CN220928604U - Building outer frame structure with good stability - Google Patents

Building outer frame structure with good stability Download PDF

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Publication number
CN220928604U
CN220928604U CN202322701148.5U CN202322701148U CN220928604U CN 220928604 U CN220928604 U CN 220928604U CN 202322701148 U CN202322701148 U CN 202322701148U CN 220928604 U CN220928604 U CN 220928604U
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China
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building
connecting rod
frame structure
sleeve
beams
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CN202322701148.5U
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Chinese (zh)
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巫斐
王慕平
刘模权
谢元勋
陈少深
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China Construction Eighth Engineering Divion Southern Construction Co Ltd
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China Construction Eighth Engineering Divion Southern Construction Co Ltd
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Abstract

The utility model provides a building external frame structure with good stability, which forms a stable frame structure through a foundation beam, a vertical rod beam and a cross rod beam and is arranged in front of a building upright post so as to support and disperse the weight of a building, and simultaneously provides a working platform and a safety channel. The utility model has the advantages of simple, convenient, quick and flexible installation and disassembly, time and labor saving, high efficiency and stable and reliable structure.

Description

Building outer frame structure with good stability
Technical Field
The utility model relates to the technical field of building construction, in particular to the technical field of building outer frames, and specifically relates to a building outer frame structure with good stability.
Background
Building construction is a production activity performed by people for constructing various building products in a certain space and time according to a specific design blueprint by using various building materials and mechanical equipment. It includes all production processes from construction preparation, earth breaking and construction completion and acceptance.
In the building construction process, a building outer frame is often required to be used, and a building outer frame structure with good stability is an outer frame structure which can provide stable support and protection in the building construction process and ensure the safety and stability of a working platform.
The outer frame structure with good stability plays a key role in building construction, can provide a stable working platform and protect, and ensures the safety and working efficiency of constructors.
However, the existing building external frame structure requires more time and working force to adjust the position and fixing mode of the connecting rod during installation, so that the time consumption during installation and disassembly is long, and the efficiency is low.
Therefore, it is desirable to provide a building external frame structure with good stability, which is simple, convenient, quick and flexible to install and detach, time-saving, labor-saving, high in efficiency and stable and reliable in structure.
Disclosure of utility model
In order to overcome the defects in the prior art, the utility model aims to provide the building outer frame structure with good stability, which is simple, convenient, quick and flexible to mount and dismount, has high time and labor saving efficiency, has a stable and reliable structure, and is suitable for large-scale popularization and application.
The utility model aims to provide the building outer frame structure with good stability, which has the advantages of ingenious design, simple structure, convenient manufacture and low manufacturing cost, and is suitable for large-scale popularization and application.
In order to achieve the above object, the utility model provides a building external frame structure with good stability, which comprises a foundation beam, vertical bar beams and cross bar beams, wherein the foundation beam is arranged along the left-right direction, the vertical bar beams are vertically arranged, the lower ends of the vertical bar beams are arranged on the foundation beam, the number of the vertical bar beams is multiple, the vertical bar beams are arranged at intervals left and right, the cross bar beams are arranged along the left-right direction and above the foundation beam and are connected with the vertical bar beams, the number of the cross bar beams is multiple, and the cross bar beams are vertically arranged at intervals, and the building external frame structure with good stability is characterized by further comprising a building upright post fixing assembly, wherein:
