CN216143379U - Non-excavation prosthetic devices that double-walled bellows part is incomplete sinks - Google Patents

Non-excavation prosthetic devices that double-walled bellows part is incomplete sinks Download PDF

Info

Publication number
CN216143379U
CN216143379U CN202023054681.XU CN202023054681U CN216143379U CN 216143379 U CN216143379 U CN 216143379U CN 202023054681 U CN202023054681 U CN 202023054681U CN 216143379 U CN216143379 U CN 216143379U
Authority
CN
China
Prior art keywords
plate
expanding
diameter
rib
driving
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202023054681.XU
Other languages
Chinese (zh)
Inventor
杨帆
李新科
谢武
向洲民
郭磊
李惠芳
董占强
何建军
张强
藤星
陈新蕲
赵建云
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Xinjiang Dingli Environmental Technology Co ltd
Original Assignee
Xinjiang Dingli Non Excavation Engineering Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Xinjiang Dingli Non Excavation Engineering Co ltd filed Critical Xinjiang Dingli Non Excavation Engineering Co ltd
Application granted granted Critical
Publication of CN216143379U publication Critical patent/CN216143379U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Pipe Accessories (AREA)

Abstract

The utility model relates to the technical field of trenchless repair equipment under the working condition of pipeline collapse and deformation, in particular to a trenchless repair device under the working condition of partial incomplete collapse of a double-wall corrugated pipe; the repairing device comprises a steel expansion ring, a steel expansion ring supporting device and a collapse propping device; the steel expansion ring supporting device comprises a left end cover, a right end cover, a repairing driving device and a push-away device, wherein a steel expansion ring is arranged between the left end cover and the right end cover, and the repairing driving device is fixedly arranged in the steel expansion ring; the inspection well spaces at two ends of the pipeline to be repaired are fully utilized, the incompletely-collapsed pipe section is fully expanded through the diameter expanding plate of the collapse expanding device, and then the steel expansion ring is positioned on the incompletely-collapsed pipe section through the steel expansion ring supporting device, so that the local repair of the small-caliber double-wall corrugated pipe is realized under the condition of no need of ground excavation; not only saves time and labor, but also does not damage the road surface, and simultaneously avoids the safety incident and the environmental pollution caused by the lock in the excavation process.

