In-service repair method combining externally bonded pre-stressed FRP and polymer grouting for PCCP with broken wire
11274784 · 2022-03-15
Assignee
- WELEAD Infrastructure Engineering Technology (Zhengzhou), Ltd. (Henan, CN)
- SAFEKEY Engineering Technology (Zhengzhou), Ltd. (Henan, CN)
Inventors
- Fuming Wang (Henan, CN)
- Hongyuan Fang (Henan, CN)
- Kejie Zhai (Henan, CN)
- Peng Zhao (Henan, CN)
- Yanhui Pan (Henan, CN)
Cpc classification
F16L55/1686
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L9/085
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L55/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L55/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L55/17
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L57/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16L55/17
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L55/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16L57/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A in-service repair method combing externally bonded pre-stressed FRP and polymer grouting for PCCP with broken wire, includes excavating PCCP, supporting the PCCP, treating outer wall of PCCP, bonded an external of the PCCP with pre-stressed FRP for repairing, laying grouting pipe, backfilling and grouting for densing. First of all, excavating a PCCP pipeline to be repaired and supporting the PCCP pipeline with a supporting device, smoothing the outer wall of the PCCP pipeline at a broken wire position and applying primer, and winding the FRP around a damaged portion of the PCCP pipeline, pre-stressing the FRP by applying a pre-stressing device and applying dipping glue to the FRP after tension to stick the FRP on the pipe wall, then laying a grouting pipe, backfilling the pipeline repaired, and finally injecting polymer into the soil after backfilling and compacting the soil by the grouting pipe pre-buried.
Claims
1. An in-service repair method combining externally bonded pre-stressed FRP (fiber reinforced polymer) and polymer grouting for PCCP (pre-stressed steel tube concrete pipes) with broken wire, comprising excavating the PCCP, supporting the PCCP, treating an outer wall of the PCCP, bonding an external surface of the PCCP with pre-stressed FRP for repairing, laying grouting pipe, backfilling and grouting for densing, excavating the PCCP pipeline to be repaired and supporting the PCCP pipeline with a supporting device, smoothing the outer wall of the PCCP pipeline at a broken wire position and applying primer, and winding the FRP around a damaged portion of the PCCP pipeline, pre-stressing the FRP by applying a pre-stressing device and applying dipping glue to the FRP after tension to stick the FRP on the pipe wall, then laying a grouting pipe, backfill the pipeline repaired, and finally injecting polymer into the soil after backfilling and compacting the soil by the grouting pipe pre-buried.
2. The in-service repair method combining externally bonded pre-stressed FRP and polymer grouting for PCCP with broken wire, as recite in claim 1, specifically comprising steps of: (1) detecting a broken wire position and an amount of broken wires, performing 1:0.5 slope excavation for a pipe section at a broken wire part of a PCCP pipeline, and terminating excavation until a distance between a first excavation datum and a bottom of the PCCP pipeline is at a range of 15 cm-30 cm; (2) taking joints of the two sections of PCCP pipelines as pipe joints, continuing excavating, and excavating (1.5-2 m)×(0.8-1 m)×(0.5-0.8 m) supporting earth directly below the pipe joints, tamping the bottom of this supporting earthwork; (3) centering the supporting device on the support earthwork directly below the pipe joint, and the two jacks on the supporting device are simultaneously raised until the supporting device and the pipe wall are closely fitted to form a support for the pipeline structure; (4) repeating steps (2) and (3) until all the pipes at the broken wire position are fully supported; (5) continuing to excavate the remaining parts of the broken wire pipeline except for supporting earthwork, the excavation depth is 30 cm-40 cm below the bottom of the PCCP pipe, and all parts of the broken wire pipeline to be repaired are exposed; (6) polishing or break the position of the broken wire of the PCCP pipe to form a flat surface, then applying primer DZH-102 on the surface, and allowing the primer to air dry to form a smooth surface; (7) winding FRP on the PCCP pipeline through a pre-stress application device, and allying pre-stress to the FRP until the pre-stress reaches the design value; (8) utilizing the dipping glue DZH-101 to fully soak the FRP wound on the PCCP pipe in step (7), and then performing curing and air drying; (9) cutting off the FRP end fixed on the pre-stress applying device, and removing the pre-stress applying device; (10) repeating steps (7) to (9) until the amount of FRP reaches the design requirements and all broken wire pipes are repaired; (11) arranging a grouting pipe on both sides of the PCCP pipe; wherein one end of the grouting pipe is set at the bottom of the PCCP pipe, and the other end protrudes from the ground; holes are distributed on the grouting pipe from the bottom end of the PCCP pipe to the pipe side; (12) backfilling and tamping the excavated part in step (5), removing the supporting device, and backfilling and tamping the supporting earthwork; (13) backfilling and tamp the excavated part in step (1); (14) injecting the self-expanding double-slurry fast-setting polymer repairing material around the wall of the PCCP pipe through the grouting pipe exposed on the surface, wherein the repairing material flows out from the hole and diffuses around the pipe.
