CN215258242U - Comprehensive pipeline anti-seismic support and hanger - Google Patents

Comprehensive pipeline anti-seismic support and hanger Download PDF

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Publication number
CN215258242U
CN215258242U CN202121685168.2U CN202121685168U CN215258242U CN 215258242 U CN215258242 U CN 215258242U CN 202121685168 U CN202121685168 U CN 202121685168U CN 215258242 U CN215258242 U CN 215258242U
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China
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pipeline
rod
connecting rod
telescopic
hanger
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Inventor
魏凌驰
孙丽娟
汪奇
黄涛
刘峻涛
宋诗卉
周成良
徐芳云
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Wuhan Construction Engineering Group Decoration Engineering Co ltd
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Wuhan Construction Engineering Group Decoration Engineering Co ltd
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Abstract

The application discloses synthesize a pipeline antidetonation gallows, it includes two relative settings prop up the structure of hanging, and install two horizontal poles that prop up between the structure of hanging and be used for placing the pipeline, prop up the mounting that hangs the structure and include with major structure top rigid coupling, the regulating part of being connected with the mounting, and the connecting rod of being connected with the regulating part, the horizontal pole is perpendicular and coplane setting with the connecting rod, the both ends of horizontal pole respectively with the vertical lateral wall elastic connection of two connecting rods, be provided with the antidetonation subassembly that is used for the elastic connection horizontal pole on the connecting rod, be provided with the supporting component who is used for the elastic support pipeline on the horizontal pole. This application has an extension gallows life's effect.

Description

Comprehensive pipeline anti-seismic support and hanger
Technical Field
The application relates to the technical field of pipeline installation, in particular to a comprehensive pipeline anti-seismic support and hanger.
Background
A line refers to a conduit connected to a pump, valve or control system, etc., for transporting a liquid, gas or powdered solid. With the development of science and technology and economy, the variety of pipelines in cities is continuously increased. At present, cities pay more attention to the utilization of underground space, most engineering pipelines are buried underground, and pipelines can be buried on underground streets, underground railways, structures and underground buildings in some cities, so that the application of comprehensive pipelines in city planning plays an important role in city construction.
In the related art, chinese patent No. 201921179964.1 proposes a pipeline supporting and hanging frame, which includes two supporting and hanging structures oppositely disposed, each supporting and hanging structure includes a fixing member for being mounted on the top of a main structure and a claw-shaped member fixed on the fixing member, the claw-shaped member includes a plurality of adjusting portions located in the same plane as the fixing member and extending in different directions away from the fixing member; the connecting rods are connected to the adjusting parts on each hanging structure in a pulling mode, a cross rod for placing a pipeline is connected between the two opposite connecting rods in a pulling mode, and the cross rod is arranged corresponding to the adjusting parts; when the pipeline is installed, the claw-shaped piece is hung at the top of the main structure by using the fixing piece, then the cross rod is hung on the claw-shaped piece, and finally the pipeline is placed on the cross rod so as to realize the laying and installation of the pipeline.
With respect to the related art among the above, the inventors consider that the following drawbacks exist: when letting in liquid to the pipeline, gaseous or when grinding the solid of powder, liquid, gaseous or the solid of grinding into powder can produce the collision to the pipe wall of pipeline, and then make the pipeline produce and rock, the pipeline can drive the horizontal pole and rock, the horizontal pole can drive the connecting rod and rock, the connecting rod can drive the regulating part and rock, the regulating part can drive the mounting and rock, because the pipeline, the horizontal pole, the connecting rod, regulating part and mounting are rigid connection between two liang, so when the pipeline produces and rocks, can lead to the junction between two adjacent parts to produce the breakage in a gallows, and then influence the life of a gallows.
SUMMERY OF THE UTILITY MODEL
In order to improve and rock and make a gallows produce the problem of losing because of the pipeline, this application provides a synthesize pipeline antidetonation gallows.
