CN214423687U - Prefabricated steel structure integrated assembly type green building component - Google Patents

Prefabricated steel structure integrated assembly type green building component Download PDF

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Publication number
CN214423687U
CN214423687U CN202120583107.9U CN202120583107U CN214423687U CN 214423687 U CN214423687 U CN 214423687U CN 202120583107 U CN202120583107 U CN 202120583107U CN 214423687 U CN214423687 U CN 214423687U
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prefabricated
supporting beam
cardboard
close
plate
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CN202120583107.9U
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周星岑
王朝
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Shenzhen Ruixin Steel Structure Engineering Co ltd
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Shenzhen Ruixin Steel Structure Engineering Co ltd
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Abstract

The utility model belongs to the technical field of building element and specifically relates to a green building element of prefabricated steel construction integration assembled is related to, it includes a supporting beam, prefabricated wallboard and coupling assembling, supporting beam and the vertical setting of prefabricated wallboard, coupling assembling includes the picture peg, the fixed block, cardboard and elastic component, the picture peg can be dismantled and connect in the one end that prefabricated wallboard is close to a supporting beam, the fixed block rigid coupling is in the picture peg bottom, prefabricated wallboard has been close to the picture peg top and has been seted up the holding tank, the cardboard is located the holding tank, an elastic component rigid coupling for driving the cardboard to a supporting beam removal is between cardboard and prefabricated wallboard, a supporting beam is close to coupling assembling department and offers the slot that is used for holding picture peg and cardboard, the slot sets up with outside intercommunication, set up the fixed slot that is used for holding the fixed block in the supporting beam. This application coupling assembling inserts in a supporting beam and forms the joint with a supporting beam, and it is fixed with a supporting beam to prefabricate wallboard, the simple operation, weak point consuming time has the effect that improves the efficiency of construction.

Description

Prefabricated steel structure integrated assembly type green building component
Technical Field
The application relates to the field of building components, in particular to a prefabricated steel structure integrated assembly type green building component.
Background
The building member refers to each element constituting a building, and mainly includes a beam, a wall, a roof, and the like.
The building is usually built in a cast-in-place mode or a cast-in-place secondary mode of an assembly type building component, and the cast-in-place mode is to uniformly stir various raw materials into concrete with a concrete mixer according to the concrete construction mixing proportion at a construction site and then pour the concrete; the on-site secondary pouring of the fabricated building components is to finish the construction of the building by prefabricating the prefabricated wall boards and other building components in a factory by adopting concrete and then conveying the building components to a construction site for reinforced concrete on-site pouring and splicing.
Aiming at the related technologies, the inventor thinks that the building construction is complex, the in-situ pouring is greatly limited by weather, the construction consumes long time, and the defects of low construction efficiency exist.
SUMMERY OF THE UTILITY MODEL
In order to improve the efficiency of construction, this application provides a green building element of prefabricated steel structure integration assembled.
The application provides a green building element of prefabricated steel construction integration assembled adopts following technical scheme:
a prefabricated steel structure integrated assembly type green building component comprises a supporting beam, a prefabricated wall board and a connecting assembly, wherein the supporting beam and the prefabricated wall board are vertically arranged, the connecting assembly comprises an inserting plate, a fixing block, a clamping plate and an elastic part, the inserting plate is detachably connected to one end, close to the supporting beam, of the prefabricated wall board, the fixing block is fixedly connected to the inserting plate and used for enabling the supporting beam and the prefabricated wall board to be clamped, the fixing block is spaced from the prefabricated wall board, a containing groove is formed in the position, close to the supporting beam, of the prefabricated wall board, the containing groove is located on one side, far away from the fixing block, of the inserting plate and is connected with the prefabricated wall board in a sliding mode, the elastic part is fixedly connected between the clamping plate and the prefabricated wall board and used for driving the clamping plate to move towards the position, close to the connecting assembly, inserting grooves are formed in the position, close to the connecting assembly, the inserting grooves are communicated with the outside, fixing grooves used for containing the fixing block are formed in the supporting beam, picture peg and cardboard are located the slot, and the fixed block is located the fixed slot, and fixed block one side and a supporting beam butt are kept away from to the cardboard.
