Trenchless repairing device and method for flattening deformation of large-diameter HDPE (high-density polyethylene) pipeline

文档序号:1670418 发布日期:2019-12-31 浏览:23次 中文

阅读说明:本技术 用于大管径hdpe管道压扁变形的非开挖修复装置及方法 (Trenchless repairing device and method for flattening deformation of large-diameter HDPE (high-density polyethylene) pipeline ) 是由 王复明 方宏远 赵鹏 潘艳辉 李斌 何航 于 2019-09-25 设计创作,主要内容包括:本发明提供一种用于大管径HDPE管道压扁变形的非开挖修复装置及方法。其中:非开挖修复装置包括:阻水设备、支撑结构、注浆设备、浸有树脂的内衬软管以及光固化设备,通过阻水设备形成施工空间,支撑结构支撑起变形管道,再对支撑结构与管道内壁缝隙及管外土体病害处注浆,再将浸有树脂的内衬软管,在空气加压作用下膨胀至紧贴在支撑结构内壁;最后通过光固化设备对浸有树脂的内衬软管光固化后形成CIPP光固化内衬。本发明提供的非开挖修复方法通过综合内衬钢环、高聚物注浆以及CIPP光固化等方法对HDPE管道压扁变形实施非开挖修复,并加固周边土体,能避免出现工后二次病害,尤其适用于直径大于800mm的大管径HDPE双壁波纹管道压扁变形的非开挖修复。(The invention provides a non-excavation repairing device and a non-excavation repairing method for flattening deformation of a large-diameter HDPE pipeline. Wherein: trenchless prosthetic devices include: the construction method comprises the following steps that a water blocking device, a supporting structure, grouting equipment, a lining hose soaked with resin and light curing equipment form a construction space through the water blocking device, the supporting structure supports a deformed pipeline, a gap between the supporting structure and the inner wall of the pipeline and a soil defect part outside the pipeline are grouted, and the lining hose soaked with the resin is expanded to be tightly attached to the inner wall of the supporting structure under the air pressurization effect; and finally, carrying out photocuring on the lining hose soaked with the resin by using photocuring equipment to form the CIPP photocuring lining. The trenchless repairing method provided by the invention implements trenchless repairing on the flattening deformation of the HDPE pipeline by comprehensively lining the steel ring, injecting high polymer, curing CIPP light and the like, and reinforces the surrounding soil body, can avoid secondary diseases after work, and is particularly suitable for trenchless repairing of the flattening deformation of the large-diameter HDPE double-wall corrugated pipeline with the diameter of more than 800 mm.)

1. A non-excavation prosthetic devices that is used for big pipe diameter HDPE pipeline to flatten deformation, its characterized in that includes: the device comprises water blocking equipment, a supporting structure, grouting equipment, a lining hose soaked with resin and light curing equipment; wherein:

the water stopping device is used for stopping water to form a construction space and comprises a water stopping air bag and an air compressor connected with an inflation inlet of the water stopping air bag, and the water stopping air bag is arranged at the upstream of the inlet inspection well;

the supporting structure is mainly used for supporting a deformed pipeline and comprises an upper arc-shaped fixed steel plate, a lower arc-shaped fixed steel plate and a telescopic supporting rod; the top center positions of the upper arc-shaped fixed steel plate and the lower arc-shaped fixed steel plate are respectively provided with a grouting hole, the grouting holes are used for grouting equipment to go deep into the surface of the steel plate for high polymer grouting, and the grouting holes are also used for connecting the upper end and the lower end of the telescopic support rod with the upper arc-shaped fixed steel plate and the lower arc-shaped fixed steel plate through fixing screws; the supporting structure further comprises a left arc-shaped fixing steel plate and a right arc-shaped fixing steel plate, spiral holes are reserved in the upper arc-shaped fixing steel plate, the lower arc-shaped fixing steel plate, the left arc-shaped fixing steel plate and the right arc-shaped fixing steel plate, and adjacent arc-shaped fixing steel plates are sequentially and fixedly connected through the reserved spiral holes and expansion screws to form a steel ring lining structure for supporting the pipeline;

the grouting equipment is used for inserting the grouting holes into gaps between the steel ring lining structure and the inner wall of the pipeline and grouting soil outside the pipeline;

the lining hose soaked with resin can be expanded to be tightly attached to the inner wall of the steel ring lining structure of the supporting structure under the air pressurization effect;

and the photocuring equipment is used for forming the CIPP photocuring lining after photocuring the lining hose soaked with the resin.

