CN210369335U - Assembled integrated house structure - Google Patents

Assembled integrated house structure Download PDF

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Publication number
CN210369335U
CN210369335U CN201921060176.0U CN201921060176U CN210369335U CN 210369335 U CN210369335 U CN 210369335U CN 201921060176 U CN201921060176 U CN 201921060176U CN 210369335 U CN210369335 U CN 210369335U
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rectangular
plate
wall body
cavity
floor
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CN201921060176.0U
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王琰
王德占
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Sichuan Flomary New Building Material Co ltd
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Sichuan Flomary New Building Material Co ltd
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Abstract

The utility model discloses an assembled integrated house structure, which comprises a house consisting of a wall body, floors, stairs and a roof, wherein the stairs comprise a plurality of steps connected with the upper part of a lifting beam in sequence; the step is formed by connecting a tread surface and a kicking surface at right angles; the tread surface is a solid cuboid, and the side surface of the solid cuboid is formed by sequentially connecting 4 angle steels; the 4 angle steels comprise 2 short angle steels and 2 long angle steels, a first cement plate is arranged at the bottom of the 4 angle steels to form a rectangular cavity with an opening at one end, and right-angle surfaces of the 4 angle steels are positioned in the rectangular cavity; reinforcing steel bars and concrete are arranged in the rectangular cavity to form a solid cuboid; the kick surface comprises a plurality of first rectangular tubes which are connected up and down to form a rectangular body, and the lengths of the first rectangular tubes and the long angle steel are the same; the upper surface of the first rectangular pipe at the top is connected with the bottom surface of the long angle steel, and the lower surface of the first rectangular pipe at the bottom is connected with the stepping surface of the lifting beam or the lower stage step.

Description

Assembled integrated house structure
Technical Field
The utility model belongs to the building field relates to an integrated housing structure of assembled.
Background
The traditional house is usually of a brick concrete or reinforced concrete structure, and the construction period is long and the site construction and noise pollution are caused due to the site construction; if the house needs to be dismantled, most of the house itself becomes garbage, which causes a great deal of waste of resources.
So we need an integrated house consisting of several unit modules, which are manufactured at the factory and assembled on site.
Disclosure of Invention
The utility model aims to provide a: an assembled integrated housing structure is provided which solves the above problems.
The utility model adopts the technical scheme as follows:
an assembled integrated house structure comprises a house formed by a wall body, floors, stairs and a roof, wherein the stairs comprise a plurality of steps connected with the upper part of a lifting beam in sequence; the step is formed by connecting a tread surface and a kicking surface at right angles; the tread surface is a solid cuboid, and the side surface of the solid cuboid is formed by sequentially connecting 4 angle steels; the 4 angle steels comprise 2 short angle steels and 2 long angle steels, a first cement plate is arranged at the bottom of the 4 angle steels to form a rectangular cavity with an opening at one end, and right-angle surfaces of the 4 angle steels are positioned in the rectangular cavity; reinforcing steel bars and concrete are arranged in the rectangular cavity to form a solid cuboid; the kick surface comprises a plurality of first rectangular tubes which are connected up and down to form a rectangular body, and the lengths of the first rectangular tubes and the long angle steel are the same; the upper surface of the first rectangular pipe at the top is connected with the bottom surface of the long angle steel, and the lower surface of the first rectangular pipe at the bottom is connected with the stepping surface of the lifting beam or the lower stage step; the side surface of the rectangular body and the side surface of the solid cuboid are positioned on the same plane;
the floor slab comprises two symmetrically arranged second rectangular pipes, and a floor slab mold frame formed by connecting two side plates, wherein the second rectangular pipes are positioned on the frame surface of the floor slab mold frame and provided with connecting holes;
the number of the second rectangular tubes is at least 2, a plurality of third rectangular tubes which are parallel to each other and have equal intervals are connected between any 2 adjacent second rectangular tubes, and the length of each third rectangular tube is smaller than that of each second rectangular tube; the upper surfaces of the third rectangular pipe and the second rectangular pipe are parallel, and the height of the third rectangular pipe is lower than that of the second rectangular pipe;
a reinforcing mesh is arranged between any two second rectangular pipes and is connected with the lower bottom surfaces of the third rectangular pipes; concrete is arranged in a cavity of the floor plate mold frame to form a solid floor plate;
the wall body comprises a wall body cavity with a second cement board as an outer wall; at least 2 rectangular tubes of No. four are uniformly arranged in the cavity of the wall body, and the wide side surface is connected between every two adjacent rectangular tubes of No. four through a plurality of connecting shafts; the two narrow side surfaces of the fourth rectangular pipe are connected with T-shaped steel; the T-shaped steel comprises a web plate parallel to the narrow side surface and a wing plate perpendicular to and connected with the narrow side surface; one side of the web plate is vertically connected with the wing plate, and the other side of the web plate is connected with a second cement board; the two No. four rectangular pipes are positioned at the head end and the tail end in the cavity of the wall body, and the wide side surfaces are connected with the No. two cement boards; the wall body is characterized by further comprising concrete, and the concrete and the wall body cavity form a solid wall body.