The building upright post fixing assembly comprises a left sleeve, a right sleeve, a left connecting rod, a right connecting rod, an inserting rod, a left fastening piece and a right fastening piece, wherein the left sleeve and the right sleeve are arranged along the left and right directions and are arranged at intervals, the left sleeve and the right sleeve are movably sleeved on one of the transverse rod beams and are opposite to the transverse rod beams, the transverse rod beams are rotatably arranged along the left and right directions and are positioned between the left and right adjacent two transverse rod beams, the left connecting rod and the right connecting rod are arranged along the front and rear directions and are respectively positioned behind the left sleeve and the right sleeve and are respectively connected with the left sleeve and the right sleeve, the left connecting rod and the right connecting rod are respectively arranged along the left and right directions and are respectively provided with a left chute and a right chute, the left chute and the right chute are respectively arranged along the front and rear directions, the inserting rod is arranged along the left and right directions and are rotatably arranged along the left and right directions and are positioned between the left and right side of the vertical rod beams, the left and right side of the connecting rod is respectively arranged along the left and right chute and the left and right side of the connecting rod is meshed with the left and right side of the connecting rod and the left sleeve and the right fastening piece.
Preferably, the left fastener and the right fastener are both fastening nuts.
Preferably, the number of the building upright post fixing components is multiple, and the building upright post fixing components are arranged at intervals left and right.
More preferably, the number of building column fixing components is 2.
Preferably, the number of the vertical rod beams is 4.
Preferably, the number of the cross bars is 2.
Preferably, the building external frame structure with good stability further comprises a connecting piece, and the cross bar beam is connected with the vertical bar beam through the connecting piece.
More preferably, the connecting piece is a binding wire, and the cross bar beam is bound on the vertical bar beam through the binding wire.
Still further, the binding wire is a binding iron wire.
The beneficial effects of the utility model are mainly as follows:
1. The building external frame structure with good stability is formed by the foundation beam, the vertical rod beam and the cross rod beam to form a stable frame structure and is arranged in front of the building upright post so as to support and disperse the weight of a building, and meanwhile, a working platform and a safety channel are provided.
2. The building external frame structure with good stability is formed by the foundation beam, the vertical rod beam and the cross rod beam to form a stable frame structure and is arranged in front of the building upright post so as to support and disperse the weight of a building, and meanwhile, a working platform and a safety channel are provided.
These and other objects, features and advantages of the present utility model will be more fully apparent from the following detailed description and drawings, and may be learned by the practice of the utility model by the means, apparatus and combinations thereof as set forth hereinafter.
Drawings
Fig. 1 is a schematic front view of an embodiment of the building outer frame structure of the present utility model with good stability, wherein the left and right connecting bars are disposed in the front-rear direction.
Fig. 2 is a schematic perspective view of the building stud fastening assembly of the embodiment shown in fig. 1.
Fig. 3 is a second perspective view of the building stud fastening assembly of the embodiment shown in fig. 1.
Fig. 4 is a perspective view of the connection structure of the building column fixing assembly and the cross bar beam of the embodiment shown in fig. 1.
Fig. 5 is a second schematic front view of the embodiment shown in fig. 1, in which the left and right connecting rods are in a vertical state.
Fig. 6 is a partial perspective view of a building stud using the embodiment shown in fig. 1.
(Symbol description)
1, Foundation beams; 2, a vertical bar beam; 3, a cross bar beam; 4 building upright post fixing components; 5 left sleeve; 6, right sleeve; 7, a left connecting rod; 8, right connecting rods; 9, inserting a rod; a left fastener 10; 11 right fasteners; 12 left sliding grooves; 13 right sliding groove; 14 a connector; 15 building uprights.
Detailed Description
In order to make the technical contents of the present utility model more clearly understood, the following examples are specifically described.
In the description of the present utility model, it should be understood that the terms "upper," "lower," "front," "rear," "left," "right," "top," "bottom," "inner," "outer," and the like indicate or are based on the orientation or positional relationship shown in the drawings, merely to facilitate description of the present utility model and to simplify the description, and do not indicate or imply that the devices or elements referred to must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the present utility model.
Referring to fig. 1 to 4, in a specific embodiment of the present utility model, the building external frame structure with good stability includes a foundation beam 1, a vertical beam 2, a cross beam 3 and a building column fixing assembly 4, wherein:
