CN212200826U - Multipurpose prefabricated heat-insulation board and wallboard - Google Patents

Multipurpose prefabricated heat-insulation board and wallboard Download PDF

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Publication number
CN212200826U
CN212200826U CN202020109248.2U CN202020109248U CN212200826U CN 212200826 U CN212200826 U CN 212200826U CN 202020109248 U CN202020109248 U CN 202020109248U CN 212200826 U CN212200826 U CN 212200826U
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steel
board
wallboard
plate
plate body
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苏群山
黄道元
祝建明
陈晓寒
张俊峰
雒加岩
乔天顺
吴远超
陈建中
李托
杨庆岩
曾良
杜雨来
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Henan DR Construction Group Co Ltd
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Henan DR Construction Group Co Ltd
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Abstract

The utility model relates to the technical field of building engineering plates, in particular to a multipurpose prefabricated heat-insulating plate and a wallboard, the existing building plate adopts EPS plates to directly wrap C-shaped steel, the bearing capacity is insufficient, the connection between an upper layer and a lower layer is not firm, the multipurpose prefabricated heat-insulating plate comprises a plate body, the plate body comprises a main plate and a steel frame which are combined together, one end of the plate body is provided with a convex rabbet, the other end corresponding to the convex rabbet is provided with a concave rabbet, the steel frame comprises a plurality of steel keels, the steel keels are arranged on the same side of the main board in an array mode, the firm type multipurpose prefabricated heat-insulation board with the steel frame and the main board integrated is produced, the bearing performance is doubled, the EPS wallboard is lighter and more convenient, completely subverts the application range and the application function of the conventional EPS wallboard, is suitable for the installation of various forms of walls, and has good development prospect in the technical field of building engineering boards.

Description

Multipurpose prefabricated heat-insulation board and wallboard
Technical Field
The utility model relates to a building engineering panel technical field especially relates to multipurpose prefabricated heat preservation board and wallboard.
Background
The EPS boards are one of main building materials in modern environment-friendly and energy-saving buildings, the traditional EPS boards have various styles, a plurality of sets of dies need to be developed, and a part of boards adopt pure EPS foam to wrap common C-shaped steel.
Therefore, a multipurpose prefabricated heat-insulation board and a construction process thereof need to be researched and developed on the basis of the prior art, the mould is saved, the multipurpose prefabricated heat-insulation board can be directly suitable for low-layer or multi-layer house wall structures easy to install, the bearing performance is doubled, the multipurpose prefabricated heat-insulation board is light and convenient, the application range and the application function of the conventional EPS wallboard are completely overturned, and the multipurpose prefabricated heat-insulation board can also be used for internal and external filler walls of a frame structure.
SUMMERY OF THE UTILITY MODEL
To the above-mentioned condition, for overcoming prior art's defect, the utility model provides a multipurpose prefabricated insulation board and wallboard solves that current EPS panel wall body bearing capacity is not enough, go up the insecure scheduling problem of connection between the lower floor.
The multipurpose prefabricated heat-insulation board comprises a board body, wherein the board body comprises a main board and a steel frame which are compounded together, one end of the board body is provided with a convex rabbet, the other end of the board body, corresponding to the convex rabbet, is provided with a concave rabbet, the steel frame comprises a plurality of steel keels, the steel keels are arranged on the same side of the main board in an array mode, the steel keels are C-shaped steel with inward curled edges, the steel frame further comprises angle steel and batten plates, auxiliary heat-insulation boards form parts of a stable structure, the angle steel is located at four long edges of the upper end face and the lower end face of the board body and the side faces of the board body and is matched with the batten plates to form a stable board body.
Furthermore, each steel keel is zinc-plated 'C' shaped steel, the specification can adopt 100 × 40 × 10mm, and when the steel keel is combined with a main board, compared with the conventional C-shaped steel skeleton, the steel keel can provide larger vertical bearing capacity and horizontal bearing capacity of the wall body under the condition of the same material and section size when used as a wallboard.