The application provides a synthesize pipeline antidetonation gallows adopts following technical scheme:
the utility model provides a synthesize pipeline antidetonation gallows, includes two relative settings prop up and hang the structure and install two prop up the horizontal pole that hangs between the structure and be used for placing the pipeline, prop up hang the structure include with the mounting of major structure top rigid coupling, with the regulating part that the mounting is connected and with the connecting rod that the regulating part is connected, the horizontal pole with the perpendicular and coplane setting of connecting rod, the both ends of horizontal pole respectively with two the vertical lateral wall elastic connection of connecting rod, be provided with on the connecting rod and be used for elastic connection the antidetonation subassembly of horizontal pole, be provided with the supporting component who is used for the elastic support pipeline on the horizontal pole.
By adopting the technical scheme, when the pipeline is installed, the adjusting part is fixedly connected to the top of the main structure by using the fixing part, then the connecting rods are connected to the adjusting part, and finally the cross rod is connected between the two connecting rods, so that the hanging of the pipeline anti-seismic support hanger can be completed; use supporting component with pipeline elastic connection on the horizontal pole, supporting component can cushion the vibration of pipeline, the antidetonation subassembly can rock relatively between horizontal pole and the connecting rod and cushion, supporting component and antidetonation subassembly set up can effectively avoid rocking because of the pipeline and make a gallows produce the breakage, have the effect of the life of an extension gallows.
Optionally, the anti-seismic assembly comprises a telescopic rod group and a spring sleeved on the telescopic rod group, one end of the telescopic rod group is fixedly connected with the connecting rod, the other end of the telescopic rod group is hinged to the cross rod, one end of the spring is abutted to the cross rod, and the other end of the spring is abutted to the connecting rod.
Through adopting above-mentioned technical scheme, when the pipeline drives the horizontal pole and produces along the ascending time of rocking of horizontal pole extending direction, the combined action of telescopic link group and spring can effectively alleviate the relative rocking between horizontal pole and the connecting rod, has effectively avoided reducing the damage because of rocking the production relatively between horizontal pole and the connecting rod, is articulated the setting between telescopic link group and the horizontal pole simultaneously, has effectively avoided the telescopic link group to reduce the damage of producing at flexible in-process, has ensured the flexible effect of telescopic link group.
Optionally, the telescopic rod group comprises a telescopic cylinder fixedly connected with the connecting rod and a telescopic column hinged with the cross rod, the telescopic column is slidably inserted into the telescopic cylinder, and a limiting part for limiting the telescopic column to slip from the telescopic cylinder is arranged in the telescopic cylinder.
Through adopting above-mentioned technical scheme, telescopic link group is rocking when buffering relatively between horizontal pole and the connecting rod, and the horizontal pole can promote flexible post orientation and be close to or keep away from the flexible section of thick bamboo direction and stretch out and draw back and slide, and the locating part can make flexible post flexible the connection of sliding all the time in a flexible section of thick bamboo, has effectively avoided because of rocking the book damage that produces relatively between horizontal pole and the connecting rod.
Optionally, the limiting part includes a guide block fixedly connected to the inner wall of the telescopic cylinder, a guide groove matched with the guide block in a sliding manner is formed in the arc circumferential wall of the telescopic column, and both ends of the guide groove are closed.
Through adopting above-mentioned technical scheme, the interact of guide block and guide way makes flexible post can be in a flexible section of thick bamboo stable flexible the sliding, and the both ends of guide way are closed setting simultaneously, have avoided the guide block slippage from the guide way in for telescopic link group can rock the relative between horizontal pole and the connecting rod under the effect of spring and effectively cushion.
Optionally, the support assembly includes a base fixedly connected to the cross bar, and a latch for locking or unlocking the pipeline to or from the base.
Through adopting above-mentioned technical scheme, when carrying out the installation of pipeline, place the pipeline on the base earlier, then use the hasp with pipeline locking on the base, reduce the clearance between the circular arc perisporium of pipeline and the base as far as possible, and then reduce the rocking between pipeline and the base and collide with the damage.
Optionally, the support assembly further includes an elastic layer fixedly connected to the base and configured to elastically abut against the pipeline.
