CN213575953U - Anti-seismic support for steel structure factory building - Google Patents

Anti-seismic support for steel structure factory building Download PDF

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Publication number
CN213575953U
CN213575953U CN202021848074.8U CN202021848074U CN213575953U CN 213575953 U CN213575953 U CN 213575953U CN 202021848074 U CN202021848074 U CN 202021848074U CN 213575953 U CN213575953 U CN 213575953U
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steel structure
factory building
connecting seat
structure factory
seat
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CN202021848074.8U
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张进花
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Abstract

The utility model discloses an anti-seismic support for a steel structure factory building, which comprises a mounting seat, wherein the mounting seat is provided with a plurality of first connecting elements connected with the steel structure factory building, the mounting seat is also connected with a first supporting beam which is vertically arranged through a connecting and interlocking mechanism, and one end of the first supporting beam, which is far away from the mounting seat, is connected with a first lifting ring through the connecting and interlocking mechanism; the steel structure factory building comprises a steel structure factory building, and is characterized by further comprising a first connecting seat, wherein at least one second connecting element connected with the steel structure factory building is arranged on the first connecting seat, a second connecting seat is hinged to the first connecting seat, a second supporting beam obliquely arranged is connected to the second connecting seat through a connecting and interlocking mechanism, a third connecting seat is connected to one end, far away from the second connecting seat, of the second supporting beam through a connecting and interlocking mechanism, and a second hanging ring is hinged to the third connecting seat. The support function for the fire-fighting pipeline is achieved, the overall structure is high in strength and good in connection reliability, and the service life is effectively prolonged; meanwhile, the movable connection is realized, the anti-seismic performance is good, and the use is safe and reliable.

