CN219866634U - Buttress structure for pipeline laying - Google Patents

Buttress structure for pipeline laying Download PDF

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Publication number
CN219866634U
CN219866634U CN202320332641.1U CN202320332641U CN219866634U CN 219866634 U CN219866634 U CN 219866634U CN 202320332641 U CN202320332641 U CN 202320332641U CN 219866634 U CN219866634 U CN 219866634U
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block
support pier
clamping
lifting
arc
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CN202320332641.1U
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Chinese (zh)
Inventor
马志远
杨贺勇
樊金辉
高龙
栗佳
李伟
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China Construction First Group Corp Ltd
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China Construction First Group Corp Ltd
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Abstract

The utility model provides a buttress structure for pipeline laying, which relates to the technical field of pipeline buttresses and aims to solve the problems that the conventional buttress structure for pipeline laying cannot realize auxiliary anchoring to improve stability and a pipeline joint is easy to leak due to local stress; comprises a support pier body part; two anchoring and mounting parts are fixedly connected to the supporting pier body; the support pier body part is connected with a telescopic connecting part in a sliding manner; the lifting installation piece is installed on the support pier body piece; the lifting installation piece is provided with a pipe fitting clamping installation part; the support pier body part is matched with the telescopic connecting part, so that the connection work of a plurality of support pier blocks can be assisted, the running stability of the whole structure is ensured, the practicability of the whole structure is stronger, and the whole structure is more stable; the auxiliary stable clamping of two pipe ends can be realized through the two arc-shaped lower clamping plates and the arc-shaped upper clamping plates which can be used for moving and clamping, and the firmness of the joint of the pipe fittings is improved.

