted there is the damping felt, and is connected with first acoustic celotex board on the damping felt, and first acoustic celotex board inside is provided with first heat preservation filler simultaneously, is provided with the fixed block on the light gauge steel, and has seted up the mounting hole on the fixed block, light gauge steel internally mounted has first acoustic celotex board, first acoustic celotex board internally connected has the baffle, the inside second heat preservation filler that is provided with of second insulation board, the second acoustic celotex board upside passes through the bonding agent and is fixed mutually with the second insulation board, and the second acoustic celotex board downside passes through the bonding agent and is fixed mutually with the sealing plate, soundproof hole evenly distributed is on the surface of. This moulding polyphenyl board wall heat preservation sound-proof structure has the direct transmission that slows down sound, further strengthens the syllable-dividing effect of wall body, can play thermal-insulated heat retaining effect to the indoor environment simultaneously, and the characteristics that the practicality is strong.
Description
Technical Field
The utility model relates to a building materials field specifically is a moulding polyphenyl board wall heat preservation sound insulation structure.
Background
In the production and manufacturing process, a large number of dry sound sources are often generated, such as equipment operation, air compressor rooms and laboratories, which cause damage to the bodies of front-line employees, so that sound insulation boards are needed to be used for building sound insulation rooms with sound insulation effects in areas where the employees gather; at present, most of sound insulation boards are made of alloy boards and aluminum thin plates packaged sound-absorbing materials, the sound-absorbing and sound-insulating effects are limited, the manufacturing cost is high, and the service life of the aluminum plate is influenced due to the fact that the aluminum plate is easily corroded.
In order to solve the disadvantages existing in the current market, there is an urgent need for improving the technology of the baffle device.
SUMMERY OF THE UTILITY MODEL
The utility model provides a technical problem lie in overcoming prior art's acoustic celotex board and select alloy board, aluminium sheet metal encapsulation sound absorbing material for use mostly to make, inhales the sound, the sound insulation effect is limited, and the cost is on the high side, and aluminum plate receives the corruption and influences life-span's defect easily moreover, provides a moulding polyphenyl board wall heat preservation sound-proof structure. First heated board, second acoustic celotex board and first acoustic celotex board have the direct transmission that slows down sound, further strengthen the syllable-dividing effect of wall body, can play thermal-insulated heat retaining effect to the indoor environment simultaneously, the characteristics that the practicality is strong.
In order to achieve the above object, the utility model provides a following technical scheme: a heat and sound insulation structure of a molded polyphenyl plate wall comprises a base plate and sound insulation holes, wherein a damping felt is pasted on the surface of the base plate, a first heat insulation plate is connected onto the damping felt, a first heat insulation filler is arranged inside the first heat insulation plate, a fixing block is arranged on a light steel keel, an installation hole is formed in the fixing block, a first sound insulation plate is arranged inside the light steel keel, a partition plate is connected inside the first sound insulation plate, a second heat insulation filler is arranged inside the second heat insulation plate, the upper side of the second sound insulation plate is fixed with the second heat insulation plate through an adhesive, and the lower side of the second sound insulation plate is fixed with a sealing plate through the adhesive;
the sound insulation holes are evenly distributed on the surface of the first sound insulation plate, the second sound insulation plate is composed of an upper splicing plate and a lower splicing plate, the bottom of the upper splicing plate is connected with an upper frame body, and the upper portion of the lower splicing plate is connected with a lower frame body.
Preferably, the base plate is a square structure made of molded polystyrene boards, and the base plate, the damping felt, the first heat insulation board, the second sound insulation board and the sealing board are arranged in a layered mode.
Preferably, the upper end of the light steel keel penetrates through the mounting hole through an expansion screw to be fixed on the first heat insulation plate, and the lower end of the light steel keel penetrates through the mounting hole through an expansion screw to be fixed on the second heat insulation plate.
Preferably, the both ends of first acoustic celotex board are all pegged graft in the inside slot of light gauge steel, and the baffle upside is the upper plenum, and the baffle downside is cavity down, and upper plenum and cavity are inside all filled with soundproof cotton down.