Description

Anti-seismic support for steel structure factory building
Technical Field
The utility model belongs to the technical field of steel constructs interior fire-fighting pipeline hoist and mount of factory building, especially, relate to a steel constructs antidetonation support for factory building.
Background
At present, the fire fighting pipeline in the steel structure factory building is all set up at the top, and concrete structure is: two vertical screw rods of arranging are gone up in the top fixed mounting of steel construction factory building, are equipped with a horizontally supporting beam between two screw rods, and the fire-fighting pipeline prevents on a supporting beam, adopts this mode to have following defect:
1. the structure only plays a role in supporting the fire fighting pipeline, the overall structure is low in strength, the service life is short, and regular maintenance is needed;
2. the structure is fixedly connected with a steel structure workshop, the anti-seismic effect is poor, and the potential safety hazard is large.
SUMMERY OF THE UTILITY MODEL
To the defect among the prior art, the utility model provides a steel constructs factory building with antidetonation support to reach the purpose that improves structural strength, support intensity, life and antidetonation effect.
The utility model provides a technical scheme is: an anti-seismic support for a steel structure factory building comprises a mounting seat, wherein a plurality of first connecting elements connected with the steel structure factory building are arranged on the mounting seat, the mounting seat is further connected with a first vertically-arranged supporting beam through a connecting and meshing mechanism, and one end, far away from the mounting seat, of the first supporting beam is connected with a first lifting ring for clamping a fire-fighting pipeline through the connecting and meshing mechanism;
still include first connecting seat, be equipped with on the first connecting seat at least one with the second connecting element that the steel structure factory building links to each other, it has the second connecting seat to articulate on the first connecting seat, the second connecting seat passes through it is connected with the second supporting beam that the slope set up to connect interlock mechanism, a second supporting beam is kept away from the one end of second connecting seat is passed through it is connected with the third connecting seat to connect interlock mechanism, it has the second rings that are used for to articulate on the third connecting seat press from both sides the dress fire control pipeline.
As an improvement, the first supporting beam and the second supporting beam both comprise square steel beam bodies with hollow structures, one side of each beam body is an opening part extending along the length direction of the beam body, bending meshing parts are arranged on the beam bodies and located on two sides of the opening part, the bending meshing parts are bent towards the inside of the hollow structures, and first meshing teeth are arranged on the bending meshing parts in the hollow structures.
As a further improvement, the connecting and meshing mechanism comprises a square connecting block positioned in the hollow structure, second meshing teeth matched with the first meshing teeth are arranged on the connecting blocks positioned on two sides of the opening part, a threaded hole is formed in the connecting block at a position corresponding to the opening part, and a connecting bolt is arranged on the threaded hole in a threaded manner;
the connecting device is characterized by further comprising a pre-assembly made of plastic materials, wherein the pre-assembly is provided with a positioning groove for positioning the connecting block, and a through hole for the connecting bolt to pass through is formed in the position, corresponding to the threaded hole, of the pre-assembly; the pre-assembly is further provided with a plurality of limiting pieces abutted to the outer wall of the beam body.
As a further improvement, a force application pulling piece which is arranged in a protruding mode is arranged on the limiting piece.
As a further improvement, the first connecting seat, the second connecting seat and the third connecting seat each include two connecting bodies, and each connecting body is provided with a connecting hole; the two connecting bodies are formed by twisting and are arranged vertically.
As a further improvement, the mounting seat comprises a connecting sleeve sleeved on the outer wall of the first supporting beam, a connecting plate is arranged on the connecting sleeve, and the first connecting element penetrates through the connecting plate to be connected with the steel structure factory building.
As a further improvement, the first hanging ring and the second hanging ring both comprise plate bodies of two arc-shaped structures, and two ends of each plate body are provided with straight connecting parts.
Adopted the above technical scheme, the utility model provides a steel constructs factory building with antidetonation support's beneficial effect as follows:
the anti-seismic support for the steel structure factory building comprises a mounting seat, wherein a plurality of first connecting elements connected with the steel structure factory building are arranged on the mounting seat, the mounting seat is also connected with a first vertically-arranged supporting beam through a connecting and meshing mechanism, and one end, away from the mounting seat, of the first supporting beam is connected with a first lifting ring for clamping a fire-fighting pipeline through the connecting and meshing mechanism; the fire fighting pipeline hoisting device further comprises a first connecting seat, at least one second connecting element connected with a steel structure factory building is arranged on the first connecting seat, a second connecting seat is hinged to the first connecting seat, a second supporting beam which is obliquely arranged is connected to the second supporting beam through a connecting and interlocking mechanism, a third connecting seat is connected to one end, far away from the second connecting seat, of the second supporting beam through the connecting and interlocking mechanism, and a second hoisting ring for clamping a fire fighting pipeline is hinged to the third connecting seat And releases the shock force.