Through adopting above-mentioned technical scheme, when supporting beam and prefabricated wallboard are fixed, remove prefabricated wallboard towards the direction that is close to a supporting beam, supporting beam and cardboard butt this moment, picture peg and fixed block insert in the slot, the elastic component is in the compression state, the cardboard is located the holding tank, remove prefabricated wallboard towards the direction that the fixed block extends after that, the fixed block inserts in the fixed slot, the cardboard is just to the slot this moment, the elastic component extends and promotes the cardboard towards the direction that is close to the slot, the cardboard inserts in the slot, and fixed block one side and supporting beam butt are kept away from to the cardboard, the cardboard blocks prefabricated wallboard and removes towards the direction of keeping away from the fixed slot, thereby it is fixed with prefabricated wallboard and supporting beam, and the operation is convenient, and is short in time consuming, reach the purpose that improves the efficiency of construction.
Optionally, a fixing part is arranged at a position, close to the prefabricated wall board, of the insertion board, the fixing part comprises wing plates and fixing bolts, the wing plates are fixedly connected to a position, close to the prefabricated wall board, of the insertion board, and the fixing bolts penetrate through the wing plates and are connected to the prefabricated wall board in a threaded mode.
Through adopting above-mentioned technical scheme, when the picture peg was installed in prefabricated wallboard, the pterygoid lamina was placed on prefabricated wallboard and with prefabricated wallboard butt, and fixing bolt screws, and fixing bolt passes pterygoid lamina and threaded connection on prefabricated wallboard to install the picture peg on prefabricated wallboard, after the picture peg damaged, be convenient for change the picture peg, reduce cost of maintenance and wasting of resources.
Optionally, the wing plates are provided with two, and the two wing plates are fixedly connected to two opposite sides of the inserting plate.
Through adopting above-mentioned technical scheme, the picture peg is installed when prefabricated wallboard, and fixing bolt passes the pterygoid lamina and is fixed in on the prefabricated wallboard, and pterygoid lamina and fixing bolt receive pressure or pulling force, and two pterygoid laminas are located the both sides of picture peg, make the atress of picture peg more balanced, have reduced the picture peg and have taken place to rock and crooked degree when fixed, have improved the stability of being connected between picture peg and the prefabricated wallboard to the stability of being connected between prefabricated wallboard and the supporting beam has been improved.
Optionally, the prefabricated wallboard is close to cardboard department and has seted up the through-hole, and the through-hole runs through prefabricated wallboard and sets up with the holding tank intercommunication, is provided with the control panel in the through-hole, and the cardboard is close to control panel department and has seted up the spout, and the direction of seting up of spout is the same with the moving direction of cardboard, and a supporting beam one end is kept away from to the spout towards being close to the slope of control panel direction, and the control panel is close to cardboard one end and is located the spout and with the cardboard butt.
Through adopting above-mentioned technical scheme, when prefabricated wallboard damages the dismantlement, press the control panel towards the direction that is close to the cardboard, the control panel be close to cardboard one end be located the spout and with the cardboard butt, because spout slope sets up, the control panel is towards the in-process that is close to the cardboard removal, the cardboard is towards the direction removal of keeping away from a supporting beam, the elastic component compression, the cardboard is located the holding tank, after that, remove prefabricated wallboard towards the direction of keeping away from the fixed slot, when the fixed block is located the slot, remove prefabricated wallboard towards the direction of keeping away from a supporting beam, prefabricated wallboard and a supporting beam separation, the convenience that building element dismouting was changed has been improved.
Optionally, rotate on the cardboard and be connected with the gyro wheel, the gyro wheel is provided with a plurality ofly, a plurality of gyro wheels interval distribution and with prefabricated wallboard rolling contact.
Through adopting above-mentioned technical scheme, when the cardboard removed towards the direction of being close to or keeping away from a supporting beam, the gyro wheel can take place to rotate, gyro wheel and prefabricated wallboard rolling contact, and frictional force between gyro wheel and the prefabricated wallboard is less, has reduced the frictional resistance that the cardboard removed the in-process and received to the convenience that the cardboard removed has been improved.