The scheme mainly designs three unit modules, stairs, floors and walls of the integrated house; by improving the three unit modules, the conversion from the centimeter-level error of the traditional building mode to the millimeter-level error of factory manufacturing is realized;
improvements relating to staircases: when the stair template is produced in a factory, 4 angle steels, a first cement plate and a plurality of first rectangular pipes are adopted to form the stair template, wherein the first cement plate comprises a bottom leveling plate and a top convex plate, and the shape of the convex plate is consistent with that of a connecting gap of the 4 angle steels; the bottom of the solid cuboid serves as a back cover, so that the solid cuboid can be prevented from being exposed when concrete is filled; and finally, fixing the lifting beam at the position where the stair needs to be installed in the integrated or traditional house in a transportation mode during integration, fixing the stair template on the lifting beam, and finally adding reinforcing steel bars and concrete to quickly construct the stair. Wherein the final steel bars and concrete can be done in advance in the factory or on site freely. Mainly depends on the size of the designed steps, and when the method is used for large steps in public places, a field completion mode is preferentially adopted; reducing the transport pressure; when the method is used for the small-sized steps of the house type, the factory integration is preferentially adopted, the transportation is convenient, and the field operation time is reduced;
improvement on floor panels: the floor plate is manufactured in a factory; adopt No. two rectangular pipes that two symmetries set up, and by two curb plates connect the floor board framed, can the inside concrete that pours and form the floor board, the frame face sets up the connecting hole main function and is connected with another floor board through the connecting hole. To increase the internal load bearing structure; a reinforcing mesh is arranged between any two third rectangular pipes and is connected with the lower ground of the small rectangular pipe; the bearing effect is increased to form an integrated structure;
improvement on the wall body: four rectangular pipes are uniformly arranged in the same axial direction and are connected through a connecting shaft; therefore, workers do not need to repeatedly use the plumb line or the straight running rule to compare the verticality of the wall in the construction process; after the fourth rectangular pipe is connected, the side face of the non-connecting shaft is vertically connected with T-shaped steel, the T-shaped steel is also two steel plates which are vertical to each other, measurement is not needed, and finally, a second cement plate is arranged on the periphery of the frame to form a wall cavity; concrete is poured inside the wall body to form the wall body; the problems that the construction efficiency is low, the construction period is long and the construction quality is risky due to the traditional wall construction mode are solved.
The field construction period of the integrated house formed by the three unit modules is improved to 10% -30% of that of the traditional building mode.
Further, as a preferable scheme, the 4 angle steels are sequentially connected in a screw or welding mode, and the first rectangular pipe and the long angle steel are sequentially connected in a screw or welding mode.
Further as preferred scheme, the reinforcing bar net includes the reinforcing bar face that two-layer equidistance set up, and wherein one deck reinforcing bar face is parallel with No. two rectangular pipes, and another deck reinforcing bar face is parallel with No. three rectangular pipes. Every layer of reinforcing bar face is a plurality of align to grid's reinforcing bar, and the upper strata is through welding with No. three rectangular pipes, and the lower floor is through welding the upper strata and forming the reinforcing bar net, increases the security.
