CN211774834U - Heat insulation type partition wall - Google Patents
Heat insulation type partition wall Download PDFInfo
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- CN211774834U CN211774834U CN201922314125.2U CN201922314125U CN211774834U CN 211774834 U CN211774834 U CN 211774834U CN 201922314125 U CN201922314125 U CN 201922314125U CN 211774834 U CN211774834 U CN 211774834U
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Abstract
The utility model discloses a heat insulation type partition wall, which comprises a top beam layer, a steel plate partition layer and a ground beam layer which are arranged from top to bottom in sequence; the steel plate separation layer comprises a calcium silicate plate and two steel plate support structures which are respectively arranged on two sides of the calcium silicate plate; the steel plate supporting structure comprises a side frame, a lower keel, a side fireproof sound insulation layer and a steel plate assembly; the lower keel and the side fireproof sound insulation layer are fixed in the side frame; the steel plate assembly is detachably clamped on the lower keel. The utility model provides a heat insulation type partition wall, which can obviously improve the effects of fire prevention, sound insulation and heat insulation by combining a calcium silicate board and a steel plate supporting structure on a steel plate partition layer and reasonably arranging the steel plate supporting structure; moreover, the steel plate component gypsum board is convenient to disassemble and replace; meanwhile, the integral structure is firm and firm, the anti-collision and anti-collision device has the functions of anti-collision and anti-collision, the service life is longer, and the environment-friendly effect can be achieved.
Description
Technical Field
The utility model relates to a partition wall, concretely relates to thermal-insulated type partition wall.
Background
As is well known, partition walls, also called high partitions, finished partition walls, are used to divide areas of a house, so as to be widely used in the construction of houses. However, the existing partition wall usually adopts gypsum boards or wood boards, etc., so that the existing partition wall has poor sound insulation and heat insulation effects, cannot prevent fire, and has great potential safety hazard.
SUMMERY OF THE UTILITY MODEL
In order to overcome the defects of the prior art, the utility model aims to provide a heat-insulating partition wall, it is through adopting calcium silicate board and steel sheet bearing structure's combination with the steel sheet partition layer to through rationally setting up steel sheet bearing structure, can improve fire prevention, give sound insulation, thermal-insulated effect, moreover, still conveniently change in steel sheet subassembly's dismantlement.
The purpose of the utility model is realized by adopting the following technical scheme:
a heat insulation type partition wall comprises a top beam layer, a steel plate partition layer and a ground beam layer which are sequentially arranged from top to bottom; the steel plate separation layer comprises a calcium silicate plate and two steel plate support structures which are respectively arranged on two sides of the calcium silicate plate; the steel plate supporting structure comprises a side frame, a lower keel, a side fireproof sound insulation layer and a steel plate assembly; the lower keel and the side fireproof sound insulation layer are fixed in the side frame; the steel plate assembly is detachably clamped on the lower keel.
The side frame comprises U-shaped supporting pieces arranged at two sides, an upper partition U-shaped supporting piece and a lower partition U-shaped supporting piece; the two side U-shaped supporting pieces are oppositely arranged, the upper partition U-shaped supporting piece is positioned above the lower partition U-shaped supporting piece, the upper partition U-shaped supporting piece is positioned between the upper ends of the two side U-shaped supporting pieces, and the lower partition U-shaped supporting piece is positioned between the lower ends of the two side U-shaped supporting pieces; the lower keel and the side fireproof sound insulation layer are positioned in an installation area surrounded by the two side U-shaped supporting pieces, the upper partition U-shaped supporting piece and the lower partition U-shaped supporting piece; the upper end of the lower keel is inserted into the upper partition U-shaped supporting piece and is fixedly connected with the upper partition U-shaped supporting piece; the lower end of the lower keel is inserted into the lower partition U-shaped supporting piece and is fixedly connected with the lower partition U-shaped supporting piece.