Optionally, the spacing groove has been seted up to the side of control panel, and the spacing groove is parallel with the through-hole, and prefabricated wallboard just has the stopper that is used for blockking control panel and prefabricated wallboard and breaks away from to spacing groove department rigid coupling, and the stopper is located the spacing inslot and slides with the control panel and be connected, and the stopper is close to cardboard one end butt with the spacing groove.
Through adopting above-mentioned technical scheme, press the control panel in to the through-hole, control panel drive cardboard removes towards the direction of keeping away from a supporting beam, the elastic component is in compression state this moment, when the cancellation is to the external force of control panel, the elastic component extends and promotes the cardboard towards the direction of being close to a supporting beam, the control panel removes towards the direction of keeping away from the cardboard, the stopper is located the spacing inslot and takes place relative slip with the control panel this moment, the stopper is close to cardboard one end butt with the spacing groove after that, the stopper is spacing to the control panel, it breaks away from outside popping out to stop the control panel and prefabricated wallboard, the security of using has been improved.
Optionally, the prefabricated wallboard is close to cardboard department threaded connection and is used for making cardboard and prefabricated wallboard relatively fixed's screw rod, and screw rod one end is passed prefabricated wallboard and is leaned on with the cardboard side.
Through adopting above-mentioned technical scheme, when dismantling prefabricated wallboard and a supporting beam, press down the control panel and make the cardboard be located the holding tank after, the elastic component has the thrust that promotes towards being close to a supporting beam direction to the cardboard, need continuously press down the control panel, it is located the holding tank to keep the cardboard, rotate the screw rod, make the screw rod remove towards the direction that is close to the cardboard, the screw rod passes prefabricated wallboard and fixes the cardboard with the inseparable butt of cardboard, needn't continuously press down the control panel, dismantle the separation with prefabricated wallboard and a supporting beam afterwards, the convenience that prefabricated wallboard was dismantled has been improved.
Optionally, the rigid coupling has the setting element on the prefabricated wallboard, and the setting element includes connecting plate and locating plate, and the connecting plate rigid coupling is close to a supporting beam department in prefabricated wallboard, and the locating plate rigid coupling is on the connecting plate, and the locating plate is parallel with the fixed block, and a supporting beam offers the constant head tank that is used for holding the setting element, and the setting element uses with the constant head tank cooperation.
Through adopting above-mentioned technical scheme, when on will prefabricating wallboard installation and a supporting beam, picture peg and fixed block insert the slot, connecting plate and locating plate move towards being close to prefabricating wallboard direction, and the locating plate is just to the constant head tank, and when inserting the fixed block in the fixed slot, the locating plate inserts in the constant head tank, and the locating plate is spacing to prefabricating wallboard from the direction of perpendicular to locating plate, reduces the probability of prefabricating wallboard and a supporting beam separation, has improved the stability that prefabricating wallboard and a supporting beam are connected.
In summary, the present application includes at least one of the following beneficial technical effects:
1. by arranging the connecting assembly, the inserting plate and the fixing block are respectively inserted into the inserting groove and the fixing groove, and the clamping plate is inserted into the inserting groove, so that the prefabricated wall plate and the supporting beam are fixed, the operation is convenient and fast, the consumed time is short, and the effect of improving the construction efficiency is achieved;
2. by arranging the fixing piece, the fixing bolt penetrates through the wing plate to fixedly connect the inserting plate to the prefabricated wall plate, so that the effect of facilitating the assembling, disassembling and replacing of the inserting plate is achieved;
3. through setting up the control panel, press the control panel towards the direction that is close to the cardboard, the control panel slides along the spout, makes cardboard and slot break away from, will prefabricate wallboard and a supporting beam separation after that, has produced the effect that improves building element dismouting change convenience.
Drawings
FIG. 1 is a schematic structural diagram of an embodiment of the present application;
FIG. 2 is a partial cross-sectional view highlighting the connection assembly;
FIG. 3 is a partial schematic view showing the fastener highlighted;
FIG. 4 is a partial cross-sectional view highlighting the stop block.