Preferably, the second heat insulation board is consistent with the first heat insulation board in structure, and the first sound insulation board is arranged between the second heat insulation board and the first heat insulation board.
Preferably, the baffle is arranged in an S shape in the first baffle, and the inside of the first baffle is divided into an upper cavity and a lower cavity by the baffle, and the volumes of the upper cavity and the lower cavity are the same.
Preferably, go up framework at last splice plate surface evenly distributed, and framework splice plate surface evenly distributed under down, it is unanimous with the size of splice plate down to go up the splice plate simultaneously.
Preferably, the inner parts of the upper frame body and the lower frame body are both arranged in a hollow manner, and the upper frame body is clamped between the two adjacent groups of lower frame bodies; the second acoustic celotex board is formed by last splice plate and splice plate concatenation down, and the first heavy sound-proof structure of wall body is constituteed to the second acoustic celotex board, and the second heavy sound-proof structure of wall body is constituteed to the soundproof cotton of the inside packing of first acoustic celotex board, and the third heavy sound-proof structure of wall body is constituteed to the damping felt simultaneously, and three group's sound-proof structures simultaneous workings cushion the noise, eliminate partial noise simultaneously, strengthen the syllable-dividing effect of wall body.
Compared with the prior art, the beneficial effects of the utility model are that:
1. the first sound insulation board is wrapped between the first heat insulation board and the second heat insulation board, and heat insulation filler in the first heat insulation board and the second heat insulation board has the effect of heat insulation and heat preservation on a wall body;
2. the upper frame body and the lower frame body are arranged in a hollow mode, so that the transmission of noise can be effectively prevented;
3. three sound-proof structures of group work simultaneously, cushion the noise, eliminate partial noise simultaneously, strengthen the syllable-dividing effect of wall body.
Drawings
FIG. 1 is a front view of the structure of the present invention;
FIG. 2 is a side view of the structure of the present invention;
FIG. 3 is a schematic view of the inner slot of the structural light steel keel of the present invention;
FIG. 4 is a schematic view of the surface of a first baffle plate according to the present invention;
FIG. 5 is a schematic view of the upper and lower cavities of the structure of the present invention;
FIG. 6 is a top view of the lower splice plate of the present invention;
fig. 7 is a schematic diagram of a second sound-proof plate structure according to the present invention.
Reference numbers in the figures: 1. a substrate; 2. damping felt; 3. a first heat-insulating plate; 4. a fixed block; 5. an expansion screw; 6. a light steel keel; 7. a first baffle plate; 8. mounting holes; 9. a second insulation board; 10. a second baffle; 11. a sealing plate; 12. a partition plate; 13. sound insulation cotton; 14. a first insulating filler; 15. a second insulation filler; 16. a slot; 17. a sound insulation hole; 18. an upper cavity; 19. a lower cavity; 20. an upper splice plate; 21. a lower splice plate; 22. an upper frame body; 23. and a lower frame body.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-7, the present invention provides a technical solution: a heat-insulating and sound-insulating structure of a molded polyphenyl plate wall comprises a base plate 1 and sound-insulating holes 17, wherein damping felts 2 are pasted on the surface of the base plate 1, the damping felts 2 are connected with first heat-insulating plates 3, meanwhile, first heat-insulating fillers 14 are arranged inside the first heat-insulating plates 3, the base plate 1 is of a square structure made of molded polyphenyl plates, and the base plate 1, the damping felts 2, the first heat-insulating plates 3, second heat-insulating plates 9, second sound-insulating plates 10 and sealing plates 11 are arranged in a layered mode; the second heat insulation plate 9 and the first heat insulation plate 3 are consistent in structure, and the first sound insulation plate 7 is arranged between the second heat insulation plate 9 and the first heat insulation plate 3; the light steel keel 6 is provided with a