CN211853160U - Anti-seismic connecting piece and lateral longitudinal anti-seismic support - Google Patents

Anti-seismic connecting piece and lateral longitudinal anti-seismic support Download PDF

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Publication number
CN211853160U
CN211853160U CN201922309594.5U CN201922309594U CN211853160U CN 211853160 U CN211853160 U CN 211853160U CN 201922309594 U CN201922309594 U CN 201922309594U CN 211853160 U CN211853160 U CN 211853160U
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Prior art keywords
connecting piece
seismic
mounting
piece
antidetonation
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CN201922309594.5U
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Chinese (zh)
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周健
李明
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Suzhou Hoogo Construction Buxiliary Co ltd
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Suzhou Hoogo Construction Buxiliary Co ltd
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Abstract

The utility model discloses a vertical antidetonation support of antidetonation connecting piece and side, wherein the antidetonation connecting piece, including first connecting piece and second connecting piece, first connecting piece with the second connecting piece passes through the bolt and realizes dismantling the connection, still includes installed part and connecting bolt, the installed part seted up with connecting bolt complex screw hole, connecting bolt passes through-hole on the first connecting piece will the installed part is fixed first connecting piece below. The utility model provides an antidetonation connecting piece has increased an installed part, and when the installation tie-beam, the mounting bolt can realize earlier fixedly through the screw hole on the installed part, passes through-hole and nut cooperation installation on the tie-beam again, and the installation is simple and convenient more. In addition, the installed part can play effects such as middle antidetonation buffering, decompression, increase friction, promotes antidetonation connecting piece's intensity and stability.