Description of reference numerals: 1. a support beam; 11. a groove; 111. a slot; 112. fixing grooves; 2. prefabricating a wallboard; 21. accommodating grooves; 22. a through hole; 23. a control panel; 231. a limiting groove; 24. a limiting block; 25. a screw; 26. a positioning member; 261. a connecting plate; 262. positioning a plate; 3. a connecting assembly; 31. inserting plates; 311. a fixing member; 3111. a wing plate; 3112. fixing the bolt; 32. a fixed block; 33. clamping a plate; 331. a chute; 332. a roller; 34. a spring.
Detailed Description
The present application is described in further detail below with reference to figures 1-4.
The embodiment of the application discloses green building element of prefabricated steel structure integration assembled. Referring to fig. 1 and 2, green building element of prefabricated steel construction integration assembled includes supporting beam 1, prefabricated wallboard 2 and coupling assembling 3, supporting beam 1 and the vertical setting of prefabricated wallboard 2, coupling assembling 3 is connected and is close to supporting beam 1 one side in prefabricated wallboard 2, supporting beam 1 offers the recess 11 that is used for holding coupling assembling 3, coupling assembling 3 insert in the recess 11 and with supporting beam 1 joint to it is fixed with supporting beam 1 and prefabricated wallboard 2, the simple operation, weak point consuming time has improved the efficiency of construction.
Referring to fig. 2, the cross-section of the support beam 1 is rectangular, the support beam 1 is installed on the ground, the connection assembly 3 includes an insert plate 31 and a fixing block 32, the clamping plate 33 and the elastic part, the elastic part is a spring 34 in the embodiment, the inserting plate 31 is detachably connected to one end, close to the supporting beam 1, of the prefabricated wall plate 2, the inserting plate 31 extends along the height direction of the prefabricated wall plate 2, the fixing block 32 is fixedly connected to the bottom of the inserting plate 31, the fixing block 32 is vertically arranged, the thickness of the fixing block 32 is smaller than that of the inserting plate 31, a gap is reserved between the fixing block 32 and the prefabricated wall plate 2, the prefabricated wall plate 2 is provided with an accommodating groove 21, the accommodating groove 21 is located at the top of the inserting plate 31, the accommodating groove 21 is horizontally arranged, the clamping plate 33 is located in the accommodating groove 21 and connected with the prefabricated wall plate 2 in a sliding mode, the top and the bottom of the clamping plate 33 are both rotatably connected with idler wheels 332, a plurality of the idler wheels 332 are arranged, the idler wheels 332 are distributed at intervals, and the idler wheels 332 are located in the accommodating groove 21 and are in rolling contact with the prefabricated wall plate 2; the spring 34 is horizontally arranged, and the spring 34 is fixedly connected between the clamping plate 33 and the prefabricated wall plate 2; the groove 11 comprises a slot 111 and a fixing slot 112, the slot 111 is correspondingly arranged with the inserting plate 31 and the clamping plate 33 and is matched for use, the fixing slot 112 is arranged at the bottom of the slot 111 and is communicated with the slot 111, and the fixing block 32 is positioned in the fixing slot 112 and is clamped with the supporting beam 1.
When the supporting beam 1 and the prefabricated wall board 2 are fixed, the prefabricated wall board 2 is moved towards the direction close to the supporting beam 1, the supporting beam 1 is abutted to the clamping plate 33 at the moment, the inserting plate 31 and the fixing block 32 are inserted into the slot 111, the clamping plate 33 is pressed into the accommodating groove 21 by the supporting beam 1, the spring 34 is in a compressed state, the clamping plate 33 is located in the accommodating groove 21, the prefabricated wall board 2 is moved downwards, the fixing block 32 is inserted into the fixing groove 112, the clamping plate 33 is opposite to the slot 111 at the moment, the spring 34 extends and pushes the clamping plate 33 towards the direction close to the slot 111, and the roller 332 rotates to reduce the friction resistance received in the moving process of the clamping plate 33 and the prefabricated wall board 2; cardboard 33 inserts in slot 111, and cardboard 33 top and a supporting beam 1 butt block prefabricated wallboard 2 rebound, and fixed block 32 blocks prefabricated wallboard 2 and removes towards keeping away from a supporting beam 1 direction to it is fixed with prefabricated wallboard 2 and a supporting beam 1, the simple operation, weak point consuming time has reached the purpose that improves the efficiency of construction.