2. The trenchless rehabilitation device for flattening deformation of large-diameter HDPE pipelines according to claim 1,

the telescopic support rod mainly comprises an upper fixing piece, a lower fixing piece and a telescopic piece, wherein the telescopic piece is a threaded rod with external threads, the upper fixing piece and the lower fixing piece are of hollow structures, and internal threads corresponding to the external threads of the threaded rod are arranged on the inner wall of each hollow structure; the two ends of the telescopic piece are respectively in threaded connection with the upper fixing piece and the lower fixing piece, and the length of the whole telescopic supporting rod is adjusted by rotating inwards and outwards;

the fixed screw sets up respectively in the upper end of last mounting, the lower extreme of lower mounting, and fixed screw and slip casting hole cooperation realize flexible bracing piece and last arc fixed steel sheet, the connection of arc fixed steel sheet down.

3. The trenchless rehabilitation device for crush deformation of large-diameter HDPE pipes according to claim 1 or 2,

the grouting equipment comprises a portable grouting gun, a grouting pipe and an external grouting machine, wherein the portable grouting gun is connected with the external grouting machine through the grouting pipe, and grouting is performed on a gap between the steel ring lining structure and the inner wall of the pipeline and a soil defect part outside the pipeline through inserting a grouting hole.

4. The trenchless rehabilitation device for crush deformation of large-diameter HDPE pipes according to claim 1 or 2,

the light curing equipment comprises a lamp chain formed by connecting at least two ultraviolet lamps in series, each ultraviolet lamp is connected with at least two sliding rollers, the sliding rollers are connected with the shell of the ultraviolet lamp through connecting rods, one end of the lamp chain of the ultraviolet lamps is electrically connected with the outside through a cable, and the other end of the lamp chain of the ultraviolet lamps is connected with a traction steel wire rope.

5. The trenchless rehabilitation device for flattening deformation of large-diameter HDPE pipelines according to claim 4,

the connecting rod in the light curing equipment is a telescopic connecting rod and consists of a plurality of sections of casing pipes, and one end of the connecting rod, which is connected with the ultraviolet lamp, is connected with the shell of the ultraviolet lamp through an angle regulator.

6. The trenchless rehabilitation device for flattening deformation of large-diameter HDPE pipelines according to claim 5,

the ultraviolet lamps are rigidly connected in series, only two ultraviolet lamps at the extreme end of the lamp chain are respectively connected with at least two sliding idler wheels, and the sliding idler wheels are connected with the shells of the ultraviolet lamps through connecting rods.

7. The trenchless repairing method for the trenchless repairing device for the flattening deformation of the HDPE pipeline with the large diameter as claimed in any one of claims 1 to 6 is characterized by comprising the following steps:

s1, placing the water-stopping air bag into the upstream position of the in-pipe inspection well from the inlet inspection well, and inflating the water-stopping air bag by using an air compressor outside the HDPE pipe to block water to form a construction space, so that construction personnel can conveniently enter the pipe;

s2, cleaning the flattened and deformed part of the HDPE pipeline at the flattened and deformed position of the HDPE pipeline to remove sludge impurities;

s3, connecting the telescopic supporting rod with the upper arc-shaped fixed steel plate and the lower arc-shaped fixed steel plate through a reserved grouting hole and a fixed screw to form a supporting device, adjusting the length of the telescopic supporting rod according to the inner diameter of the HDPE pipeline, and supporting the deformed HDPE pipeline by using the upper arc-shaped fixed steel plate and the lower arc-shaped fixed steel plate of the supporting structure;

s4, assembling the left arc-shaped fixing steel plate and the right arc-shaped fixing steel plate with the upper arc-shaped fixing steel plate and the lower arc-shaped fixing steel plate through bolt holes and expansion screws reserved on the surfaces of the arc-shaped fixing steel plates to form a steel ring lining structure, and supporting the HDPE pipeline;

s5, inserting grouting equipment into the grouting holes of the arc-shaped fixed steel plates, starting the grouting equipment to perform primary high polymer grouting to form primary high polymer grouting objects, enabling the steel ring lining structure to be attached to the inner wall of the HDPE pipeline, and then removing the telescopic supporting rods;