Description

Anti-seismic connecting piece and lateral longitudinal anti-seismic support
Technical Field
The utility model relates to a machine part technical field especially relates to a antidetonation connecting piece and side vertical antidetonation support.
Background
The anti-seismic support limits the displacement of the attached electromechanical engineering facilities, controls the vibration of the facilities and transmits the load to various components or devices on the bearing structure.
When meeting the earthquake of earthquake fortification intensity in local area, the building water supply and drainage, fire control, heating, ventilation, air conditioning, gas, heating power, electric power, communication and other electromechanical engineering facilities after earthquake fortification can achieve the aims of lightening earthquake damage, reducing and preventing secondary disasters as much as possible, thereby achieving the purpose of reducing casualties and property loss.
Referring to fig. 1a, an existing anti-seismic support is a support structure composed of three support rods 1, where the three support rods 1 are installed on a pipeline fixing assembly through anti-seismic connecting pieces or bolts, where the pipeline fixing assembly includes an anti-seismic U-shaped tube bundle 2 and an anti-seismic O-shaped tube bundle 3, and a pipeline 4 is fixed. Referring to fig. 1b, an anti-seismic connecting member in the prior art is troublesome to install and needs to have improved stability during installation.
The stability of the resulting anti-seismic support also remains problematic because of the problems with the anti-seismic connectors. In addition, as shown in fig. 1a, a fixing mechanism is directly absent above the strut 1 to achieve stable fixing of the main beam, and the stability of the main beam needs to be further improved.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to overcome the not enough of prior art existence, provide a vertical antidetonation support of antidetonation connecting piece and side.
In order to solve the technical problem, the utility model discloses a following technical scheme:
wherein one of the technical scheme of the utility model is an antidetonation connecting piece, including first connecting piece and second connecting piece, first connecting piece with the second connecting piece passes through the bolt and realizes dismantling the connection, still includes installed part and connecting bolt, the installed part seted up with connecting bolt complex screw hole, connecting bolt passes through-hole on the first connecting piece will the installed part is fixed first connecting piece below.
As the preferred technical scheme, the first connecting piece comprises a first anti-seismic connecting block and a first anti-seismic mounting block which are connected in an integrated mode, through holes are formed in the first anti-seismic connecting block and the first anti-seismic mounting block, the second connecting piece comprises a second anti-seismic connecting block and a second anti-seismic mounting block which are connected in an integrated mode, the second anti-seismic connecting block is composed of a pair of small connecting blocks which are symmetrical to each other and provided with mounting holes, the first anti-seismic connecting block is arranged between the pair of small connecting blocks, the mounting holes in the pair of small connecting blocks are penetrated through mounting bolts, the through holes in the first anti-seismic connecting block are matched with the mounting nuts, the first connecting piece is rotatably mounted on the second connecting piece, and at least one hole is formed in the second.
According to the preferable technical scheme, grooves capable of containing the connecting pieces are formed in the upper portion and the lower portion of the first anti-seismic mounting block, and anti-slip lines are formed in one face, in contact with the first anti-seismic mounting block, of the connecting pieces.
Another technical scheme of the utility model is a side vertical antidetonation support, include as above antidetonation connecting piece, tie-beam, the ferrule, the beam clamp fixed establishment, the girder that are used for fixed pipeline, the one end of tie-beam is passed through the antidetonation connecting piece is connected the beam clamp fixed establishment, the other end of tie-beam is connected the ferrule, the beam clamp fixed establishment is fixed the girder.
Preferably, the connecting beam, the anti-seismic connector, the pipe hoop and the beam clamp fixing mechanism are provided in a plurality and the number of the connecting beam, the anti-seismic connector, the pipe hoop and the beam clamp fixing mechanism is consistent.
As a preferred technical scheme, the beam clamp fixing mechanism comprises a pair of mounting pieces and a mounting rod, wherein each mounting piece comprises a top mounting plate arranged at the upper end of the mounting piece, a bottom mounting plate arranged below the mounting piece and a main mounting plate, the top mounting plate is connected with the bottom mounting plate through the main mounting plate, a bottom hole is formed in the bottom mounting plate, a top hole is formed in the top mounting plate, a main hole is formed in the main mounting plate, the mounting rod penetrates through the main hole and is fixed between the pair of mounting pieces through a matching bolt, two sides of the main mounting plate are connected with support plates, and a fixing bolt is matched with the corresponding top hole; the beam clamp fixing mechanism is detachably connected with the anti-seismic connecting piece through the bottom mounting plate.
Preferably, the number of the main holes is two, and a pair of the main holes is arranged corresponding to the mounting rod.