Description

Non-excavation prosthetic devices that double-walled bellows part is incomplete sinks
Technical Field
The utility model relates to the technical field of trenchless repair equipment under the working condition of pipeline collapse and deformation, in particular to a trenchless repair device for partial incomplete collapse of a double-wall corrugated pipe.
Background
In the process of constructing underground drainage pipelines in towns and towns all over the country in the last 15 to 20 years, a large number of double-wall corrugated pipes made of HDPE materials are selected for drainage pipeline construction as main materials of drainage pipelines, and due to excessive price competition in the market, the materials are extremely seriously deteriorated, and in addition, the market supervision is insufficient, a large number of unqualified products are buried underground; along with the increase of the age limit, the soil body changes around the pipeline and leads to pipeline atress environment to change, and structural and functional harmful defects such as collapse, deformation, fracture appear on a large scale in the pipeline to lead to taking place many security incidents and environmental protection pollution incident that lead to because of underground pipe disease to lead to in recent years, if: road collapse, urban inland inundation, inland rivers, lakes, soil and other pollution events.
At present, the existing trenchless pipeline repairing technology in the market is implemented under the working condition that the internal space of the original pipeline is complete, such as: ultraviolet curing repair technology, CIPP hot water in-situ curing method, in-situ thermoplastic forming repair technology and the like. When the inner space of the original pipeline is incomplete due to collapse and deformation of the pipeline, the pipeline needs to be pre-repaired, the inner space of the pipeline is completely re-rounded, grouting soil can be adopted for curing pipelines made of other materials, such as concrete pipelines and clay pipelines, and then the pipelines are processed by methods of hole reconstruction by using a strong milling cutter and the like, but the double-wall corrugated pipe cannot be cut by the milling cutter due to large toughness of the materials, so that the problem acknowledged by the trenchless pipeline repairing industry is solved.
The small-caliber double-wall corrugated pipe refers to double-wall corrugated pipes with pipe diameters of DN200 mm-DN 600mm and double-wall corrugated pipes reinforced by steel strips, when the pipeline needs to be repaired under the incomplete collapse working condition that the local collapse deformation amplitude is not more than 50%, the mode of locally digging and replacing the pipes greatly can be adopted, which is troublesome and labor-consuming, and the damage to the environment is too large, especially the interference to the normal operation of a city is too large. Therefore, there is an urgent need for an apparatus and method for performing partial repair of a pipeline in a non-excavation manner.
Disclosure of Invention
The utility model provides a non-excavation repairing device for partial incomplete collapse of a double-wall corrugated pipe, overcomes the defects of the prior art, and can effectively solve the problem that a local large-excavation pipe replacement mode (which is troublesome and laborious, has large damage to the environment, and particularly has large interference on normal operation of a city) can only be adopted when the local collapse deformation amplitude of a small-caliber double-wall corrugated pipe is not more than 50% under the incomplete collapse working condition.
One of the technical schemes of the utility model is realized by the following measures: a non-excavation repairing device for partial incomplete collapse of a double-wall corrugated pipe comprises a steel expansion ring, a steel expansion ring supporting device and a collapse opening device; the steel expansion ring supporting device comprises a left end cover, a right end cover, a repairing driving device and a push-away device, wherein a steel expansion ring is arranged between the left end cover and the right end cover, the repairing driving device is fixedly arranged in the steel expansion ring, and the push-away device capable of expanding the steel expansion ring under the driving action of the repairing driving device is arranged between the repairing driving device and the steel expansion ring; the collapse distraction device comprises a connecting lug seat, a driving mechanism and an expanding plate, wherein at least two expanding plates which are distributed circumferentially and can be outwards distracted under the action of the driving mechanism are hinged between the right end cover and the connecting lug seat.
The following are further optimization or/and improvement of the technical scheme of the utility model:
the repairing driving device comprises a center-penetrating jack, a main shaft, a first moving plate and a second moving plate; an oil cylinder support is fixed between the left end cover and the right end cover through a support, a center penetrating jack is fixedly installed in the oil cylinder support, the right end of the main shaft abuts against the left side of the right end cover, the left end of the main shaft penetrates through the center penetrating jack and then extends out of the left end cover, a first movable plate and a second movable plate are fixedly installed on the main shaft on the left side and the right side of the center penetrating jack respectively, the telescopic end of the inner cylinder on the left side of the center penetrating jack abuts against the first movable plate, and the first movable plate and the second movable plate are connected with a pushing-away device respectively.
The push-away device comprises at least two arc-shaped supporting plates which are distributed circumferentially, a first supporting plate hinge seat is fixed on the inner side of the left part of each supporting plate, a first moving plate hinge seat corresponding to the first supporting plate hinge seat is fixed on the outer end of the left side of the first moving plate, and the corresponding first supporting plate hinge seat is hinged with the first moving plate hinge seat through a first connecting rod; and a second support plate hinge seat is fixed on the inner side of the right part of each support plate, a second movable plate hinge seat corresponding to the second support plate hinge seat is fixed on the left side of the second movable plate, and the corresponding second support plate hinge seat is hinged with the second movable plate hinge seat through a second connecting rod.
