CN219012036U - Building structure design roof beam reinforced structure - Google Patents

Building structure design roof beam reinforced structure Download PDF

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Publication number
CN219012036U
CN219012036U CN202222567898.3U CN202222567898U CN219012036U CN 219012036 U CN219012036 U CN 219012036U CN 202222567898 U CN202222567898 U CN 202222567898U CN 219012036 U CN219012036 U CN 219012036U
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beam body
fixed
fastening
plate
column
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CN202222567898.3U
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傅建邦
胡凯
张威
姜涛
李昊宇
范倬宁
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China MCC20 Group Corp Ltd
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China MCC20 Group Corp Ltd
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Abstract

The utility model discloses a building structure design beam reinforcing structure which comprises a beam body, side fixing components arranged on two sides of the beam body, end components arranged on two ends of the beam body, a fastening component and a support rod component sleeved outside the beam body, wherein the side fixing components are fixed with the end components and are used for protecting the beam body, and the support rod component is supported between the fastening component and the end components in a triangular mode. The side fixing component and the end component wrap the beam body, the side part and the end of the beam body are well fixed, the damage caused by overlarge stress of the end of the beam body is especially avoided, the support requirement of the beam body is met, and the side fixing component and the end component are firm and high in safety.

Description

Building structure design roof beam reinforced structure
Technical Field
The utility model relates to the technical field of building structures, in particular to a reinforcing structure of a building structure design beam.
Background
The beam is a member frequently appearing in the design of a building structure, in a frame structure, the beam connects columns in all directions into a whole, in a wall structure, a connecting beam above a hole connects two wall limbs to make the two wall limbs work together, and the beam plays a role of a first defense line as an important member of the design of earthquake resistance, and in the frame and shear wall structure, the beam has the role in the frame structure and also has the role in the shear wall structure.
The Chinese patent of the utility model with the publication number of CN215926852U in the prior art discloses a building structural design beam reinforcing structure, which comprises a base plate, wherein the right side of the top of the base plate is fixedly connected with a first support column, the bottom of the right side of the first support column is rotationally connected with a rotating rod through a bearing, the right side of the rotating rod is fixedly connected with a rotating handle, the left side of the rotating rod extends to the inner cavity of the first support column and is fixedly connected with a first bevel gear, the rotating rod is driven to rotate through the rotating handle, the rotating rod drives the first bevel gear to rotate, the first bevel gear drives a threaded rod to rotate through a second bevel gear, the threaded rod drives a threaded sleeve to move upwards, and meanwhile the second support column is also driven to move upwards to support a beam body.
This patent, while addressing the problem of stiffening the beam, still suffers from the following drawbacks: the two ends of the beam are stressed too much, the ends are easy to damage, the reinforcing effect on the ends of the beam in the prior art is limited, and the firm requirement of the beam cannot be met.
Disclosure of Invention
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a building structure designs roof beam reinforced structure, includes the roof beam body, installs the side solid subassembly in roof beam body both sides, installs the end subassembly at roof beam body both ends, overlaps to establish at the external fastening assembly of roof beam and bracing piece subassembly, and the side solid subassembly is fixed with the end subassembly, all is used for protecting the roof beam body, and bracing piece subassembly triangle support is between fastening assembly and end subassembly.
Further, the side fixing component comprises side grooves formed in two sides of the beam body and side fixing plates matched with the side grooves, the length of each side fixing plate is smaller than that of each side groove, and the side fixing plates are inserted and fixed in the side grooves.