fixed block 4, the fixed block 4 is provided with a mounting hole 8, the upper end of the light steel keel 6 penetrates through the mounting hole 8 through an expansion screw 5 and is fixed on the first heat insulation plate 3, and the lower end of the light steel keel 6 penetrates through the mounting hole 8 through the expansion screw 5 and is fixed on the second heat insulation plate 9; a first sound insulation board 7 is arranged inside the light steel keel 6, a partition board 12 is connected inside the first sound insulation board 7, the partition board 12 is arranged inside the first sound insulation board 7 in an S shape, the inside of the first sound insulation board 7 is divided into an upper cavity 18 and a lower cavity 19 through the partition board 12, and meanwhile, the volumes of the upper cavity 18 and the lower cavity 19 are consistent; a second insulation filler 15 is arranged in the second insulation board 9, the upper side of the second sound insulation board 10 is fixed with the second insulation board 9 through an adhesive, and the lower side of the second sound insulation board 10 is fixed with the sealing board 11 through the adhesive; two ends of the first sound insulation board 7 are inserted into slots 16 in the light steel keel 6, an upper cavity 18 is arranged on the upper side of the partition board 12, a lower cavity 19 is arranged on the lower side of the partition board 12, and sound insulation cotton 13 is filled in the upper cavity 18 and the lower cavity 19; the sound insulation holes 17 are uniformly distributed on the surface of the first sound insulation board 7, the second sound insulation board 10 is composed of an upper splicing board 20 and a lower splicing board 21, the bottom of the upper splicing board 20 is connected with an upper frame 22, and the upper part of the lower splicing board 21 is connected with a lower frame 23; the upper frame body 22 is uniformly distributed on the surface of the upper splice plate 20, the lower frame body 23 is uniformly distributed on the surface of the lower splice plate 21, and the sizes of the upper splice plate 20 and the lower splice plate 21 are the same; the inner parts of the upper frame body 22 and the lower frame body 23 are both arranged in a hollow way, and the upper frame body 22 is clamped between the two adjacent groups of lower frame bodies 23;
as shown in fig. 1-2: the second sound insulation board 10 is formed by splicing an upper splice board 20 and a lower splice board 21, the second sound insulation board 10 forms a first heavy sound insulation structure of the wall body, the sound insulation cotton 13 filled in the first sound insulation board 7 forms a second heavy sound insulation structure of the wall body, meanwhile, the damping felt 2 forms a third heavy sound insulation structure of the wall body, the three groups of sound insulation structures work simultaneously, the noise is buffered, partial noise is eliminated, and the sound insulation effect of the wall body is enhanced;
as shown in fig. 2: first heated board 3 and second heated board 9 wrap up first acoustic celotex board 7 in the middle of it, and the heat preservation filler of first heated board 3 and the inside of second heated board 9 plays thermal-insulated heat retaining effect to the wall body.
When the molded polyphenyl plate wall heat-insulation and sound-insulation structure is used, sound-insulation cotton 13 is filled in an upper cavity 18 and a lower cavity 19 inside a first sound-insulation plate 7, the right end of the first sound-insulation plate 7 is inserted into light steel keels 6 at two ends of the first sound-insulation plate, after the first sound-insulation plate is fixed, the upper end of each light steel keel 6 is fixed with a first heat-insulation plate 3 through expansion screws 5, the lower end of each light steel keel 6 is fixed with a second heat-insulation plate 9, the sound-insulation cotton 13 effectively weakens the transmission of noise, the second sound-insulation plate 10 is formed by splicing an upper splicing plate 20 and a lower splicing plate 21, an upper frame body 22 and a lower frame body heat-insulation plate 23 are arranged in a hollow mode, the transmission of the noise can be effectively blocked, and the heat-insulation effect is achieved by heat-insulation filler; this is the whole process of working the heat and sound insulation structure of the molded polyphenyl plate wall.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.
