WO2020050531A1 - Dispositif de réparation d'intérieur de tuyaux - Google Patents

Dispositif de réparation d'intérieur de tuyaux Download PDF

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Publication number
WO2020050531A1
WO2020050531A1 PCT/KR2019/010749 KR2019010749W WO2020050531A1 WO 2020050531 A1 WO2020050531 A1 WO 2020050531A1 KR 2019010749 W KR2019010749 W KR 2019010749W WO 2020050531 A1 WO2020050531 A1 WO 2020050531A1
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WO
WIPO (PCT)
Prior art keywords
pipe
coupling
unit
coupling unit
passage forming
Prior art date
Application number
PCT/KR2019/010749
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English (en)
Korean (ko)
Inventor
이처례
Original Assignee
이처례
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 이처례 filed Critical 이처례
Publication of WO2020050531A1 publication Critical patent/WO2020050531A1/fr

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F16ENGINEERING ELEMENTS AND UNITS; GENERAL MEASURES FOR PRODUCING AND MAINTAINING EFFECTIVE FUNCTIONING OF MACHINES OR INSTALLATIONS; THERMAL INSULATION IN GENERAL
    • F16LPIPES; JOINTS OR FITTINGS FOR PIPES; SUPPORTS FOR PIPES, CABLES OR PROTECTIVE TUBING; MEANS FOR THERMAL INSULATION IN GENERAL
    • F16L55/00Devices or appurtenances for use in, or in connection with, pipes or pipe systems
    • F16L55/16Devices for covering leaks in pipes or hoses, e.g. hose-menders
    • F16L55/162Devices for covering leaks in pipes or hoses, e.g. hose-menders from inside the pipe
    • F16L55/163Devices for covering leaks in pipes or hoses, e.g. hose-menders from inside the pipe a ring, a band or a sleeve being pressed against the inner surface of the pipe
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03FSEWERS; CESSPOOLS
    • E03F3/00Sewer pipe-line systems
    • E03F3/06Methods of, or installations for, laying sewer pipes
    • E03F2003/065Refurbishing of sewer pipes, e.g. by coating, lining
    • EFIXED CONSTRUCTIONS
    • E03WATER SUPPLY; SEWERAGE
    • E03FSEWERS; CESSPOOLS
    • E03F3/00Sewer pipe-line systems
    • E03F3/06Methods of, or installations for, laying sewer pipes

Definitions

  • the present invention relates to a piping internal repair device capable of forming a flow path inside a piping damaged by corrosion or damage by installing it as a separate support structure inside the piping.
  • a reinforcing bar or a frame is bent and installed inside the pipe, an additional resin plate is combined with the reinforcing bar to form a partition wall in a cylinder type, and then a repair material is filled between the resin plate and the inner surface of the pipe.
  • Curing methods have been widely used.
  • fluid may penetrate into the repair material through the gap between the resin plates, thereby reducing the durability of the repair material and shortening the repair cycle.
  • the conventional repair device for piping was performed by repairing the pipe by installing a resin plate on the inner surface of the pipe and filling the repair material therebetween, but maintaining the durability even if repaired due to the relatively weak coupling holding force of the resin plate. It is a difficult situation.
  • the present invention is an invention devised to solve the above-mentioned problems of the prior art, and can effectively and quickly repair the inside of the pipe even if the internal damage of the pipe is severe, and repair the inside of the pipe so as to have robust durability after repair. It has an object to provide a device.
  • the internal piping repair apparatus of the present invention for achieving the above object is formed with a hollow inside to have a shape corresponding to the inner circumferential surface of the piping, and includes a plurality of first coupling protrusions protruding inside the piping , It is formed so as to contact at least a portion of the inner circumferential surface of the pipe, a plurality of structural units are installed spaced apart along the longitudinal direction of the pipe, a plurality of second coupling protrusions engaged with the first coupling protrusions, and the inside of the pipe
  • a first coupling unit including a protruding first fixed coupling portion and a first passage forming portion, the first coupling unit being elongated along the longitudinal direction of the pipe and coupled across a plurality of structural units and the second coupling with the first fixed coupling portion It is coupled to the first coupling unit including a fixed coupling portion and a second passage forming portion coupled to the first passage forming portion to form a connection passage therein, and inside the pipe.
