CN217762403U - Shock absorption support of gas transmission pipeline - Google Patents

Shock absorption support of gas transmission pipeline Download PDF

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Publication number
CN217762403U
CN217762403U CN202222189154.2U CN202222189154U CN217762403U CN 217762403 U CN217762403 U CN 217762403U CN 202222189154 U CN202222189154 U CN 202222189154U CN 217762403 U CN217762403 U CN 217762403U
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China
Prior art keywords
gas transmission
transmission pipeline
stopper
slider
shock
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CN202222189154.2U
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Chinese (zh)
Inventor
左瀚文
汤建伟
张瑞林
宗在俊
耿军
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Guangdong Lingshi Ship Technology Co ltd
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Guangdong Lingshi Ship Technology Co ltd
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Priority to CN202222189154.2U priority Critical patent/CN217762403U/en
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Abstract

The utility model relates to a shock absorber support especially relates to a gas transmission pipeline's shock absorber support. The utility model provides a can carry out the shock attenuation to gas transmission pipeline fast, reduce the gas transmission pipeline's of the injury to gas transmission pipeline shock absorber support. The utility model provides a damping bracket of a gas transmission pipeline, which comprises a clamping block, a connecting frame, a first limiting block, a first sliding block and the like; both sides all have two clamp splices through threaded connection about the left part of link, and the fixed first stopper that is provided with in link right side middle part, first stopper right side slidingtype are provided with first slider, and first slider is installed on the object of one side wherein, can play the fixed action. Under the effect of first elastic component and second elastic component, can cushion the vibration that the inside liquid of gas transmission pipeline flows the production, and then realize the purpose to gas transmission pipeline shock attenuation.