Description

Buttress structure for pipeline laying
Technical Field
The utility model belongs to the technical field of pipeline buttresses, and particularly relates to a buttress structure for pipeline laying.
Background
In practical municipal water supply and drainage work, pipeline laying is always one of important work, because the pipeline is required to be laid straight, at the moment, the pipeline is required to be laid through the buttress, and at the moment, a good buttress structure for pipeline laying is particularly important; the existing buttress structure for pipeline laying cannot realize auxiliary multi-row connection and anchoring to improve stability, and partial buttress is easy to skew; the protection, reinforcement and clamping of the pipeline joint cannot be realized, and the pipeline joint is extremely easy to leak due to local stress.
Disclosure of Invention
In order to solve the technical problems, the utility model provides a buttress structure for pipeline laying, which solves the problems that the conventional buttress structure for pipeline laying cannot realize auxiliary anchoring to improve stability and pipeline joints are easy to leak due to local stress.
The aim and the effect of the buttress structure for pipeline laying are achieved by the following specific technical means:
a buttress structure for pipeline laying comprises a supporting pier body; two anchoring and mounting parts are fixedly connected to the supporting pier body; the support pier body part is connected with a telescopic connecting part in a sliding manner; the lifting installation piece is installed on the support pier body piece; the lifting installation piece is provided with a pipe fitting clamping installation part; the support pier body spare includes: the support pier comprises a support pier block, a connecting groove and a connecting bolt, wherein the support pier block is provided with the connecting groove; the support pier block is connected with a connecting bolt through threads; the connecting bolt passes through the connecting groove; the anchor mount includes: the anchoring mounting plate is fixedly connected to the side face of the supporting pier block; and a row of through holes are formed in the anchoring mounting plate.
Further, the support pier body part further includes: the two positioning bolts are respectively connected to the support pier block in a threaded manner.
Further, the pipe fitting clamping mounting portion includes: the clamping driving screw rod is rotationally connected to the lifting sliding block; reverse threads are arranged on two sides of the clamping driving screw rod; the two sides of the clamping driving screw rod are respectively connected with movable clamping blocks in a threaded manner, and the two movable clamping blocks are respectively connected to the lifting sliding block in a sliding manner.
Further, the lifting mounting member includes: the lifting slide block is connected with two guide posts in a sliding manner, and the two guide posts are respectively and fixedly connected to the supporting pier block; the lifting sliding block is connected with a lifting installation screw rod in a threaded manner, and the bottom of the lifting installation screw rod is rotationally connected to the supporting pier block.
Further, the anchor mounting portion further includes: the anchor shafts are arranged in a row, and the row of anchor shafts are respectively and slidably inserted on the anchor mounting plate.
Further, the pipe fitting clamping and mounting part further comprises: the device comprises an arc-shaped lower clamping plate and an arc-shaped upper clamping plate, wherein two arc-shaped lower clamping plates are arranged and are respectively and fixedly connected to two movable clamping blocks; the two arc-shaped lower clamping plates are fixedly connected with arc-shaped upper clamping plates through bolts respectively.
Further, the telescopic coupling comprises: the telescopic sliding frame is of a U-shaped structure; the telescopic sliding frame is connected to the supporting pier block in a sliding manner; the telescopic sliding frame is fixedly connected with a connecting plug block; two rows of jacks are formed in the telescopic sliding frame and are aligned with the two positioning bolts respectively; the connecting plug block is aligned with the connecting groove; and a through hole is formed in the middle of the connecting plug block.
Compared with the prior art, the utility model has the following beneficial effects:
1. according to the utility model, the support pier body is matched with the telescopic connecting piece, so that the connection work of a plurality of support pier blocks can be assisted, the operation stability of the whole structure is ensured, the practicability of the whole structure is stronger, the whole structure is more stable, the integration of the whole structure in actual use can be ensured, the problem that partial skew is easily caused by adopting an independent support pier in actual use is avoided, the whole support performance is improved, the support pier body can be anchored by adopting the arranged anchor mounting part, the stability of the whole structure is further ensured, the anchor shaft is respectively inserted into the ground for anchoring, the connection interval is adapted by sliding the telescopic sliding frame, the connection plug blocks are inserted into the connection groove for plug-in anchoring by the connection bolt, the stability of the whole structure is ensured, the operation is simple, and the support is stable.
2. According to the utility model, the pipe fitting clamping installation part is adopted, the pipe fitting clamping installation part which can be tightened and adjusted is adopted, so that the auxiliary clamping operation can be realized, the supporting effect of the joint of the pipe fitting can be effectively improved, the leakage of the joint caused by axial tension can be effectively avoided, the auxiliary stable clamping of two pipe ends can be realized through the two arc-shaped lower clamping plates and the arc-shaped upper clamping plates which can be used for moving and clamping, the firmness of the joint of the pipe fitting is improved, and particularly, the effect is better by adopting the opposite-inserted pipe fitting, the lifting adaptive supporting height can be realized by adopting the lifting installation part, and the use is more flexible.
Drawings
Fig. 1 is a schematic view of the overall structure of the present utility model.
Fig. 2 is a cross-sectional view of the internal structure of the present utility model.
Fig. 3 is a schematic view of the telescopic coupling of the present utility model.
Fig. 4 is a schematic view of the structure of the lifting mounting of the present utility model.
Fig. 5 is a schematic view of the pipe clamping installation portion structure of the present utility model.
In the figure, the correspondence between the component names and the drawing numbers is:
1. supporting the pier body part; 101. supporting the pier blocks; 1011. a coupling groove; 102. a coupling bolt; 103. positioning bolts; 2. an anchor mounting portion; 201. an anchor mounting plate; 2. an anchor mounting portion; 202. an anchor shaft; 3. a telescoping coupling; 301. a telescopic carriage; 302. connecting the plug blocks; 4. lifting the mounting member; 401. a lifting slide block; 4011. a guide post; 402. lifting and installing a screw rod; 5. a pipe fitting clamping and mounting part; 501. clamping and driving the screw rod; 502. moving the clamping block; 5021. an arc-shaped lower clamping plate; 503. an arc-shaped upper clamping plate.
Detailed Description
Embodiments of the present utility model are described in further detail below with reference to the accompanying drawings and examples.
Examples:
as shown in fig. 1 to 5:
the utility model provides a buttress structure for pipeline laying, which comprises a supporting pier body part 1; two anchor mounting parts 2 are fixedly connected to the support pier body part 1; the support pier body part 1 is connected with a telescopic connector 3 in a sliding way; the lifting installation piece 4 is installed on the support pier body piece 1; the lifting installation piece 4 is provided with a pipe fitting clamping installation part 5; the support pier body 1 includes: the support pier block 101, the connecting groove 1011 and the connecting bolt 102, wherein the connecting groove 1011 is formed on the support pier block 101; the supporting pier block 101 is connected with a connecting bolt 102 in a threaded manner; the coupling bolt 102 passes through the coupling groove 1011; the anchor mounting portion 2 includes: the anchor mounting plate 201, the anchor mounting plate 201 is fixedly connected to the side surface of the support pier block 101; a row of through holes are provided in the anchor mounting plate 201.
Wherein, support pier body 1 still includes: the two positioning bolts 103 are arranged, and the two positioning bolts 103 are respectively connected to the support pier block 101 in a threaded manner; the anchor mount 2 further includes: the anchor shafts 202, the anchor shafts 202 are provided with a row, and the row of anchor shafts 202 are respectively and slidably inserted on the anchor mounting plate 201; the telescopic link 3 comprises: the telescopic sliding frame 301 and the connecting plug block 302 are arranged, and the telescopic sliding frame 301 is of a U-shaped structure; the telescopic sliding frame 301 is connected to the support pier block 101 in a sliding manner; the telescopic sliding frame 301 is fixedly connected with a connecting plug block 302; two rows of jacks are formed in the telescopic sliding frame 301 and are aligned with the two positioning bolts 103 respectively; the coupling insert 302 is aligned with the coupling slot 1011; the middle part of the connection plug block 302 is provided with a through hole, the connection work of a plurality of support pier blocks 101 can be assisted by adopting the support pier body 1 matched with the telescopic connection piece 3, the operation stability of the whole structure is ensured, the practicability of the whole structure is stronger, the whole structure is more stable, the integration of the whole structure in actual use can be ensured, the problem that the independent piers are easy to cause partial deflection in actual use is avoided, the whole support performance is improved, the anchorage support pier body 1 can be realized by adopting the arranged anchorage installation part 2, the stability of the whole structure is further ensured, the anchorage shafts 202 are respectively inserted into the ground for anchorage, the connection interval is adapted by sliding the telescopic sliding frame 301, the connection plug block 302 is inserted into the connection groove 1011, the insertion anchorage is performed by the connection bolts 102, the stability of the whole structure is ensured, the operation is simple, and the support is stable.
Wherein, lift mount 4 includes: the lifting block 401, the guide posts 4011 and the lifting installation screw rod 402 are connected with the two guide posts 4011 in a sliding manner, and the two guide posts 4011 are respectively and fixedly connected to the support pier block 101; the lifting slider 401 is in threaded connection with a lifting installation screw rod 402, and the bottom of the lifting installation screw rod 402 is rotationally connected to the support pier block 101; the pipe fitting gripping installation part 5 includes: a clamping driving screw 501 and a movable clamping block 502, wherein the clamping driving screw 501 is rotationally connected to the lifting sliding block 401; reverse threads are arranged on two sides of the clamping driving screw rod 501; two sides of the clamping driving screw rod 501 are respectively in threaded connection with a movable clamping block 502, and the two movable clamping blocks 502 are respectively and slidably connected to the lifting sliding block 401; the pipe clamp mounting portion 5 further includes: the arc-shaped lower clamping plate 5021 and the arc-shaped upper clamping plate 503 are arranged, two arc-shaped lower clamping plates 5021 are arranged, and the two arc-shaped lower clamping plates 5021 are respectively and fixedly connected to the two movable clamping blocks 502; the two arc lower clamping plates 5021 are respectively fixedly connected with the arc upper clamping plate 503 through bolts, the pipe fitting clamping installation department 5 is arranged in a tightening mode, clamping operation can be carried out in an auxiliary mode, the supporting effect of pipe fitting joints can be effectively improved, the joint leakage caused by axial tension is effectively avoided, the two pipe ends can be clamped in an auxiliary mode through the two arc lower clamping plates 5021 and the arc upper clamping plate 503, the firmness of the pipe fitting joints is improved, especially the pipe fitting inserted in the opposite mode is improved, the effect is better, the lifting adaptation supporting height can be achieved through the lifting installation piece 4, and the use is more flexible.
Specific use and action of the embodiment:
according to the utility model, firstly, the anchoring shafts 202 are respectively inserted into the ground to anchor, adjacent support pier body pieces 1 are sequentially butted, the connecting distance is adapted through sliding the telescopic sliding frame 301, the connecting plug 302 is inserted into the connecting groove 1011, the connecting bolt 102 is used for plug-in anchoring, the stability of the whole structure is ensured, the positioning bolt 103 is screwed into the telescopic sliding frame 301 to position the distance, the pipe fitting is placed on the arc-shaped lower clamping plates 5021, the pipe ends at the connecting positions can be respectively placed on the two arc-shaped lower clamping plates 5021, the arc-shaped upper clamping plates 503 are tightened through the bolts, the clamping work of the pipe fitting is realized, the two movable clamping blocks 502 can be driven to move oppositely by rotating the clamping driving screw 501, the pipe fitting is conveniently butted, the connecting stability is improved, and the lifting adjustment of the driving lifting sliding block 401 can be realized by adopting the rotating lifting installation screw 402.
The present utility model is not described in detail in the present application, and is well known to those skilled in the art.