Further preferably, the side plate is a cement plate or a steel plate. The cement board is a thin board. The concrete frame has the function of a frame when concrete is poured. The bottom of the floor slab formwork is provided with a matched bottom plate mould, and the floor slab formwork is square. When the floor slab is prepared in a factory, the bottom plate mold matched with the floor slab mold frame is arranged at the bottom of the floor slab mold frame, and after the concrete is solidified and molded into the floor slab, the bottom plate mold is taken down
Further, as a preferred scheme, 5 connecting shafts are arranged between two adjacent four rectangular pipes to connect the wide side faces. The height of the wall body of the house is about 3 meters conventionally, 5 connecting shafts are uniformly arranged, and the cost performance is highest on the premise of ensuring the quality.
Preferably, the wing plates are rectangular wing plates, and the rectangular wing plates are rectangular plates and have the same height as the web plates. The conventional T-shaped steel or the special T-shaped steel can be adopted, and the conventional T-shaped steel and the special T-shaped steel respectively comprise a wing plate and a web plate which are vertically connected with each other; the web plate of the conventional T-shaped steel is arranged in the middle of the wing plate, the cross section of the conventional T-shaped steel is shaped like a T, the web plate of the special T-shaped steel is arranged at the edge of the wing plate, the special T-shaped steel can be called as angle steel, and the cross section of the special T-shaped steel is shaped like an L; can solve the defects of the traditional measurement problem.
Further, as a preferable scheme, the wing plate is a unit wing plate, and the unit wing plate comprises a plurality of rectangular blocks which are uniformly arranged on the vertical central line of the web plate. Adopt the first kind of T shaped steel after the improvement, can make the better pouring of muddy earth connect as an organic whole. The gaps are also filled with concrete.
Further, as a preferred scheme, the wing plate is an arc-shaped wing plate, the arc-shaped wing plate is a rectangular plate with semicircular segmental blocks, and the semicircular segmental blocks are located at the connecting positions of the width side surfaces of the four rectangular pipes. Adopt the second kind of T shaped steel after the improvement, can make the better pouring of muddy earth connect as an organic whole. The gaps are also filled with concrete.
Further, preferably, the wing plate is a gear wing plate or the gear wing plate. Adopt the third type T shaped steel after the improvement, can make the better pouring of muddy earth connect as an organic whole. The gaps are also filled with concrete.
Further, as a preferable scheme, the roof comprises a flat roof and a sloping roof, wherein the frame of the sloping roof is made of angle steel.
The concrete used for the wall and the roof in the scheme is preferably light concrete, and the light concrete is adopted because the density of the light concrete is small, the density grade is generally 300-1800kg/m3, the density grade of the common foam concrete is 300-1200kg/m3, and in recent years, the ultra-light foam concrete with the density of 160kg/m3 is also applied to the construction engineering. Because the density of the light concrete is small, the material is adopted in building structures such as internal and external walls, floors, columns and the like of buildings, the self weight of the buildings can be reduced by about 25 percent generally, and the self weight of the buildings can reach 30 to 40 percent of the total weight of the structures. And compared with common concrete, the heat preservation effect is higher. Therefore, the foam concrete adopted in the building engineering has obvious economic benefit.
To sum up, owing to adopted above-mentioned technical scheme, the beneficial effects of the utility model are that:
1. the utility model discloses the field construction period of well integrated house improves 10% -30% to traditional building mode, has realized traditional building mode centimetre level error to the change of the error of factory manufacture millimeter level.
2. The utility model discloses the wall body and the roof in well integrated house are preferred to be adopted light concrete, because its density is little, adopt this kind of material in building structures such as the interior outer wall body of building, aspect, floor, stand, generally can make the building dead weight reduce about 25%, and some can reach 30% -40% of structure gross weight. Moreover, for structural members, if foam concrete is adopted to replace common concrete, the bearing capacity and the heat-insulating capacity of the structural members can be improved. Therefore, the foam concrete adopted in the building engineering has obvious economic benefit.
3. The utility model discloses well adoption angle steel and a rectangular pipe make bearing capacity reinforce to constitute the stair template, realized that integrated form house can adopt solid step.