Through adopting above-mentioned technical scheme, the elastic layer can cushion the relative rocking between pipeline and the base, effectively reduces rocking between pipeline and the base and collides with the damage.
Optionally, the fixing piece is provided with a butt plate, and the butt plate is fixedly connected with the top of the main body structure.
Through adopting above-mentioned technical scheme, the butt plate can increase the area of contact between mounting and the major structure, effectively avoids the mounting because of rocking and is lost.
Optionally, the adjusting part includes that the connecting rod is hung and is established jib on the mounting and be located the bracing of jib both sides, the bracing slope sets up, butt joint board with the connecting rod respectively with the both ends of bracing are connected.
Through adopting above-mentioned technical scheme, the jib hangs the connecting rod and establishes on the mounting, and the bracing of jib both sides is with jib stable support between connecting rod and butt board, avoids the jib to be damaged because of producing relative rocking between connecting rod and the mounting as far as possible.
In summary, the present application includes at least one of the following beneficial technical effects:
1. when the pipeline drives the cross rod to shake along the extending direction of the cross rod, the relative shake between the cross rod and the connecting rod can be effectively relieved under the combined action of the telescopic rod group and the spring, the folding damage caused by the relative shake between the cross rod and the connecting rod is effectively avoided, meanwhile, the telescopic rod group and the cross rod are arranged in a hinged mode, the folding damage caused in the telescopic process of the telescopic rod group is effectively avoided, and the telescopic effect of the telescopic rod group is guaranteed;
2. the pipeline is locked on the base by the lock catch, the gap between the arc circumferential wall of the pipeline and the base is reduced as much as possible, so that the relative shaking amplitude between the pipeline and the base is reduced, meanwhile, the elastic layer can buffer the relative shaking between the pipeline and the base, and the shaking damage between the pipeline and the base is effectively reduced;
3. the bracing of jib both sides is supported the jib steadily between connecting rod and butt board, avoids the jib to be reduced because of producing between connecting rod and the mounting relatively rocking as far as possible.
Drawings
Fig. 1 is a schematic overall structure diagram of an embodiment of the present application.
FIG. 2 is a schematic structural view of a cross bar and support assembly in an embodiment of the present application.
Fig. 3 is a partially enlarged schematic view of a portion a in fig. 1.
Fig. 4 is an exploded view of the telescopic cylinder, telescopic column and spring in the embodiment of the present application.
Reference numerals: 1. a supporting and hanging structure; 11. a fixing member; 12. an adjustment section; 121. a boom; 122. bracing; 13. a connecting rod; 2. a cross bar; 3. an anti-seismic assembly; 31. a telescopic rod group; 311. a telescopic cylinder; 312. a telescopic column; 32. a spring; 4. a support assembly; 41. a base; 42. locking; 43. an elastic layer; 5. a guide block; 6. a guide groove; 7. abutting against the board.
Detailed Description
The present application is described in further detail below with reference to figures 1-4.
The embodiment of the application discloses a comprehensive pipeline antidetonation gallows. Referring to fig. 1, the comprehensive pipeline anti-seismic support and hanger comprises two support and hanger structures 1 which are oppositely arranged, and a cross bar 2 which is installed between the two support and hanger structures 1 and is used for placing a pipeline, wherein each support and hanger structure 1 comprises a fixing part 11 fixedly connected with the top of a main structure, an adjusting part 12 connected with the fixing part 11, and a connecting rod 13 connected with the adjusting part 12, the fixing part 11 can be an anchor rod or an expansion bolt, and in the embodiment of the application, the fixing part 11 is provided with an expansion bolt.
Referring to fig. 1, be provided with butt plate 7 on the mounting 11, butt plate 7 can be arbitrary shape, and butt plate 7 welded fastening is on mounting 11, and when mounting 11 and major structure are stable to be connected, butt plate 7 and the inseparable butt in major structure top, then use the screw to stabilize the rigid coupling on the major structure top with butt plate 7, butt plate 7 can increase the area of contact between mounting 11 and the major structure, effectively avoids mounting 11 to be lost because of rocking.