The foundation beam 1 is arranged in the left-right direction, the vertical rod beams 2 are vertically arranged, the lower ends of the vertical rod beams 2 are arranged on the foundation beam 1, the number of the vertical rod beams 2 is multiple, the vertical rod beams 2 are arranged at intervals left and right, the cross rod beams 3 are arranged in the left-right direction and are positioned above the foundation beam 1 and are connected with the vertical rod beams 2, the number of the cross rod beams 3 is multiple, and the cross rod beams 3 are vertically arranged at intervals;
The building upright fixing assembly 4 comprises a left sleeve 5, a right sleeve 6, a left connecting rod 7, a right connecting rod 8, a inserted link 9, a left fastening piece 10 and a right fastening piece 11, the left sleeve 5 and the right sleeve 6 are arranged along the left-right direction and are arranged at intervals left and right, the left sleeve 5 and the right sleeve 6 are both sleeved on one of the cross bar beams 3 in a left-right movable way, are rotatably arranged around the left-right direction relative to the cross bar beam 3 and are positioned between two vertical bar beams 2 adjacent to each other in the left-right direction, the left connecting rod 7 and the right connecting rod 8 are arranged in the front-rear direction and respectively positioned behind the left sleeve 5 and the right sleeve 6 and respectively connected with the left sleeve 5 and the right sleeve 6, the left connecting rod 7 and the right connecting rod 8 are respectively provided with a left chute 12 and a right chute 13 along the left-right direction, the left chute 12 and the right chute 13 are elongated chutes which are arranged along the front-rear direction, the inserted link 9 is disposed along the left-right direction and passes through the left chute 12 and the right chute 13 along the left-right direction and is disposed movably back and forth relative to the left chute 12 and the right chute 13 respectively, the left end and the right end of the inserted link 9 are respectively positioned at the left side of the left connecting link 7 and the right side of the right connecting link 8, the left fastening piece 10 is sleeved on and in threaded engagement with the left end of the inserted link 9, the left fastening piece 10 is positioned on the left side of the left connecting rod 7 and abuts against the left connecting rod 7, the right fastening piece 11 is sleeved and in threaded engagement with the right end of the inserted link 9, and the right fastening piece 11 is positioned on the right side of the right connecting rod 8 and abuts against the right connecting rod 8.
The left and right fasteners 10, 11 may be any suitable fasteners, and in one embodiment of the present utility model, the left and right fasteners 10, 11 are fastening nuts.
The number of the building upright fixing assemblies 4 can be determined according to needs, preferably, the number of the building upright fixing assemblies 4 is multiple, and the multiple building upright fixing assemblies 4 are arranged at intervals left and right. The number of building column fixing components 4 is 2 in one embodiment of the present utility model, referring to fig. 1.
The number of the vertical bar beams 2 may be determined according to the need, and the number of the vertical bar beams 2 is more than 2, as shown in fig. 1, and in an embodiment of the present utility model, the number of the vertical bar beams 2 is 4.
The number of the cross beams 3 may be determined according to need, and the above "multiple" refers to more than 2 cross beams, but it does not mean that the number of the cross beams 3 and the number of the vertical beams 2 are the same, and the number of the cross beams 3 and the number of the vertical beams 2 may be the same or different, and referring to fig. 1, in an embodiment of the present utility model, the number of the cross beams 3 is 2.
The cross beam 3 is connected to the vertical beam 2 by any suitable structure, and in an embodiment of the present utility model, as shown in fig. 1, the building external frame structure with good stability further includes a connecting member 14, and the cross beam 3 is connected to the vertical beam 2 by the connecting member 14. With the above arrangement, the vertical bar beam 2 and the horizontal bar beam 3 are connected by the connecting piece 14, so that the stability and the bearing capacity of the whole building outer frame are enhanced.
The connecting element 14 may be any suitable connecting element, and in a specific embodiment of the utility model the connecting element 14 is a binding wire, by means of which the cross bar beam 3 is bound to the vertical bar beam 2.
The binding wire may be any suitable material of binding wire, in one embodiment of the utility model the binding wire is a binding wire.