  • first coupling protrusion and the second coupling protrusion are formed to gradually increase in width toward the outside, and may be formed to mesh with each other.
  • both ends are connected to the structural unit spaced apart along the longitudinal direction of the pipe may further include a connection unit for maintaining the spacing between the structural units.
  • the structural unit may include a coupling hole to which the connection unit is coupled.
  • first fixing coupling portion includes a pair of first fixing protrusions facing each other
  • second fixing coupling portion may include a second fixing protrusion inserted and fixed between the pair of first fixing protrusions.
  • the first fixed coupling portion further includes an auxiliary protrusion protruding between the pair of first fixed protrusions
  • the second fixed protrusion is provided with a pair and inserted between the pair of first fixed protrusions
  • An insertion groove into which the auxiliary protrusion is inserted may be formed between the pair of second fixing protrusions.
  • the second passage forming portion may extend long in the direction of the first passage forming portion, and may include a pair of passage forming protrusions spaced apart from each other to form the connecting passage between them.
  • an engaging groove is formed in the passage forming protrusion, and the first passage forming part may include an engaging protrusion engaged with the engaging groove.
  • first passage forming portion may be recessed toward the structural unit, and may include a recessed groove into which the pair of passage forming protrusions are inserted.
  • a plurality of the first coupling units may be provided to be interconnected along the inner circumference of the structural unit.
  • first connection portion coupled to the other end of another adjacent first coupling unit is formed at one end of the first coupling unit, and the other end of the first coupling unit is coupled to one end of another adjacent first coupling unit.
  • a second connection can be formed.
  • first connection portion may be formed in a protrusion shape protruding outwardly
  • second connection portion may be formed in a groove shape in which the first connection portion is inserted.
  • a plurality of the second coupling unit may be provided and may be formed to be interconnected along the inner circumference of the first coupling unit.
  • a contact portion in contact with another adjacent second coupling unit may be formed at one end and the other end of the second coupling unit.
  • the contact portion may include a third extension.
  • a fixing unit for wrapping and fixing a pair of contacts in contact with each other of a pair of second coupling units adjacent to each other.
  • the piping internal repair apparatus of the present invention for solving the above problems has the following effects.
  • the present invention is formed along the inner circumference of the piping, including a structural unit spaced apart along the longitudinal direction of the piping, a first coupling unit and a second coupling unit coupled to the structural unit, partitioning the damaged area of the piping Therefore, there is an advantage in that the piping can be repaired by filling a separate filler.
  • a wide connection passage is formed between the first coupling unit and the second coupling unit, and there is an advantage that various configurations such as pipes and optical cables can be accommodated therein.
  • FIG. 1 is a view showing a state in which a structural unit is installed inside a damaged pipe in a pipe internal repair apparatus according to an embodiment of the present invention
  • FIG. 2 is a view showing a state in which a plurality of structural units of FIG. 1 are spaced apart along a longitudinal direction in a maintenance area of a pipe;
  • FIG. 3 is a view showing a state of a structural unit in a piping internal repair apparatus according to an embodiment of the present invention
  • FIG. 4 is a view showing a state of the first coupling unit in the piping internal repair apparatus according to an embodiment of the present invention
  • FIG. 5 is a view showing a state in which the first coupling unit is coupled to the structural unit in the piping internal repair apparatus according to an embodiment of the present invention
  • FIG. 6 is a view showing a state of the second coupling unit in the piping internal repair apparatus according to an embodiment of the present invention.
  • FIG. 7 is a view showing a state in which the second coupling unit is coupled to the first coupling unit in the piping internal repair apparatus according to an embodiment of the present invention
  • FIG. 8 is a view showing a state in which a fixing unit is coupled to a pair of second coupling units adjacent to each other in a pipe internal repair apparatus according to an embodiment of the present invention
  • FIG. 9 is a view showing a state in which the filling material is injected between the inner surface of the pipe and the internal repair device according to an embodiment of the present invention.