The steel plate assembly comprises a steel plate body and two steel plate closing strips which are respectively arranged on two sides of the steel plate body; the steel plate body comprises two steel plates which are arranged in sequence; two ends of the steel plate and the steel plate closing strip are provided with a connecting arm; pressing strips are arranged between every two adjacent connecting arms, and the two adjacent connecting arms and the pressing strips positioned between the two adjacent connecting arms form clamping arm components; the clamping arm component is clamped in the lower keel; the side-arranged fireproof sound-proof layer is a fireproof sound-proof rock wool layer.
The lower keel is provided with a first clamping arm and a second clamping arm which are oppositely arranged; the clamping arm component is clamped between a first clamping arm and a second clamping arm of the lower keel.
The steel plate assembly is provided with a plurality of clamping arm parts, and the steel plate supporting structure comprises a plurality of underlying keels which respectively correspond to the plurality of clamping arm parts one by one and are used for clamping the corresponding clamping arm parts.
The top beam layer comprises a support frame and a spring buckle plate; an upper keel is fixed in the supporting frame and is filled with a first fireproof sound insulation layer; a gypsum board arranged in parallel with the first fireproof sound insulation layer is also inserted in the supporting frame; the elastic pinch plate is detachably buckled on the upper keel and is used for abutting against one side, far away from the first fireproof sound-insulating layer, of the gypsum board; the side frame is fixedly connected with the top beam layer.
The roof beam layer further comprises an inclined supporting pipe connected between the supporting frame and the cement floor slab.
The supporting frame comprises an upper beam rail, a lower beam rail and a limiting assembly; the limiting assembly comprises a first U-shaped supporting piece and a second U-shaped supporting piece; the upper rail of the top beam is positioned above the lower rail of the top beam; the upper end of the first U-shaped supporting piece and the upper end of the second U-shaped supporting piece are inserted into the upper rail of the top beam, and the lower end of the first U-shaped supporting piece and the lower end of the second U-shaped supporting piece are inserted into the lower rail of the top beam; the first U-shaped supporting piece and the second U-shaped supporting piece are oppositely arranged, an accommodating area is formed between the first U-shaped supporting piece and the second U-shaped supporting piece, and the upper keel and the first fireproof sound insulation layer are located in the accommodating area; the upper end of the upper keel is inserted into the upper rail of the roof beam and is fixedly connected with the upper rail of the roof beam; the lower end of the upper keel is inserted into the lower rail of the roof beam and is fixedly connected with the lower rail of the roof beam; an upper limiting groove for embedding the upper end of the gypsum board is formed between the side wall of the upper rail of the top beam and the limiting assembly, and a lower limiting groove for embedding the lower end of the gypsum board is formed between the side wall of the lower rail of the top beam and the limiting assembly.
The upper keel is provided with two clamping arms which are oppositely arranged, and a clamping groove is formed between the two clamping arms; the elastic pinch plate is provided with two elastic arms which are oppositely arranged and clamped in the clamping groove, and the part of each elastic arm, which is positioned in the clamping groove, is provided with a raised clamping point.
The ground beam layer comprises a ground beam lower rail, a ground beam U-shaped supporting piece and a second fireproof sound insulation layer; the ground beam U-shaped supporting piece is fixed above the ground beam lower rail, and the ground beam U-shaped supporting piece and the ground beam lower rail are enclosed to form an accommodating area; the second fireproof sound insulation layer is positioned in the accommodating area; the side frame is fixedly connected with the ground beam layer; and the ground beam lower rail is connected with a ground beam corner connector.