At least one first sliding plate extending towards the supporting plate is fixed on the right side of the first movable plate at intervals along the circumference, a first rib plate is fixed on the supporting plate corresponding to the first sliding plate, the inner end of the first rib plate is a trapezoidal limiting plate with a high left part and a low right part, a first opening guide groove is arranged at the outer end of the first sliding plate corresponding to the position of the first rib plate, the outer end of the first sliding plate is sleeved on the first rib plate through the first opening guide groove, and the bottom surface of the first opening guide groove is abutted against the inclined inner end surface of the first rib plate; at least one second sliding plate extending to the supporting plate is arranged on the right side of the second moving plate at intervals along the circumference, a second rib plate is fixed on the supporting plate corresponding to the second sliding plate, the second rib plate is a trapezoidal limiting plate with the inner end being high at the left and low at the right, a second opening guide groove is arranged at the outer end of the second sliding plate corresponding to the position of the second rib plate, the outer end of the second sliding plate is sleeved on the second rib plate through the second opening guide groove, and the bottom surface of the second opening guide groove is abutted to the inclined inner end surface of the second rib plate.
A left end plate is sleeved on the main shaft on the right side of the left end cover, and a spring is sleeved on the main shaft between the left end plate and the first moving plate; or a spring is sleeved on the main shaft between the center-penetrating jack and the second moving plate.
The driving mechanism comprises a driving oil cylinder and a driving block; each diameter expanding plate comprises a first diameter expanding plate at the left section and a second diameter expanding plate at the right section, and the first diameter expanding plate is hinged with the second diameter expanding plate; the left end of a first expanding plate of each expanding plate is hinged to the outer end of the right end cover, and the right end of a second expanding plate of each expanding plate is hinged to the connecting lug seat; the inner side of the first diameter-expanding plate of each diameter-expanding plate is fixed with diameter-expanding rib plates, the inner end faces of the diameter-expanding rib plates are inclined, and the space between the diameter-expanding rib plates is gradually decreased from left to right; the driving oil cylinder is fixed on the right end cover, a driving block is fixed at the telescopic rod end of the driving oil cylinder and is arranged between the diameter-expanding rib plates, an outer inclined surface matched with the inner inclined surface of the diameter-expanding rib plate is arranged at the outer end of the driving block, and the outer inclined surface of the driving block abuts against the inner inclined surface of the diameter-expanding rib plate corresponding to the outer inclined surface.
And a tapered structure with a wide left part and a narrow right part is formed among the right end cover, the connecting lug seat and the diameter expanding plates distributed circumferentially. This further facilitates insertion of the collapse opening means into the incompletely collapsed pipe section and facilitates the opening of the incompletely collapsed pipe section.
The utility model can fully utilize the inspection well space at two ends of the pipeline to be repaired, fully support the incomplete collapsed pipe section through the diameter expansion plate of the collapse support device, and then position the steel expansion ring on the incomplete collapsed pipe section through the steel expansion ring support device, thereby realizing the local repair of the small-caliber double-wall corrugated pipe without ground excavation; compared with local large excavation pipe replacement repair, the method is time-saving and labor-saving, does not damage the road surface, has no influence or little influence on ground traffic, and avoids safety incidents and environmental pollution problems caused by locks in the excavation process.
Drawings
Fig. 1 is a front sectional structural view of a first expanding plate and a second expanding plate in an unsupported state in a preferred embodiment of the utility model.
Fig. 2 is a front sectional structural view of the first expanding plate and the second expanding plate in a supported state according to the preferred embodiment of the present invention.
FIG. 3 is an enlarged sectional view taken along line A-A of FIG. 1.
FIG. 4 is an enlarged sectional view taken along line B-B of FIG. 2.
The codes in the figures are respectively: the device comprises a main shaft 1, a left end cover 2, a support plate 3, a cylinder support 4, a penetrating jack 5, a second support plate hinge seat 6, a second connecting rod 7, a second moving plate hinge seat 8, a second rib plate 9, a second sliding plate 10, a right end cover 11, a second moving plate 12, a spring 13, a support 14, a first rib plate 15, a first sliding plate 16, a first moving plate 17, a first support plate hinge seat 18, a first connecting rod 19, a first moving plate hinge seat 20, a steel expansion ring 21, a left end plate 22, a first diameter expansion plate 23, a driving cylinder 24, a driving block 25, a diameter expansion rib plate 26, a second diameter expansion plate 27 and a connecting lug seat 28.
Detailed Description
The present invention is not limited by the following examples, and specific embodiments may be determined according to the technical solutions and practical situations of the present invention.
In the present invention, for convenience of description, the description of the relative positional relationship of the components is described according to the layout pattern of fig. 1 of the specification, such as: the positional relationship of up, down, left, right, etc. is determined in accordance with the layout direction of fig. 1 in the specification.
The utility model is further described with reference to the following examples and figures:
example 1: as shown in fig. 1 to 4, the trenchless repairing device for partial incomplete collapse of the double-wall corrugated pipe comprises a steel expansion ring 21, a steel expansion ring supporting device and a collapse opening device; the steel expansion ring supporting device comprises a left end cover 2, a right end cover 11, a repairing driving device and a push-away device, wherein a steel expansion ring 21 is arranged between the left end cover 2 and the right end cover 11, the repairing driving device is fixedly arranged in the steel expansion ring 21, and the push-away device capable of expanding the steel expansion ring 21 under the driving action of the repairing driving device is arranged between the repairing driving device and the steel expansion ring 21; the collapsing and expanding device comprises a connecting lug seat 28, a driving mechanism and an expanding plate, wherein at least two expanding plates which are distributed circumferentially and can be expanded outwards under the action of the driving mechanism are hinged between the right end cover 11 and the connecting lug seat 28.