4. In the utility model, the rectangular mould cavity body of the floor is directly hoisted to the wall body through mechanical equipment, and the site constructor only needs to pour cement for forming; need not the on-the-spot mould that sets up, practice thrift artifical engineering time and the degree of difficulty.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings that are required to be used in the embodiments will be briefly described below, it should be understood that the following drawings only illustrate some embodiments of the present invention, and therefore should not be considered as limiting the scope, and that for those skilled in the art, other relevant drawings can be obtained according to the drawings without inventive effort, wherein:
fig. 1 is a schematic view of the staircase of the present invention;
FIG. 2 is a schematic view of the structure of the lifting beam of the present invention;
FIG. 3 is a schematic view of the tread structure of the present invention;
FIG. 4 is a schematic view of the connection between the tread surface and the skirt surface;
FIG. 5 is a schematic view of the internal structure of the floor of the present invention;
FIG. 6 is a schematic view of the external structure of the floor of the present invention;
FIG. 7 is an unsealed wall structure of the present invention;
FIG. 8 is a sealing wall structure of the present invention;
FIG. 9 is a schematic view of the structure of the wall body of the present invention;
fig. 10 is a schematic view of the structure of the rectangular wing plate of the present invention;
FIG. 11 is a schematic view of the structure of the wing plate of the unit of the present invention;
FIG. 12 is a schematic view of the structure of the arc wing plate of the present invention;
fig. 13 is a schematic view of the structure of the gear wing plate of the present invention.
The labels in the figure are: 1-lifting beam, 2-kicking surface, 3-stepping surface, 201-first rectangular pipe, 300-short angle steel, 301-long angle steel, 302-first cement plate, 4-second rectangular pipe, 5-third rectangular pipe, 6-side plate, 7-bottom plate mould, 8-reinforcing steel bar, 9-T shaped steel, 10-fourth rectangular pipe, 11-connecting shaft, 12-second mud plate, 901-web plate, 902-rectangular wing plate, 903-unit wing plate, 904-arc wing plate and 905-gear wing plate.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are for purposes of illustration only and are not intended to limit the invention, i.e., the described embodiments are only some, but not all embodiments of the invention. The components of embodiments of the present invention, as generally described and illustrated in the figures herein, may be arranged and designed in a wide variety of different configurations.
Thus, the following detailed description of the embodiments of the present invention, presented in the accompanying drawings, is not intended to limit the scope of the invention, as claimed, but is merely representative of selected embodiments of the invention. Based on the embodiment of the present invention, all other embodiments obtained by the person skilled in the art without creative work belong to the protection scope of the present invention.
It is noted that relational terms such as "first" and "second," and the like, may be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Also, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising an … …" does not exclude the presence of other identical elements in a process, method, article, or apparatus that comprises the element.
An assembled integrated house structure comprises a house formed by a wall body, floors, stairs and a roof, wherein the stairs comprise a plurality of steps connected with the upper part of a lifting beam 1 in sequence; the step is formed by connecting a tread surface 3 and a kicking surface 2 at right angles; the tread surface 3 is a solid cuboid, and the side surface of the solid cuboid is formed by sequentially connecting 4 angle steels; the 4 angle steels comprise 2 short angle steels 300 and 2 long angle steels 301, a first cement plate 302 is arranged at the bottoms of the 4 angle steels to form a rectangular cavity with an open end, and right-angle surfaces of the 4 angle steels are positioned in the rectangular cavity; reinforcing steel bars and concrete are arranged in the rectangular cavity to form a solid cuboid; the kick surface 2 comprises a plurality of first rectangular tubes 201 which are connected up and down to form a rectangular body, and the lengths of the first rectangular tubes 201 are the same as that of the long angle steel 301; the upper surface of the first rectangular pipe 201 positioned at the top is connected with the bottom surface of the long angle steel 301, and the lower surface of the first rectangular pipe 201 positioned at the bottom is connected with the stepping surface 3 of the lifting beam 1 or the lower stage step; the side surface of the rectangular body and the side surface of the solid cuboid are positioned on the same plane;
the floor plate comprises two symmetrically arranged second rectangular pipes 4, and a floor plate mold frame formed by connecting two side plates 6, wherein the second rectangular pipes 4 are positioned on the frame surface of the floor plate mold frame and provided with connecting holes;