Referring to fig. 3, a fixing member 311 is connected to a portion of the insert plate 31 close to the prefabricated wall panel 2, the fixing member 311 includes two wing plates 3111 and two fixing bolts 3112, the wing plates 3111 are provided with two, two wing plates 3111 are fixedly connected to a portion of the insert plate 31 close to the prefabricated wall panel 2, the two wing plates 3111 are respectively located at two opposite sides of the insert plate 31 and abut against the prefabricated wall panel 2, the fixing bolts 3112 penetrate through the wing plates 3111 and are connected to the prefabricated wall panel 2 in a threaded manner, the fixing bolts 3112 are provided with a plurality of fixing bolts 3112, and the plurality of fixing bolts 3112 are distributed at equal intervals along the height direction of the wing plates 3111.
When picture peg 31 is installed, place picture peg 31 in prefabricated wallboard 2 and be close to a supporting beam 1 department, two pterygoid lamina 3111 all with prefabricated wallboard 2 butt, fixing bolt 3112 passes pterygoid lamina 3111 and threaded connection on prefabricated wallboard 2 to on being fixed in prefabricated wallboard 2 picture peg 31, two pterygoid laminas 3111 are located the both sides of picture peg 31, make picture peg 31's atress more balanced, take place to rock and crooked degree when having reduced picture peg 31 fixed, picture peg 31 dismouting is convenient, be convenient for change.
Referring to fig. 2, a positioning member 26 is connected to the top of the prefabricated wall panel 2, the positioning member 26 includes a connecting plate 261 and a positioning plate 262, the connecting plate 261 is fixedly connected to the top of the prefabricated wall panel 2 near the support beam 1, the connecting plate 261 is horizontally disposed, and the connecting plate 261 is flush with the top of the prefabricated wall panel 2; locating plate 262 rigid coupling is kept away from the bottom of 2 one ends of prefabricated wallboard in connecting plate 261, and the vertical setting of locating plate 262, a supporting beam 1 top has seted up the constant head tank, and the constant head tank uses with the cooperation of setting element 26.
Positioning member 26 moves towards being close to supporting beam 1 along with prefabricated wallboard 2, and when prefabricated wallboard 2 moved down, locating plate 262 and connecting plate 261 inserted in the constant head tank, and locating plate 262 is spacing prefabricated wallboard 2 from the horizontal direction, and locating plate 262 blocks prefabricated wallboard 2 and moves towards keeping away from supporting beam 1, has improved the stability that prefabricated wallboard 2 is connected with supporting beam 1.
Referring to fig. 4, a through hole 22 is formed in the prefabricated wall panel 2 near the clamping plate 33, the through hole 22 penetrates through the prefabricated wall panel 2 and is communicated with the accommodating groove 21, the through hole 22 is connected with the control plate 23 in a sliding manner, the control plate 23 is perpendicular to the clamping plate 33, a sliding groove 331 is formed in one side, close to the control plate 23, of the clamping plate 33, the sliding groove 331 is horizontally formed, one end, far away from the supporting beam 1, of the sliding groove 331 inclines towards the direction close to the control plate 23, and one end, close to the clamping plate 33, of the control plate 23 is located in the sliding groove 331 and is abutted to the clamping plate 33; a limiting groove 231 is formed in one side, away from the support beam 1, of the control plate 23, the direction of the limiting groove 231 is perpendicular to the clamping plate 33, a limiting block 24 is fixedly connected to the position, opposite to the limiting groove 231, of the prefabricated wall panel 2, the limiting block 24 is located in the limiting groove 231 and connected with the control plate 23 in a sliding mode, and the limiting block 24 is abutted to one end, close to the clamping plate 33, of the limiting groove 231; prefabricated wallboard 2 is close to cardboard 33 department threaded connection has screw rod 25, and screw rod 25 is perpendicular with prefabricated wallboard 2, and screw rod 25 one end is passed prefabricated wallboard 2 and is closely abutted with cardboard 33.