Further, the cross section of the side groove is concave, clamping strips are respectively arranged on the upper side and the lower side of the side fixing plate, and the side fixing plate is inserted and fixed in the side groove through the clamping strips.
Further, the fixed orifices have been seted up at roof beam body both ends, the end subassembly is including locating the end board at roof beam body both ends, and the inboard that the end board is close to the roof beam body is equipped with fixed orifices assorted fixed column, in order to fix the end board at roof beam body both ends through inserting the fixed column in the fixed orifices.
Furthermore, the inner side of the end plate, which is close to the beam body, is also provided with T-shaped plugboards matched with the side grooves, and the T-shaped plugboards are arranged on two sides of the fixed column and can be inserted into two ends of the side grooves.
Further, the end assembly further comprises a connecting plate and a lower connecting plate, the connecting plate is arranged at the top of the beam body, the upper portion of the end plate is provided with a slot, two ends of the connecting plate are inserted into the slot to be fixed on the end plate, and the lower connecting plate is fixed at the bottom of the end plate.
Further, fixing bolts are arranged at the tops of the end plates, limiting grooves are formed in the two ends of the tops of the connecting plates, friction lines are arranged at the bottoms of the limiting grooves, and the bottoms of the fixing bolts extend into the bottoms of the limiting grooves and prop against the friction lines.
Further, the fastening assembly comprises fastening half sleeves which are mutually cohesive, the fastening half sleeves are of U-shaped structures, the two ends of each fastening half sleeve are respectively provided with an ear plate, the two fastening half sleeves are connected through connecting bolts on the ear plates to form a fastening square frame, and the fastening square frame is sleeved at two ends of a beam body outside the side fixing assembly.
Further, the support rod assembly comprises a telescopic control rod, a first connecting assembly and a second connecting assembly, one end of the telescopic control rod is connected with the first connecting assembly, the first connecting assembly is fixed at the bottom of the lower connecting plate, the other end of the telescopic control rod is connected with the second connecting assembly, and the second connecting assembly is fixed at the bottom of the fastening square frame;
the telescopic control rod comprises a long installation cylinder and a threaded column inserted in the long installation cylinder, one end of the long installation cylinder, which is close to the threaded column, is rotationally connected with a screw hole sleeve, a control spanner is arranged on the peripheral annular array of the screw hole sleeve, the screw hole sleeve is in threaded connection with the threaded column, and the screw hole sleeve can control the unscrewing length of the threaded column.
Further, the one end that flexible control rod is close to first coupling assembling is fixed with the movable block, and the one end that is close to second coupling assembling is fixed with rotatable connecting block, first coupling assembling includes movable seat and spliced pole, second coupling assembling includes articulated seat and articulated pole, and the movable block passes through the spliced pole to be fixed in the movable seat, and the connecting block passes through the articulated pole to be fixed in the articulated seat.
Compared with the prior art, the technology has at least one of the following beneficial effects:
1. can be fixed to the side solid board through card strip and draw-in groove, can protect the both sides of the roof beam body through the side solid board, avoid the side of the roof beam body to receive the collision, fastening component can be fixed once more to the side solid board, the tip reinforcing component can be fixed the tip of the roof beam body, fixed connection board simultaneously, the connecting plate can consolidate the top of the roof beam body, the bracing piece subassembly can support the bottom of fastening component and consolidate to support the position near the centre to the roof beam body tip, can improve the structural strength of the roof beam body.
2. The end part of the beam is well fixed, damage caused by overlarge stress on the end part of the beam is avoided, the support requirement of the beam can be met, and the beam is firm and high in safety.
Drawings
FIG. 1 is a top perspective view of a beam reinforcement structure of the architectural structure design of the present utility model;