s6, repeating the step S5 until the fixed steel plate of the HDPE pipeline damaged section is assembled, and forming a steel ring lining pipe structure with a certain length; then inserting a handheld electric drill into the grouting hole of the upper arc-shaped fixed steel plate, drilling the HDPE pipe to the soil body disease part outside the pipe, inserting grouting equipment into the drilled hole to the soil body disease part, and starting the grouting equipment to perform secondary high polymer grouting to form secondary high polymer grouting matter to stabilize the soil body;

s7, pulling out the grouting equipment after the second high polymer grouting is finished; then pulling the lining hose soaked with the resin into the HDPE pipeline by a turnover lining method, and then expanding the lining hose soaked with the resin by an air pressurization method and tightly attaching the lining hose to the steel ring lining structure;

s8, pulling in the photocuring equipment from one end of the HDPE pipe, pulling out the photocuring equipment from the other end of the HDPE pipe, and fully curing the lining hose soaked with the resin and attaching the lining hose to the inner wall of the steel ring lining structure to form a CIPP photocuring lining;

and S9, pulling out the photocuring equipment after the CIPP photocuring is finished.

8. The trenchless rehabilitation method of claim 7,

the grouting equipment comprises a portable grouting gun, a grouting pipe and an external grouting machine, wherein the portable grouting gun is connected with the external grouting machine through the grouting pipe; in particular, the amount of the solvent to be used,

in step S5, connecting a portable grouting gun to the grout outlet end of a grouting pipe, connecting the grouting pipe to an external grouting machine, inserting the portable grouting gun into the grouting holes of the upper arc-shaped fixed steel plate and the lower arc-shaped fixed steel plate, and starting the grouting machine to perform primary high polymer grouting to form primary high polymer grouting matter;

in step S6, the portable grouting gun is removed, the grouting pipe is directly inserted into the borehole to the soil damage, and the grouting machine is started to perform the second high polymer grouting to form the second high polymer grouting material to stabilize the soil.

9. The trenchless rehabilitation method of claim 8,

the light curing equipment comprises a lamp chain formed by connecting at least two ultraviolet lamps in series, each ultraviolet lamp is respectively connected with at least two sliding rollers, the sliding rollers are connected with the shell of the ultraviolet lamp through connecting rods, one end of the lamp chain of the ultraviolet lamps is electrically connected with the outside through a cable for supplying power, the other end of the lamp chain of the ultraviolet lamps is connected with a traction steel wire rope, and the ultraviolet lamps are dragged to move and irradiate by pulling the steel wire rope;

in step S8, the whole light curing device is pulled in from one end of the HDPE pipe, the ultraviolet lamp chain is moved and irradiated in the resin-impregnated lining hose by using the steel wire rope and the sliding roller, and finally pulled out to the other end of the HDPE pipe, and the resin-impregnated lining hose is fully cured and attached to the inner wall of the steel ring lining structure by irradiation of the ultraviolet lamp to form the CIPP light-cured lining.

Technical Field

The invention relates to the technical field of trenchless repair of pipelines, in particular to a trenchless repair process for flattening deformation of a large-diameter HDPE pipeline, and particularly relates to a trenchless repair device and method suitable for flattening deformation of a large-diameter HDPE double-wall corrugated pipeline with the diameter of more than 800 mm.

Background

With the development of modern society, urban underground pipe networks occupy more and more important positions in the life of residents, wherein HDPE double-wall corrugated pipes are widely applied to the municipal drainage field by virtue of excellent physical, chemical and mechanical properties of the HDPE double-wall corrugated pipes. The HDPE double-wall corrugated pipe is mainly made of HDPE high-density polyethylene, belongs to a flexible pipe, and bears upper load together with soil. However, the backfill and rolling of the soil around the pipeline are difficult to ensure compaction, which causes eccentric compression of the corrugated pipe, if the upper load is too large, the HDPE double-wall corrugated pipe is easy to be flattened and deformed, which finally causes structural damage of the pipeline, affects the normal operation of the daily water and sewage delivery in cities, and even threatens the safety of the upper ground structure.

The existing repair of HDPE double-wall corrugated pipe comprises excavation repair and trenchless repair:

1. the excavation repairing process is a method for replacing a new pipe from an excavated soil body to a pipeline disease place, belongs to the traditional repairing process, has great influence on the environment and traffic, and can not meet the development requirement of modern cities.