the number of the second rectangular tubes 4 is at least 2, a plurality of third rectangular tubes 5 which are parallel to each other and have equal intervals are connected between any 2 adjacent second rectangular tubes 4, and the length of each third rectangular tube 5 is smaller than that of each second rectangular tube 4; the third rectangular tube 5 is parallel to the upper surface of the second rectangular tube 4, and the height of the third rectangular tube 5 is lower than that of the second rectangular tube 4; a reinforcing mesh 8 is arranged between any two second rectangular pipes 4, and the reinforcing mesh 8 is connected with the lower bottom surfaces of the third rectangular pipes 5; concrete is arranged in a cavity of the floor plate mold frame to form a solid floor plate;
the wall body comprises a wall body cavity with a second cement board 12 as an outer wall; at least 2 rectangular tubes 10 in four numbers are uniformly arranged in a cavity of the wall body, and the wide side surface is connected between every two adjacent rectangular tubes 10 in four numbers through a plurality of connecting shafts 11; the two narrow side surfaces of the fourth rectangular pipe 10 are connected with T-shaped steel 9; the T-shaped steel 9 comprises a web 901 parallel to the narrow side surface and a wing plate perpendicular to and connected with the narrow side surface; one side of a web 901 is vertically connected with a wing plate, and the other side is connected with a second cement plate 12; two No. four rectangular pipes 10 are positioned at the head end and the tail end in the cavity of the wall body, and the wide side surfaces are connected with a No. two cement plate 12; the concrete and the wall cavity form a solid wall;
when in work: stair, floor board, wall body and roof are independently built in mill's processing, transport the scene through the crane, and the wall body is advanced the basement through the embedding and is passed through cement watering and connect, and a plurality of interconnect's floor board is laid to the wall body top, lays the reinforcing bar rectangular at the top of whole floor boards, and the watering mixes earth and forms a holistic floor, at last at top installation roof, inside sets up stair. All connection modes are the existing construction modes, and the scheme is not repeated.
The features and properties of the present invention will be described in further detail with reference to the following examples.
Example one
The utility model provides a pair of integrated housing structure of assembled, 4 root angle steels connect gradually, a rectangular pipe 201 and long angle steel 301 connect gradually through screw or welded mode.
When in work: when the stair template is produced in a factory, 4 pieces of angle steel, a first cement plate and a plurality of first rectangular pipes are adopted to form the stair template, wherein the first cement plate is used for sealing the bottom of the solid cuboid, so that the stair template is not exposed when concrete is filled; adopt angle steel and a rectangular pipe to make bearing capacity reinforce to constitute the stair template, realized that integrated form house can adopt solid step, No. one cement slab 302 need not demolish, with muddy earth integral connection.
Example two
In this embodiment, on the basis of the first embodiment, the reinforcing mesh 8 includes two layers of reinforcing faces that are disposed at equal intervals, wherein one layer of reinforcing face is parallel to the second rectangular pipe 4, and the other layer of reinforcing face is parallel to the third rectangular pipe 5. The side plate 6 is a cement plate or a steel plate. The bottom of the floor slab formwork is provided with a matched bottom plate mould 7, and the floor slab formwork is square.
When in work: the reinforcing mesh 8 comprises two layers of reinforcing steel bar surfaces which are arranged at equal intervals, each layer of reinforcing steel bar surface is a plurality of uniformly arranged reinforcing steel bars, the upper layer is welded with the third rectangular 5 pipe, and the lower layer is welded with the upper layer to form the reinforcing mesh, so that the safety is improved; transporting to the scene is solid cuboid floor board, with 5 both ends of No. three rectangular tubes and wall connection, and the frame face sets up the connecting hole and is connected with another floor board, lays whole floor in proper order, and the reinforcing bar is laid to whole floor board tops again, mixes earth through the watering at last, forms the floor.
EXAMPLE III
In this embodiment, on the basis of the second embodiment, 5 connecting shafts 11 are arranged between two adjacent four rectangular tubes 10 to connect the wide side surfaces. The wing plates are rectangular wing plates 902, and the rectangular wing plates 902 are rectangular plates and have the same height as the web 901. The wing plates are unit wing plates 903, and the unit wing plates 903 comprise a plurality of rectangular blocks which are uniformly arranged on the vertical central line of the web 901. The wing plate is an arc-shaped wing plate 904, the arc-shaped wing plate 904 is a rectangular plate with semicircular missing blocks, and the semicircular missing blocks are located at the connecting position of the wide side face of the fourth rectangular pipe 10. The wing plate is a gear wing plate 905 and the gear wing plate 905. The roof comprises a flat roof and a sloping roof, wherein the sloping roof is made of angle steel, reinforcing steel bars and light concrete.