FIG. 2 is a bottom perspective view of the structural beam reinforcement structure of the present utility model;
fig. 3 is a perspective view of a telescoping control rod in a beam reinforcement structure of a building structure design according to the present utility model.
A beam body 1;
the side fixing component is 2, the side groove is 21, the side fixing plate is 22, and the clamping strip is 23;
the device comprises a 3-end assembly, a 31 connecting plate, a 32 limiting groove, a 33-end plate, a 34 slot, a 35 fixing bolt, a 36T-shaped plugboard, a 37 fixing column and a 38 fixing hole;
4 a supporting rod component, a 41 lower connecting plate, a 42 movable seat, a 43 movable column, a 44 movable block, a 45 mounting long cylinder, a 46 screw hole sleeve, a 47 screw thread column, a 48 control spanner, a 49 connecting block, a 410 hinging seat and a 411 hinging column;
and 5, fastening the half sleeve and 52 connecting bolts by the fastening assemblies and 51.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
As shown in fig. 1-3, a beam reinforcement structure for building structural design comprises a beam body 1, side fixing components 2 arranged on two sides of the beam body 1, end components 3 arranged on two ends of the beam body 1, a fastening component 5 sleeved outside the beam body 1 and a support rod component 4, wherein the side fixing components 2 are fixed with the end components 3 and are used for protecting the beam body 1, and the support rod component 4 is supported between the fastening component 5 and the end components 3 in a triangular mode.
Further, the side fixing assembly 2 includes side grooves 21 formed on two sides of the beam body 1 and side fixing plates 22 matched with the side grooves 21, the length of the side fixing plates 22 is smaller than that of the side grooves 21, and the side fixing plates 22 are inserted and fixed in the side grooves 21.
Further, the cross section of the side groove 21 is concave, the upper and lower sides of the side fixing plate 22 are respectively provided with a clamping strip 23, and the side fixing plate 22 is inserted and fixed in the side groove 21 through the clamping strips 23.
Further, the fixing holes 38 are formed at two ends of the beam body 1, the end assembly 3 comprises end plates 33 disposed at two ends of the beam body 1, fixing columns 37 matched with the fixing holes 38 are disposed on the inner sides of the end plates 33, which are close to the beam body 1, and the end plates 33 are fixed at two ends of the beam body 1 by inserting the fixing columns 37 into the fixing holes 38. The end of the end plate 33 can be shielded by the cooperation of the fixing posts 37 and the fixing holes 38.
Further, the inner side of the end plate 33 near the beam body 1 is further provided with a T-shaped insertion plate 36 matched with the side groove 21, and the T-shaped insertion plate 36 is arranged at two sides of the fixing column 37 and can be inserted into two ends of the side groove 21.
The T-shaped plugboard 36 can block the end of the side groove 21, the matched side fixing plate 22 can block all positions of the side groove 21, and meanwhile, the T-shaped plugboard 36 can also play a role in bearing and fixing the end fixing plate 33.
Further, the end assembly 3 further includes a connecting plate 31 and a lower connecting plate 41, the connecting plate 31 is disposed at the top of the beam body 1, the upper portion of the end plate 33 is provided with a slot 34, two ends of the connecting plate 31 are inserted into the slot 34 to be fixed on the end plate 33, and the lower connecting plate 41 is fixed at the bottom of the end plate 33.
The connecting plate 31 is inserted through the slot 34 and then fixed by the fixing bolt 35, and the connecting plate 31 pulls the two end plates 33 towards the middle part of the beam body 1, so that the two end plates 33 are fixed, and the end plates 33 can stably protect the end part of the beam body 1.
Further, the top of the end plate 33 is provided with a fixing bolt 35, two ends of the top of the connecting plate 31 are provided with limiting grooves 32, friction lines are arranged at the bottom in the limiting grooves 32, and the bottom end of the fixing bolt 35 extends into the bottom of the limiting grooves 32 and abuts against the friction lines.
The limiting groove 32 can facilitate the bottom end of the fixing bolt 35 to be inserted, friction force between the fixing bolt 35 and the connecting plate 31 can be improved by friction lines, and stress of the connecting plate 31 and the end plate 33 is improved.