The wall board is used for a bearing wall and comprises bearing wall board units, each bearing wall board unit comprises two first board body units arranged in a mirror image mode, each first board body unit is a board body with a groove and a reinforcing steel strip in the middle, each first board body unit is obtained by improving the first board body unit on the basis of the board body, the first board body unit and a main board are provided with the same set of die, the reinforcing steel strips and the steel keels are located on the same side, one side, provided with the steel keels, of each first board body unit serves as the outer side face of the bearing wall board unit, the grooves in the middles of the two first board body units after mirror image arrangement correspond to form cavities in the middles of the bearing wall board units, uninterrupted hidden columns are arranged in the cavities, the bearing capacity of the wall body is improved, the stability between layers of the wall body is more favorable for the safety and stability of a multilayer structure, and angle steel angles of 90 degrees are, the steel keel is matched with the angle steel groove to play a role in supporting connection, and the plate body units are connected through the dropping plates.
Furthermore, in the bearing wallboard unit, the hidden column comprises a plurality of reinforcing steel bars and concrete poured among the reinforcing steel bars, and each reinforcing steel bar is positioned at the four corners of the cavity in the middle of the bearing wallboard unit and is stressed longitudinally.
Furthermore, in the load-bearing wall panel unit, the embedded columns are finished steel columns.
Furthermore, the batten plate is a steel sheet with the width of 5mm and the thickness of 1mm, and the integrity of the wallboard is improved by adding the batten plate, and meanwhile, the bearing capacity of the wallboard is improved.
The wallboard for non-bearing wall, the wallboard includes No. two plate body units, No. two plate body units are for having a plurality of recesses and the plate body of strengthening the steel band, each strengthen the steel band and distribute in the one side that does not take the steel joist on the plate body, each the recess sets up in one side at steel joist place and corresponds with strengthening the steel band, and the relative attenuation in relevant position behind the wallboard setting recess is consequently arranged with strengthening the steel band correspondence to prevent the wallboard absolutely, set up the square steel pipe in the recess.
Further, the main board may be one of an EPS board, a foam concrete board or a polyphenyl granule foam concrete board, and when the prefabricated heat insulation board is used as a building member, the EPS board should be modified to achieve a fire rating not lower than B1.
The production method of the multipurpose prefabricated heat-insulation board comprises the following steps: s1, manufacturing an integral steel frame, wherein the steel frame comprises steel keels 2 and reinforcing steel belts 6, the number of the reinforcing steel belts 6 is determined according to the structures of different wallboards and the number of grooves in the wallboards, and the grooves are set according to the stress condition of the wallboards which are analyzed in advance and can not be set; s2, when the EPS boards are used as main boards, the steel frame is integrally placed in an EPS board forming machine; when a concrete slab is used as a main board, a formwork is erected; s3 the whole steel frame that will make the completion is shaping in the lump with mainboard 1, the structure according to the wallboard simultaneously reserves recess 5 according to quantity, in time need not, do not need to reserve the recess when the preparation, steel frame evenly imbeds on the top layer of mainboard, nevertheless do not pierce through mainboard 1, no chamber zonulae occludens between mainboard and the steel frame, strengthen the wholeness that the existence of steel band can better guarantee the wallboard, realize with cast in situ concrete better connection, strengthen the wholeness, can not break because of the fluting.
A method for constructing a wall plate of a load-bearing wall by using a multipurpose prefabricated heat-insulation plate,
s1, on the basis of a plate body unit, reserving a groove and additionally arranging a reinforcing steel belt to finish the manufacture of a first plate body unit;
s2, fixedly guiding a beam by using self-tapping screws, and installing a first plate unit;
s3, arranging a hidden column in the reserved groove, and mounting a first plate unit on the other side in a mirror image mode;
s4, arranging angle steel at the edge with the steel keel of the first plate body unit combined in a mirror image mode, and fixing the two units by using batten plates to form a bearing wall plate unit;
s5, sequentially and repeatedly carrying out combined installation of the bearing wall plate units until the integral installation of the wall plate is finished;
s6, laying a cable groove box and the like in the integral wall plate;
s7, installing wallboards on the inner and outer surfaces of the wall;
and S8, connecting the high wall boards layer by layer through uninterrupted hidden columns on the bearing wall units.
Furthermore, in the construction method of the multipurpose prefabricated heat-insulation board as the bearing wall, the hidden column adopts a mode of adding steel bars and concrete, then in step 3, a steel bar framework is bound in the groove, and in step 8, concrete is poured in the steel bar framework.
Furthermore, in the building method of the multipurpose prefabricated heat-insulation board as the bearing wall, the hidden column uses a finished steel column, and the finished steel column is pushed into the reserved groove in the step 3.