Description

Shock absorption support of gas transmission pipeline
Technical Field
The utility model relates to a shock absorber support especially relates to a gas transmission pipeline's shock absorber support.
Background
The outer layer of the gas transmission pipeline is made of high-quality and soft cross-linked polyolefin materials, the inner layer is formed by compounding and processing hot melt adhesive, the outer layer has the advantages of insulation, corrosion resistance, wear resistance and the like, the inner layer has the advantages of low melting point, water resistance, sealing, high adhesion and the like, and in order to guarantee the service life of the gas transmission pipeline, the gas transmission pipeline needs to be damped when in use.
The existing gas pipeline damping support is generally connected by adopting a detachable clamping hoop to clamp a support or a rigid flat steel welding support, and the support is supported by using the two methods because the rigidity of the support piece is too large and has no elasticity, so that huge vibration caused by temperature difference, high pressure and vibration inside and outside the gas pipeline can not be eliminated, the service life of the gas pipeline is shortened, and certain influence is caused on the long-term operation of the gas pipeline.
In order to achieve the above object, it is urgently needed to design a damping support for a gas pipeline, which can quickly damp the gas pipeline and reduce the damage to the gas pipeline.
SUMMERY OF THE UTILITY MODEL
In order to overcome can't carry out the shock attenuation to the gas-supply pipe fast, lead to gas transmission pipeline life to subtract shortcoming, technical problem short: the damping support for the gas transmission pipeline can quickly damp the gas transmission pipeline and reduce damage to the gas transmission pipeline.
The technical scheme is as follows: the utility model provides a shock absorber support of gas transmission pipeline, including the clamp splice, the link, first stopper, first slider, first elastic component, the dog, support column and pipe box, both sides all have two clamp splices through threaded connection about the left part of link, the fixed first stopper that is provided with in link right side middle part, first stopper right side slidingtype is provided with first slider, first slider is installed on the object of one side wherein, can play the fixed action, first slider is inside to be opened has first spout, be connected with first elastic component between the inboard top of first spout and the first stopper right side top, also be connected with first elastic component between the inboard bottom of first spout and the first stopper right bottom, the pipe box has been placed between two clamp splices of both sides around, both sides are all fixed and are provided with the dog around in the pipe box, there are six support columns at least fixed mounting in even interval between two dogs.
Further, still including solid fixed ring, the second stopper, second slider and second elastic component, two equal slidingtypes in second slider right side are provided with the second stopper, the second slider is installed on the object of opposite side, also can play the fixed action, two equal fixed rings that are provided with in second stopper right side, two fixed ring right sides all have another solid fixed ring through bolted connection, two inside second spouts that have all been opened of second slider, all be connected with two second elastic components between the top in two second stopper left side tops and the second spout, also all be connected with two second elastic components between the bottom in two second stopper left sides bottom and the second spout.
Further, the first elastic member is a spring.
Further, the pipe sleeve is made of heat insulation cotton.
Further, the shape of the clamping block is arc-shaped.
Furthermore, the material of the fixing ring is rubber.
The utility model has the advantages that: 1. under the effect of first elastic component and second elastic component, can cushion the vibration that the inside liquid of gas transmission pipeline flows the production, and then realize the purpose to gas transmission pipeline shock attenuation.
2. Under the effect of the heat preservation cotton, the temperature of the gas transmission pipeline can be kept in a constant temperature state during operation, and the temperature inside the gas transmission pipeline is further kept unchanged.
Drawings
Fig. 1 is a schematic perspective view of the present invention.
Fig. 2 is a schematic view of the connecting frame and the first sliding block in a three-dimensional sectional structure.
Fig. 3 is the utility model discloses a three-dimensional sectional structure schematic diagram of first stopper, first elastic component and first spout.
Fig. 4 is a schematic perspective view of the stopper and the pipe sleeve according to the present invention.
Fig. 5 is a schematic view of the three-dimensional structure of the thermostatic tube of the present invention.
Fig. 6 is the utility model discloses solid fixed ring, the solid cross-sectional structure schematic diagram of second stopper and second slider.
The labels in the figures are: 1_ clamping block, 2_ connecting frame, 3_ first limiting block, 4_ first sliding block, 5_ first elastic part, 6_ first sliding groove, 7_ stop block, 8_ supporting column, 9_ pipe sleeve, 10_ fixing ring, 11_ second limiting block, 12_ second sliding block, 13_ second elastic part and 14_ second sliding groove.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and examples.
Example 1
A shock absorption support of a gas transmission pipeline is disclosed, and is shown in figures 1-5, and comprises clamping blocks 1, a connecting frame 2, a first limiting block 3, a first sliding block 4, a first elastic part 5, a stop dog 7, a support column 8 and pipe sleeves 9, wherein the upper side and the lower side of the left portion of the connecting frame 2 are connected with the two clamping blocks 1 through threads, the clamping blocks 1 are arc-shaped, the middle portion of the right side of the connecting frame 2 is fixedly provided with the first limiting block 3, the right side of the first limiting block 3 is provided with the first sliding block 4 in a sliding manner, the first sliding block 4 is installed on an object on one side of the first sliding block and can play a fixing role, a first sliding groove 6 is formed in the first sliding block 4, a first elastic part 5 is connected between the top of the inner side of the first sliding groove 6 and the top of the right side of the first limiting block 3, the first elastic part 5 is a spring, the first elastic part 5 is also connected between the bottom of the inner side of the first sliding groove 6 and the right bottom of the first limiting block 3, the two clamping blocks 1 on the front side and the rear side, the pipe sleeves 9 are placed between the two clamping blocks 1, the heat preservation cotton, the stop dogs 9 are respectively, the stop dogs 7 are fixedly provided with the stop dogs 7, and at least six pipe sleeves 8 are fixedly installed between the pipe sleeves at intervals.
When the gas pipeline needs to be damped, an operator installs the first sliding block 4 on an object, the operator rotates the clamping block 1 according to needs, when the clamping block 1 moves to a required position, the operator stops rotating the clamping block 1, the operator sleeves the pipe sleeve 9 to the outer side of the gas pipeline, the stop block 7 is in contact with the gas pipeline, the pipe sleeve 9 is made of heat insulation cotton, the temperature of the gas pipeline can be kept in a constant temperature state, then the operator enables the gas pipeline to penetrate through the clamping block 1, the clamping block 1 is in contact with the gas pipeline, the clamping block 1 is in an arc shape, the clamping block 1 is better attached to the outer wall of the gas pipeline, and when gas in the gas pipeline flows and vibrates, the gas pipeline vibrates to drive the connecting frame 2 to move up and down, the link 2 drives the clamp splice 1 to reciprocate, the link 2 drives the first stopper 3 to slide up and down while reciprocating, and further makes the first elastic component 5 deform, under the effect of the first elastic component 5, and then can carry out shock absorption on the gas transmission pipeline, when the gas in the gas transmission pipeline no longer flows, the vibration is reduced, and then make the link 2 no longer reciprocate, because the first elastic component 5 is a spring, the first stopper 3 resets under the effect of the first elastic component 5 and drives the link 2 to reset, when not needing to use, the operator rotates the clamp splice 1 in the reverse direction, the clamp splice 1 breaks away from the gas transmission pipeline, the gas transmission pipeline is taken out from between the clamp splice 1 by the operator afterwards, the operator takes the support column 8 off from the outside of the gas transmission pipeline, the stop 7 breaks away from the gas transmission pipeline, and the operator dismantles the first slider 4 from an object. Therefore, under the action of the first elastic piece 5, the vibration generated by the gas flowing in the gas transmission pipeline can be reduced, and the aim of damping the gas transmission pipeline is fulfilled.
Example 2
On the basis of embodiment 1, refer to fig. 1 and fig. 6, still including solid fixed ring 10, second stopper 11, second slider 12 and second elastic component 13, two second slider 12 right sides all slidingtype are provided with second stopper 11, second slider 12 is installed on the object of opposite side, also can play the fixed action, two second stopper 11 right sides all fixed solid fixed ring 10 that is provided with, gu fixed ring 10's material is rubber, two solid fixed ring 10 right sides all have another solid fixed ring 10 through bolted connection, two inside second spouts 14 that have all opened of second slider 12, all be connected with two second elastic components 13 between the top in two second stopper 11 left side tops and the second spout 14, also all be connected with two second elastic components 13 between the bottom in two second stopper 11 left sides and the second spout 14.
An operator installs the second slider 12 and the first slider 4 on the object respectively, and then the gas transmission pipeline is in a suspended state, then the operator detaches the fixing ring 10 on the right side through a bolt, the operator passes the gas transmission pipeline between the fixing ring 10 on the left side and the clamping block 1, the operator installs the fixing ring 10 on the right side on the fixing ring 10 on the left side through a bolt, and further the gas transmission pipeline is fixed, because the fixing ring 10 is made of rubber, the rubber has large friction force, the gas transmission pipeline is prevented from being separated from the fixing ring 10, when the liquid inside the gas transmission pipeline vibrates, the gas transmission pipeline drives the fixing ring 10 to move up and down, and further the second stopper 11 slides up and down, the second elastic piece 13 deforms, when the liquid inside the gas transmission pipeline stops flowing and the vibration disappears, under the action of the second elastic piece 13, the second stopper 11 resets to reposition the fixing ring 10, and then the fixing ring 10 drives the gas transmission pipeline to reposition, when the use is not needed, the operator detaches the fixing ring 10 on the right side through a bolt, the operator takes the gas transmission pipeline out the first slider 12 and the first slider 4 from the object respectively. Thus, under the action of the second elastic member 13, the vibration of the gas transmission pipeline can be further reduced, and the gas transmission pipeline is further damped.
The above-mentioned embodiments are merely preferred embodiments of the present invention, and not intended to limit the scope of the invention, so that all equivalent changes made in the claims of the present invention should be included in the scope of the claims of the present invention.