Further, the fastening assembly 5 includes fastening half sleeves 51 that mutually hugs, the fastening half sleeves 51 are of a U-shaped structure, two ends of each fastening half sleeve are respectively provided with an ear plate, the two fastening half sleeves 51 are connected through a connecting bolt 52 on the ear plate to form a fastening frame, and the fastening frame is sleeved at two ends of the beam body 1 outside the side fixing assembly 2.
The fastening boxes formed by the two fastening half sleeves 51 are used for firmly sleeving the end parts of the beam body 1, so that the strength of the end parts of the beam body 1 is improved.
Further, the support rod assembly 4 comprises a telescopic control rod, a first connecting assembly and a second connecting assembly, one end of the telescopic control rod is connected with the first connecting assembly, the first connecting assembly is fixed at the bottom of the lower connecting plate 41, the other end of the telescopic control rod is connected with the second connecting assembly, and the second connecting assembly is fixed at the bottom of the fastening square frame;
the telescopic control rod comprises a mounting long cylinder 45 and a threaded column 47 inserted in the mounting long cylinder 45, one end of the mounting long cylinder 45 close to the threaded column 47 is rotatably connected with a screw hole sleeve 46, a control spanner 48 is arranged on the periphery of the screw hole sleeve 46 in a ring-shaped array, the screw hole sleeve 46 is in threaded connection with the threaded column 47, and the screw hole sleeve 46 can control the unscrewing length of the threaded column 47.
The screw hole sleeve 46 can be rotated by controlling the spanner 48, so that the screw hole sleeve 46 rotates relative to the installation long barrel 45, the threaded column 47 stretches out or stretches into the installation long barrel 45, when the threaded column 47 stretches out of the installation long barrel 45, the length of the telescopic control rod is increased, the supporting effect on the beam body 1 is improved, and the strength of the beam body 1 is improved.
Further, a movable block 44 is fixed at one end of the telescopic control rod, which is close to the first connecting component, a rotatable connecting block 49 is fixed at one end of the telescopic control rod, which is close to the second connecting component, the first connecting component comprises a movable seat 42 and a movable column 43, the second connecting component comprises a hinged seat 410 and a hinged column 411, the movable block 44 is fixed in the movable seat 42 through the movable column 43, and the connecting block 49 is fixed in the hinged seat 410 through the hinged column 411.
The bottom fixedly connected with lower fishplate bar 41 of fixed plate 33, the bottom of lower fishplate bar 41 is provided with movable seat 42, and movable seat 42 passes through movable column 43 swing joint movable block 44, and movable block 44 fixed connection telescopic control rod's one end, telescopic control rod's the other end fixed connection connecting block 49, connecting block 49 pass through articulated column 411 swing joint articulated seat 410, and articulated seat 410 is fixed in the fastening half-sleeve 51 bottom of corresponding fastening assembly 5 downside. Both ends of the telescopic control rod are movably connected, and the bottom of the fastening assembly 5 can be supported through the telescopic control rod, so that the end part of the beam body 1 with larger stress is supported.
Can fix the side fixed plate 22 through card strip 23 and draw-in groove, can protect the both sides of roof beam body 1 through the side fixed plate 22, avoid the side of roof beam body 1 to receive the collision, fastening component 5 can fix the side fixed plate 22 once more, the tip reinforcing component can fix the tip of roof beam body 1, fixed connection board 31 simultaneously, the top of roof beam body 1 can be consolidated to connecting plate 31, bracing piece subassembly 4 can support the bottom of fastening component 5 to support the reinforcing to the position that the tip of roof beam body 1 leans on the centre, can improve the structural strength of roof beam body 1.
It is noted that relational terms such as first and second, and the like are used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises," "comprising," or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but may include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element defined by the phrase "comprising one … …" does not exclude the presence of other like elements in a process, method, article, or apparatus that comprises the element.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the principles and spirit of the utility model, the scope of which is defined in the appended claims and their equivalents.

