Connecting corsis pipes with pipes of other systems and installing wells. Corrugated pipes Korsis Transition from corrugated to PVC

Double layer corrugated pipes HDPE

Double-layer corrugated HDPE pipes are double-layer corrugated pipes made of polyethylene low pressure(PND). Double-layer corrugated HDPE pipes are pipes with a two-layer wall, where the outer wall of the pipe has a corrugated surface, and inner wall pipes has smooth surface made of polypropylene (PP). Double-layer corrugated pipes have a special molded rubber ring made of ethylene-propylene rubber (EPDM), which is designed to seal the pipe joints. Corrugated HDPE pipes are produced in two types: corrugated pipe with a socket and corrugated pipe without a socket. The socket on a corrugated pipe is formed by injection molding, which ensures the strength of the socket and the reliability of the pipe connection. Double-layer corrugated HDPE pipes are produced with a nominal diameter from 250 to 1000 mm, and a pipe length of 6 m (excluding the length of the socket).

Features and Benefits

  • are highly resistant to chemical and aggressive environments
  • have corrosion resistance and resistance to water-abrasive wear
  • are resistant to both high temperatures up to +100 0C and low temperatures
  • not affected by stray currents, not electrically conductive
  • have elasticity and stretchability
  • have an internal smooth adhesive surface, which ensures high throughput
  • ensure tightness of connections during repeated freezing of water inside the pipe
  • can withstand pressure surges inside the pipeline up to 0.25 MPa
  • have a stable corrugation profile with high geometric rigidity, which ensures high overall ring stiffness of the pipe up to SN12
  • are reliable in case of subsidence or soil movement
  • are light in weight, easy to transport, cut and repair
  • easy to install and dismantle pipes, and their further disposal
  • durable, service life of at least 50 years

Areas of use

Double-layer corrugated HDPE pipes are intended for external networks and collectors of household and storm sewer, and are used for the installation of pipelines in sewerage systems that have large flow sections. Also, two-layer corrugated polyethylene pipes are widely used for constructing culverts. pipeline systems under bridges and dams, under highways and various communication routes, and for transporting domestic and industrial wastewater. Since these corrugated HDPE pipes have a high ring rigidity of the pipe up to SN12, they can be used for laying various engineering communications, which pass in places with a large load on the ground.

Transportation, storage and installation of double-layer corrugated pipes does not require special skills and special machinery and equipment, since these pipes are light in weight. Double-layer corrugated polyethylene pipes are connected to each other using a coupling and a socket; the pipe to be connected is inserted inside the coupling or socket to a depth of up to 3 profile steps, this will ensure the alignment of the connected pipes and the tightness of the connection. With pipes made of other materials, these corrugated pipes are connected using special connecting transitions: transition to PVC pipes, transition to HDPE pipes, transition with a flange, for flange connection with cast iron tubes, steel pipes and others metal pipes. Double-layer corrugated HDPE pipes can be connected to different types plastic and reinforced concrete wells.

Transitions for double-layer corrugated pipe: transition to PE pipe and transition to flange connection

Technical characteristics of double-layer corrugated HDPE pipes

Double-layer corrugated pipe with socket


Nominal

pipe diameter, mm

Interior

diameter d 1, mm

Outer

diameter d 2, mm

Length

pipes l 1, mm

Length

bell l 2, mm

Length

pipes l 1

with bell l 2, mm

Double-layer corrugated pipe without socket


Nominal

pipe diameter, mm

Interior

diameter d 1, mm

Outer

diameter d 2, mm

Length

pipes l 1, mm

For corrugated pipes, materials are used that have the following properties: high stability to impact loads in the presence of PP-B polypropylene copolymer. When choosing a pipe, you should take into account the characteristics of the material from which it is made.

Technical specifications

  • Density 90 kg. /M.3
  • MPP 0.3 g / 10 min. (230 / 2.16)
  • Modulus 1500/2000 MPa
  • Yield strength 32 MPa
  • Sharp impact strength +23 O C 70 kJ / m 2-23 O C 7 kJ / m 2

Characteristics of double-layer corrugated polypropylene pipes:

  • Pipes are manufactured in accordance with EN1440 and SRPSEN13476
  • Inner diameter DN / light ID
  • Expected service life is 100 years
  • Excellent hydraulic properties
  • Excellent chemical resistance
  • High stability up to 60°C temperature, short-term up to 90°C
  • High abrasion resistance
  • Light pipe weight
  • Easy to use and install
  • Good mechanical properties
  • Good impact resistance at low temperatures
  • Good pipe flexibility
  • Pipes can be completely recycled
  • Pipes do not contain heavy metals
  • Friction coefficient Kb = 0.25 mm.

Pipe connection methods

Attachment of an elbow fitting, connecting several pipelines with a T-shaped connection and a method of connecting a saddle to a gripper.

Connecting pipes

This is necessary for subsequent connection to existing pipeline for smooth as well as corrugated (bellows) pipes. The pairing is secure and waterproof. It is made of ABS by injection molding technology.

The dimensions are shown in the following table.

Connection dimensions for later fastenings

Elbows 30°, 45°, 60°, 90°

Knee

An elbow whose main purpose is to connect pipes at a certain angle, as required (30°, 45°, 60°, 90°).

They are made using the technology of welding pipe segments and semi-trailer joints, which have the function of an integrated hose.