3. The in-service repair method combining externally bonded pre-stressed FRP and polymer grouting for PCCP with broken wire, as recite in claim 1, further comprising: after the broken wire pipeline is repaired in the step (10), applying epoxy asphalt to the FRP.
4. The in-service repair method combining externally bonded pre-stressed FRP and polymer grouting for PCCP with broken wire, as recite in claim 1, wherein in the step (11), the grouting pipe is fixed on the outer wall of the PCCP pipe by epoxy glue, and the grouting pipes are symmetrically arranged on both sides of the PCCP pipe, and the spacing between the grouting pipes is 1.5-2 m.
5. The in-service repair method combining externally bonded pre-stressed FRP and polymer grouting for PCCP with broken wire, as recite in claim 1, wherein the pre-stress applying device in the step (7) includes a tension rod I (13) and a tension rod II (14); the tension rod I (13) and the tension rod II (14) are connected by an arc-shaped rod, two ends of FRP (15) are respectively fixed to the tension rod I (13) and the tension rod II (14), the tension rod II (14) is connected with a fastening rod (17) and a fastening rod (17) through a force applying bolt (16); bolt holes are provided on the bolt, and the force bolt (16) passes through the tension rod II (14) and the tightening rod (17), and is fitted with a screw nut (18).
6. The in-service repair method combining externally bonded pre-stressed FRP and polymer grouting for PCCP with broken wire, as recite in claim 1, wherein the supporting device in the step (3) comprises an arc-shaped steel sheet bracket (6), and an end of the arc-shaped steel sheet bracket (6) is provided with a support (7); the supporting device further includes a jack (10) which is cooperatedly supported under the support (7), a steel plate (11) is connected to the bottom of the jack (10), and the steel plate (11) is connected to the supporting device base plate (5) by bolts (12).
7. The in-service repair method combining externally bonded pre-stressed FRP and polymer grouting for PCCP with broken wire, as recite in claim 6, wherein a clamping slot (8) is provided on the support (7).
8. The in-service repair method combining externally bonded pre-stressed FRP and polymer grouting for PCCP with broken wire, as recite in claim 7, wherein supports (7) are provided at both ends of the arc-shaped steel sheet bracket (6), and a jack (10) is supported under each support (7) with force sensor.
9. The in-service repair method combining externally bonded pre-stressed FRP and polymer grouting for PCCP with broken wire, as recite in claim 6, wherein the arc-shaped steel sheet support (6) is located below the PCCP pipe (1), and the arc of the arc-shaped steel sheet support (6) matches the outer diameter of the PCCP pipe (1).
10. The in-service repair method combining externally bonded pre-stressed FRP and polymer grouting for PCCP with broken wire, as recite in claim 6, wherein the base plate (5) of the supporting device is a high elastic mold steel material which is not easily deformed, a support earthwork (4) is arranged below the base plate (5) of the supporting device, and the base plate (5) and the support earthwork (4) of the supporting device are aligned, the joint of the two PCCP pipes (1) is the pipe joint (3), and the supporting earthwork (4) is directly below the pipe joint (3).
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
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(8)
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENT
(9) An in-service repair method combing externally bonded pre-stressed FRP and polymer grouting for PCCP with broken wire, comprises: excavating PCCP, supporting the PCCP, treating outer wall of PCCP, bonded an external of the PCCP with pre-stressed FRP for repairing, laying grouting pipe, backfilling and grouting for densing, excavating a PCCP pipeline to be repaired and supporting the PCCP pipeline with a supporting device, smoothing the outer wall of the PCCP pipeline at a broken wire position and applying primer, and winding the FRP around a damaged portion of the PCCP pipeline, pre-stressing the FRP by applying a pre-stressing device and applying dipping glue to the FRP after tension to stick the FRP on the pipe wall, then laying a grouting pipe, backfill the pipeline repaired, and finally injecting polymer into the soil after backfilling and compacting the soil by the grouting pipe pre-buried.