In use, the foundation beam 1 is arranged before the building upright 15, the vertical rod beam 2 is connected to the foundation beam 1, the building upright 15 is positioned between two adjacent vertical rod beams 2 left and right, the left connecting rod 7 and the right connecting rod 8 are respectively rotated anticlockwise (from right to left view angle) to a vertical state around the left and right directions relative to the horizontal rod beam 3 through the left sleeve 5 and the right sleeve 6, as shown in fig. 5, the left connecting rod 7 and the right connecting rod 8 are moved left and right, the horizontal rod beam 3 is connected to the vertical rod beam 2, a transverse frame structure is formed, the horizontal rod beam 3 is installed to ensure the horizontal and stable and abuts against the building upright 15, the building upright 15 is positioned between the left sleeve 5 and the right sleeve 6, the left connecting rod 7 and the right connecting rod 8 are respectively rotated clockwise (from right to left and right view angle) around the left and right directions relative to the horizontal rod beam 3 through the left sleeve 5 and the right sleeve 6, the left and right connecting rod 7 and the right connecting rod 8 are respectively moved left and right to the vertical state around the left and right directions, the left connecting rod 8 are enabled to abut against the building upright 15, the left connecting rod 9 is inserted into the left sliding chute 12 and the right sliding chute 13, the left connecting rod 13 is positioned at the right end of the left connecting rod 9 and the right connecting rod 9 is screwed up against the left and right connecting rod 8, as shown in the left and right connecting rod 9 is positioned at the left and right end of the left and right connecting rod 9 is screwed up, the connecting rod 7 and the left and right end of the connecting rod 9 is respectively, and the right connecting rod is positioned at the right end of the connecting rod and the connecting rod is opposite the connecting rod 9 is screwed.
Scaffolding can be installed on the building external frame as required to provide a working platform and a safety channel. After the building outer frame is built, inspection and adjustment are needed, and the stability and safety of the building outer frame structure are ensured. After the building of the outer frame of the building is completed, the construction and maintenance work of the building can be started. After the work is completed, the building outer frame is removed according to the safety regulations.
Therefore, by adopting the utility model, the utility model is fixed on the building upright by the arrangement of the building upright fixing components, namely the left sleeve, the right sleeve, the left connecting rod, the right connecting rod, the inserted link, the left fastening piece and the right fastening piece, and the benefits of the fixing mode are explained as follows:
And (3) quick installation: through utilizing left sleeve pipe and right sleeve pipe with left connecting rod and right connecting rod to rotate around left and right direction and left and right movement on the horizontal pole roof beam, can remove left connecting rod and right connecting rod to building stand about fast, this kind of mode has saved the step that needs to dismantle and reinstall connecting rod when traditional building the building outer frame, has saved a large amount of installation time and human cost.
Flexible adjustment: the left connecting rod and the right connecting rod can be moved left and right to adjust the position, and the inserted bar can be moved back and forth to adjust the position, so that building upright posts with different positions and sizes can be adapted, and the flexibility enables building of the building outer frame to be more convenient and efficient.
Stability: through with left connecting rod and right connecting rod centre gripping building stand both sides to fix the inserted bar centre gripping in left connecting rod and right connecting rod through left fastener and right fastener, can ensure firm the connection between horizontal pole roof beam and the building stand, this kind of fixed mode provides stable support and protection, ensures the security of building outer frame structure.
Reliability: the left end and the right-hand member of inserted bar are connected through threaded connection mode to left fastener and right fastener, and this kind of connected mode can provide more reliable fixed effect, and left fastener and right fastener are through rotatory removal on the inserted bar, fix the inserted bar centre gripping in left connecting rod and right connecting rod, ensure the fastness and the stability of connection, and this kind of fixed mode can bear great moment of torsion and pulling force, has guaranteed building outer frame structure's security.
Overall, this fixation has the advantages of quick installation, flexible adjustment, stability and reliability. The building efficiency of the building outer frame can be improved, the stability and safety of the building outer frame are guaranteed, and a more convenient and reliable working platform is provided for building operators.
In conclusion, the building outer frame structure with good stability is simple, convenient, quick and flexible to install and detach, high in time-saving, labor-saving and efficiency, stable and reliable in structure, ingenious in design, simple in structure, convenient to manufacture, low in manufacturing cost and suitable for large-scale popularization and application.
It will thus be seen that the objects of the present utility model have been fully and effectively attained. The functional and structural principles of the present utility model have been shown and described in the examples and embodiments may be modified at will without departing from such principles. Therefore, this utility model includes all modifications encompassed within the spirit of the following claims and the scope of the following claims.