A method for constructing a wall board of a non-bearing wall by using a multipurpose prefabricated heat-insulation board,
s1, fixedly guiding a beam by using self-tapping screws, and then installing a wallboard, wherein one side of the wallboard with a steel keel is used as the inner surface of a wall body, and the other side of the wallboard is used as the outer surface;
s2, firmly connecting the steel keel on the inner surface of the wall body with the building frame column;
s3, laying a wallboard on the inner surface of the wall body to serve as a decoration base plate;
s4, sequentially laying a glass fiber net layer, a polymer mortar layer, a putty layer and a coating layer on the outer surface of the wall from inside to outside;
furthermore, in the construction method of the multipurpose prefabricated heat-insulation board as the non-bearing wall, if the wind-resistant column is not needed, the wallboard is made of a board body.
Furthermore, in the construction method of the multipurpose prefabricated heat-insulation board as the non-bearing wall, if a wind-resistant column needs to be arranged, the wallboard adopts a second plate body unit, and the construction is realized by arranging a square steel pipe in a groove of the second plate body unit.
Furthermore, the reinforced steel strip is formed by steel sections with two ends provided with right-angle bends.
Furthermore, each steel frame uses section steel with the thickness of 0.8-1.2 mm.
Furthermore, each groove corresponds to the center of the corresponding reinforced steel strip, and the distance difference between the ends of the grooves corresponding to the reinforced steel strips is 20 mm.
Furthermore, the depth of each groove is less than or equal to 3/4 of the thickness of the main board.
Further, the main body thickness of the main plate is 70 mm.
Still further, the wallboard may be one of a calcium silicate board or a cement fiberboard.
The utility model has the technical effects that the prefabricated heat-insulation board can be used for multiple purposes, reduces the investment of the mould, produces various wallboards and is applied to bearing walls or non-bearing walls; the steel frame is arranged on one side only, the steel frame is effectively compounded with the main board, the grooves are designed ingeniously, the embedded columns are arranged in the grooves, and compared with the conventional EPS boards and the existing EPS boards with the steel frames arranged on two sides in the market, the novel EPS board is more scientific in structure, lighter and flexible, high in combination and assembly speed and more convenient to operate, can bear more-acting vertical and horizontal loads under the condition of the same material and the same cross section, and completely covers the application range of the conventional EPS board wall; the flexible design of the steel frame effectively improves the integrity and the bearing capacity of the heat-insulation board; the combination of the reinforced steel belt and the groove ensures that the plate cannot be broken, and the integrity of the member is increased; due to the design of the concave-convex tongue-and-groove at the two ends of the prefabricated heat-insulation plate, the heat-insulation plates are quickly connected in an occluded manner, the assembly is convenient and efficient, and the seepage-proofing and heat-insulation effects of the wall body are ensured; the insulation board is used as a decorative base plate by laying a calcium silicate board and a cement fiberboard on the surface, so that the operation is simple and convenient, and the fireproof performance and the bearing effect of the wall body are improved; when the prefabricated heat-insulation board is used as a peripheral wall panel, decoration of the outer surface of a wall body can be realized by directly laying a glass fiber net, scraping polymer mortar and painting putty and brushing paint, and compared with conventional similar wall body external decoration, the prefabricated heat-insulation board has the advantages of simple process and low cost.
Drawings
Fig. 1 is a schematic diagram of the plate structure of the present invention.
Figure 2 is the utility model discloses load-bearing wall panel unit structure sketch map.
Fig. 3 is a schematic view of the structure of a first plate unit of the present invention.
Fig. 4 is a schematic structural diagram of the first plate unit as a load-bearing wall.
Figure 5 is the structure schematic diagram that No. two plate body units of the utility model were built as non-bearing wall.
Fig. 6 is the structure schematic diagram of the utility model discloses the plate body is built as non-bearing wall.
Figure 7 is the utility model discloses non-bearing wall builds part enlarged structure sketch map.
100. The novel steel plate comprises a plate body, 200 load-bearing wallboard units, 10 first plate body units, 20 second plate body units, 1 main plate, 2 steel keels, 3 protruding tongues and grooves, 4 recessed tongues and grooves, 5 grooves, 6 reinforcing steel strips, 7 angle steel, 8 batten plates, 9 hidden columns, 11 wallboard, 12 reinforcing steel bars, 13 glass fiber mesh layers, 14 polyurethane mortar layers, 15 putty layers, 16 coating layers, 17 framework columns and 18 square steel pipes
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.