When in repair, the space of the inspection wells at the two ends of the pipeline to be repaired is fully utilized, the repair equipment can be placed in the underground pipeline, and the repair equipment can move under the action of the traction device; aiming at the incomplete collapsed pipe section existing in the small-caliber double-wall corrugated pipe, the incomplete collapsed pipe section is fully expanded through the diameter expansion plate of the collapse expansion device, and then the steel expansion ring 21 is positioned on the incomplete collapsed pipe section through the steel expansion ring supporting device, so that the local repair of the small-caliber double-wall corrugated pipe is realized under the condition of no need of ground excavation; compared with local large excavation pipe replacement repair, the method is time-saving and labor-saving, does not damage the road surface, has no influence or little influence on ground traffic, and avoids safety incidents and environmental pollution problems caused by locks in the excavation process.
The repair equipment fully props up the incomplete collapsed pipe section through the collapse propping device, positions the steel expansion ring 21 on the incompletely deformed collapsed pipe section through the repair locking ring supporting device, and is matched with non-excavation traction equipment, so that the pipeline repair operation of the small-caliber double-wall corrugated pipe under the non-excavation condition can be realized; compared with a repair mode of local excavation, when the trenchless repair equipment disclosed by the utility model is adopted to carry out pipeline repair operation, a large excavation of a road surface is not needed, so that the time and the labor are saved, the road surface is not damaged, no influence or little influence is caused on ground traffic, safety incidents caused by damage to an original pipeline in an excavation process are avoided, and the problem of environmental pollution caused by transverse flow of sewage and flying of dust due to excavation can be avoided; the utility model aims at the problems that the local collapse deformation of the double-wall corrugated pipe is accompanied with the displacement of the soil body around the pipeline, a large supporting force is needed during the rounding, and the expanding device is required to drive the steel expansion ring to uniformly expand towards the circumference along the axis of the pipeline during the expanding, so that the adopted collapse expanding device is a multi-petal expanding plate which can be expanded towards the periphery under the action of a driving mechanism and uniformly acts on the whole incomplete collapse section, and the incomplete collapse section can quickly recover the space in the pipe; and then the collapse expanding device is utilized, the repair driving device drives the push-open mechanism to expand the steel expansion ring 21 outwards and self-lock the steel expansion ring to the incomplete collapse pipe section, so that the pipe-in-pipe repair of the incomplete collapse pipe section of the small-caliber double-wall corrugated pipe is realized.
The partial incomplete collapse trenchless repair device for the double-wall corrugated pipe can be further optimized or/and improved according to actual needs:
as shown in fig. 1 to 4, the repairing driving device includes a piercing jack 5, a main shaft 1, a first moving plate 17 and a second moving plate 12; an oil cylinder support 4 is fixed between the left end cover 2 and the right end cover 11 through a support 14, a center-penetrating jack 5 is fixedly installed in the oil cylinder support 4, the right end of the main shaft 1 abuts against the left side of the right end cover 11, the left end of the main shaft 1 penetrates through the center-penetrating jack 5 and then extends out of the left end cover 2, a first movable plate 17 and a second movable plate 12 are fixedly installed on the main shaft 1 on the left side and the right side of the center-penetrating jack 5 respectively, the telescopic end of an inner cylinder on the left side of the center-penetrating jack 5 abuts against the first movable plate 17, and the first movable plate 17 and the second movable plate 12 are connected with a pushing-away device respectively.
The center-penetrating jack 5 is a device which is well known and commonly used in the prior art, and the starting and stopping of the center-penetrating jack are well known in the prior art; when the self-locking type steel expansion ring is used, the center-penetrating jack 5 is driven, the telescopic end of the inner cylinder of the center-penetrating jack 5 extends leftwards, the first moving plate 17 is pushed, meanwhile, the second moving plate 12 is driven to move leftwards synchronously through the main shaft 1, under the action of the pushing force of the left movement of the first moving plate 17 and the second moving plate 12, the pushing-away mechanism is pushed open outwards and supports the steel expansion ring 21, the steel expansion ring 21 is self-locked and supports an incomplete collapse pipe section, and the repair work of the incomplete collapse pipe section is completed.
As shown in fig. 1 to 4, the pushing-away device includes at least two arc-shaped supporting plates 3 distributed circumferentially, a first supporting plate hinge seat 18 is fixed on the inner side of the left portion of each supporting plate 3, a first moving plate hinge seat 20 corresponding to the first supporting plate hinge seat 18 is fixed on the outer end of the left side of the first moving plate 17, and the corresponding first supporting plate hinge seat 18 is hinged to the first moving plate hinge seat 20 through a first connecting rod 19; a second support plate hinge seat 6 is fixed on the inner side of the right part of each support plate 3, a second moving plate hinge seat 8 corresponding to the second support plate hinge seat 6 is fixed on the left side of the second moving plate 12, and the corresponding second support plate hinge seat 6 is hinged to the second moving plate hinge seat 8 through a second connecting rod 7.