Claims (9)

1. The utility model provides a building outer frame structure that stability performance is good, includes foundation beam, montant roof beam and horizontal pole roof beam, the foundation beam sets up along controlling the direction, the vertical setting of montant roof beam, the lower extreme setting of montant roof beam is in on the foundation beam, the figure of montant roof beam is many, many the montant roof beam controls mutual interval setting, the horizontal pole roof beam is followed controlling the direction setting and is located the top of foundation roof beam and with this many the montant roof beam is all connected, the figure of horizontal pole roof beam is many, many the vertical mutual interval setting of horizontal pole roof beam, its characterized in that, the good building outer frame structure of stability performance still include building stand fixed subassembly, wherein:
The building upright post fixing assembly comprises a left sleeve, a right sleeve, a left connecting rod, a right connecting rod, an inserting rod, a left fastening piece and a right fastening piece, wherein the left sleeve and the right sleeve are arranged along the left and right directions and are arranged at intervals, the left sleeve and the right sleeve are movably sleeved on one of the transverse rod beams and are opposite to the transverse rod beams, the transverse rod beams are rotatably arranged along the left and right directions and are positioned between the left and right adjacent two transverse rod beams, the left connecting rod and the right connecting rod are arranged along the front and rear directions and are respectively positioned behind the left sleeve and the right sleeve and are respectively connected with the left sleeve and the right sleeve, the left connecting rod and the right connecting rod are respectively arranged along the left and right directions and are respectively provided with a left chute and a right chute, the left chute and the right chute are respectively arranged along the front and rear directions, the inserting rod is arranged along the left and right directions and are rotatably arranged along the left and right directions and are positioned between the left and right side of the vertical rod beams, the left and right side of the connecting rod is respectively arranged along the left and right chute and the left and right side of the connecting rod is meshed with the left and right side of the connecting rod and the left sleeve and the right fastening piece.
2. The stabilized building outer frame structure of claim 1 wherein said left fastener and said right fastener are fastening nuts.
3. The high-stability building external frame structure according to claim 1, wherein the number of the building column fixing components is plural, and the plural building column fixing components are arranged at a left-right interval.
4. A stable building external frame structure according to claim 3, wherein the number of building column fixing components is 2.
5. The high stability building external frame structure according to claim 1, wherein the number of said vertical bar beams is 4.
6. The high stability building external frame structure according to claim 1, wherein the number of said cross bars is 2.
7. The high stability building external frame structure of claim 1, further comprising a connector, said cross bar beam being connected to said vertical bar beam by said connector.
8. The stabilized building outer frame structure of claim 7 wherein said connector is a binding wire and said cross bar beam is bound to said vertical bar beam by said binding wire.
9. The high stability building external frame structure according to claim 8, wherein said binding wire is a binding iron wire.
CN202322701148.5U 2023-10-09 2023-10-09 Building outer frame structure with good stability Active CN220928604U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322701148.5U CN220928604U (en) 2023-10-09 2023-10-09 Building outer frame structure with good stability

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322701148.5U CN220928604U (en) 2023-10-09 2023-10-09 Building outer frame structure with good stability

Publications (1)

Publication Number Publication Date
CN220928604U true CN220928604U (en) 2024-05-10

Family

ID=90940653

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322701148.5U Active CN220928604U (en) 2023-10-09 2023-10-09 Building outer frame structure with good stability

Country Status (1)

Country Link
CN (1) CN220928604U (en)

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