  • FIG. 10 is a view showing a state in which the second coupling unit is coupled to the first coupling unit in the piping internal repair apparatus according to another embodiment of the present invention.
  • the internal repair device for piping is a device for installing a separate structure on the inner surface of a corroded or damaged pipe (P) to form a flow path and filling and repairing a filling material (I) between the inner surface of the pipe (P) and the structure. Regarding, it will be described with reference to the accompanying Figures 1 to 10.
  • the piping internal repair apparatus may largely include a structural unit 100, a first coupling unit 200, a second coupling unit 300 and a fixing unit 400.
  • the structural unit 100 is a configuration that is first installed in the pipe (P), has a corresponding circumference according to the radius of the pipe (P), at least a portion is disposed in contact with the inner surface of the pipe (P).
  • the pipe (P) is illustrated as having a circular cross-section, but this is not limited by this embodiment, and the internal piping repair device of the present invention is also provided in various types of pipes (P), such as polygonal or horseshoe-shaped. Of course it can be applied.
  • the structural unit 100 is configured to be capable of adjusting its length corresponding to the inner shape and perimeter of the pipe P as shown in FIG. 1.
  • the cross-sectional shape of the pipe (P) in the present invention is circular, corresponding to the structural unit 100 is configured to form a hollow (A) in the form of a ring, but unlike this, the cross-section of the pipe (P) Even if the shape is variously formed, such as a polygon or a horseshoe shape, the shape can be adjusted correspondingly.
  • the structural unit 100 is formed in a ring shape and a hollow A is formed in the center, and has a predetermined thickness in some sections of the pipe P and is disposed along the circumference.
  • the structural unit 100 is formed in a relatively smaller diameter than the inner circumference of the inner surface of the pipe (P) in consideration of the step difference or projection of the inner surface of the pipe (P) is stably the pipe (P) It is installed inside.
  • the outer circumference of the structural unit 100 is configured to be close to the inner circumference of the pipe P, but the inner surface of the pipe P is relatively small since it does not already form an intact surface. It is preferably formed.
  • the structural unit 100 configured as described above, as shown in FIGS. 1 and 3, a plurality of first coupling protrusions 120 protruding toward the inside of the pipe P and at least a portion of the pipe so as to contact the inner circumferential surface of the pipe It includes a structure forming portion 110 is formed, as shown in Figure 2 may be installed spaced apart in the longitudinal direction of the pipe.
  • the structural unit 100 may be integrally formed and have a hollow A in the form of a closed curve, or alternatively, a plurality of unit members may be formed, and each of these may be connected to form a closed curve. It may be.
  • the unit member 110 is divided into a plurality of pieces along the circumferential direction of the structural unit 100, each of which is continuously connected by a separate fixing means (not shown), the material of which is steel or alloy, etc. High rigidity material of can be used. In addition, an additional surface treatment may be performed to improve durability.
  • the structural unit 100 includes a plurality of first coupling protrusions 120 protruding inside the pipe P, and the first coupling protrusions 120 are the structure forming unit 110 It may be provided spaced apart from each other at regular intervals along the longitudinal direction of. Accordingly, between the first coupling protrusions 120 adjacent to each other, a first coupling groove 102 into which the second coupling protrusions 220 of the first coupling unit 200 to be described later is inserted may be formed.
  • the first coupling protrusion 120 is formed to gradually increase in width toward the outside, and accordingly, when the second coupling protrusion 220 is inserted into the first coupling groove 102, the The first coupling protrusion 120 and the second coupling protrusion 220 may be engaged with each other to maintain a fixed state so that they are not stably separated.
  • the structural unit 100 is composed of a plurality of unit members so that the entire circumferential length can be easily adjusted, and when installed, it can be assembled outside the pipe (P) or directly inside the pipe (P).
  • the structure forming unit 110 is disposed along the circumferential direction of the pipe P, and at least a portion of the pipe contacts the inner surface of the pipe P.
  • a contact surface 140 is formed in a direction in contact with the pipe (P), so that the load acting on the inner surface of the pipe (P) is distributed.
  • the structure forming unit 110 is configured to make surface contact with the inner surface of the pipe P by the contact surface 140, thereby preventing further damage of the pipe P.