Under the action of the thrust of the left movement of the first moving plate 17 and the second moving plate 12, the first connecting rod 19 and the second connecting rod 7 drive the supporting plate 3 to be outwards opened and support the steel expansion ring 21, so that the purpose of pushing the steel expansion ring 21 open is achieved; on the contrary, after the steel expansion ring 21 is self-locked, the device needs to be withdrawn from the pipeline, the penetrating jack 5, the first moving plate 17 and the second moving plate 12 are reset in sequence, at the moment, the supporting plate 3 loses the supporting force and pushes the first moving plate 17 and the second moving plate 12 reversely to gradually recover the original positions, reverse reset is realized, and the repairing device is convenient to take out from the pipeline.
As shown in fig. 1 to 2, at least one first sliding plate 16 extending to the supporting plate 3 is fixed on the right side of the first moving plate 17 at intervals along the circumference, a first rib plate 15 is fixed on the supporting plate 3 corresponding to the first sliding plate 16, the first rib plate 15 is a trapezoidal limiting plate with the inner end being high at the left and low at the right, a first opening guide groove is arranged at the outer end of the first sliding plate 16 corresponding to the position of the first rib plate 15, the outer end of the first sliding plate 16 is sleeved on the first rib plate 15 through the first opening guide groove, and the groove bottom surface of the first opening guide groove is abutted against the inclined inner end surface of the first rib plate 15; at least one second sliding plate 10 extending to the supporting plate 3 is arranged on the right side of the second moving plate 12 at intervals along the circumference, a second rib plate 9 is fixed on the supporting plate 3 corresponding to the second sliding plate 10, the second rib plate 9 is a trapezoidal limiting plate with the inner end being high at the left and low at the right, a second opening guide groove is arranged at the outer end of the second sliding plate 10 corresponding to the position of the second rib plate 9, the outer end of the second sliding plate 10 is sleeved on the second rib plate 9 through the second opening guide groove, and the groove bottom surface of the second opening guide groove is abutted to the inclined inner end surface of the second rib plate 9. Under the action of the thrust of the left movement of the first moving plate 17 and the second moving plate 12, the first sliding plate 16 and the second sliding plate 10 also move left, but under the limiting and guiding action of the first rib plate 15 and the second rib plate 9, the supporting plate 3 can only radially extend and retract, and the supporting plate 3 is ensured to be fully stressed and fully coaxially and radially expanded; secondly, an inner support on the left side of the supporting plate 3 is formed between the first rib plate 15 and the first sliding plate 16, and an inner support on the right side of the supporting plate 3 is formed between the second rib plate 9 and the second sliding plate 10, so that a continuous supporting effect is provided for the supporting plate 3 while the first sliding plate 16 and the second sliding plate 10 move to the left, and the opening process of the supporting plate 3 is more stable and reliable.
As shown in fig. 1 to 2, a left end plate 22 is sleeved on the main shaft 1 on the right side of the left end cover 2, and a spring 13 is sleeved on the main shaft 1 between the left end plate 22 and the first moving plate 17; or, a spring 13 is sleeved on the main shaft 1 between the penetrating jack 5 and the second moving plate 12.
The spring 13 can further improve the resetting reliability of the first moving plate 17 and the second moving plate 12, so that the repairing equipment can be taken out of the pipeline conveniently; the left end plate 22 can increase the return elastic force of the spring 13, and improve the return effect of the first moving plate 17.
As shown in fig. 1 to 2, the driving mechanism includes a driving cylinder 24 and a driving block 25; each diameter expanding plate comprises a first diameter expanding plate 23 at the left section and a second diameter expanding plate 27 at the right section, and the first diameter expanding plate 23 is hinged with the second diameter expanding plate 27; the left end of a first diameter expanding plate 23 of each diameter expanding plate is hinged to the outer end of the right end cover 11, and the right end of a second diameter expanding plate 27 of each diameter expanding plate is hinged to the connecting lug seat 28; the inner side of the first diameter-expanding plate 23 of each diameter-expanding plate is fixed with diameter-expanding rib plates 26, the inner end faces of the diameter-expanding rib plates 26 are inclined, and the distance between the diameter-expanding rib plates 26 is gradually reduced from left to right; the driving oil cylinder 24 is fixed on the right end cover 11, a driving block 25 is fixed at the telescopic rod end of the driving oil cylinder 24, the driving block 25 is arranged between the diameter-expanding rib plates 26, the outer end of the driving block 25 is provided with an outer inclined surface matched with the inner inclined surface of the diameter-expanding rib plate 26, and the outer inclined surface of the driving block 25 abuts against the inner inclined surface of the diameter-expanding rib plate 26 corresponding to the outer inclined surface.
When the diameter-expanding device is used, the telescopic rod pushes the driving block 25 to move right under the driving of the driving oil cylinder 24, and the diameter-expanding rib plates 26 and the first diameter-expanding plates 23 are expanded outwards and simultaneously drive the hinged second diameter-expanding plates 27 to be outwards supported; the outer supporting force of the first diameter expanding plate 23 is uniformly applied to the whole incomplete collapse section, the incomplete collapse section is fully expanded along the periphery, and the space in the pipe is recovered, so that the pre-repair of the pipe is realized.
As shown in fig. 1 to 2, a tapered structure with a wide left side and a narrow right side is formed between the right end cover 11, the connecting lug seat 28 and the circumferentially distributed expanding plates. This further facilitates insertion of the collapse opening means into the incompletely collapsed pipe section and facilitates the opening of the incompletely collapsed pipe section.
The above technical features constitute the best embodiment of the present invention, which has strong adaptability and best implementation effect, and unnecessary technical features can be increased or decreased according to actual needs to meet the requirements of different situations.