Compared with the prior art, the beneficial effects of the utility model reside in that:
the utility model provides a heat-insulating partition wall, it is through adopting the combination of calcium silicate board and two steel sheet bearing structures with the steel sheet partition layer, and when one of them steel sheet bearing structure meets fire and is heated, can effectively cut off the conduction of high temperature heat through the calcium silicate board, has prevented high temperature heat from conducting to another steel sheet bearing structure, can show improvement fire prevention, thermal-insulated effect; moreover, the steel plate supporting structure is reasonably arranged, and the side fireproof sound insulation layer is fixed in the side frame, so that a good sound insulation effect can be achieved by using the fireproof sound insulation layer, the fireproof and heat insulation effects are further improved, and the steel plate assembly is convenient to disassemble and maintain and replace by reasonably arranging the connection relationship between the steel plate assembly and the lower keel; in addition, the gypsum board is inserted into the supporting frame, and the elastic pinch plate buckled on the keel is utilized to play a limiting role, so that the gypsum board can be conveniently detached and replaced; meanwhile, the integral structure is firm and firm, the anti-collision and anti-collision functions are achieved, and the service life is long; the side frame, the supporting frame and other parts are made of all steel, so that the service life can be effectively prolonged, and the environment-friendly effect can be achieved.
Drawings
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is an exploded view of the upper spar;
FIG. 3 is a longitudinal cross-sectional view of the layer of the top sill;
FIG. 4 is a transverse cross-sectional view of the layer of the upper spar;
FIG. 5 is an enlarged view of FIG. 4 at A;
FIG. 6 is an exploded view of a layer of a ground beam;
FIG. 7 is a longitudinal cross-sectional view of a layer of the ground beam;
FIG. 8 is an exploded view of a steel panel barrier layer;
FIG. 9 is an exploded view of the steel plate support structure;
FIG. 10 is a transverse cross-sectional view of a steel plate partition layer;
FIG. 11 is an enlarged view of FIG. 10 at B;
10, a steel plate isolating layer; 11. calcium silicate board; 12. a steel plate support structure; 13. a keel is arranged below the frame; 14. a fireproof sound insulation layer is arranged on the side; 15. a first clamp arm; 16. a second clamp arm; 20. a roof beam layer; 21. a support frame; 23. a second U-shaped support member; 24. a first fire-resistant sound-insulating layer; 25. a gypsum board; 26. a diagonal bracing tube; 27. the top beam is guided on the rail; 28. a top beam lower rail; 29. a first U-shaped support member; 30. a ground beam layer; 31. a ground beam lower rail; 32. a ground beam U-shaped support; 33. a second fire-resistant sound-insulating layer; 34. carrying out ground beam corner connection; 40. arranging a keel on the frame; 41. a clamp arm; 42. a card slot; 50. the buckle plate is pressed; 51. a spring arm; 52. protruding stuck points; 60. a cement floor slab; 80. a side frame; 81. a U-shaped supporting piece is arranged on the side; 82. a U-shaped supporting piece is arranged on the partition; 83. separating the lower U-shaped supporting piece; 90. a steel plate component; 91. a steel plate; 92. a steel plate closing strip; 93. a connecting arm; 94. and (7) pressing strips.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and the detailed description, and it should be noted that the embodiments or technical features described below can be arbitrarily combined to form a new embodiment without conflict.
As shown in fig. 1 to 11, a heat insulation type partition wall includes a top beam layer 20, a steel plate partition layer 10, and a bottom beam layer 30, which are sequentially disposed from top to bottom; the steel plate isolating layer 10 comprises a calcium silicate plate 11 and two steel plate supporting structures 12 respectively arranged on two sides of the calcium silicate plate 11; the steel plate supporting structure 12 comprises a side frame 80, a lower keel 13, a side fireproof sound insulation layer 14 and a steel plate assembly 90; the lower keel 13 and the side fireproof and sound insulation layer 14 are fixed in the side frame 80; the steel plate assembly 90 is detachably clamped on the lower keel 13. Preferably, the side frame 80 is made of all steel, so that the service life of the side frame can be prolonged, and the environment-friendly effect can be achieved. The utility model provides a heat-insulating partition wall, it is through adopting the combination of calcium silicate board 11 and two steel sheet bearing structure 12 with steel sheet partition layer 10, and when one of them steel sheet bearing structure 12 meets the fire and is heated, can effectively cut off the conduction of high temperature heat through calcium silicate board 11, has prevented high temperature heat from conducting to another steel sheet bearing structure 12, can realize efficient fire prevention, thermal-insulated effect; moreover, through reasonable setting of steel plate supporting structure 12, be fixed with side fire prevention puigging 14 in side frame 80 to usable side fire prevention puigging 14 of putting can play good syllable-dividing effect, and further improve fire prevention, thermal-insulated effect, in addition, steel sheet subassembly 90 clamps on lower fossil fragments 13 with the detachable mode, still conveniently in steel sheet subassembly 90's dismantlement, in order to be convenient for maintain and change.