In conclusion, the anti-seismic support for the steel structure factory building not only plays a role in supporting a fire-fighting pipeline, but also has high overall structural strength and good connection reliability, and effectively prolongs the service life; meanwhile, the movable connection is realized, the anti-seismic performance is good, and in addition, the anti-seismic support for the steel structure factory building is safe and reliable to use.
Because first supporting beam and second supporting beam all include hollow structure's square steel beam body, one side of the roof beam body is the opening that extends along roof beam body length direction, be located and be equipped with the interlock portion of bending on the roof beam body of opening both sides, the interlock portion of bending is bent to hollow structure in, and be located and be equipped with first interlock tooth in the interlock portion of bending of hollow structure, thereby it promotes the overall structure intensity to the support intensity of fire-fighting pipeline and this steel structure factory building with antidetonation support to prop up a supporting beam and the second supporting beam through above-mentioned structure, and simultaneously, establish the basis for carrying out the interlock cooperation through connecting interlock mechanism.
The connecting and meshing mechanism comprises a square connecting block positioned in the hollow structure, second meshing teeth matched with the first meshing teeth are arranged on the connecting blocks positioned on the two sides of the opening part, a threaded hole is formed in the connecting block at the position corresponding to the opening part, and a connecting bolt is arranged on the threaded hole in a threaded manner; the connecting device also comprises a pre-assembly made of plastic materials, wherein the pre-assembly is provided with a positioning groove for positioning the connecting block, and a through hole for the connecting bolt to pass through is arranged on the pre-assembly at the position corresponding to the threaded hole; still be equipped with a plurality of spacing pieces that offset with the external wall of roof beam on the subassembly, thereby when carrying out the interlock cooperation, at first install the connecting block to the constant head tank on the subassembly, afterwards, move the subassembly that has the connecting block toward first supporting beam or second supporting beam, afterwards, carry out the interlock through the second interlock tooth on the connecting block and first interlock tooth, the external wall of roof beam through spacing piece and offsets, and then accomplish the preassembling of the connecting block that does not connect on first supporting beam or second supporting beam, later accomplish the connection cooperation of interlock through the threaded connection of connecting bolt and connecting block, thereby not only establish the basis for carrying out reliable connection, and, the pre-installation of connecting block in hollow structure has been realized, assembly convenience and assembly efficiency have been improved greatly.
Because be equipped with the application of force pulling-on piece that the protrusion set up on the spacing piece to be convenient for the application of force to the pre-assembly on through the application of force pulling-on piece, so that the mounted position of adjustment connecting block, simple structure has further improved the convenience of operation in the assembling process.
The first connecting seat, the second connecting seat and the third connecting seat comprise two connecting bodies, and each connecting body is provided with a connecting hole; the two connecting bodies are formed in a twisting mode and are perpendicular to each other, so that corner connection between two adjacent parts is achieved through the two connecting bodies perpendicular to each other, the first supporting beam and the second supporting beam are guaranteed to be located in the same plane, the first supporting beam and the second supporting beam are guaranteed to be stressed evenly, the supporting effect on the fire fighting pipeline is effectively guaranteed, and the anti-seismic performance is not affected.
The mounting seat comprises a connecting sleeve sleeved on the outer wall of the first supporting beam, a connecting plate is arranged on the connecting sleeve, and the first connecting element penetrates through the connecting plate to be connected with the steel structure factory building, so that the mounting seat is abutted against the steel structure factory building through the connecting plate and is connected with the steel structure factory building through the first connecting element, and the reliability and the fixity of the connection of the mounting seat and the steel structure factory building are ensured; through the suit of adapter sleeve and first supporting beam, increased the area of contact that both link to each other, help improving the connection effect of adapter sleeve and first supporting beam.
Because first rings and second rings all include the plate body of two arc structures, the both ends of plate body all are equipped with the connecting portion of straight setting to be convenient for the quick clamp through the first rings and the second rings of this structure press from both sides tight fire-fighting pipeline, simple structure helps improving assembly efficiency.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the embodiments or the technical solutions in the prior art will be briefly described below. Throughout the drawings, like elements or portions are generally identified by like reference numerals. In the drawings, elements or portions are not necessarily drawn to scale.
Fig. 1 is a schematic structural view of the present invention;
FIG. 2 is a schematic structural view of the connection between the first support beam and the first lifting ring of FIG. 1 via the connection engagement mechanism;
FIG. 3 is a schematic structural view of the first connecting seat in FIG. 1;