Referring to fig. 1, the adjusting portion 12 includes a hanger rod 121 for hanging the connecting rod 13 on the fixing member 11, and a diagonal brace 122 located on two sides of the hanger rod 121, the hanger rod 121 is vertically disposed, one end of the hanger rod 121 is welded to the fixing member 11, the other end of the hanger rod 121 is coaxially welded to a threaded rod, the threaded rod penetrates through the connecting rod 13, the threaded rod is provided with two nuts, the two nuts are respectively located on two sides of the connecting rod 13 and abut against the connecting rod 13, the connecting rod 13 is stably locked on the threaded rod under the abutting effect of the two nuts, and the threaded rod stably hangs the connecting rod 13 on the fixing member 11 through the hanger rod 121.
Referring to fig. 1, the inclined strut 122 is obliquely arranged, one end of the inclined strut 122 is hinged to the abutting plate 7 through a hinge shaft, the other end of the inclined strut 122 is hinged to a hinge plate through a hinge shaft, the hinge shafts at two ends of the inclined strut 122 are parallel to each other, the hinge shaft on the inclined strut 122 is parallel to the cross bar 2, after the position of the connecting rod 13 on the suspension rod 121 is adjusted, the inclined strut 122 is rotated, the hinge plate and the connecting rod 13 are abutted, finally, the hinge plate is locked and fixed on the connecting rod 13 through screws, the suspension rod 121 is stably supported between the connecting rod 13 and the abutting plate 7 through the inclined strut 122, and the suspension rod 121 is prevented from being damaged due to relative shaking generated between the connecting rod 13 and the fixing piece 11 as far as possible.
Referring to fig. 1 and 2, horizontal pole 2 and the perpendicular just coplane setting of connecting rod 13, horizontal pole 2 is provided with a plurality ofly, and a plurality of horizontal poles 2 set up along connecting rod 13 extending direction interval, and the pipeline is laid along connecting rod 13 extending direction, and a plurality of horizontal poles 2 all support the pipeline.
Referring to fig. 1 and 2, two ends of a cross rod 2 are respectively elastically connected with vertical side walls of two connecting rods 13, a supporting component 4 for elastically supporting a pipeline is arranged on the cross rod 2, the supporting component 4 comprises a base 41 fixedly connected with the cross rod 2 and a lock catch 42 for locking or unlocking the pipeline on the base 41, the base 41 is positioned on the end surface of the cross rod 2 far away from the ground, the base 41 and the cross rod 2 are fixedly connected in a welding manner or a screw connection manner, an arc-shaped groove is formed in the end surface of the base 41 far away from the cross rod 2, and the pipeline is erected in the groove; the latch 42 may be a tie, an iron chain, or a buckle, in the embodiment of the present application, the latch 42 is configured as a buckle, both ends of the buckle are fixedly connected to the base 41 through screws, and the pipeline is stably locked and fixed on the cross bar 2 under the fastening effect of the buckle.
Referring to fig. 1 and 2, in order to buffer the relative shaking between the pipeline and the base 41, the supporting assembly 4 further includes an elastic layer 43 fixedly connected to the base 41 and used for elastically abutting against the pipeline, the elastic layer 43 may be a rubber pad, a damping pad, or a foam rubber pad, in this embodiment, the elastic layer 43 is a rubber pad, and the rubber pad is adhesively fixed in the groove of the base 41 by adhesion.
Referring to fig. 2 and 3, the connecting rod 13 is provided with an anti-seismic assembly 3 for elastically connecting the cross rod 2, the anti-seismic assembly 3 includes a telescopic rod group 31 and a spring 32 sleeved on the telescopic rod group 31, the telescopic rod group 31 is located between the cross rod 2 and the connecting rod 13, and the telescopic direction of the telescopic rod group 31 is consistent with the extending direction of the cross rod 2.
In this application embodiment, telescopic rod group 31 includes telescopic cylinder 311 with connecting rod 13 rigid coupling and with horizontal pole 2 articulated telescopic column 312, telescopic cylinder 311 can be for the welding with connecting rod 13's rigid coupling mode, also can be screw connection, telescopic column 312's one end is passed through the articulated shaft and is articulated with horizontal pole 2, the vertical setting of articulated shaft between telescopic column 312 and the horizontal pole 2, telescopic column 312 keeps away from the coaxial and the grafting of sliding of one end of horizontal pole 2 in telescopic cylinder 311.