When the prefabricated wall panel 2 and the supporting beam 1 are disassembled, the screw rod 25 is unscrewed, the screw rod 25 is separated from the clamping plate 33, the control plate 23 is pressed into the through hole 22, the limiting block 24 slides along the limiting groove 231, because the chute 331 is arranged obliquely, when the control plate 23 moves into the through hole 22, the control plate 23 is positioned in the chute 331 and slides relative to the clamping plate 33, the clamping plate 33 moves towards the direction away from the support beam 1, at the moment, the spring 34 is in a compressed state, so that the clamping plate 33 is separated from the slot 111 and positioned in the accommodating groove 21, the screw 25 is screwed, the end part of the screw 25 is tightly abutted against the clamping plate 33, the friction force between the screw 25 and the clamping plate 33 is large, and the clamping plate 33 is fixed, then, moving the prefabricated wall panel 2 upwards, separating the fixing blocks 32 from the fixing grooves 112, and then moving the prefabricated wall panel 2 in a direction away from the support beam 1, so that the prefabricated wall panel 2 is separated from the support beam 1 and detached; when the pre-supporting wallboard is installed, picture peg 31 inserts in slot 111, prefabricated wallboard 2 of downward movement, fixed block 32 is located fixed slot 112, cardboard 33 is just to slot 111, when spring 34 extends and moves towards being close to a supporting beam 1 direction, control panel 23 moves outside through-hole 22, stopper 24 slides along spacing groove 231, when cardboard 33 inserts slot 111, stopper 24 is close to cardboard 33 one end butt with spacing groove 231, stopper 24 is spacing to control panel 23, it breaks away from with prefabricated wallboard 2 to stop control panel 23 from through-hole 22 departure, it produces the injury to the people to reduce control panel 23 departure, the security of use is improved, prefabricated wallboard 2 is convenient with a supporting beam 1 dismouting, the efficiency of construction is improved.
The implementation principle of the prefabricated steel structure integrated assembly type green building component is as follows: when fixed with supporting beam 1 and prefabricated wallboard 2, remove prefabricated wallboard 2 towards the direction that is close to supporting beam 1, supporting beam 1 and cardboard 33 butt this moment, picture peg 31 and fixed block 32 insert in slot 111, spring 34 is in compression state, cardboard 33 is located holding tank 21, prefabricated wallboard 2 of downstream, fixed block 32 inserts in fixed slot 112, cardboard 33 is just to slot 111 this moment, spring 34 extends and promotes cardboard 33 towards the direction that is close to slot 111, cardboard 33 inserts in slot 111, and cardboard 33 top and supporting beam 1 butt, cardboard 33 blocks prefabricated wallboard 2 rebound, thereby it is fixed with prefabricated wallboard 2 and supporting beam 1, the simple operation, consuming time is short, construction efficiency is improved.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides a green building element of prefabricated steel structure integration assembled which characterized in that: comprises a supporting beam (1), a prefabricated wall plate (2) and a connecting assembly (3), the supporting beam (1) and the prefabricated wall plate (2) are vertically arranged, the connecting assembly (3) comprises an inserting plate (31), a fixing block (32), a clamping plate (33) and an elastic part, the inserting plate (31) is detachably connected with one end, close to the supporting beam (1), of the prefabricated wall plate (2), the fixing block (32) for clamping the supporting beam (1) and the prefabricated wall plate (2) is fixedly connected onto the inserting plate (31), the fixing block (32) is separated from the prefabricated wall plate (2), the prefabricated wall plate (2) is provided with an accommodating groove (21) close to the supporting beam (1), the accommodating groove (21) is positioned on one side, far away from the fixing block (32), the clamping plate (33) is positioned in the accommodating groove (21) and is connected with the prefabricated wall plate (2) in a sliding manner, the elastic part for driving the clamping plate (33) to move towards the supporting beam (1) is fixedly connected between the clamping plate (33) and the prefabricated wall plate (2), supporting beam (1) is close to coupling assembling (3) department and offers slot (111) that are used for holding picture peg (31) and cardboard (33), slot (111) set up with outside intercommunication, set up fixed slot (112) that are used for holding fixed block (32) in supporting beam (1), picture peg (31) and cardboard (33) are located slot (111), fixed block (32) are located fixed slot (112), fixed block (32) are kept away from in cardboard (33) fixed block (32) one side and supporting beam (1) butt.