Claims (7)

1. A buttress structure for pipeline laying is characterized in that: comprises a support pier body (1); two anchoring and mounting parts (2) are fixedly connected to the supporting pier body part (1); the support pier body (1) is connected with a telescopic connecting piece (3) in a sliding manner; the lifting installation piece (4) is installed on the supporting pier body piece (1); a pipe clamping and mounting part (5) is mounted on the lifting mounting piece (4); the support pier body (1) comprises: the support pier comprises a support pier block (101), a connecting groove (1011) and a connecting bolt (102), wherein the support pier block (101) is provided with the connecting groove (1011); the support pier block (101) is connected with a connecting bolt (102) through threads; the connecting bolt (102) passes through the connecting groove (1011); the anchor mounting portion (2) includes: the anchor mounting plate (201), the said anchor mounting plate (201) is fixedly connected to the side of the support pier block (101); a row of through holes are formed in the anchoring mounting plate (201).
2. A pipelaying buttress construction according to claim 1, in which: the support pier body (1) further comprises: the positioning bolts (103), the two positioning bolts (103) are arranged, and the two positioning bolts (103) are respectively connected to the support pier block (101) in a threaded mode.
3. A pipelaying buttress construction according to claim 1, in which: the anchor mounting portion (2) further includes: the anchor shafts (202) are arranged in a row, and the row of anchor shafts (202) are respectively and slidably inserted on the anchor mounting plate (201).
4. A pipelaying buttress construction according to claim 2, in which: the telescopic coupling (3) comprises: the telescopic sliding frame (301) and the connecting plug block (302), wherein the telescopic sliding frame (301) is of a U-shaped structure; the telescopic sliding frame (301) is connected to the supporting pier block (101) in a sliding manner; the telescopic sliding frame (301) is fixedly connected with a connecting plug block (302); two rows of jacks are formed in the telescopic sliding frame (301) and are respectively aligned with the two positioning bolts (103); the coupling insert (302) is aligned with the coupling slot (1011); and a through hole is formed in the middle of the connecting plug block (302).
5. A pipelaying buttress construction according to claim 1, in which: the lifting mounting (4) comprises: the lifting slide block (401), guide columns (4011) and lifting installation screw rods (402), wherein the two guide columns (4011) are connected to the lifting slide block (401) in a sliding manner, and the two guide columns (4011) are respectively and fixedly connected to the support pier block (101); the lifting sliding block (401) is connected with a lifting installation screw rod (402) in a threaded mode, and the bottom of the lifting installation screw rod (402) is connected to the supporting pier block (101) in a rotating mode.
6. A pipelaying buttress structure according to claim 5, in which: the pipe fitting clamping and mounting part (5) comprises: the clamping driving screw rod (501) and the movable clamping block (502), wherein the clamping driving screw rod (501) is rotationally connected to the lifting sliding block (401); reverse threads are arranged on two sides of the clamping driving screw rod (501); two sides of the clamping driving screw rod (501) are respectively in threaded connection with a movable clamping block (502), and the two movable clamping blocks (502) are respectively in sliding connection with the lifting sliding block (401).
7. A pipelaying buttress structure according to claim 6, in which: the pipe fitting clamping and mounting part (5) further comprises: the device comprises two arc-shaped lower clamping plates (5021) and two arc-shaped upper clamping plates (503), wherein the arc-shaped lower clamping plates (5021) are respectively fixedly connected to two movable clamping blocks (502); the two arc-shaped lower clamping plates (5021) are fixedly connected with arc-shaped upper clamping plates (503) through bolts respectively.
CN202320332641.1U 2023-02-28 2023-02-28 Buttress structure for pipeline laying Active CN219866634U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202320332641.1U CN219866634U (en) 2023-02-28 2023-02-28 Buttress structure for pipeline laying

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202320332641.1U CN219866634U (en) 2023-02-28 2023-02-28 Buttress structure for pipeline laying

Publications (1)

Publication Number Publication Date
CN219866634U true CN219866634U (en) 2023-10-20

Family

ID=88348052

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202320332641.1U Active CN219866634U (en) 2023-02-28 2023-02-28 Buttress structure for pipeline laying

Country Status (1)

Country Link
CN (1) CN219866634U (en)

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