(10) The in-service repair method combing externally bonded pre-stressed FRP and polymer grouting for PCCP with broken wire specifically comprises steps of:
(11) (1) detecting the broken wire position and the number of broken wires, perform 1:0.5 grading excavation on the pipe section of the broken wire part of the PCCP pipeline, stop excavation to the first excavation datum level, stop excavation, and as shown in
(12) (2) the joints of the two sections of PCCP pipelines are pipe joints, continuing excavation, and excavate (1.5-2 m)×(0.8-1 m)×(0.5-0.8 m) supporting earth directly below the pipe joints, Tamp the bottom of this supporting earthwork;
(13) (3) centering the support device on the support earthwork directly below the pipe joint, and the two jacks on the support device are simultaneously raised until the support device and the pipe wall are closely fitted to form a support for the pipeline structure;
(14) (4) repeating steps (2) and (3) until all the pipes at the broken wire position are fully supported;
(15) (5) continuing to excavate the remaining parts of the broken wire pipeline except for supporting earthwork, the excavation depth is 30 cm-40 cm below the bottom of the PCCP pipe, and all parts of the broken wire pipeline to be repaired are exposed;
(16) (6) polishing or break the position of the broken wire of the PCCP pipe to form a flat surface, then applying primer DZH-102 on the surface, and allowing the primer to air dry to form a smooth surface;
(17) (7) wounding FRP on the PCCP pipeline through a pre-stress application device, and allying pre-stress to the FRP until the pre-stress reaches the design value;
(18) (8) utilizing the dipping glue DZH-101 to fully soak the FRP wound on the PCCP pipe in step (7), and then performing curing and air drying;
(19) (9) cutting off the FRP end fixed on the pre-stress applying device, and removing the pre-stress applying device;
(20) (10) repeating steps (7) to (9) until the amount of FRP reaches the design requirements and all broken wire pipes are repaired;
(21) (11) arranging a grouting pipe on both sides of the PCCP pipe 19; as shown in
(22) (12) backfilling and tamping the excavated part in step (5), removing the supporting device, and backfill and tamp the supporting earthwork;
(23) (13) backfilling and tamp the excavated part in step (1);
(24) (14) injecting the self-expanding double-slurry fast-setting polymer repairing material around the wall of the PCCP pipe through the grouting pipe exposed on the surface, wherein the repairing material flows out from the hole and diffuses around the pipe.
(25) As shown in
(26) The process of winding the FRP by the pre-stressing device in step (7) is to fix the two ends of the FRP to the tension rod I 13 and the tension rod II 14, respectively, and wind the FRP on the PCCP pipe, and pass the tension bolt 16 through the tension rod II14 The fastening rod 17 connects the two, the end of the force bolt 16 is fitted with a screw nut 18, and the arc rod is used to connect the tension rod I13 and the tension rod II14 to complete the assembly of the pre-stress application device, and then alternately rotate Tighten the nut 18 on the force bolt, tension the FRP, and apply pre-stress.
(27) In the step (9), after the FRP is pasted on the wall of the PCCP pipe, the FRP end on the tension rod II14 is cut off, and the portion of the tension rod I wider than the FRP is cut, so that the tension rod I and the FRP wound on the PCCP pipeline The width is the same, after which the entire pre-stressing device is removed.
(28) As shown in
(29) Supports 7 are provided at both ends of the arc-shaped steel sheet support 6, and a jack 10 is supported under each support 7, two jacks 10 are synchronous jacks, two jacks 10 can be synchronously lifted, and force sensors are set in the jacks 10. During the jacking process of the jack 10, the jacking force on the PCCP pipe 1 is controlled.
(30) The bottom plate 5 of the supporting device is a high elastic mold steel material which is not easily deformed. The supporting earth 4 is arranged below the bottom plate 5 of the supporting device, and the bottom 5 of the supporting device and the supporting earth 4 are aligned. 3. The supporting earthwork 4 is located directly below the pipe section 3.
(31) The process of the support device supporting the pipeline in step (3) is:
(32) (1) placing the supporting device bottom plate 5 on the supporting earthwork and center it so that the supporting device bottom plate is placed at the center of the upper plane of the supporting earthwork;
(33) (2) utilizing the bolt 12 to connect the jack 10 to the bottom plate of the supporting device;
(34) (3) placing the support 7 on both sides of the curved steel sheet support 6 above the end 9 of the jack, and the end fits into the card slot of the support;
(35) (4) jacking the two jacks 10 are simultaneously until the arc-shaped steel sheet bracket 6 is closely attached to the outer wall of the pipe 1 to form a support for the pipe structure.
(36) What described above are only preferred embodiments of the present invention. It should be noted that for those skilled in the art, without departing from the overall concept of the present invention, several changes and improvements can be made. These should also be considered as the protection scope of the present invention.