fig. 4 is a schematic view of the construction of the package of fig. 2;
in the drawings, 1-mounting seat; 101-connecting sleeve; 102-a connecting plate; 2-a first connection element; 201-a second connection element; 3-a first support beam; 301-beam body; 302-bending the occlusion part; 303-first engaging teeth; 4-connecting the engagement mechanism; 401-connecting block; 402-second engaging teeth; 403-connecting bolts; 404-pre-assembly; 405-a limiting piece; 406-a via hole; 407-positioning grooves; 408-a force applying tab; 5-a first lifting ring; 501-plate body; 502-a connecting portion; 6-a first connection seat; 601-a linker; 602-connecting hole; 7-a second connecting seat; 8-a second support beam; 9-a fire-fighting pipeline; 10-a third connecting seat; 11-a second lifting ring.
Detailed Description
Embodiments of the present invention will be described in detail below with reference to the accompanying drawings. The following examples are only for illustrating the technical solutions of the present invention more clearly, and therefore are only examples, and the protection scope of the present invention is not limited thereby.
As shown in fig. 1 and fig. 2, an anti-seismic support for a steel structure factory building comprises a mounting base 1, wherein a plurality of first connecting elements 2 (such as connecting bolts and other connecting pieces) connected with the steel structure factory building (not shown in the figure) are arranged on the mounting base 1, the mounting base 1 is also connected with a first supporting beam 3 which is vertically arranged through a connecting and meshing mechanism 4, and one end of the first supporting beam 3, which is far away from the mounting base 1, is connected with a first lifting ring 5 for clamping a fire-fighting pipeline 9 through the connecting and meshing mechanism 4; the fire-fighting pipeline connecting device further comprises a first connecting seat 6, at least one second connecting element 201 (such as a connecting piece such as a connecting bolt) connected with a steel factory building is arranged on the first connecting seat 6, a second connecting seat 7 is hinged on the first connecting seat 6, the second connecting seat 7 is connected with a second supporting beam 8 which is obliquely arranged through a connecting and meshing mechanism 4, one end, far away from the second connecting seat 7, of the second supporting beam 8 is connected with a third connecting seat 10 through the connecting and meshing mechanism 4, and a second hanging ring 11 used for clamping a fire-fighting pipeline 9 is hinged on the third connecting seat 10.
The first supporting beam 3 and the second supporting beam 8 both comprise a square steel beam body 301 with a hollow structure, one side of the beam body 301 is an opening part (not shown in the form of a reference numeral) extending along the length direction of the beam body 301, the beam body 301 at the two sides of the opening part is provided with a bending engaging part 302, the bending engaging part 302 is bent towards the inside of the hollow structure, and the bending engaging part 302 in the hollow structure is provided with a first engaging tooth 303; in order to reduce the weight of the first and second support beams 3 and 8, the beam body 301 may be provided with a plurality of holes (not shown) for reducing weight.
The connecting and meshing mechanism 4 comprises a square connecting block 401 positioned in a hollow structure, second meshing teeth 402 matched with the first meshing teeth 303 are arranged on the connecting block 401 positioned at two sides of an opening part, a threaded hole (not shown in the figure) is arranged on the connecting block 401 at the position corresponding to the opening part, a connecting bolt 403 is arranged on the threaded hole in a threaded mode, and the length of the nut end of the connecting bolt 403 is larger than the width of the opening part; the connector further comprises a pre-assembly 404 made of plastic materials, wherein a positioning groove 407 for positioning the connecting block 401 is arranged on the pre-assembly 404, and a through hole 406 for a connecting bolt to pass through is arranged on the pre-assembly 404 at a position corresponding to the threaded hole; the package 404 is further provided with a plurality of limiting pieces 405 abutting against the outer wall of the beam 301, and preferably, the limiting pieces 405 are provided with a protruding force application pull tab 408 (see fig. 4).
In this scheme, the first connecting seat 6, the second connecting seat 7 and the third connecting seat 10 each include two connecting bodies 601, and each connecting body 601 is provided with a connecting hole 602 through which a connecting bolt passes; the two connecting bodies 601 are twisted and formed and are arranged vertically to each other (see fig. 3); the mounting seat 1 comprises a connecting sleeve 101 sleeved on the outer wall of the first supporting beam, a connecting plate 102 is arranged on the connecting sleeve 101, and the first connecting element 2 penetrates through the connecting plate 102 to be connected with a steel structure factory building; the first hanging ring 5 and the second hanging ring 11 both comprise two plate bodies 501 which are used for clamping the fire fighting pipeline 9 and have arc structures, and both ends of each plate body 501 are provided with straight connecting parts 502 for installing connecting pieces (such as bolt and nut assemblies); in order to protect the fire fighting pipeline 9 and have elastic buffering property, a rubber pad abutting against the outer wall of the fire fighting pipeline 9 may be disposed on the plate body 501.
The above embodiments are only used to illustrate the technical solution of the present invention, and not to limit the same; although the present invention has been described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that: the technical solutions described in the foregoing embodiments may still be modified, or some or all of the technical features may be equivalently replaced; such modifications and substitutions do not substantially depart from the scope of the embodiments of the present invention, and are intended to be covered by the claims and the specification.