Preferably, the roof beam layer 20 comprises a support frame 21 and a spring buckle plate 50; an upper keel 40 is fixed in the supporting frame 21 and is filled with a first fireproof sound insulation layer 24; a gypsum board 25 arranged in parallel with the first fireproof and soundproof layer 24 is also inserted into the support frame 21; the snap buckle 50 is detachably fastened to the upper keel 40 and is used to abut against the side of the gypsum board 25 away from the first fireproof and soundproof layer 24. It can have good fire prevention sound-proof performance through adopting first fire prevention puigging 24, moreover, through with gypsum board 25 cartridge in braced frame 21 to utilize the buckle to play limiting displacement in the bullet buckle 50 on overhead fossil fragments 40, thereby through demolising bullet buckle 50 from overhead fossil fragments 40, and can follow braced frame 21 with gypsum board 25 and shift out, can conveniently change in the dismantlement of gypsum board 25, moreover, need not to open the screw hole on gypsum board 25. The side frame 80 is fixedly connected with the roof beam layer 20.
The roof beam layer 20 further comprises an inclined supporting pipe 26 connected between the supporting frame 21 and the cement floor slab 60, so that structural strength can be improved, firmness and firmness are achieved, and the roof beam layer has the functions of collision prevention and collision avoidance. Specifically, the inclined supporting pipe 26 is connected to the supporting frame 21 and the cement floor 60 through an angle brace.
Preferably, the supporting frame 21 is formed by cold pressing of a steel plate, and the surface is subjected to spraying treatment, so that the whole structure is firm and reliable, and the steel plate has certain corrosion resistance, collision resistance and collision resistance, is high in stability, environment-friendly, insect-proof, anti-aging and long in service life.
The supporting frame 21 comprises an upper beam rail 27, a lower beam rail 28 and a limiting assembly; the limiting assembly comprises a first U-shaped supporting piece 29 and a second U-shaped supporting piece 23; the upper beam rail 27 is positioned above the lower beam rail 28; the upper end of the first U-shaped supporting piece 29 and the upper end of the second U-shaped supporting piece 23 are inserted into the upper top rail 27, and the lower end of the first U-shaped supporting piece 29 and the lower end of the second U-shaped supporting piece 23 are inserted into the lower top rail 28; the first U-shaped supporting piece 29 and the second U-shaped supporting piece 23 are oppositely arranged, an accommodating area is formed between the first U-shaped supporting piece 29 and the second U-shaped supporting piece 23, and the upper keel 40 and the first fireproof sound insulation layer 24 are both positioned in the accommodating area; the upper end of the upper keel 40 is inserted into the upper beam rail 27 and is fixedly connected with the upper beam rail 27; the lower end of the upper keel 40 is inserted into the lower rail 28 of the roof beam and is fixedly connected with the lower rail 28 of the roof beam; an upper limiting groove for embedding the upper end of the gypsum board 25 is formed between the side wall of the upper rail 27 of the roof beam and the limiting component, and a lower limiting groove for embedding the lower end of the gypsum board 25 is formed between the side wall of the lower rail 28 of the roof beam and the limiting component, so that the gypsum board 25 is convenient to install. In this embodiment, gypsum boards 25 are provided on both sides of the first fireproof soundproof layer 24.