2. The non-excavation repairing process is a new construction technology for laying, replacing and repairing various underground pipelines under the condition of excavating a tiny part of the earth surface (generally meaning small-area excavation of an inlet and an outlet) by utilizing various rock-soil drilling equipment and technical means in a guiding mode, a directional drilling mode and the like, does not obstruct traffic, does not damage green land and vegetation, does not influence normal life and work order of shops, hospitals, schools and residents, and solves the problem that the interference of traditional excavation construction on the life of the residents, the damage and the adverse effect on the traffic, the environment and the foundation of surrounding buildings, so that the non-excavation repairing process has higher social and economic effects. The trenchless repairing process mainly comprises a penetration method, a normal position solidification method (CIPP), a pipe crushing method, a winding method and the like, and has the advantages of high construction speed, small influence on the environment and the like. However, the non-excavation methods cannot repair the deformation of the pipeline except for the pipe crushing method, the repaired structure is still in an eccentric compression state, secondary diseases are easy to occur, and although a new pipeline can be formed at the original pipeline position by the pipe crushing method, the vibration generated in the construction process has a large influence on the upper structure and the surrounding pipelines.

Disclosure of Invention

Aiming at the problems, the invention provides a non-excavation repairing device and a non-excavation repairing method for flattening deformation of a large-diameter HDPE pipeline, which are mainly used for implementing non-excavation repairing on the flattening deformation of the HDPE pipeline by integrating methods such as a steel ring lining structure, high polymer grouting, CIPP photocuring and the like, and reinforcing a peripheral soil body to avoid secondary diseases after work. The method is particularly suitable for the non-excavation repair of the flattening deformation of the large-diameter HDPE double-wall corrugated pipeline with DN being more than 800 mm.

In order to achieve the purpose, the invention adopts the following technical scheme:

the utility model provides a non-excavation prosthetic devices that is used for big pipe diameter HDPE pipeline to flatten deformation includes: the device comprises water blocking equipment, a supporting structure, grouting equipment, a lining hose soaked with resin and light curing equipment; wherein:

the water stopping device is used for stopping water to form a construction space and comprises a water stopping air bag and an air compressor connected with an inflation inlet of the water stopping air bag, and the water stopping air bag is arranged at the upstream of the inlet inspection well;

the supporting structure is mainly used for supporting a deformed pipeline and comprises an upper arc-shaped fixed steel plate, a lower arc-shaped fixed steel plate and a telescopic supporting rod; the top center positions of the upper arc-shaped fixed steel plate and the lower arc-shaped fixed steel plate are respectively provided with a grouting hole, the grouting holes are used for grouting equipment to go deep into the surface of the steel plate for high polymer grouting, and the grouting holes are also used for connecting the upper end and the lower end of the telescopic support rod with the upper arc-shaped fixed steel plate and the lower arc-shaped fixed steel plate through fixing screws; the supporting structure further comprises a left arc-shaped fixing steel plate and a right arc-shaped fixing steel plate, spiral holes are reserved in the upper arc-shaped fixing steel plate, the lower arc-shaped fixing steel plate, the left arc-shaped fixing steel plate and the right arc-shaped fixing steel plate, and adjacent arc-shaped fixing steel plates are sequentially and fixedly connected through the reserved spiral holes and expansion screws to form a steel ring lining structure for supporting the pipeline;

the grouting equipment is used for inserting the grouting holes into gaps between the steel ring lining structure and the inner wall of the pipeline and grouting soil outside the pipeline;

the lining hose soaked with resin can be expanded to be tightly attached to the inner wall of the steel ring lining structure of the supporting structure under the air pressurization effect;

and the photocuring equipment is used for forming the CIPP photocuring lining after photocuring the lining hose soaked with the resin.

Further, the air conditioner is provided with a fan,

specifically, the telescopic supporting rod mainly comprises an upper fixing piece, a lower fixing piece and a telescopic piece, wherein the telescopic piece is a threaded rod with external threads, the upper fixing piece and the lower fixing piece are of hollow structures, and internal threads corresponding to the external threads of the threaded rod are arranged on the inner wall of each hollow structure; the two ends of the telescopic piece are respectively in threaded connection with the upper fixing piece and the lower fixing piece, and the length of the whole telescopic supporting rod is adjusted by rotating inwards and outwards;

the fixed screw sets up respectively in the upper end of last mounting, the lower extreme of lower mounting, and fixed screw and slip casting hole cooperation realize flexible bracing piece and last arc fixed steel sheet, the connection of arc fixed steel sheet down.