As a preferred technical scheme, the supporting plate is provided with a side hole, and a reinforcing supporting plate is fixedly connected with the supporting plate through the side hole corresponding to the bolt.
As a preferred technical scheme, the top mounting plate is provided with at least two top holes.
As preferred technical scheme, the installation pole outside is provided with the external screw thread, corresponds two nuts of external screw thread matching, two nuts are respectively from the both ends screw in of installation pole, the cooperation the main mounting panel will the installation pole is fixed between a pair of installed part.
Has the advantages that:
the utility model provides an antidetonation connecting piece has increased an installed part, and when the installation tie-beam, the mounting bolt can realize earlier fixedly through the screw hole on the installed part, passes through-hole and nut cooperation installation on the tie-beam again, and the installation is simple and convenient more. In addition, the installed part can play effects such as middle antidetonation buffering, decompression, increase friction, promotes antidetonation connecting piece's intensity and stability.
Further, the utility model provides an antidetonation connecting piece has two first connecting piece and second connecting piece in the ground of can the looks mutual rotation for the antidetonation support when the installation, the angle can be changeable, and especially, the antidetonation connecting piece passes mounting hole and screw and the mounting bolt cooperation on a pair of little connecting block and the first connecting block through mounting bolt, rotationally installs first connecting piece on the second connecting piece, make after receiving powerful vibrations power, first connecting piece and second connecting piece can rotate amplitude modulation, strengthen the shock resistance of whole antidetonation support.
The utility model provides a vertical antidetonation support of side has adopted neotype antidetonation connecting piece and beam clamp fixed establishment simultaneously, fixes the girder through a pair of installed part cooperation bolt, and wherein the installed part has trilaterally, and the tie-beam of cooperation bottom supports for the fixed ten minutes of girder is stable, and the stability and the anti-seismic performance of antidetonation support are strengthened widely.
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. 1a is an isometric view of an anti-seismic bracket of the prior art;
FIG. 1b is a perspective view of a seismic connector of the prior art;
fig. 2 is a three-dimensional exploded view of an anti-seismic connecting piece in embodiment 1 of the present invention;
fig. 3 is a plan exploded view of an anti-seismic connector according to embodiment 1 of the present invention;
fig. 4 is a perspective view of a lateral longitudinal anti-seismic support in embodiment 2 of the present invention;
fig. 5 is an exploded view of a beam clamp fixing mechanism of a lateral longitudinal anti-seismic support according to embodiment 2 of the present invention;
fig. 6 is a perspective view of the beam clamp fixing mechanism of the lateral longitudinal anti-seismic support in embodiment 2 of the present invention in fig. 5.
In the drawing, 1 is an installation member, 101 is a top installation plate, 102 is a bottom installation plate, 103 is a main installation plate, 104 is a bottom hole, 105 is a top hole, 106 is a main hole, 107 is a support plate, 108 is a side hole, 109 is a reinforcing support plate, 2 is an installation rod, 3 is a bolt, 4 is a nut, 5 is a main beam, 6 is a first connection member, 601 is a first anti-seismic connection block, 602 is a first anti-seismic installation block, 7 is a second connection member, 701 is a second anti-seismic connection block, 702 is a second anti-seismic installation block, 703 is a small connection block, 704 is an installation bolt, 705 is an installation nut, 8 is an installation member, 9 is a connection bolt, 10 is a threaded hole, 11 is a through hole, 12 is a groove, 13 is an anti-skid line, 14 is a connection beam, 15 is a pipe hoop, 16 is a main beam, 17 is an anti-seismic connection member, and 18.
Detailed Description
The invention will now be further described with reference to the accompanying drawings.
Example 1: anti-seismic connecting piece
Please refer to fig. 2 and fig. 3, which illustrate an anti-seismic connector, including a first connector 6 and a second connector 7, where the first connector 6 and the second connector 7 are detachably connected by bolts, and further including an installation part 8 and a connection bolt 9, where the installation part 8 is provided with a threaded hole 10 matched with the connection bolt 9, and the connection bolt 9 fixes the installation part 8 below the first connector 6 through a through hole 11 on the first connector 6.
The utility model discloses antidetonation connecting piece in the embodiment, the main invention point lies in having increased an installed part 8, and when the installation tie-beam, connecting bolt 9 can realize fixing earlier through screw hole 10 on the installed part, passes through the through-hole on the tie-beam and the cooperation of nut installation again, and the installation is more simple and convenient. In addition, the mounting piece can play the effects of middle anti-seismic buffering, pressure reduction, friction increase and the like, and the strength and the stability of the anti-seismic connecting piece are improved