Preferably, horizontal adjusting grooves can be further formed in the upper rail 27 of the top beam and the lower rail 28 of the top beam, and when the floor flatness is poor, the levelness of the upper rail 27 of the top beam and the levelness of the lower rail 28 of the top beam can be adjusted, so that the effect of artificially controlling the levelness is achieved.
The upper keel 40 is provided with two clamping arms 41 which are oppositely arranged, and a clamping groove 42 is formed between the two clamping arms 41; the elastic pinch plate 50 is provided with two elastic arms 51 which are oppositely arranged and clamped in the clamping groove 42, and the part of the elastic arm 51, which is positioned in the clamping groove 42, is provided with a raised clamping point 52, so that the two elastic arms 51 are extruded and pushed towards the middle direction, the raised clamping point 52 is separated from the clamping arm 41, the elastic arm 51 can be moved out from between the two clamping arms 41, and the elastic pinch plate adopts the structure, so that the disassembly and the assembly are convenient, and the installation efficiency can be improved.
The actual installation process of the roof beam layer 20 is as follows: 1) the upper beam rail 27 is fixed on the cement floor slab 60 by adopting M8 x 60 expansion bolts; (2) the upper keel 40 is arranged in the upper rail 27 of the roof beam and is fixed by adopting 4.2 MM and 25MM self-tapping screws, and the first U-shaped supporting piece 29 and the second U-shaped supporting piece 23 are inserted in the upper rail 27 of the roof beam and are fixed on the wall; (3) the lower beam rail 28 is sleeved on the first U-shaped supporting piece 29, the second U-shaped supporting piece 23 and the upper keel 40 and is fixed by 4.2 MM and 25MM self-tapping screws, so that a supporting frame 21 is formed; (4) a gypsum board 25 is arranged on one side of the supporting frame 21, the upper end of the gypsum board 25 is embedded in the upper limiting groove, the lower end of the gypsum board 25 is embedded in the lower limiting groove, and the elastic buckle plate 50 is buckled in the upper keel 40 to limit the gypsum board 25; (5) installing a gypsum board 25 on the other side of the supporting frame 21, embedding the upper end of the gypsum board 25 in the upper limiting groove, embedding the lower end of the gypsum board 25 in the lower limiting groove, and buckling the elastic buckle plate 50 in the upper keel 40 to limit the gypsum board 25; (7) and connecting the inclined supporting pipes 26 to finish the installation of the roof beam layer 20.
The ground beam layer 30 comprises a ground beam lower rail 31, a ground beam U-shaped support member 32 and a second fireproof sound insulation layer 33; the U-shaped support piece 32 of the ground beam is fixed above the lower rail 31 of the ground beam, the U-shaped support piece 32 of the ground beam and the lower rail 31 of the ground beam are enclosed to form a containing area, and the second fireproof sound-proof layer 33 is located in the containing area. And enclose into holding the interval through utilizing grade beam U type support piece 32 and grade beam lower rail 31, it has second fire prevention puigging 33 to fill in holding the interval simultaneously, has strengthened the syllable-dividing of grade beam layer 30, fire behavior. The side frame 80 is fixedly connected with the ground beam layer 30.
The ground beam lower rail 31 is connected with a ground beam corner connector 34, so that the ground beam layer 30 is firmer, firmer and more stable.
Moreover, a horizontal adjusting groove can be arranged on the ground beam layer 30, and when the floor flatness is poor, the levelness of the ground beam horizontal groove can be adjusted to achieve the effect of artificially controlling the level
The actual installation process of the floor 30 is as follows: (1) the lower rail 31 of the ground beam is fixed on the cement floor by M8-60 expansion screws; (2) filling a second fireproof sound insulation layer 33 into the underground beam lower rail 31; (3) covering the U-shaped support 32 of the ground beam, and fixing the U-shaped support on the lower rail 31 of the ground beam by using 6.0 MM and 25MM screws; (4) and reinforcing two sides of the lower ground beam rail 31 by using 100X 4.0L-shaped corner connectors to finish the installation of the ground beam layer 30.