Further, the air conditioner is provided with a fan,

the grouting equipment comprises a portable grouting gun, a grouting pipe and an external grouting machine, wherein the portable grouting gun is connected with the external grouting machine through the grouting pipe and is used for inserting the grouting hole into a gap between the steel ring lining structure and the inner wall of the pipeline and grouting at an external soil defect position.

When in use, the grouting machine is generally mounted on a special grouting vehicle.

Further, the air conditioner is provided with a fan,

the light curing equipment comprises a lamp chain formed by connecting at least two ultraviolet lamps in series, each ultraviolet lamp is connected with at least two sliding rollers, the sliding rollers are connected with the shell of the ultraviolet lamp through connecting rods, one end of the lamp chain of the ultraviolet lamps is electrically connected with the outside through a cable, and the other end of the lamp chain of the ultraviolet lamps is connected with a traction steel wire rope.

The ultraviolet lamp is connected with an external power supply through a cable to realize electrification, and the lamp chain is pulled to move in the lining hose through a traction steel wire rope to cure the lining hose soaked with resin to form a CIPP photocuring lining; the sliding roller is used for driving the ultraviolet lamp to roll and irradiate in the inner wall of the lining soft tube, on one hand, the light curing equipment provided by the invention can reduce the friction force in the moving process of the light curing equipment through the sliding roller and is easier to move, on the other hand, the sliding roller and the ultraviolet lamp are connected through the connecting rod, the lamp chain is kept on the central shaft of the pipeline, the irradiation uniformity can be ensured, and the curing effect is improved.

Further, the air conditioner is provided with a fan,

in order to enable the light curing equipment to be suitable for pipelines with different pipe diameters, the connecting rod in the light curing equipment is a telescopic connecting rod and consists of a plurality of sections of sleeves, and one end of the connecting rod, which is connected with the ultraviolet lamp, is connected with the shell of the ultraviolet lamp through an angle regulator; through the length of adjusting the connecting rod and with the angle of connection of ultraviolet lamp shell, the adaptation slides at the pipeline inner wall of different pipe diameters size.

Further, the air conditioner is provided with a fan,

the ultraviolet lamps are rigidly connected in series, only two ultraviolet lamps at the extreme end of the lamp chain are respectively connected with at least two sliding idler wheels, and the sliding idler wheels are connected with the shells of the ultraviolet lamps through connecting rods.

Preferably, the length of each connecting rod is unanimous with ultraviolet lamp shell's angle of connection, makes the lamp chain can be located the center pin of pipeline for illumination is more even, and the degree of solidification is unanimous.

Preferably, the number of the sliding rollers connected to each ultraviolet lamp is 3, and the sliding rollers are triangular, so that the structure is stable, and the sliding on the inner wall of the pipeline is more stable and smooth.

The invention also provides a trenchless repairing method of the trenchless repairing device adopting the flattening deformation of the large-diameter HDPE pipeline, which comprises the following steps:

s1, placing the water-stopping air bag into the upstream position of the in-pipe inspection well from the inlet inspection well, and inflating the water-stopping air bag by using an air compressor outside the HDPE pipe to block water to form a construction space, so that construction personnel can conveniently enter the pipe;

s2, cleaning the flattened and deformed part of the HDPE pipeline at the flattened and deformed position of the HDPE pipeline to remove sludge impurities;

s3, connecting the telescopic supporting rod with the upper arc-shaped fixed steel plate and the lower arc-shaped fixed steel plate through a reserved grouting hole and a fixed screw to form a supporting device, adjusting the length of the telescopic supporting rod according to the inner diameter of the HDPE pipeline, and supporting the deformed HDPE pipeline by using the upper arc-shaped fixed steel plate and the lower arc-shaped fixed steel plate of the supporting structure;

s4, assembling the left arc-shaped fixing steel plate and the right arc-shaped fixing steel plate with the upper arc-shaped fixing steel plate and the lower arc-shaped fixing steel plate through bolt holes and expansion screws reserved on the surfaces of the arc-shaped fixing steel plates to form a steel ring lining structure, and supporting the HDPE pipeline;