It should be noted that in the description of the present invention, the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc. indicating the directions or positional relationships are based on the directions or positional relationships shown in the drawings, which are only for convenience of description, and do not indicate or imply that the device or element must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," "third," and "fourth" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
Furthermore, it should be noted that, in the description of the present invention, unless otherwise explicitly specified or limited, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meaning of the above terms in the present invention can be understood by those skilled in the art according to specific situations.
The first embodiment is as follows: the multipurpose prefabricated heat-insulation board comprises a board body 100, wherein the board body 100 comprises a main board 1 and a steel frame which are combined together, one end of the board body 100 is provided with a convex rabbet 3, the other end of the board body 100 corresponding to the convex rabbet is provided with a concave rabbet 4, the steel frame comprises a plurality of steel keels 2, the steel keels 2 are arranged on the same side of the main board 1 in an array mode, the steel keels are C-shaped steel with inward curled edges, the steel frame further comprises angle steel and auxiliary heat-insulation boards with batten boards to form parts of a stable structure, and the angle steel is located at four long edges of the upper end face and the lower end face of the board body and on the side face of the board body and is matched with the batten boards to form a stable board body frame.
On the basis of the first embodiment, each steel keel 2 is made of zinc-plated C-shaped steel, the specification can adopt 100-40-10 mm, and when the steel keel is combined with a main plate and used as a wallboard, compared with a conventional C-shaped steel framework, the steel keel can provide larger vertical bearing capacity and horizontal bearing capacity of a wall body under the condition of the same material and section size.
Example two: on the basis of the first embodiment, the wall panel is used for a bearing wall and comprises a bearing wall panel unit 200, the bearing wall panel unit 200 comprises two first panel units 10 arranged in a mirror image manner, each first panel unit 10 is a panel body 100 with a groove 5 and a reinforcing steel strip 6 in the middle, the first panel unit 10 is obtained by improving on the basis of the panel body 100 and uses the same set of mould with the main panel 1, the reinforcing steel strip 6 and the steel keel 2 are positioned on the same side, one side of each first panel unit 10 with the steel keel 2 is used as the outer side surface of the bearing wall panel unit 200, the groove in the middle of the two first panel units 10 arranged in the mirror image manner corresponds to a cavity formed in the middle of the bearing wall panel unit 200, uninterrupted hidden columns 9 are arranged in the cavity, the bearing capacity of the wall body is improved, the stability between layers of the wall body is more beneficial to the safety and stability of a multilayer structure, each set up on the edge that has steel joist on the bearing wallboard unit 200 and be 90 right angles angle steel 7, steel joist 2 agrees with in the angle steel inslot, plays the effect of supporting the connection, connect through the board 8 of breaking down between the plate body unit 10, lacing plate 8 is width 5mm, thickness 1 mm's steel sheet, and the adding of lacing plate 8 has increased the wholeness of wallboard, has increased the bearing capacity of wallboard simultaneously.
On the basis of the second embodiment, the hidden column 9 comprises a plurality of reinforcing bars 12 and concrete poured among the reinforcing bars 12, and each reinforcing bar 12 is located at four corners of the cavity in the middle of the load-bearing wall panel unit 200 and is stressed longitudinally.
On the basis of the second embodiment, the hidden column 9 is a finished steel column.
Example three: on the basis of embodiment one, add the wallboard of the non-bearing wall of anti-wind post, the wallboard includes No. two plate body units 20, No. two plate body units 20 are for having a plurality of recesses 5 and the plate body 100 of strengthening the steel band 6, each strengthen the steel band and distribute in the plate body and do not take one side of steel joist, each recess 5 set up in one side at steel joist 2 place and correspond with strengthening the steel band 6, the relative attenuation in relevant position behind the wallboard setting recess, consequently correspond with strengthening the steel band and arrange to prevent that the wallboard is disconnected, set up square steel pipe 18 in the recess 5.
In the above embodiments, the main board 1 may be one of an EPS board, a foam concrete board or a polyphenyl particle foam concrete board, and when the prefabricated heat insulation board is used as a building member, the EPS board should be modified to achieve a fire rating not lower than B1.