The side frame 80 comprises two side U-shaped supporting pieces 81, an upper partition U-shaped supporting piece 82 and a lower partition U-shaped supporting piece 83; the two side U-shaped supporting pieces 81 are oppositely arranged, the partition upper U-shaped supporting piece 82 is positioned above the partition lower U-shaped supporting piece 83, the partition upper U-shaped supporting piece 82 is positioned between the upper ends of the two side U-shaped supporting pieces 81, and the partition lower U-shaped supporting piece 83 is positioned between the lower ends of the two side U-shaped supporting pieces 81; the lower keel 13 and the side fireproof and soundproof layers 14 are positioned in an installation area surrounded by the two side U-shaped supporting pieces 81, the upper partition U-shaped supporting piece 82 and the lower partition U-shaped supporting piece 83; the upper end of the lower keel 13 is inserted into the partition upper U-shaped supporting piece 82 and is fixedly connected with the partition upper U-shaped supporting piece 82; the lower end of the lower keel 13 is inserted into the lower partition U-shaped supporting piece 83 and is fixedly connected with the lower partition U-shaped supporting piece 83, so that the stability of fixing the lower keel 13 can be improved, the side frame 80 can be conveniently machined and manufactured, and the cost can be reduced.
Specifically, the upper end of the lower keel 13 is fixedly connected with the upper partition U-shaped support 82 through a first screw; the lower end of the lower keel 13 is fixedly connected with the lower partition U-shaped supporting piece 83 through a second screw, so that the lower keel 13 can be conveniently disassembled and assembled.
The steel plate assembly 90 comprises a steel plate body and two steel plate closing strips 92 which are respectively arranged on two sides of the steel plate body; the steel plate body comprises two steel plates 91 which are arranged in sequence; two ends of the steel plate 91 and the steel plate closing strip 92 are provided with a connecting arm 93; pressing strips 94 are arranged between every two adjacent connecting arms 93, and the two adjacent connecting arms 93 and the pressing strips 94 positioned between the two adjacent connecting arms 93 form clamping arm parts; the clamping arm component is clamped in the lower keel 13, so that the clamping stability can be improved, and the steel plate component 90 can be conveniently machined and manufactured.
The lower keel 13 is provided with a first clamping arm 15 and a second clamping arm 16 which are oppositely arranged; the clip arm members are clipped between the first clip arm 15 and the second clip arm 16 of the underlying keel 13. Specifically, the lower keel 13 further comprises a rear side plate, a left side plate, a right side plate, a first front side plate and a second front side plate; the utility model discloses a rear side plate, including rear side plate, left side plate, right side plate, first preceding curb arm 15, second preceding curb arm 16, first arm lock, second arm lock, left side plate, right side plate set up respectively on rear side plate's the left and right sides both ends, the curb plate all sets up on rear side plate's front end before first preceding curb plate, second arm lock to be the interval setting, first arm lock sets up on first preceding curb plate, second arm lock 16 sets up on the curb plate before the second, and through adopting above-mentioned structure with lower fossil fragments 13, reducible.
Specifically, the inside of steel sheet 91 is provided with fire prevention gypsum board layer to further improve fire prevention effect.
The steel plate assembly 90 has a plurality of clamping arm components, and the steel plate supporting structure 12 includes a plurality of lower keels 13 corresponding to the plurality of clamping arm components one to one and used for clamping the corresponding clamping arm components, so as to improve the clamping stability.
The side fireproof sound-proof layer 14, the first fireproof sound-proof layer 24 and the second fireproof sound-proof layer 33 are all fireproof sound-proof rock wool layers, so that fireproof and sound-proof effects are better, and the cost can be effectively controlled.