Claims (10)

1. A non-excavation repairing device for partial incomplete collapse of a double-wall corrugated pipe is characterized by comprising a steel expansion ring, a steel expansion ring supporting device and a collapse opening device; the steel expansion ring supporting device comprises a left end cover, a right end cover, a repairing driving device and a push-away device, wherein a steel expansion ring is arranged between the left end cover and the right end cover, the repairing driving device is fixedly arranged in the steel expansion ring, and the push-away device capable of expanding the steel expansion ring under the driving action of the repairing driving device is arranged between the repairing driving device and the steel expansion ring; the collapse distraction device comprises a connecting lug seat, a driving mechanism and an expanding plate, wherein at least two expanding plates which are distributed circumferentially and can be outwards distracted under the action of the driving mechanism are hinged between the right end cover and the connecting lug seat.
2. The apparatus for trenchless rehabilitation of a partial incomplete collapse of double-walled bellows according to claim 1, wherein the rehabilitation driving means comprises a center-penetrating jack, a main shaft, a first moving plate and a second moving plate; an oil cylinder support is fixed between the left end cover and the right end cover through a support, a center penetrating jack is fixedly installed in the oil cylinder support, the right end of the main shaft abuts against the left side of the right end cover, the left end of the main shaft penetrates through the center penetrating jack and then extends out of the left end cover, a first movable plate and a second movable plate are fixedly installed on the main shaft on the left side and the right side of the center penetrating jack respectively, the telescopic end of the inner cylinder on the left side of the center penetrating jack abuts against the first movable plate, and the first movable plate and the second movable plate are connected with a pushing-away device respectively.
3. The trenchless repairing device for the partial incomplete collapse of the double-wall corrugated pipe according to claim 2, wherein at least one first sliding plate extending to the supporting plate is fixed on the right side of the first moving plate at intervals along the circumference, a first rib plate is fixed on the supporting plate corresponding to the first sliding plate, the first rib plate is a trapezoidal limiting plate with the inner end being high at the left and low at the right, a first opening guide groove is arranged at the outer end of the first sliding plate corresponding to the position of the first rib plate, the outer end of the first sliding plate is sleeved on the first rib plate through the first opening guide groove, and the groove bottom surface of the first opening guide groove is abutted against the inclined inner end surface of the first rib plate; at least one second sliding plate extending to the supporting plate is arranged on the right side of the second moving plate at intervals along the circumference, a second rib plate is fixed on the supporting plate corresponding to the second sliding plate, the second rib plate is a trapezoidal limiting plate with the inner end being high at the left and low at the right, a second opening guide groove is arranged at the outer end of the second sliding plate corresponding to the position of the second rib plate, the outer end of the second sliding plate is sleeved on the second rib plate through the second opening guide groove, and the bottom surface of the second opening guide groove is abutted to the inclined inner end surface of the second rib plate.
4. The trenchless repairing device for the partial incomplete collapse of the double-wall corrugated pipe as claimed in claim 2 or 3, wherein a left end plate is sleeved on a main shaft on the right side of the left end cover, and a spring is sleeved on the main shaft between the left end plate and the first moving plate; or a spring is sleeved on the main shaft between the center-penetrating jack and the second moving plate.
5. The non-excavation repairing device for the partial incomplete collapse of the double-wall corrugated pipe as claimed in claim 2 or 3, wherein the pushing-away device comprises at least two arc-shaped supporting plates distributed circumferentially, a first supporting plate hinge seat is fixed on the inner side of the left part of each supporting plate, a first moving plate hinge seat corresponding to the first supporting plate hinge seat is fixed on the outer end of the left side of the first moving plate, and the corresponding first supporting plate hinge seat is hinged with the first moving plate hinge seat through a first connecting rod; and a second support plate hinge seat is fixed on the inner side of the right part of each support plate, a second movable plate hinge seat corresponding to the second support plate hinge seat is fixed on the left side of the second movable plate, and the corresponding second support plate hinge seat is hinged with the second movable plate hinge seat through a second connecting rod.