The production method of the multipurpose prefabricated heat-insulation board comprises the following steps: s1, manufacturing an integral steel frame, wherein the steel frame comprises steel keels 2 and reinforcing steel belts 6, the number of the reinforcing steel belts 6 is determined according to the structures of different wallboards and the number of grooves in the wallboards, and the grooves are set according to the stress condition of the wallboards which are analyzed in advance and can not be set; s2, when the EPS boards are used as main boards, the steel frame is integrally placed in an EPS board forming machine; when a concrete slab is used as a main board, a formwork is erected; s3 the whole steel frame that will make the completion is shaping in the lump with mainboard 1, the structure according to the wallboard simultaneously reserves recess 5 according to quantity, in time need not, do not need to reserve the recess when the preparation, steel frame evenly imbeds on the top layer of mainboard, nevertheless do not pierce through mainboard 1, no chamber zonulae occludens between mainboard and the steel frame, strengthen the wholeness that the existence of steel band can better guarantee the wallboard, realize with cast in situ concrete better connection, strengthen the wholeness, can not break because of the fluting.
A method for constructing a wall board by using a multipurpose prefabricated heat-insulation board as a bearing wall,
s1, on the basis of a plate body unit, reserving a groove 5 and additionally arranging a reinforcing steel strip 6 to finish the manufacture of a first plate body unit 10;
s2, fixedly guiding a beam by using self-tapping screws, and installing a first plate body unit 10;
s3, arranging a hidden column 9 in the reserved groove, and then installing a first plate body unit 10 on the other side in a mirror image mode;
s4, arranging angle steel 7 at the edge with the steel keel 2 of the first plate body unit combined in a mirror image mode, and fixing the two units by using batten plates 8 to form a bearing wall plate unit 200;
s5, sequentially and repeatedly carrying out combined installation on the bearing wall plate units 200 until the whole installation of the wall plate is finished;
s6, laying a cable groove box and the like in the integral wall plate;
s7, installing wall boards 11 on the inner and outer surfaces of the wall body;
and S8, connecting the high wall boards layer by layer through uninterrupted hidden columns 9 on the bearing wall units.
In the construction method of the multipurpose prefabricated heat-insulation board as the bearing wall, the hidden columns are in a mode of adding steel bars and concrete, then in step 3, the steel bar frameworks are bound in the grooves, and in step 8, concrete is poured in the steel bar frameworks.
In the building method of the multipurpose prefabricated heat-insulation board as the bearing wall, the hidden column uses a finished steel column, and the finished steel column is pushed into the reserved groove in the step 3.
A method for constructing a wall board of a non-bearing wall by using a multipurpose prefabricated heat-insulation board,
s1, fixedly guiding a beam by using self-tapping screws, and then installing a wallboard, wherein one side of the wallboard, which is provided with a steel keel 2, is used as the inner surface of a wall body, and the other side of the wallboard is used as the outer surface;
s2, firmly connecting the steel keel 2 on the inner surface of the wall body with a building frame column 17;
s3, laying a wallboard 11 on the inner surface of the wall body to serve as a decoration base plate;
s4, sequentially laying a glass fiber net layer 13, a polymer mortar layer 14, a putty layer 15 and a coating layer 16 on the outer surface of the wall from inside to outside;
in the method for constructing the multipurpose prefabricated heat-insulation board as the non-bearing wall, if the wind-resistant column is not needed, the wallboard adopts the board body 100.
In the construction method of the multipurpose prefabricated heat-insulation board as the non-bearing wall, if a wind-resistant column is required to be arranged, the wallboard adopts the second plate body unit 20, and the construction is realized by arranging the square steel pipe 18 in the groove of the second plate body unit 20.
In the above embodiments, the reinforcing steel strip 6 is a section steel with two ends bent at right angles, each steel frame uses a section steel with a thickness of 0.8-1.2mm, each groove 5 corresponds to the center of the corresponding reinforcing steel strip 6, the distance between the groove 5 and the corresponding end of the reinforcing steel strip 6 is 20mm, the depth of each groove 5 is less than or equal to 3/4 of the thickness of the main plate 1, the thickness of the main body of the main plate 1 is 70mm, and the wall plate 11 can be one of a calcium silicate plate or a cement fiberboard.