The actual installation process of the steel plate partition layer 10 is as follows: (1) two side U-shaped supporting pieces 81 of one steel plate supporting structure 12 are fixed on two side walls through screws; (2) embedding the upper and lower partition U-shaped supporting pieces 82 and 83 of the steel plate supporting structure 12 into the two side U-shaped supporting pieces 81, and fixing the two side U-shaped supporting pieces on the top beam layer 20 and the bottom beam layer 30 by self-tapping screws; (3) inserting the lower keel 13 of the steel plate supporting structure 12 into the upper U-shaped partition supporting piece 82 and the lower U-shaped partition supporting piece 83, embedding the lower keel 13 close to the side U-shaped partition supporting piece 81 into the side U-shaped partition supporting piece 81, and fixing the lower keel 13 on the upper U-shaped partition supporting piece 82 and the lower U-shaped partition supporting piece 83 through screws; (4) mounting a calcium silicate board 11; (5) installing a side frame 80 and a lower keel 13 of another steel plate supporting structure 12 according to the steps (1), (2) and (3); (6) filling the side frames 80 of the two steel plate support structures 12 with the side fire-proof and sound-proof layers 14; (7) and (3) clamping the steel plate assemblies 90 of the two steel plate supporting structures 12 in the lower keel 13 to complete the installation of the steel plate partition layer 10.
Preferably, in order to further improve the sealing effect and improve the fireproof and sound-proof effect, a fireproof sealing strip can be further arranged between the steel plate assembly 90 and the lower keel 13.
The above embodiments are only preferred embodiments of the present invention, and the protection scope of the present invention cannot be limited thereby, and any insubstantial changes and substitutions made by those skilled in the art based on the present invention are all within the protection scope of the present invention.
Claims (10)
1. The utility model provides a thermal-insulated type partition wall which characterized in that: comprises an upper beam layer, a steel plate partition layer and a ground beam layer which are arranged from top to bottom in sequence; the steel plate separation layer comprises a calcium silicate plate and two steel plate support structures which are respectively arranged on two sides of the calcium silicate plate; the steel plate supporting structure comprises a side frame, a lower keel, a side fireproof sound insulation layer and a steel plate assembly; the lower keel and the side fireproof sound insulation layer are fixed in the side frame; the steel plate assembly is detachably clamped on the lower keel.
2. The insulated partition wall of claim 1, wherein: the side frame comprises U-shaped supporting pieces arranged at two sides, an upper partition U-shaped supporting piece and a lower partition U-shaped supporting piece; the two side U-shaped supporting pieces are oppositely arranged, the upper partition U-shaped supporting piece is positioned above the lower partition U-shaped supporting piece, the upper partition U-shaped supporting piece is positioned between the upper ends of the two side U-shaped supporting pieces, and the lower partition U-shaped supporting piece is positioned between the lower ends of the two side U-shaped supporting pieces; the lower keel and the side fireproof sound insulation layer are positioned in an installation area surrounded by the two side U-shaped supporting pieces, the upper partition U-shaped supporting piece and the lower partition U-shaped supporting piece; the upper end of the lower keel is inserted into the upper partition U-shaped supporting piece and is fixedly connected with the upper partition U-shaped supporting piece; the lower end of the lower keel is inserted into the lower partition U-shaped supporting piece and is fixedly connected with the lower partition U-shaped supporting piece.
3. The insulated partition wall of claim 1, wherein: the steel plate assembly comprises a steel plate body and two steel plate closing strips which are respectively arranged on two sides of the steel plate body; the steel plate body comprises two steel plates which are arranged in sequence; two ends of the steel plate and the steel plate closing strip are provided with a connecting arm; pressing strips are arranged between every two adjacent connecting arms, and the two adjacent connecting arms and the pressing strips positioned between the two adjacent connecting arms form clamping arm components; the clamping arm component is clamped in the lower keel; the side-arranged fireproof sound-proof layer is a fireproof sound-proof rock wool layer.