6. The trenchless repairing device for the partial incomplete collapse of the double-wall corrugated pipe as claimed in claim 4, wherein the pushing-away device comprises at least two arc-shaped supporting plates distributed circumferentially, a first supporting plate hinge seat is fixed on the inner side of the left part of each supporting plate, a first moving plate hinge seat corresponding to the first supporting plate hinge seat is fixed on the outer end of the left side of the first moving plate, and the corresponding first supporting plate hinge seat is hinged with the first moving plate hinge seat through a first connecting rod; and a second support plate hinge seat is fixed on the inner side of the right part of each support plate, a second movable plate hinge seat corresponding to the second support plate hinge seat is fixed on the left side of the second movable plate, and the corresponding second support plate hinge seat is hinged with the second movable plate hinge seat through a second connecting rod.
7. The trenchless rehabilitation apparatus for repairing partially incomplete collapse of double-walled bellows according to claim 1, 2, 3 or 6, wherein the driving mechanism comprises a driving cylinder and a driving block; each diameter expanding plate comprises a first diameter expanding plate at the left section and a second diameter expanding plate at the right section, and the first diameter expanding plate is hinged with the second diameter expanding plate; the left end of a first expanding plate of each expanding plate is hinged to the outer end of the right end cover, and the right end of a second expanding plate of each expanding plate is hinged to the connecting lug seat; the inner side of the first diameter-expanding plate of each diameter-expanding plate is fixed with diameter-expanding rib plates, the inner end faces of the diameter-expanding rib plates are inclined, and the space between the diameter-expanding rib plates is gradually decreased from left to right; the driving oil cylinder is fixed on the right end cover, a driving block is fixed at the telescopic rod end of the driving oil cylinder and is arranged between the diameter-expanding rib plates, an outer inclined surface matched with the inner inclined surface of the diameter-expanding rib plate is arranged at the outer end of the driving block, and the outer inclined surface of the driving block abuts against the inner inclined surface of the diameter-expanding rib plate corresponding to the outer inclined surface.
8. The apparatus for trenchless rehabilitation of a partial incomplete collapse of double-walled bellows according to claim 4, wherein the driving mechanism comprises a driving cylinder and a driving block; each diameter expanding plate comprises a first diameter expanding plate at the left section and a second diameter expanding plate at the right section, and the first diameter expanding plate is hinged with the second diameter expanding plate; the left end of a first expanding plate of each expanding plate is hinged to the outer end of the right end cover, and the right end of a second expanding plate of each expanding plate is hinged to the connecting lug seat; the inner side of the first diameter-expanding plate of each diameter-expanding plate is fixed with diameter-expanding rib plates, the inner end faces of the diameter-expanding rib plates are inclined, and the space between the diameter-expanding rib plates is gradually decreased from left to right; the driving oil cylinder is fixed on the right end cover, a driving block is fixed at the telescopic rod end of the driving oil cylinder and is arranged between the diameter-expanding rib plates, an outer inclined surface matched with the inner inclined surface of the diameter-expanding rib plate is arranged at the outer end of the driving block, and the outer inclined surface of the driving block abuts against the inner inclined surface of the diameter-expanding rib plate corresponding to the outer inclined surface.
9. The apparatus for trenchless rehabilitation of a partial incomplete collapse of double-walled bellows according to claim 5, wherein the driving mechanism comprises a driving cylinder and a driving block; each diameter expanding plate comprises a first diameter expanding plate at the left section and a second diameter expanding plate at the right section, and the first diameter expanding plate is hinged with the second diameter expanding plate; the left end of a first expanding plate of each expanding plate is hinged to the outer end of the right end cover, and the right end of a second expanding plate of each expanding plate is hinged to the connecting lug seat; the inner side of the first diameter-expanding plate of each diameter-expanding plate is fixed with diameter-expanding rib plates, the inner end faces of the diameter-expanding rib plates are inclined, and the space between the diameter-expanding rib plates is gradually decreased from left to right; the driving oil cylinder is fixed on the right end cover, a driving block is fixed at the telescopic rod end of the driving oil cylinder and is arranged between the diameter-expanding rib plates, an outer inclined surface matched with the inner inclined surface of the diameter-expanding rib plate is arranged at the outer end of the driving block, and the outer inclined surface of the driving block abuts against the inner inclined surface of the diameter-expanding rib plate corresponding to the outer inclined surface.
10. The partial incomplete collapse trenchless rehabilitation device for double-wall corrugated pipe according to claim 1, 2, 3, 6, 8 or 9, wherein a left wide and right narrow conical structure is formed between the right end cover, the connecting lug seat and the circumferentially distributed expanding plates.
CN202023054681.XU 2020-09-28 2020-12-18 Non-excavation prosthetic devices that double-walled bellows part is incomplete sinks Active CN216143379U (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN202022166252 2020-09-28
CN2020221662525 2020-09-28