  • the structure forming part 110 is formed so as to form a communication space (B) without partially contacting the inner surface of the pipe (P) so that the filler (I) is easily injected between the inner surface of the pipe (P) later You may.
  • the structural unit 100 configured as described above is formed in a ring shape and contacts the inner surface of the pipe P, and each of the structural units 100 is disposed spaced apart along the longitudinal direction of the pipe P.
  • the structural unit 100 is spaced apart along the longitudinal direction of the pipe (P), and at each point, the circumference may be adjusted in correspondence with the circumference of the inner surface of the pipe (P).
  • connection unit 400 is disposed between the structural units 100 in the pipe P, and is composed of a plurality to support the structural unit 100.
  • connection unit 400 is formed to be elongated in the form of a frame such as a rod or pipe, and both ends are fixedly coupled to the structural unit 100 spaced apart from each other to support the structural unit 100.
  • connection unit 400 serves as a spacer to maintain a separation distance between the structural units 100 adjacent in the axial direction, and both ends protrude in the form of protrusions to form coupling holes formed in the structural unit 100 ( 112).
  • connection units 400 may be provided along the inner circumference of the pipe P between adjacent structural units 100.
  • connection unit 400 may have a different length, or may be configured to be adjustable in length in the form of a pipe, and accordingly, the separation distance between the adjacent structural units 100 Regardless, they can be actively combined.
  • connection unit 400 serves to support the structural unit 100 so that it can be installed in a state maintaining a predetermined interval on the inner surface of the pipe P.
  • connection unit 400 corresponds to the degree of bending of the pipe P between adjacent structural units 100. It may be installed to be adjusted to have different lengths.
  • the first coupling unit 200 shown in FIGS. 4 and 5 is a component that is formed to be coupled to the inside of the structural unit 100, in particular, elongated along the longitudinal direction of the pipe (P) It can be combined across a plurality of structural units (100).
  • the first coupling unit 200 is divided into a plurality of members, and is supposed to be formed to be interconnected along the inner circumference of the structural unit 100, and the number of the first coupling unit 200 May be appropriately provided according to the site situation, such as the diameter of the pipe (P).
  • a first connection unit 250a coupled to the other end of another adjacent first coupling unit 200 is formed at one end of the first coupling unit 200, and the other end of the first coupling unit 200 is formed.
  • the second connection unit 250b coupled to one end of the other adjacent first coupling unit 200 has a form.
  • the first connection portion 250a is formed in a protruding shape protruding outward, and the second connection portion 250b is formed in a groove shape into which the first connection portion 250a is inserted, so that the first connection portion 250a is formed.
  • the connection unit 250a may be connected to the first coupling unit 200 in a manner that is inserted into the second connection unit 250b of the other first coupling unit 200.
  • first coupling unit 200 protrudes from the first base portion 210 and the first base portion 210 toward the structural unit 100 and meshes with the first coupling protrusion 120. It includes a plurality of second engaging projection 220.
  • the second coupling protrusions 220 may also be provided spaced apart from each other at regular intervals along the longitudinal direction of the first base part 210, similarly to the first coupling protrusions 120 described above. Accordingly, a second coupling groove 212 into which the first coupling protrusion 120 of the structural unit 100 is inserted may be formed between the second coupling protrusions 220 adjacent to each other.
  • the second coupling protrusion 220 is formed to gradually increase in width toward the outside, and accordingly, as shown in FIG. 5, the first coupling protrusion 120 is the second coupling groove 212 ), The first coupling protrusion 120 and the second coupling protrusion 220 are meshed with each other to maintain a fixed state so that they are not stably separated.
  • first coupling unit 200 may include a first fixed coupling portion 230 and a first passage forming portion 240 protruding from the first base portion 210 to the inside of the pipe.
  • the first fixed coupling portion 230 is connected to the second fixed coupling portion 330 of the second coupling unit 300 to be described later (see FIG. 6), the first coupling unit 200 and the second coupling unit ( 300), and the first passage forming part 240 is connected to the second passage forming part 340 of the second coupling unit 300 (refer to FIG. 6) and therein a connection passage (S, FIG. 7). Reference).