s5, inserting grouting equipment into the grouting holes of the arc-shaped fixed steel plates, starting the grouting equipment to perform primary high polymer grouting to form primary high polymer grouting objects, enabling the steel ring lining structure to be attached to the inner wall of the HDPE pipeline, and then removing the telescopic supporting rods;

s6, repeating the step S5 until the fixed steel plate of the HDPE pipeline damaged section is assembled, and forming a steel ring lining pipe structure with a certain length; then inserting a handheld electric drill into the grouting hole of the upper arc-shaped fixed steel plate, drilling the HDPE pipe to the soil body disease part outside the pipe, inserting grouting equipment into the drilled hole to the soil body disease part, and starting the grouting equipment to perform secondary high polymer grouting to form secondary high polymer grouting matter to stabilize the soil body;

s7, pulling out the grouting equipment after the second high polymer grouting is finished; then pulling the lining hose 9 soaked with the resin into the HDPE pipeline by an overturning lining method, and then expanding the lining hose soaked with the resin by an air pressurization method and clinging to the steel ring lining structure;

s8, pulling in the photocuring equipment from one end of the HDPE pipe, pulling out the photocuring equipment from the other end of the HDPE pipe, and fully curing the lining hose soaked with the resin and attaching the lining hose to the inner wall of the steel ring lining structure to form a CIPP photocuring lining;

and S9, pulling out the photocuring equipment after the CIPP photocuring is finished.

In the method, because the high polymer has diffusivity, the gap between the steel plate and the pipe wall can be quickly filled, and in the step S5, the first grouting is generally performed on the grouting holes of the upper and lower house type fixed steel plates; in step S6, for the second grouting, since the flattened deformation of the HDPE pipe is generally located above the pipe, only the grouting holes of the upper arc-shaped fixed steel plate need to be drilled and grouted.

Further, the air conditioner is provided with a fan,

the grouting equipment comprises a portable grouting gun, a grouting pipe and an external grouting machine, wherein the portable grouting gun is connected with the external grouting machine through the grouting pipe; in particular, the amount of the solvent to be used,

in step S5, connecting a portable grouting gun to the grout outlet end of a grouting pipe, connecting the grouting pipe to an external grouting machine, penetrating the portable grouting gun into grouting holes of each arc-shaped fixed steel plate, and starting the grouting machine to perform primary high polymer grouting;

in step S6, the portable grouting gun is taken down, the grouting pipe is directly inserted into the borehole to the soil body damage, and the grouting machine is started to perform the second high polymer grouting to stabilize the soil body.

In step S5, high polymer grouting is performed on the gap between the steel ring lining structure and the inner wall of the pipeline, the gap is generally small in space and needs a portable grouting gun, in step S6, grouting is performed on the damaged part of the soil outside the pipeline, the grouting space and the grouting quantity are increased, and a grouting pipe is adopted to directly penetrate into the drill hole for grouting.

Further, the air conditioner is provided with a fan,

the light curing equipment comprises a lamp chain formed by connecting at least two ultraviolet lamps in series, each ultraviolet lamp is respectively connected with at least two sliding rollers, the sliding rollers are connected with the shell of the ultraviolet lamp through connecting rods, one end of the lamp chain of the ultraviolet lamps is electrically connected with the outside through a cable for supplying power, the other end of the lamp chain of the ultraviolet lamps is connected with a traction steel wire rope, and the ultraviolet lamps are dragged to move and irradiate by pulling the steel wire rope;

in step S8, the whole light curing device is pulled in from one end of the HDPE pipe, the ultraviolet lamp chain is moved and irradiated in the resin-impregnated lining hose by using the traction steel wire rope and the sliding roller, and finally pulled out to the other end of the HDPE pipe, and the resin-impregnated lining hose 9 is fully cured and attached to the inner wall of the steel ring lining structure by irradiation of the ultraviolet lamp to form the CIPP light-cured lining.

In the specific construction process, the method of the invention should be noted as follows:

in step S6, when drilling with the handheld electric drill, the position and direction of the drilled hole should be ensured at any time to avoid the deviation and the impact on the grouting position of the high polymer grouting.

In step S7, before pulling in the resin-soaked lining hose, a pad film should be laid in the original HDPE pipe and fixed at two ends of the original pipe to ensure that the resin-soaked lining hose is not damaged.