The utility model has the technical effects that the prefabricated heat-insulation board can be used for multiple purposes, reduces the investment of the mould, produces various wallboards and is applied to bearing walls or non-bearing walls; the steel frame is arranged on one side only, the steel frame is effectively compounded with the main board, the grooves are designed ingeniously, the embedded columns are arranged in the grooves, and compared with the conventional EPS boards and the existing EPS boards with the steel frames arranged on two sides in the market, the novel EPS board is more scientific in structure, lighter and flexible, high in combination and assembly speed and more convenient to operate, can bear more-acting vertical and horizontal loads under the condition of the same material and the same cross section, and completely covers the application range of the conventional EPS board wall; the flexible design of the steel frame effectively improves the integrity and the bearing capacity of the heat-insulation board; the combination of the reinforced steel belt and the groove ensures that the plate cannot be broken, and the integrity of the member is increased; due to the design of the concave-convex tongue-and-groove at the two ends of the prefabricated heat-insulation plate, the heat-insulation plates are quickly connected in an occluded manner, the assembly is convenient and efficient, and the seepage-proofing and heat-insulation effects of the wall body are ensured; the insulation board is used as a decorative base plate by laying a calcium silicate board and a cement fiberboard on the surface, so that the operation is simple and convenient, and the fireproof performance and the bearing effect of the wall body are improved; when the prefabricated heat-insulation board is used as a peripheral wall panel, decoration of the outer surface of a wall body can be realized by directly laying a glass fiber net, scraping polymer mortar and painting putty and brushing paint, and compared with conventional similar wall body external decoration, the prefabricated heat-insulation board has the advantages of simple process and low cost.
The present invention has been described in detail with reference to the specific embodiments and examples, but these should not be construed as limitations of the present invention. Numerous variations and modifications can be made by those skilled in the art without departing from the principles of the invention, which should also be considered as within the scope of the invention.

Claims (7)

1. The multipurpose prefabricated heat-insulation board comprises a board body (100), wherein the board body (100) comprises a main board (1) and a steel frame which are compounded together, and the multipurpose prefabricated heat-insulation board is characterized in that one end of the board body (100) is provided with a convex rabbet (3) and the other end, corresponding to the convex rabbet, of the board body is provided with a concave rabbet (4), the steel frame comprises a plurality of steel keels (2), and the steel keels (2) are arrayed on the same side of the main board (1).
2. The multipurpose prefabricated insulation panel of claim 1, wherein each of the steel frames uses section steel having a thickness of between 0.8 and 1.2 mm.
3. Wall panel for a load-bearing wall, comprising load-bearing wall panel units (200), characterized in that, the bearing wall panel unit (200) comprises two first panel units (10) arranged in a mirror image mode, each first panel unit (10) is a panel body (100) with a groove (5) and a reinforcing steel strip (6) in the middle, the reinforcing steel strip (6) and the steel keel (2) are positioned on the same side, one surface of each first plate body unit (10) with the steel keel (2) is used as the outer side surface of the bearing wallboard unit (200), the middle part of the bearing wallboard unit (200) is provided with a cavity formed by two grooves (5), uninterrupted hidden columns (9) are arranged among the layers in the cavity, angle steel (7) is arranged on the edge with the steel keel on each bearing wall panel unit (200), the plate body units (10) are connected through a dropping plate (8).
4. A wall panel according to claim 3, characterized in that the studs (9) comprise a plurality of reinforcement bars (12) and concrete cast between the reinforcement bars (12).
5. A wall panel according to claim 3, characterized in that the non-rising post (9) is a finished steel post.
6. The wallboard for non-bearing wall, characterized in that, the wallboard includes No. two plate body units (20), No. two plate body units (20) are plate body (100) for having a plurality of recesses (5) and strengthening steel band (6), each strengthen steel band (6) and distribute in plate body (100) and do not take one side of steel joist (2), each recess (5) set up in one side at steel joist (2) place and correspond with strengthening steel band (6).
7. A wall panel according to claim 3 or claim 6 wherein the depth of each recess is less than or equal to 3/4 times the thickness of the main panel.
CN202020109248.2U 2020-01-18 2020-01-18 Multipurpose prefabricated heat-insulation board and wallboard Active CN212200826U (en)

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Application Number Priority Date Filing Date Title
CN202020109248.2U CN212200826U (en) 2020-01-18 2020-01-18 Multipurpose prefabricated heat-insulation board and wallboard

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115012518A (en) * 2022-06-30 2022-09-06 河南省第二建设集团有限公司 Wall and floor connecting joint and connecting method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115012518A (en) * 2022-06-30 2022-09-06 河南省第二建设集团有限公司 Wall and floor connecting joint and connecting method
CN115012518B (en) * 2022-06-30 2024-06-11 河南省第二建设集团有限公司 Wall and floor slab connecting node and connecting method

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