2. The prefabricated steel structure integrated fabricated green building component of claim 1, wherein: the picture peg (31) are close to prefabricated wallboard (2) department and are provided with mounting (311), and mounting (311) are including pterygoid lamina (3111) and fixing bolt (3112), and pterygoid lamina (3111) rigid coupling is close to prefabricated wallboard (2) department in picture peg (31), and fixing bolt (3112) pass pterygoid lamina (3111) and threaded connection is on prefabricated wallboard (2).
3. The prefabricated steel structure integrated fabricated green building component of claim 2, wherein: the pterygoid lamina (3111) are provided with two, and two pterygoid lamina (3111) rigid coupling are in picture peg (31) relative both sides.
4. The prefabricated steel structure integrated fabricated green building component of claim 1, wherein: prefabricated wallboard (2) are close to cardboard (33) and have seted up through-hole (22), through-hole (22) run through prefabricated wallboard (2) and set up with holding tank (21) intercommunication, be provided with control panel (23) in through-hole (22), spout (331) have been seted up to cardboard (33) department of being close to control panel (23), the moving direction that sets up direction and cardboard (33) of spout (331) is the same, a supporting beam (1) one end is kept away from in spout (331) towards being close to control panel (23) direction slope, control panel (23) are close to cardboard (33) one end and are located spout (331) and with cardboard (33) butt.
5. The prefabricated steel structure integrated fabricated green building component of claim 1, wherein: cardboard (33) go up to rotate and are connected with gyro wheel (332), and gyro wheel (332) are provided with a plurality ofly, a plurality of gyro wheels (332) interval distribution and with prefabricated wallboard (2) rolling contact.
6. The prefabricated steel structure integrated fabricated green building component of claim 4, wherein: spacing groove (231) have been seted up to the side of control panel (23), and spacing groove (231) are parallel with through-hole (22), and prefabricated wallboard (2) just have stopper (24) that are used for blockking that control panel (23) and prefabricated wallboard (2) break away from to spacing groove (231) department rigid coupling, and stopper (24) are located spacing groove (231) and slide with control panel (23) and are connected, and stopper (24) and spacing groove (231) are close to cardboard (33) one end butt.
7. The prefabricated steel structure integrated fabricated green building component of claim 1, wherein: prefabricated wallboard (2) are close to cardboard (33) department threaded connection has screw rod (25) that are used for making cardboard (33) and prefabricated wallboard (2) relatively fixed, and screw rod (25) one end is passed prefabricated wallboard (2) and is leaned on with cardboard (33) side.
8. The prefabricated steel structure integrated fabricated green building component of claim 1, wherein: prefabricated wallboard (2) are gone up the rigid coupling and are had setting element (26), and setting element (26) include connecting plate (261) and locating plate (262), and connecting plate (261) rigid coupling is close to a supporting beam (1) department in prefabricated wallboard (2), and locating plate (262) rigid coupling is on connecting plate (261), and locating plate (262) are parallel with fixed block (32), and a supporting beam (1) is offered and is used for holding the constant head tank of setting element (26), and setting element (26) and constant head tank cooperation are used.
CN202120583107.9U 2021-03-20 2021-03-20 Prefabricated steel structure integrated assembly type green building component Active CN214423687U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115262771A (en) * 2022-07-29 2022-11-01 中建二局第一建筑工程有限公司 Assembled component

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115262771A (en) * 2022-07-29 2022-11-01 中建二局第一建筑工程有限公司 Assembled component

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