Claims (6)

1. The utility model provides a shock-absorbing support of gas transmission pipeline, a serial communication port, including clamp splice (1), link (2), first stopper (3), first slider (4), first elastic component (5), dog (7), support column (8) and pipe box (9), both sides all have two clamp splice (1) through threaded connection about the left part of link (2), link (2) right side middle part is fixed and is provided with first stopper (3), first stopper (3) right side slidingtype is provided with first slider (4), install on the object of one side wherein first slider (4), can play fixed action, first slider (4) inside is opened has first spout (6), be connected with first elastic component (5) between first spout (6) inboard top and first stopper (3) right side top, also be connected with first elastic component (5) between first spout (6) inboard bottom and first stopper (3) right bottom, place between two clamp splice (1) of both sides around, both sides are all fixed and are provided with dog (7) interval between two fixed support column (7).
2. The damping support for the gas transmission pipeline according to claim 1, further comprising a fixing ring (10), a second limiting block (11), a second sliding block (12) and a second elastic member (13), wherein the second limiting block (11) is arranged on the right side of the two second sliding blocks (12) in a sliding manner, the second sliding block (12) is installed on an object on the other side and can also play a role in fixing, the fixing ring (10) is fixedly arranged on the right side of the two second limiting blocks (11), the right side of the two fixing rings (10) is connected with the other fixing ring (10) through a bolt, a second sliding groove (14) is formed in the two second sliding blocks (12), the two second elastic members (13) are connected between the left top of the two second limiting blocks (11) and the inner top of the second sliding groove (14), and the two second elastic members (13) are connected between the left bottom of the two second limiting blocks (11) and the inner bottom of the second sliding groove (14).
3. A shock-absorbing mount for a gas transmission line according to claim 2, characterised in that the first resilient member (5) is a spring.
4. A shock-absorbing bracket for a gas pipeline according to claim 3, characterised in that the pipe sleeve (9) is of insulating cotton.
5. A shock-absorbing mount for a gas transmission line according to claim 4, characterised in that the clamping blocks (1) are arc-shaped.
6. A shock-absorbing bracket for a gas transmission pipeline according to claim 5, characterized in that the material of the fixing ring (10) is rubber.
CN202222189154.2U 2022-08-19 2022-08-19 Shock absorption support of gas transmission pipeline Active CN217762403U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222189154.2U CN217762403U (en) 2022-08-19 2022-08-19 Shock absorption support of gas transmission pipeline

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222189154.2U CN217762403U (en) 2022-08-19 2022-08-19 Shock absorption support of gas transmission pipeline

Publications (1)

Publication Number Publication Date
CN217762403U true CN217762403U (en) 2022-11-08

Family

ID=83880769

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222189154.2U Active CN217762403U (en) 2022-08-19 2022-08-19 Shock absorption support of gas transmission pipeline

Country Status (1)

Country Link
CN (1) CN217762403U (en)

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