  • connection passage S Various configurations such as an optical cable and a pipe may be accommodated in the connection passage S.
  • the first fixed coupling portion 230 includes a pair of first fixing protrusions 232 facing each other, and the first fixing protrusion 232 is piped from the first base portion 210 (P)
  • the first fixed protrusion 232a protruding inward and a first hook part 232b which is bent at the end of the first fixed protrusion 232a to form a hook shape.
  • first fixed coupling portion 230 may further include an auxiliary protrusion 234 protruding between the pair of first fixed protrusions 232.
  • an expansion member R may be provided.
  • the expansion member (R) is made of a rubber or synthetic resin having elasticity or a water-expandable material expandable by moisture, so that it expands after the first and second coupling portions 230 and 330 are combined. By doing so, it is possible to obtain a larger bonding force and to maximize water tightness.
  • the expansion member R is shown as being formed on the first fixed coupling part 230, the expansion member R may be selectively provided on the contact surfaces of all coupling structures shown in this embodiment. Yes, of course.
  • the first passage forming part 240 includes a pair of locking protrusions 242 facing each other, and the locking protrusion 242 protrudes from the first base portion 210 to the inside of the pipe P. It has a form including a hooking protrusion 242a and a hooking hook 242b that is bent at an end of the hooking protrusion 242a to form a hook.
  • the height of the locking protrusion 242 may be formed lower than the height of the first fixing protrusion 232.
  • the second coupling unit 300 illustrated in FIGS. 6 and 7 is a component that is formed to be coupled to the inside of the first coupling unit 200, and is similar to the first coupling unit 200. It is formed long along the longitudinal direction of the pipe (P) can be coupled across a plurality of structural units (100).
  • the second coupling unit 300 is divided into a plurality of members, and is supposed to be formed to be interconnected along the inner circumference of the first coupling unit 200, and the second coupling unit 300
  • the number of pipes may be appropriately provided according to the site situation, such as the diameter of the pipe (P).
  • a contact portion 350 in contact with another adjacent second coupling unit 300 may be formed at one end and the other end of the second coupling unit 300.
  • the contact portion 350 will be described later.
  • the second coupling unit 300 includes a second base portion 310, a second fixed coupling portion 330 coupled with the first fixed coupling portion 230, and the first passage formation. It includes a second passage forming portion 340 coupled to the portion 240 to form a connection passage (S) therein.
  • the second fixed coupling part 330 may include a second fixed protrusion 332 which is inserted into and fixed between a pair of first fixed protrusions 232 formed in the first fixed coupling part 230, ,
  • the second fixing protrusion 332 is the second fixing protrusion 332a protruding from the second base portion 310 toward the first coupling unit 200, and the end of the second fixing protrusion 332a It has a shape including a second hook portion 332b that is bent in to form a hook shape.
  • the second fixing protrusion 332 is interposed between the pair of first fixing protrusions 232 through the first hook portion 232b and the second hook portion 332b. It can be inserted and fixed in a hanging form, and the coupling of the first coupling unit 200 and the second coupling unit 300 can be made.
  • the second base portion 310 the surface facing the inside of the pipe to form a new inner wall of the pipe.
  • an insertion groove into which the auxiliary protrusion 234 of the above-described first coupling unit 200 is inserted may be formed, and accordingly, the coupling fixing force may be further improved.
  • the second passage forming portion 340 extends in the direction of the first passage forming portion 240 and is spaced apart from each other to form a pair of passage forming protrusions 342 that form the connecting passage S therebetween. It can contain.
  • the passage forming protrusion 342 includes a first passage extending part 342a extending from the second base part 310 toward the first coupling unit 200 and the passage extending part 342a. It includes a second passage extending portion (342b) formed at the end of the first passage extending portion (342a) and the second passage extending portion (342b) of the above described first passage forming portion 240 of the A locking groove 343 to which the locking protrusion 242 is hooked is formed.
  • first passage forming part 240 and the second passage forming part 230 are the first coupling unit 200 through the coupling between the locking protrusion 242 and the locking groove 343 as shown in FIG. ) And the second coupling unit 300 to assist in further improving the fastening force.