In step S8, the expansion of the lining hose requires compressed air, and the value thereof requires a control device and a pressure gauge for detection, and strictly complies with the relevant value.

Compared with the prior art, the invention has the beneficial effects that:

1. the invention provides a non-excavation repair device for flattening deformation of a large-diameter HDPE pipeline, which comprises: the device comprises a water blocking device, a supporting structure, a portable grouting gun, a lining hose soaked with resin and a light curing device. Forming a construction space by water-blocking equipment, supporting a deformed pipeline by a supporting structure, grouting a gap between the supporting structure and the inner wall of the pipeline and a soil defect part outside the pipeline, and expanding a lining hose soaked with resin to be tightly attached to the inner wall of the supporting structure under the action of air pressurization; and finally, carrying out photocuring on the lining hose soaked with the resin by using photocuring equipment to form the CIPP photocuring lining.

Compared with the prior art, the trenchless repairing process provided by the invention can form a HDPE pipeline flattening deformation repairing structure combining a steel ring lining structure, high polymer grouting and CIPP lining hose, can realize trenchless repairing of flattening deformation of the HDPE pipeline with large pipe diameter, can repair flattening deformation of the HDPE double-wall corrugated pipeline, can also reinforce peripheral soil mass, can avoid secondary diseases after construction, and is particularly suitable for trenchless repairing of flattening deformation of the HDPE double-wall corrugated pipeline with large pipe diameter larger than 800 mm.

The CIPP reverse lining method repairing technology is characterized by that under the action of water pressure or air pressure a specially-made polyester felt resin lining pipe is laid on the internal surface of original pipeline, and tightly adhered together with the internal wall of original pipeline by means of special adhesive so as to attain the goal of repairing (renewing) pipeline, and the quality of conveying medium can not be influenced by lining pipe material. The CIPP inversion lining repair lining pipe generally adopts a high-strength composite polyester felt material and a high-strength unsaturated polyester resin of German insiduform company.

Drawings

In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.

FIG. 1 is a schematic longitudinal sectional view of a water stop airbag and a support structure (excluding left and right arc-shaped fixing steel plates);

FIG. 2 is a detailed view of a portion of the support structure (excluding the left and right arc-shaped fixed steel plates);

FIG. 3 is a schematic cross-sectional view of the entire support structure installed in a duct;

FIG. 4 is a schematic longitudinal section of a steel ring lining pipe structure formed by splicing a plurality of steel ring lining structures in a pipe;

FIG. 5 is a schematic structural view of a steel ring lining pipe structure;

FIG. 6 is a schematic longitudinal section of a soil mass defect site outside an outward pipe;

FIG. 7 is a cross-sectional view of a steel ring lining structure and polymer grouting;

FIG. 8 is a schematic longitudinal cross-sectional view of a CIPP light cure repair;

FIG. 9 is a schematic view of a resin-impregnated lining hose;

fig. 10 is a schematic structural view of the CIPP photocuring apparatus.

Reference is made to the accompanying drawings in which: the grouting device comprises a first high polymer grouting object 1, a second high polymer grouting object 2, a steel ring lining structure 3, an upper arc-shaped fixed steel plate 301, a lower arc-shaped fixed steel plate 302, a left arc-shaped fixed steel plate 303, a right arc-shaped fixed steel plate 304, a telescopic supporting rod 4, an upper fixing part 401, a lower fixing part 402, a telescopic part 403, a fixed screw 5, a grouting pipe 6, a grouting machine 7, a water-stopping air bag 8, an expansion screw 15, a lining hose 9 soaked with resin, an ultraviolet lamp 11, a sliding roller 10, a cable 12, a grouting hole 13, a portable grouting gun 14, an air compressor 16 and a connecting rod 17.

Detailed Description

In order to better illustrate the content of the invention, the invention is further verified by the following specific examples. It should be noted that the examples are given for the purpose of describing the invention more directly and are only a part of the present invention, which should not be construed as limiting the invention in any way.

In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", etc., indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.

In the description of the present invention, it should also be noted that, unless otherwise explicitly specified or limited, the terms "disposed," "mounted," "connected," and "connected" are to be construed broadly and may, for example, be fixedly connected, detachably connected, or integrally connected; can be mechanically or electrically connected; they may be connected directly or indirectly through intervening media, or they may be interconnected between two elements. The specific meanings of the above terms in the present invention can be understood by those skilled in the art according to specific situations.

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