Claims (10)

1. The utility model provides a building structure designs roof beam reinforced structure which characterized in that: the beam body, the side fixing components arranged on two sides of the beam body, the end components arranged on two ends of the beam body, the fastening components and the support rod components sleeved outside the beam body, wherein the side fixing components are fixed with the end components and are used for protecting the beam body, and the support rod components are supported between the fastening components and the end components in a triangular mode.
2. The structural design beam reinforcement structure of claim 1, wherein: the side fixing assembly comprises side grooves formed in two sides of the beam body and side fixing plates matched with the side grooves, the length of each side fixing plate is smaller than that of each side groove, and the side fixing plates are inserted and fixed in the side grooves.
3. The structural design beam reinforcement structure of claim 2, wherein: the cross section of the side groove is concave, clamping strips are respectively arranged on the upper side and the lower side of the side fixing plate, and the side fixing plate is inserted and fixed in the side groove through the clamping strips.
4. A structural design beam reinforcing structure according to claim 3, wherein: the fixed orifices have been seted up at the roof beam body both ends, the end subassembly is including locating the end board at roof beam body both ends, and the inboard that the end board is close to the roof beam body is equipped with fixed orifices assorted fixed column, in order to fix the end board at roof beam body both ends through inserting the fixed column in the fixed orifices.
5. The structural design beam reinforcement structure of claim 4, wherein: the inner side of the end plate, which is close to the beam body, is also provided with T-shaped plugboards matched with the side grooves, and the T-shaped plugboards are arranged on two sides of the fixed column and can be inserted into two ends of the side grooves.
6. The structural design beam reinforcement structure of claim 5, wherein: the end assembly further comprises a connecting plate and a lower connecting plate, the connecting plate is arranged at the top of the beam body, the upper portion of the end plate is provided with a slot, two ends of the connecting plate are inserted into the slot to be fixed on the end plate, and the lower connecting plate is fixed at the bottom of the end plate.
7. The structural design beam reinforcement structure of claim 6, wherein: the end plate top is equipped with fixing bolt, and the spacing groove has been seted up at connecting plate top both ends, and the bottom in the spacing groove sets up friction line, and fixing bolt's bottom stretches into spacing groove bottom and supports friction line.
8. The structural design beam reinforcement structure of claim 7, wherein: the fastening assembly comprises fastening half sleeves which are mutually cohesive, the fastening half sleeves are of U-shaped structures, the two ends of each fastening half sleeve are respectively provided with an ear plate, the two fastening half sleeves are connected through connecting bolts on the ear plates to form a fastening square frame, and the fastening square frame is sleeved at two ends of a beam body outside the side fixing assembly.
9. The structural design beam reinforcement structure of claim 8, wherein: the support rod assembly comprises a telescopic control rod, a first connecting assembly and a second connecting assembly, one end of the telescopic control rod is connected with the first connecting assembly, the first connecting assembly is fixed at the bottom of the lower connecting plate, the other end of the telescopic control rod is connected with the second connecting assembly, and the second connecting assembly is fixed at the bottom of the fastening square frame;
the telescopic control rod comprises a long installation cylinder and a threaded column inserted in the long installation cylinder, one end of the long installation cylinder, which is close to the threaded column, is rotationally connected with a screw hole sleeve, a control spanner is arranged on the peripheral annular array of the screw hole sleeve, the screw hole sleeve is in threaded connection with the threaded column, and the screw hole sleeve can control the unscrewing length of the threaded column.
10. The structural design beam reinforcement structure of claim 9, wherein: the telescopic control rod is fixed with the movable block near one end of first coupling assembling, is fixed with rotatable connecting block near one end of second coupling assembling, first coupling assembling includes movable seat and movable column, the second coupling assembling includes articulated seat and articulated column, and the movable block passes through the movable column to be fixed in the movable seat, and the connecting block passes through the articulated column to be fixed in the articulated seat.
CN202222567898.3U 2022-09-27 2022-09-27 Building structure design roof beam reinforced structure Active CN219012036U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222567898.3U CN219012036U (en) 2022-09-27 2022-09-27 Building structure design roof beam reinforced structure

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222567898.3U CN219012036U (en) 2022-09-27 2022-09-27 Building structure design roof beam reinforced structure

Publications (1)

Publication Number Publication Date
CN219012036U true CN219012036U (en) 2023-05-12

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ID=86267775

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Application Number Title Priority Date Filing Date
CN202222567898.3U Active CN219012036U (en) 2022-09-27 2022-09-27 Building structure design roof beam reinforced structure

Country Status (1)

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CN (1) CN219012036U (en)

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