  • the present invention has a wide connection passage (S) between the first coupling unit 200 and the second coupling unit 300 by the first passage forming portion 240 and the second passage forming portion 230 It is formed, it is possible to accommodate a variety of configurations, such as an optical cable (C) therein.
  • a contact portion 350 in contact with another adjacent second coupling unit 300 may be formed.
  • the contact portion 350 is a first extension portion 352 extending in the direction of the first coupling unit 200 from the second base portion 310, as shown in Figure 8, the first A second extension portion 353 extending outwardly from the end of the extension portion 352, and a third extension portion 354 extending inwardly from the end of the second extension portion 353 to the pipe P ) And the auxiliary hook 355 bent at the end of the third extension 354.
  • the contact portion 350 may be formed to have a 'C' shape lying on the whole, and the second coupling units 300 adjacent to each other may be connected to the third extension portion 354 in contact with each other.
  • a fixing unit 400 may be further provided to wrap and fix a pair of contact parts 350 that are in contact with each other of the pair of second coupling units 300 adjacent to each other.
  • the fixing unit 400 is formed in a shape corresponding to a space formed between a pair of contact portions 350 adjacent to each other. Specifically, the fixing unit 400 is between the first insertion portion 410 and the first extension portion 352 and the third extension portion 354 inserted between a pair of first extension portions 352. It includes a pair of second insertion portion 420, and a pair of third extension portions 352 and a pair of auxiliary contacts adjacent to each other between the pair of second insertion portions 420 A fastening groove 430 into which the hook 354 is inserted may be formed.
  • the outer surface of the fixing unit 400 and the agent may be formed to be flat with each other.
  • the structural unit 100, the first coupling unit 200 and the second coupling unit 300 are installed inside the pipe P, as shown in FIG. 9, inside the pipe P A separate filler (I) can be filled in.
  • the internal repair device for a pipe is installed in the order of the structural unit 100, the first coupling unit 200 and the second coupling unit 300 as described above, and the inner surface of the piping P It is arranged in the form of wrapping. Accordingly, a filling space may be formed between the inner surface of the pipe P and the inside repair device of the pipe.
  • the filling space has a form divided by the structural unit 100 along the longitudinal direction of the pipe P, and by injecting the filling material I into the filling space in this form, the As the inside of the filling space is filled, the pipe internal repair device according to the present invention is fixed integrally with the pipe (P).
  • the filler (I) may be used a mortar, cement, a cement-based material such as concrete, or a curable material such as unsaturated polyester resin, epoxy resin.
  • a filling material (I) is injected from one side along the longitudinal direction of the area where the piping internal repair device according to the present invention is installed, and the injected filling material (I) is the communication space formed by the structural unit (100) B, see FIG. 1) may be injected into the space between the inner surface of the pipe (P) and the internal repair device of the pipe.
  • first coupling unit 200 and the second coupling unit 300 may be made of PVC, synthetic resin, thermoplastic resin, thermosetting resin, or the like, and may be formed to have a certain level of elasticity.
  • the coupling between the structural unit 100, the first coupling unit 200 and the second coupling unit 300 may be performed by various methods such as a pressing method or a sliding method.
  • the piping internal repair apparatus installs a structural unit 100 having a hollow (A) in a damaged area inside the piping (P), and the first coupling unit ( 200) and the second coupling unit 300 are coupled and supported together, and the inner surface of the pipe P can be repaired by filling the filler I between the inner surfaces of the pipe P.
  • the repaired pipe P and the internal repair device of the pipe are reinforced by a hardened filler (I), so that the strength of the pipe P is increased as well as the fluid flowing inside the pipe P.
  • a hardened filler (I) By flowing in contact with the second coupling unit 300 and the fixing unit 400, it is possible to prevent corrosion of the additional filler (I).
  • the circumference of the structural unit 100 is adjusted according to the size of the inner surface of the pipe P, the space between the pipe P and the structural unit 100 is minimized to stably stabilize the structural unit 100. Of course, this can be fixed.
  • FIG. 10 is a view showing a state in which the second coupling unit 300 is coupled to the first coupling unit 200 in the piping internal repair apparatus according to another embodiment of the present invention.