Publications (1)

Publication Number Publication Date
CN216143379U true CN216143379U (en) 2022-03-29

Family

ID=80800340

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202023054681.XU Active CN216143379U (en) 2020-09-28 2020-12-18 Non-excavation prosthetic devices that double-walled bellows part is incomplete sinks

Country Status (1)

Country Link
CN (1) CN216143379U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112066151A (en) * 2020-09-28 2020-12-11 新疆鼎立非开挖工程有限公司 Trenchless repair device and repair method for partial incomplete collapse of double-wall corrugated pipe

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112066151A (en) * 2020-09-28 2020-12-11 新疆鼎立非开挖工程有限公司 Trenchless repair device and repair method for partial incomplete collapse of double-wall corrugated pipe

Similar Documents

Publication Publication Date Title
US6588983B1 (en) Trenchless pipe replacement apparatus and technique
US5190705A (en) Method for lining large-diameter pipes
CN112066151A (en) Trenchless repair device and repair method for partial incomplete collapse of double-wall corrugated pipe
US9322503B2 (en) Nondestructive refurbishment of underground pipes
JPH0674879B2 (en) A method of repairing an inaccessible house sewer pipe by a remote control device operating in the main pipe.
CN216143379U (en) Non-excavation prosthetic devices that double-walled bellows part is incomplete sinks
CN112050024A (en) Trenchless repair device and repair method for partial complete collapse of double-wall corrugated pipe
EP0251607B1 (en) Sewer renovation
CN112727491B (en) Pipe jacking construction removes native device
JPH0893381A (en) Shielding excavator with variable section
AU2006284114A1 (en) Method and device for repairing underground old pipelines
CN212298127U (en) Non-excavation prosthetic devices that double-walled bellows part is totally collapsed
KR20090071919A (en) Apparatus for repairing the pipe of cleaning type
CN202627165U (en) Device for repairing completely collapsed and large-deformation pipes without excavating whole pipes
CN112431998B (en) Pipeline dislocation repairing method
CN213271591U (en) Locking ring supporting device for pipeline repair
KR102208712B1 (en) Non-excavation complex conduit repair method
CN217502789U (en) Prevent push pipe mounting structure of vertical disturbance of soil body
CN112267889B (en) Construction method for penetrating through filling material of molten cavity
CN219282756U (en) Supporting device for repairing pipeline
CN204532067U (en) The crack of a kind of compact conformation digs horizontal drill
CN216590902U (en) Monitoring device for tunnel jacking construction guiding
CN115750995B (en) Device and method for in-situ trenchless treatment of karst collapse risk points
CN219673666U (en) Municipal administration pipeline static pressure split tube prosthetic devices
CN220851253U (en) Pipeline deformation repairing device

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant
CP03 Change of name, title or address

Address after: 830000, Room 1503, 15th Floor, Building E, Phase II, Innovation Plaza, No. 2288 Siping Road, High tech Zone (New City District), Urumqi, Xinjiang Uygur Autonomous Region

Patentee after: Xinjiang Dingli Environmental Technology Co.,Ltd.

Address before: Room 1807, 18 / F, building 1, Tianhe new City Plaza, 38 Henan east road, Urumqi high tech Industrial Development Zone, Xinjiang Uygur Autonomous Region 830011

Patentee before: Xinjiang Dingli non Excavation Engineering Co.,Ltd.

CP03 Change of name, title or address