When in work: the four rectangular tubes 10 are uniformly arranged in the same axial direction and are connected through a connecting shaft 11; therefore, workers do not need to repeatedly use the plumb line or the straight running rule to compare the verticality of the wall in the construction process; after the fourth rectangular pipe 10 is connected, the T-shaped steel 9 is vertically connected to the side face of the non-connecting shaft 11, the T-shaped steel 9 is also two steel plates which are vertical to each other, measurement is not needed, and finally, a second cement plate 12 is arranged on the periphery of the frame to form a wall cavity; concrete is poured inside the wall body to form the wall body;
preferably, one: the connecting shaft 11 is made of steel bars, the height of the wall body of the house is about 3 meters conventionally, 5 connecting shafts are uniformly arranged, the cost performance is highest on the premise of ensuring the quality, and the four rectangular pipes 10 at the head end and the tail end are connected with the connecting shaft 11 in a welding mode; the middle fourth rectangular tube 10 can be connected with the connecting shaft 11 on the wide side surface through welding, or connected with the fourth rectangular tube 10 at the head end and the tail end through the connecting shaft 11 by arranging a connecting shaft through hole and penetrating through the connecting shaft through hole.
Preferably, the second step: no. four rectangular pipes 10 are square rectangular pipes, adopt any one in the third kind of T shaped steel after the improvement, can make the better pouring of muddy earth connect as an organic wholely. The problems that the traditional wall is easy to crack and not waterproof, mortar needs to be coated on the surface, and the traditional wall is not heat-insulated and shock-resistant are solved; because all leave the space for above-mentioned three kinds of structures, after the space department sets up the buried pipe, fill light muddy earth. The second cement board 12 of the scheme does not need to be dismantled and is integrally connected with concrete; the problems that the traditional wall construction mode causes lower construction efficiency, longer construction period and high cost, and the construction quality has risks are solved.
The embedded pipe comprises a water pipe, an air pipe, a downpipe and other building conventional embedded pipes, and cement is filled in the cavity of the rectangular pipe 10.
The above description is only for the purpose of illustrating the preferred embodiments of the present invention and is not intended to limit the scope of the present invention, and any modifications, equivalents and improvements made by those skilled in the art within the spirit and principle of the present invention should be included in the scope of the present invention.

Claims (10)

1. An assembled integrated house structure comprises a house formed by a wall body, floors, stairs and a roof, wherein the stairs comprise a plurality of steps connected with the upper part of a lifting beam (1) in sequence; the floor is formed by connecting a plurality of floor plates; the method is characterized in that: the step is formed by connecting a tread surface (3) and a kicking surface (2) at right angles; the tread surface (3) is a solid cuboid, and the side surface of the solid cuboid is formed by sequentially connecting 4 angle steels; the 4 angle steels comprise 2 short angle steels (300) and 2 long angle steels (301), a first cement plate (302) is arranged at the bottoms of the 4 angle steels to form a rectangular cavity with an open end, and right-angle surfaces of the 4 angle steels are positioned in the rectangular cavity; reinforcing steel bars and concrete are arranged in the rectangular cavity to form a solid cuboid; the kick surface (2) comprises a plurality of first rectangular tubes (201) which are connected up and down to form a rectangular body, and the lengths of the first rectangular tubes (201) and the long angle steel (301) are the same; the upper surface of the first rectangular pipe (201) positioned at the top is connected with the bottom surface of the long angle steel (301), and the lower surface of the first rectangular pipe (201) positioned at the bottom is connected with the stepping surface (3) of the lifting beam (1) or the lower step; the side surface of the rectangular body and the side surface of the solid cuboid are positioned on the same plane;
the floor plate comprises two second rectangular pipes (4) which are symmetrically arranged, and a floor plate mold frame is formed by connecting two side plates (6), wherein the second rectangular pipes (4) are arranged on the frame surface of the floor plate mold frame and provided with connecting holes;