4. The insulated partition wall of claim 3, wherein: the lower keel is provided with a first clamping arm and a second clamping arm which are oppositely arranged; the clamping arm component is clamped between a first clamping arm and a second clamping arm of the lower keel.
5. The insulated partition wall of claim 3, wherein: the steel plate assembly is provided with a plurality of clamping arm parts, and the steel plate supporting structure comprises a plurality of underlying keels which respectively correspond to the plurality of clamping arm parts one by one and are used for clamping the corresponding clamping arm parts.
6. The insulated partition wall of claim 1, wherein: the top beam layer comprises a support frame and a spring buckle plate; an upper keel is fixed in the supporting frame and is filled with a first fireproof sound insulation layer; a gypsum board arranged in parallel with the first fireproof sound insulation layer is also inserted in the supporting frame; the elastic pinch plate is detachably buckled on the upper keel and is used for abutting against one side, far away from the first fireproof sound-insulating layer, of the gypsum board; the side frame is fixedly connected with the top beam layer.
7. The insulated partition wall of claim 6, wherein: the roof beam layer further comprises an inclined supporting pipe connected between the supporting frame and the cement floor slab.
8. The insulated partition wall of claim 6, wherein: the supporting frame comprises an upper beam rail, a lower beam rail and a limiting assembly; the limiting assembly comprises a first U-shaped supporting piece and a second U-shaped supporting piece; the upper rail of the top beam is positioned above the lower rail of the top beam; the upper end of the first U-shaped supporting piece and the upper end of the second U-shaped supporting piece are inserted into the upper rail of the top beam, and the lower end of the first U-shaped supporting piece and the lower end of the second U-shaped supporting piece are inserted into the lower rail of the top beam; the first U-shaped supporting piece and the second U-shaped supporting piece are oppositely arranged, an accommodating area is formed between the first U-shaped supporting piece and the second U-shaped supporting piece, and the upper keel and the first fireproof sound insulation layer are located in the accommodating area; the upper end of the upper keel is inserted into the upper rail of the roof beam and is fixedly connected with the upper rail of the roof beam; the lower end of the upper keel is inserted into the lower rail of the roof beam and is fixedly connected with the lower rail of the roof beam; an upper limiting groove for embedding the upper end of the gypsum board is formed between the side wall of the upper rail of the top beam and the limiting assembly, and a lower limiting groove for embedding the lower end of the gypsum board is formed between the side wall of the lower rail of the top beam and the limiting assembly.
9. The insulated partition wall of claim 6, wherein: the upper keel is provided with two clamping arms which are oppositely arranged, and a clamping groove is formed between the two clamping arms; the elastic pinch plate is provided with two elastic arms which are oppositely arranged and clamped in the clamping groove, and the part of each elastic arm, which is positioned in the clamping groove, is provided with a raised clamping point.
10. The insulated partition wall of claim 1, wherein: the ground beam layer comprises a ground beam lower rail, a ground beam U-shaped supporting piece and a second fireproof sound insulation layer; the ground beam U-shaped supporting piece is fixed above the ground beam lower rail, and the ground beam U-shaped supporting piece and the ground beam lower rail are enclosed to form an accommodating area; the second fireproof sound insulation layer is positioned in the accommodating area; the side frame is fixedly connected with the ground beam layer; and the ground beam lower rail is connected with a ground beam corner connector.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201922314125.2U CN211774834U (en) | 2019-12-20 | 2019-12-20 | Heat insulation type partition wall |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
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CN201922314125.2U CN211774834U (en) | 2019-12-20 | 2019-12-20 | Heat insulation type partition wall |
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Publication Number | Publication Date |
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CN211774834U true CN211774834U (en) | 2020-10-27 |
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Family Applications (1)
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CN201922314125.2U Active CN211774834U (en) | 2019-12-20 | 2019-12-20 | Heat insulation type partition wall |
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CN (1) | CN211774834U (en) |
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2019
- 2019-12-20 CN CN201922314125.2U patent/CN211774834U/en active Active
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