In other embodiments, the telescopic rod group 31 includes a slide rail fixedly connected to the connecting rod 13 and a slide rod slidably connected to the slide rail, a T-shaped groove for slidably connecting the slide rod is formed in the slide rail, both ends of the T-shaped groove are both closed, a T-shaped block adapted to slide in the T-shaped groove is welded to the slide rod, one end of the slide rod away from the connecting rod 13 is hinged to the cross rod 2, and the cross rod 2 can push the slide rod to slide toward a direction close to or away from the connecting rod 13.
Referring to fig. 2 and 3, the spring 32 is sleeved on the telescopic rod group 31, the spring 32 is always in a compressed state, one end of the spring 32 is abutted against the cross rod 2, and the other end of the spring 32 is abutted against the connecting rod 13; when the pipeline drives horizontal pole 2 to produce and follows 2 ascending rocking times of extending direction of horizontal pole, the combined action of telescopic link group 31 and spring 32 can effectively alleviate the relative rocking between horizontal pole 2 and the connecting rod 13, effectively avoided shaking the book that produces because of relatively between horizontal pole 2 and the connecting rod 13 and decrease, for articulated setting between telescopic link group 31 and the horizontal pole 2 simultaneously, effectively avoided telescopic link group 31 to reduce at flexible in-process production, the flexible effect of telescopic link group 31 has been ensured.
Referring to fig. 3 and 4, a limiting member for limiting the sliding of the telescopic column 312 from the telescopic cylinder 311 is arranged in the telescopic cylinder 311, the limiting member includes a guide block 5 fixedly connected to an inner wall of the telescopic cylinder 311, one or more guide blocks 5 may be arranged, a length direction of the guide block 5 is the same as a sliding direction of the telescopic column 312, and the guide block 5 and the telescopic cylinder 311 are fixedly connected by a screw or by welding.
Referring to fig. 3 and 4, offer the guide way 6 with the guide block 5 adaptation that slides on the circular arc perisporium of flexible post 312, the one end that guide way 6 is close to horizontal pole 2 is closed setting, the one end that horizontal pole 2 was kept away from to flexible post 312 has the joint disc through screw releasable connection, the joint disc is coaxial and the big setting such as with flexible post 312, the joint disc can seal closed processing to the one end that horizontal pole 2 was kept away from to guide way 6, guide block 5 slippage in the guide way 6 when having restricted flexible post 312 and slided in telescopic cylinder 311.
The implementation principle of a comprehensive pipeline antidetonation gallows of this application embodiment does: firstly, fixing the adjusting part 12 on the top of the main structure by using a fixing part 11, enabling the abutting plate 7 to be tightly abutted against the top of the main structure, then stably and fixedly connecting the abutting plate 7 on the top of the main structure by using a screw, then connecting the connecting rod 13 on the adjusting part 12, simultaneously enabling the inclined strut 122 in the adjusting part 12 to be stably supported and fixed between the abutting plate 7 and the connecting rod 13, and finally connecting the cross rod 2 between the two connecting rods 13, thereby completing the hanging of the pipeline anti-seismic support and hanger; the pipeline is then laid on the base 41 and secured to the base 41 using the latch 42.
When letting in liquid, gas or grinding into the solid of powder in the pipeline, liquid, gas or grinding into the solid of powder can produce the collision to the pipe wall of pipeline, and then make the pipeline produce and rock, and the elastic layer 43 on the base 41 can cushion the relative rocking between pipeline and the base 41, effectively reduces rocking between pipeline and the base 41 and collides with the damage.