Claims (7)

1. An anti-seismic support for a steel structure factory building is characterized by comprising an installation base, wherein a plurality of first connecting elements connected with the steel structure factory building are arranged on the installation base, the installation base is further connected with a first vertically-arranged support beam through a connecting and meshing mechanism, and one end, far away from the installation base, of the first support beam is connected with a first hanging ring for clamping a fire-fighting pipeline through the connecting and meshing mechanism;
still include first connecting seat, be equipped with on the first connecting seat at least one with the second connecting element that the steel structure factory building links to each other, it has the second connecting seat to articulate on the first connecting seat, the second connecting seat passes through it is connected with the second supporting beam that the slope set up to connect interlock mechanism, a second supporting beam is kept away from the one end of second connecting seat is passed through it is connected with the third connecting seat to connect interlock mechanism, it has the second rings that are used for pressing from both sides the dress to articulate on the third connecting seat the fire-fighting pipeline.
2. The anti-seismic support for the steel structure factory building according to claim 1, wherein each of the first support beam and the second support beam comprises a square steel beam body with a hollow structure, one side of the beam body is an opening portion extending in the length direction of the beam body, bending engagement portions are arranged on the beam body and located on two sides of the opening portion, the bending engagement portions are bent into the hollow structure, and first engagement teeth are arranged on the bending engagement portions in the hollow structure.
3. The anti-seismic support for the steel structure factory building according to claim 2, wherein the connecting and meshing mechanism comprises a square connecting block positioned in the hollow structure, second meshing teeth matched with the first meshing teeth are arranged on the connecting blocks positioned on two sides of the opening, a threaded hole is formed in the connecting block at a position corresponding to the opening, and a connecting bolt is installed on the threaded hole in a threaded manner;
the connecting device is characterized by further comprising a pre-assembly made of plastic materials, wherein the pre-assembly is provided with a positioning groove for positioning the connecting block, and a through hole for the connecting bolt to pass through is formed in the position, corresponding to the threaded hole, of the pre-assembly; the pre-assembly is further provided with a plurality of limiting pieces abutted to the outer wall of the beam body.
4. An anti-seismic support for a steel structure factory building according to claim 3, wherein a force application pull piece is arranged on the limiting piece in a protruding mode.
5. An anti-seismic support for a steel structure factory building according to any one of claims 1 to 4, wherein each of the first connecting seat, the second connecting seat and the third connecting seat comprises two connecting bodies, and each connecting body is provided with a connecting hole; the two connecting bodies are formed by twisting and are arranged vertically.
6. An anti-seismic support for a steel structure factory according to claim 5, wherein the mounting base comprises a connecting sleeve sleeved on the outer wall of the first supporting beam, a connecting plate is arranged on the connecting sleeve, and the first connecting element passes through the connecting plate to be connected with the steel structure factory.
7. The anti-seismic support for the steel structure factory building according to claim 6, wherein the first hanging ring and the second hanging ring each comprise two plate bodies with arc-shaped structures, and two ends of each plate body are provided with straight connecting portions.
CN202021848074.8U 2020-08-28 2020-08-28 Anti-seismic support for steel structure factory building Active CN213575953U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021848074.8U CN213575953U (en) 2020-08-28 2020-08-28 Anti-seismic support for steel structure factory building

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021848074.8U CN213575953U (en) 2020-08-28 2020-08-28 Anti-seismic support for steel structure factory building

Publications (1)

Publication Number Publication Date
CN213575953U true CN213575953U (en) 2021-06-29

Family

ID=76556924

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021848074.8U Active CN213575953U (en) 2020-08-28 2020-08-28 Anti-seismic support for steel structure factory building

Country Status (1)

Country Link
CN (1) CN213575953U (en)

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