T-shaped

This is appropriate for welding pipe segments at 90° angles with a corresponding half-joint extension. Available for pipe diameters ranging from 140-600.

Adapter flanges

Their main purpose is to connect pipes different diameters. They are made of polypropylene using injection molding technology.

Transition from smooth to corrugated pipe

The purpose of this product is to transition from smooth to corrugated pipe. It is made of polypropylene using injection molding or welding technology.

Cork

Function of this product is to cover the pipes and fittings for pipe installation and various types testing, as well as for any other purposes. Made using injection molding or welding polypropylene technology.

Double plug

The space is intended for a linear connection of a pipe of the same diameter. The product is produced by injection molding from polypropylene.

It has a conical tip and consists of three elements: the main body (body) and the cone. The base and cone are made of polypropylene or polyethylene using rotational molding technology. Shaft body of PP corrugated pipes DN/ID800.

Installation

Digging trenches for laying must meet the hole size requirements of at least 30 cm wider than the diameter of the shaft and at least 15 cm higher than overall height shaft The surface of the shaft should be smooth and without protrusions.

The density of the material must be at least 95% of the density of the soil according to Proctor. The strangulation around the shaft hole should be done gradually bulk material in layers of 30 cm.

The layers of material must be installed manually or using light tools to avoid deformation of the outer side of the shaft. The degree of soil compaction on the green surface should be 95% of the density according to Proctor and roads - 98% -100%. The soil of the burial material must be consistent with the surrounding soil.

Point 1. Elbow 30°

Point 2. Knee 45°

Point 3. Elbow 60°

Point 4. Elbow 90°

Item 5. Tee

KORSIS pipes can be connected to pipes of any other type using fittings specially designed for this (Fig. 15).

Let's look at an example of the most common type of connection with PVC/PP pipes (Fig. 16).

To perform this type of connection, the following procedure is proposed:

  • Inspect and clean the PVC pipe socket, coupling and free end of the KORSIS pipe.
  • Insert the free end of the KORSIS pipe into the socket of the coupling, having previously treated its internal surface with silicone grease.
  • Lubricate the seal in the socket with grease. Insert the bell-socket end of the coupling into the socket of the PVC pipe.

The most preferred method of transition between existing system and the new line of KORSIS pipes is the use of manholes.

Rice. 15. Transition from welded KORSIS SN8 to PE 80 SDR 13.6

An inspection well is an independent structure that is part of the sewer system. Can be polyethylene or concrete. There are two types of polyethylene wells. The first type consists of a cast base (pot) and a vertical pipe KORSIS (well heat). To connect a pipe to such a well, special rubber sealing rings are used to ensure water-tightness of the connection (Fig. 17, 19).

The first type is a structure welded from sections of KORSIS pipe. It is obvious that such wells can be maximally adapted to customer requirements. The connection of this type of manhole to the pipe is usually made using a coupling (Fig. 18). Connected pipes CORSIS co manhole made of concrete is carried out by fixing the pipe in the well using cement mortar. The design feature of KORSMS pipes - a special profile - ensures the reliability and tightness of such a connection (Fig. 20). You should pay attention to the fact that the heating agent in the well has a diameter as close as possible to the outer diameter of the pipe. All cracks that form must be filled cement mortar, which must meet the requirements for ensuring the density of the concrete connection. When installing a pipe in a concrete or reinforced concrete well wall, it is necessary to provide rigid support for the free end of the pipe by adding soil until the concrete sets completely.

The KORSIS pipe should not be concreted simultaneously with the construction of the walls of a monolithic well, as this may cause deformation of the pipe under the weight of unhardened concrete.


Fig. 16. Connection of KORSIS pipes (smooth end) with PVC/PP pipes


Rice. 17, PE well complete with standard tray

When installing a socketless section of KORSIS pipe in a concrete or reinforced concrete well, it is necessary to take into account that the length of the pipe section located on the outside of the well must be at least half the diameter of the pipe (Fig. 21).

A KORSIS coupling is put on the free end of the pipe prepared in this way, into which the next section of the pipeline is inserted.

The diameter of the pipe inserted into a concrete well should not exceed half the diameter of the well.

This technical solution It has whole line advantages:

  • possibility to use on construction site remaining unmeasured pipe sections;
  • the ribbed shape of the outer surface of the KORSIS pipe makes it easier to fasten and stabilize the position of the pipe in the concrete wall of the well;
  • This method also makes it possible to compensate for stresses that arise as a result of possible uneven shrinkage concrete well and pipeline;
  • quick and easy installation.

Pipe connectionCORSISbutt welding

One of the advantages of the KORSIS system is the ability to connect pipes by butt welding. This possibility is ensured by the sufficient thickness of the pipe wall e^ between the ribs and the width of the profile.

The same welding methods and welding equipment are used as for conventional pressure polyethylene pipes. Suppliers welding equipment Together with the equipment, they provide a table of values ​​of recommended welding parameters - temperature, time and pressure. For butt verification of rough KORSIS, the values ​​for welding pressure polyethylene pipes with small wall thickness are usually taken. Care must be taken to avoid contact of the heater with the corrugation ribs.

The standard welding cycle for a KORSIS pipe includes the following sequence of operations with certain time regulations (Table 15)

Resistance to internal pressure

Sewage pipes are considered free-flow, but at the same time, according to)

 
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