The first connecting piece 6 comprises a first anti-seismic connecting block 601 and a first anti-seismic mounting block 602 which are connected integrally, through holes 11 are formed in the first anti-seismic connecting block 601 and the first anti-seismic mounting block 602, the second connecting piece 7 comprises a second anti-seismic connecting block 701 and a second anti-seismic mounting block 702 which are connected integrally, the second anti-seismic connecting block 702 is composed of a pair of small connecting blocks 703 which are symmetrical to each other and provided with mounting holes, the first anti-seismic connecting block 601 is arranged between the pair of small connecting blocks 703, the first connecting piece 6 is rotatably mounted on the second connecting piece 7 by the fact that a mounting bolt 704 penetrates through the mounting holes 704 in the pair of small connecting blocks 703 and is matched with the through hole in the first anti-seismic connecting block 601 and a mounting nut 705, and at least one opening is formed in the second anti-.
Further, a groove 12 capable of accommodating the connecting piece is formed in the upper portion and the lower portion of the first anti-seismic mounting block 602, and anti-slip grains 13 are formed in one surface, contacting the first anti-seismic mounting block 602, of the mounting piece 8.
During specific implementation, the first anti-seismic connecting block 601 of the anti-seismic connecting piece is used for connecting the left support rod and the right support rod, and the second anti-seismic connecting block is used for connecting the supporting piece or the platform. The mounting mode that adopts in this embodiment mainly is bolt fastening mode, can adopt modes such as wire rope encircleing or pulling further to strengthen stability when necessary. The various components of the bracket are assembled together by means of bolts, as can be seen in the figures. The anti-seismic connecting piece is provided with a first connecting piece 6 and a second connecting piece 7 which can rotate mutually, so that the angle can be changed when the anti-seismic support is installed, particularly, the anti-seismic connecting piece is matched with a screw hole and a mounting nut 705 on the first connecting piece by a mounting bolt 704 penetrating through a mounting hole 704 of a pair of small connecting blocks 703, so that the first connecting piece 6 can be rotatably installed on the second connecting piece 7, the first connecting piece 6 and the second connecting piece 7 can rotate and amplitude-modulate after being subjected to strong vibration force, and the anti-seismic capacity of the whole anti-seismic support is enhanced.
Example 2: lateral longitudinal anti-seismic support
The embodiment of the present invention is a lateral longitudinal anti-seismic support, please refer to fig. 4, comprising an anti-seismic connector 17, a connection beam 14, a pipe hoop 15 for fixing a pipeline, a beam clamp fixing mechanism 18, and a main beam 16 as described in embodiment 1, wherein one end of the connection beam 14 is connected to the beam clamp fixing mechanism 18 through the anti-seismic connector, one end of the connection beam 14 is connected to the pipe hoop 15, the beam clamp fixing mechanism is fixed to the main beam 16, please refer to fig. 5 and 6, the beam clamp fixing mechanism in the embodiment of the present invention comprises a pair of mounting members 1 and a mounting rod 2, the mounting member 1 comprises a top mounting plate 101 disposed at the upper end of the mounting member 1, a bottom mounting plate 102 disposed below the mounting member 1, and a main mounting plate 103, the top mounting plate 101 is connected to the bottom mounting plate 102 through the main mounting plate 103, the bottom mounting plate 102 is provided with a bottom hole 104, the top mounting plate 101 is provided with a top hole 105, the main mounting plate 103 is provided with a main hole 106, the mounting rod 2 penetrates through the main hole 106 and is fixed between the pair of mounting pieces 1 through a matching bolt, two sides of the main mounting plate 103 are connected with supporting plates 107, and a fixing bolt 3 is matched with the top hole 105.
In specific implementation, the main beam 5 is placed on the mounting rod 2, and the main beam 5 is mounted on the beam clamp fixing mechanism by applying a downward pressure to the main beam 5 through the top hole 105 by the fixing bolt 3. And the bottom mounting hole 102 on the beam clamp fixing mechanism is matched with the bottom hole 104 arranged on the beam clamp fixing mechanism and the mounting hole arranged on the anti-seismic connecting piece, and is assembled by using bolts and further connected with the connecting beam 14, and finally, a stable lateral longitudinal anti-seismic support with strong anti-seismic capacity is formed.
In one embodiment, the main holes 106 are arranged in two parallel, and a pair is arranged corresponding to the mounting rod 2.
In one embodiment, the supporting plate 107 is provided with an edge hole 108, and a reinforcing supporting plate 109 is fixedly connected to the supporting plate through the edge hole 108 corresponding to a bolt.
In one embodiment, the top mounting plate 101 defines at least two top holes 105.
In one embodiment, the outer side of the mounting rod 2 is provided with an external thread, two nuts 4 are matched with the external thread, the two nuts 4 are screwed in from two ends of the mounting rod 2 respectively, and the main mounting plate 103 is matched to fix the mounting rod 2 between the pair of mounting pieces 1.
In one embodiment, the top mounting plate 101 and the support plate 107 are the same width.
In one embodiment, the bottom mounting plate 102 extends in a direction opposite to the direction of the two mounts 1.
The utility model provides a vertical antidetonation support of side has adopted neotype antidetonation connecting piece and beam clamp fixed establishment simultaneously, fixes the girder through a pair of installed part cooperation bolt, and wherein the installed part has trilaterally, and the tie-beam of cooperation bottom supports for the fixed ten minutes of girder is stable, and the stability and the anti-seismic performance of antidetonation support are strengthened widely.
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 (10)