When the pipeline drives horizontal pole 2 to produce and follows 2 ascending rocking times of extending direction of horizontal pole, telescopic link group 31 is flexible along 2 extending direction of horizontal pole, telescopic link group 31 and spring 32's combined action can effectively alleviate the relative rocking between horizontal pole 2 and the connecting rod 13, effectively avoided reducing because of rocking the production relatively between horizontal pole 2 and the connecting rod 13, simultaneously telescopic link group 31 and horizontal pole 2 between be articulated the setting, effectively avoided reducing of telescopic link group 31 at flexible in-process production, telescopic link group 31's flexible effect has been ensured.
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 synthesize pipeline antidetonation gallows, includes two relative settings prop up and hang structure (1) and install two prop up and hang between structure (1) and be used for placing horizontal pole (2) of pipeline, prop up and hang structure (1) including with mounting (11) of major structure top rigid coupling, with regulating part (12) that fixing (11) are connected, and with connecting rod (13) that regulating part (12) are connected, its characterized in that: the anti-seismic pipeline supporting device is characterized in that the cross rod (2) and the connecting rods (13) are arranged vertically and in a coplanar mode, two ends of the cross rod (2) are respectively in elastic connection with two vertical side walls of the connecting rods (13), the connecting rods (13) are provided with anti-seismic assemblies (3) used for being in elastic connection with the cross rod (2), and the cross rod (2) is provided with supporting assemblies (4) used for elastically supporting pipelines.
2. The integrated pipeline earthquake-resistant support and hanger as claimed in claim 1, wherein: antidetonation subassembly (3) are established including telescopic link group (31) to and the cover spring (32) on telescopic link group (31), the one end of telescopic link group (31) with connecting rod (13) rigid coupling, the other end with horizontal pole (2) are articulated, the one end of spring (32) with horizontal pole (2) butt, the other end with connecting rod (13) butt.
3. The integrated pipeline earthquake-resistant support and hanger as claimed in claim 2, wherein: the telescopic rod group (31) comprises a telescopic cylinder (311) fixedly connected with the connecting rod (13) and a telescopic column (312) hinged with the cross rod (2), the telescopic column (312) is slidably inserted in the telescopic cylinder (311), and a limiting piece used for limiting the telescopic column (312) to slip from the inside of the telescopic cylinder (311) is arranged in the telescopic cylinder (311).
4. The integrated pipeline earthquake-resistant support and hanger as claimed in claim 3, wherein: the limiting piece comprises a guide block (5) fixedly connected with the inner wall of the telescopic cylinder (311), a guide groove (6) matched with the guide block (5) in a sliding mode is formed in the arc circumferential wall of the telescopic column (312), and two ends of the guide groove (6) are arranged in a closed mode.
5. The integrated pipeline earthquake-resistant support and hanger as claimed in claim 1, wherein: the supporting component (4) comprises a base (41) fixedly connected with the cross rod (2) and a lock catch (42) for locking or unlocking the pipeline on the base (41).
6. The integrated pipeline earthquake-resistant support and hanger as claimed in claim 5, wherein: the supporting component (4) further comprises an elastic layer (43) which is fixedly connected to the base (41) and used for being elastically abutted to a pipeline.
7. The integrated pipeline earthquake-resistant support and hanger as claimed in claim 1, wherein: the fixing piece (11) is provided with a butt joint plate (7), and the butt joint plate (7) is fixedly connected with the top of the main structure.
8. The integrated pipeline earthquake-resistant support and hanger as claimed in claim 7, wherein: the adjusting portion (12) comprises a hanging rod (121) and inclined struts (122), the hanging rod (13) is hung on the fixing piece (11), the inclined struts (122) are located on two sides of the hanging rod (121), the inclined struts (122) are arranged in an inclined mode, and the abutting plate (7) and the connecting rod (13) are connected with two ends of the inclined struts (122) respectively.
CN202121685168.2U 2021-07-23 2021-07-23 Comprehensive pipeline anti-seismic support and hanger Active CN215258242U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121685168.2U CN215258242U (en) 2021-07-23 2021-07-23 Comprehensive pipeline anti-seismic support and hanger

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121685168.2U CN215258242U (en) 2021-07-23 2021-07-23 Comprehensive pipeline anti-seismic support and hanger

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CN215258242U true CN215258242U (en) 2021-12-21

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