Claims (8)
1. The utility model provides a moulding polyphenyl board wall heat preservation sound-proof structure, includes base plate (1) and syllable-dividing hole (17), its characterized in that: the damping heat insulation board is characterized in that a damping felt (2) is pasted on the surface of the base plate (1), a first heat insulation board (3) is connected onto the damping felt (2), meanwhile, a first heat insulation filler (14) is arranged inside the first heat insulation board (3), a fixing block (4) is arranged on the light steel keel (6), a mounting hole (8) is formed in the fixing block (4), a first sound insulation board (7) is arranged inside the light steel keel (6), a partition board (12) is connected inside the first sound insulation board (7), a second heat insulation filler (15) is arranged inside the second heat insulation board (9), the upper side of the second sound insulation board (10) is fixed with the second heat insulation board (9) through an adhesive, and the lower side of the second sound insulation board (10) is fixed with a sealing board (11) through the adhesive;
the sound insulation holes (17) are uniformly distributed on the surface of the first sound insulation plate (7), the second sound insulation plate (10) is composed of an upper splicing plate (20) and a lower splicing plate (21), the bottom of the upper splicing plate (20) is connected with an upper frame body (22), and the upper portion of the lower splicing plate (21) is connected with a lower frame body (23).
2. The heat and sound insulation structure of a molded polyphenyl plate wall as recited in claim 1, wherein: the base plate (1) is of a square structure made of molded polystyrene boards, and the base plate (1), the damping felt (2), the first heat insulation board (3), the second heat insulation board (9), the second sound insulation board (10) and the sealing board (11) are arranged in a layered mode.
3. The heat and sound insulation structure of a molded polyphenyl plate wall as recited in claim 1, wherein: the upper end of the light steel keel (6) penetrates through the mounting hole (8) through the expansion screw (5) and is fixed on the first heat insulation plate (3), and the lower end of the light steel keel (6) penetrates through the mounting hole (8) through the expansion screw (5) and is fixed on the second heat insulation plate (9).
4. The heat and sound insulation structure of a molded polyphenyl plate wall as recited in claim 1, wherein: the two ends of the first sound insulation board (7) are all inserted into slots (16) in the light steel keel (6), an upper cavity (18) is formed in the upper side of the partition board (12), a lower cavity (19) is formed in the lower side of the partition board (12), and sound insulation cotton (13) is filled in the upper cavity (18) and the lower cavity (19).
5. The heat and sound insulation structure of a molded polyphenyl plate wall as recited in claim 1, wherein: the structure of the second heat-insulation plate (9) is consistent with that of the first heat-insulation plate (3), and the first sound-insulation plate (7) is arranged between the second heat-insulation plate (9) and the first heat-insulation plate (3).
6. The heat and sound insulation structure of a molded polyphenyl plate wall as recited in claim 1, wherein: the baffle plate (12) is arranged in an S shape in the first sound insulation plate (7), the interior of the first sound insulation plate (7) is divided into an upper cavity (18) and a lower cavity (19) through the baffle plate (12), and meanwhile the volumes of the upper cavity (18) and the lower cavity (19) are consistent.
7. The heat and sound insulation structure of a molded polyphenyl plate wall as recited in claim 1, wherein: the upper frame body (22) is uniformly distributed on the surface of the upper splice plate (20), the lower frame body (23) is uniformly distributed on the surface of the lower splice plate (21), and the sizes of the upper splice plate (20) and the lower splice plate (21) are the same.
8. The heat and sound insulation structure of a molded polyphenyl plate wall as recited in claim 1, wherein: the inner parts of the upper frame body (22) and the lower frame body (23) are both arranged in a hollow mode, and the upper frame body (22) is clamped between the two adjacent lower frame bodies (23).
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CN201921247786.1U CN210362840U (en) | 2019-08-05 | 2019-08-05 | Heat-insulating and sound-insulating structure of molded polyphenyl plate wall |
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CN201921247786.1U CN210362840U (en) | 2019-08-05 | 2019-08-05 | Heat-insulating and sound-insulating structure of molded polyphenyl plate wall |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN114033055A (en) * | 2021-11-29 | 2022-02-11 | 徐智棋 | Composite board structure with heat insulation and preservation effects and preparation method thereof |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
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CN114033055A (en) * | 2021-11-29 | 2022-02-11 | 徐智棋 | Composite board structure with heat insulation and preservation effects and preparation method thereof |
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