1. The utility model provides an antidetonation connecting piece, includes first connecting piece and second connecting piece, first connecting piece with the second connecting piece passes through the bolt and realizes dismantling the connection, its characterized in that: the mounting piece is provided with a threaded hole matched with the connecting bolt, and the connecting bolt passes through the through hole in the first connecting piece to fix the mounting piece below the first connecting piece.
2. An earthquake-resistant connection according to claim 1, characterised in that: first connecting piece includes first antidetonation connecting block and the first antidetonation installation piece that the integral type is connected, all be provided with the through-hole on first antidetonation connecting block and the first antidetonation installation piece, the second connecting piece includes the second of body coupling and resists and shake connecting block and second and resist and shake the installation piece, and wherein the second is resisted and is shaken the connecting block and is just had little connecting block of mounting hole by a pair of mutual symmetry and constitute, first antidetonation connecting block is arranged in between a pair of little connecting block, passes through-hole and the mounting nut cooperation on the mounting hole on a pair of little connecting block and the first antidetonation connecting block through construction bolt, rotationally installs first connecting piece on the second connecting piece, at least one trompil has on the second resists and shakes.
3. An earthquake-resistant connection according to claim 2, characterised in that: the anti-skidding installation structure is characterized in that grooves capable of containing the connecting pieces are formed in the upper portion and the lower portion of the first anti-seismic installation block, and anti-skidding lines are formed in one surfaces, in contact with the first anti-seismic installation block, of the connecting pieces.
4. A lateral longitudinal seismic support characterized by: the anti-seismic connecting piece comprises an anti-seismic connecting piece, a connecting beam, a pipe hoop for fixing a pipeline, a beam clamp fixing mechanism and a main beam, wherein one end of the connecting beam is connected with the beam clamp fixing mechanism through the anti-seismic connecting piece, the other end of the connecting beam is connected with the pipe hoop, and the beam clamp fixing mechanism is used for fixing the main beam.
5. A lateral longitudinal seismic support according to claim 4, wherein: the connecting beam, the anti-seismic connecting piece, the pipe hoop and the beam clamp fixing mechanism are arranged in a plurality and the number of the connecting beam, the anti-seismic connecting piece, the pipe hoop and the beam clamp fixing mechanism is consistent.
6. A side longitudinal seismic support according to claim 4 or 5, wherein: the beam clamp fixing mechanism comprises a pair of mounting pieces and mounting rods, wherein each mounting piece comprises a top mounting plate arranged at the upper end of the mounting piece, a bottom mounting plate arranged below the mounting piece and a main mounting plate; the beam clamp fixing mechanism is detachably connected with the anti-seismic connecting piece through the bottom mounting plate.
7. A lateral longitudinal seismic support according to claim 6, wherein: the main holes are arranged in two in parallel, and a pair of main holes is arranged corresponding to the mounting rods.
8. A lateral longitudinal seismic support according to claim 6, wherein: the supporting plate is provided with a side hole, and a reinforcing supporting plate is fixedly connected with the supporting plate through the side hole corresponding to the bolt.
9. A lateral longitudinal seismic support according to claim 6, wherein: the top mounting plate is provided with at least two top holes.
10. A lateral longitudinal seismic support according to claim 6, wherein: the installation pole outside is provided with the external screw thread, corresponds two nuts of external screw thread matching, two nuts are respectively from the both ends screw in of installation pole, the cooperation the main mounting panel will the installation pole is fixed between a pair of installed part.
CN201922309594.5U 2019-12-20 2019-12-20 Anti-seismic connecting piece and lateral longitudinal anti-seismic support Active CN211853160U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922309594.5U CN211853160U (en) 2019-12-20 2019-12-20 Anti-seismic connecting piece and lateral longitudinal anti-seismic support

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922309594.5U CN211853160U (en) 2019-12-20 2019-12-20 Anti-seismic connecting piece and lateral longitudinal anti-seismic support

Publications (1)

Publication Number Publication Date
CN211853160U true CN211853160U (en) 2020-11-03

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922309594.5U Active CN211853160U (en) 2019-12-20 2019-12-20 Anti-seismic connecting piece and lateral longitudinal anti-seismic support

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CN (1) CN211853160U (en)

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