the number of the second rectangular tubes (4) is at least 2, a plurality of third rectangular tubes (5) which are parallel to each other and have equal intervals are connected between any 2 adjacent second rectangular tubes (4), and the length of each third rectangular tube (5) is smaller than that of each second rectangular tube (4); the third rectangular tube (5) is parallel to the upper surface of the second rectangular tube (4), and the height of the third rectangular tube (5) is lower than that of the second rectangular tube (4);
reinforcing mesh (8) is arranged between any two second rectangular pipes (4), and the reinforcing mesh (8) is connected with the lower bottom surfaces of the third rectangular pipes (5); concrete is arranged in a cavity of the floor plate mold frame to form a solid floor plate;
the wall body comprises a wall body cavity with a second cement board (12) as an outer wall; at least 2 rectangular tubes (10) of four numbers are uniformly arranged in the cavity of the wall body, and the wide side surfaces of two adjacent rectangular tubes (10) of four numbers are connected through a plurality of connecting shafts (11); the two narrow side surfaces of the fourth rectangular pipe (10) are connected with T-shaped steel (9); the T-shaped steel (9) comprises a web plate (901) parallel to the narrow side surface and a wing plate perpendicular to and connected with the narrow side surface; one side of the web plate (901) is vertically connected with a wing plate, and the other side is connected with a second cement plate (12); wherein, two No. four rectangular pipes (10) are positioned at the head end and the tail end in the cavity of the wall body, and the wide side surfaces are connected with a No. two cement board (12); the wall body is characterized by further comprising concrete, and the concrete and the wall body cavity form a solid wall body.
2. A modular integrated housing structure according to claim 1, wherein: the 4 angle steels are connected in sequence in a screw or welding mode, and the first rectangular pipe (201) and the long angle steel (301) are connected in sequence in a screw or welding mode.
3. A modular integrated housing structure according to claim 1, wherein: the reinforcing mesh (8) comprises two layers of reinforcing steel bar surfaces, wherein one layer of reinforcing steel bar surface is parallel to the second rectangular pipe (4), and the other layer of reinforcing steel bar surface is parallel to the third rectangular pipe (5).
4. A modular integrated housing structure according to claim 1, wherein: the side plate (6) is a cement plate or a steel plate, the bottom of the floor slab formwork is provided with a matched bottom plate mould (7), and the floor slab formwork is square.
5. A modular integrated housing structure according to claim 4, wherein: and 5 connecting shafts (11) are arranged between two adjacent four rectangular pipes (10) to connect the wide side surfaces.
6. A modular integrated housing structure according to claim 4, wherein: the wing plates are rectangular wing plates (902), the rectangular wing plates (902) are rectangular plates, and the heights of the rectangular wing plates (902) are the same as those of the web plates (901).
7. A modular integrated housing structure according to claim 4, wherein: the wing plates are unit wing plates (903), and the unit wing plates (903) comprise a plurality of rectangular blocks which are uniformly arranged on the vertical center line of the web plate (901).
8. A modular integrated housing structure according to claim 4, wherein: the wing plate is an arc-shaped wing plate (904), the arc-shaped wing plate (904) is a rectangular plate with semicircular lack blocks, and the semicircular lack blocks are located at the connecting position of the wide side face of the fourth rectangular tube (10).
9. A modular integrated housing structure according to claim 4, wherein: the pterygoid lamina is gear pterygoid lamina (905), gear pterygoid lamina (905).
10. A modular integrated housing structure according to claim 1, wherein: the roof comprises a flat roof and a sloping roof, wherein the frame of the sloping roof is made of angle steel.
CN201921060176.0U 2019-07-09 2019-07-09 Assembled integrated house structure Active CN210369335U (en)

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Cited By (2)

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CN110258810A (en) * 2019-07-09 2019-09-20 四川福美来新型建筑材料有限公司 A kind of assembled integrated house structure
CN111855368A (en) * 2020-07-06 2020-10-30 河海大学 Test block manufacturing die for researching characteristics of gelled sand gravel layer

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110258810A (en) * 2019-07-09 2019-09-20 四川福美来新型建筑材料有限公司 A kind of assembled integrated house structure
CN111855368A (en) * 2020-07-06 2020-10-30 河海大学 Test block manufacturing die for researching characteristics of gelled sand gravel layer

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