  • first passage forming portion 260 of the first coupling unit 200 and the second passage forming portion 360 of the second coupling unit 200 The shape is formed differently from the above-described embodiment.
  • the first passage forming portion 260 includes a recessed groove 262 having a shape recessed toward the structural unit 100, and accordingly, the position of the first passage forming portion 260
  • the first coupling protrusion 120 of the structural unit 100 corresponding to may also include a recessed recess 122 recessed to correspond to the shape of the recessed groove 262.
  • the second passage forming part 360 has a pair of passage forming protrusions 362, but the passage forming protrusion 362 of the present embodiment is formed to have a longer length to form the recessed groove 262. It has a form that is in contact with the bottom surface of the.
  • this embodiment can form a larger size of the connecting passage S, and it is possible to accommodate more various and more structures in the connecting passage S.

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Pipe Accessories (AREA)
  • Health & Medical Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Public Health (AREA)
  • Water Supply & Treatment (AREA)

Abstract

L'invention concerne un dispositif de réparation d'intérieur de tuyau comprenant : de multiples unités de structure ayant des cavités ménagées à l'intérieur de ces dernières de façon à avoir des formes correspondant à la circonférence de la surface périphérique interne d'un tuyau, les unités de structure comprenant de multiples premières parties de saillie de couplage faisant saillie vers l'intérieur du tuyau, les unités de structure étant formées pour entrer au moins partiellement en contact avec la surface périphérique interne du tuyau et étant installées pour être espacées le long de la direction longitudinale du tuyau ; une première unité de couplage comprenant de multiples secondes parties de saillie de couplage s'engrenant avec les premières parties de saillie de couplage et comprenant une première partie de fixation/couplage et une première partie de formation de passage faisant saillie vers l'intérieur du tuyau, la première unité de couplage étant allongée le long de la direction longitudinale du tuyau de façon à être couplée à travers de multiples unités de structure ; et une seconde unité de couplage comprenant une seconde partie de fixation/couplage couplée à la première partie de fixation/couplage et comprenant une seconde partie de formation de passage couplée à la première partie de formation de passage de façon à former un passage de liaison en son sein, la seconde unité de couplage étant couplée à la première unité de couplage de telle sorte qu'une surface de la seconde unité de couplage, qui fait face à l'intérieur du tuyau, forme une nouvelle paroi interne du tuyau.
PCT/KR2019/010749 2018-09-07 2019-08-23 Dispositif de réparation d'intérieur de tuyaux WO2020050531A1 (fr)

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KR101956018B1 (ko) * 2018-09-07 2019-03-08 이처례 배관 내부 보수장치
KR102140455B1 (ko) * 2020-01-23 2020-08-03 이처례 링유닛을 포함하는 배관 내부 보강장치
KR102173078B1 (ko) * 2020-03-27 2020-11-02 이처례 끼움식 결합부재가 구비된 내벽형성유닛을 포함하는 배관 내부 보강장치
KR102459330B1 (ko) * 2021-11-25 2022-10-28 주식회사 휴건설 내경 조절이 가능한 배관 내부 보강장치
KR102462509B1 (ko) * 2022-04-08 2022-11-04 한국가스공사 배관 보호커버
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US5076618A (en) * 1989-10-13 1991-12-31 Bridges Donald Y Method and apparatus for sealing pipe joints from the interior thereof
JP2003032821A (ja) * 2001-07-19 2003-01-31 Ashimori Ind Co Ltd 管路の内張り構造
KR20040088115A (ko) * 2003-04-08 2004-10-16 대원라이닝시스템 주식회사 고밀도 폴리에틸렌(hdpe) 라이너를 이용한 하수도보수 및 케이블용 파이프 설치 공법
US20100018598A1 (en) * 2006-12-19 2010-01-28 Ashimori Industry Co., Ltd. Conduit repair structure
JP2016098835A (ja) * 2014-11-18 2016-05-30 芦森工業株式会社 既設管路の補修方法及び補修部材
KR101956018B1 (ko) * 2018-09-07 2019-03-08 이처례 배관 내부 보수장치

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