Drainage Pipe Series

HDPE Drainage Pipe <br> Standard: ISO 8772:2006
HDPE Drainage Pipe <br> Standard: ISO 8772:2006
HDPE Drainage Pipe <br> Standard: ISO 8772:2006
HDPE Drainage Pipe <br> Standard: ISO 8772:2006
  • HDPE Drainage Pipe <br> Standard: ISO 8772:2006
  • HDPE Drainage Pipe <br> Standard: ISO 8772:2006
  • HDPE Drainage Pipe <br> Standard: ISO 8772:2006
  • HDPE Drainage Pipe <br> Standard: ISO 8772:2006

HDPE Drainage Pipe
Standard: ISO 8772:2006

1.Size: OD20-1600mm(1/2inch-63inch).

2.Pressure: PN32-SDR6, PN25-SDR7.4, PN20-SDR9, PN16-SDR11, PN12.5-SDR13.6, PN10-SDR17, PN8-SDR21, PN6-SDR26, PN5-SDR33, PN4-SDR41.

3.Material: PE63, PE80, PE100, PE4710, PE3608, PE3408, PE100RC.

4.Length: 5.8M/11.8M. Coil Length 100m-200m A Roll for DN20-90mm.

5.Applications: Water Supply, Mining, Dredging, Marine, Irrigation, Industry, Chemical and Drainage for Municipal Gardens etc.

6.Standard: ISO 4427, ISO 8772, GB/T 13663, EN 12201, AS/NZS 4130, DIN 8074/8075, GOST 18599, DIPS, IPS, ASTM 3035, ASTM F714, etc.

7.Delivery: 10-20 days depending on the total quantity.

Certification

  • Introduction
  • Feature
  • Specification
  • Physical Parameter
  • Application
  • Download

Introduction

High-density polyethylene (HDPE) pipe has become the ideal piping solution for public and private sewer and wastewater systems in recent decades. Because traditional materials such as concrete, ductile iron, or PVC are subject to corrosion, fatigue, and chemical attack, while black HDPE sanitary sewer drainage pipe with blue stripes solves these issues and features a service life of 70 years, making it the ideal, low-maintenance investment for any municipal or private sewer owner.

Description of HDPE (High Density Polyethylene) Drainage Pipe

HDPE drainage systems are the ultimate solution for all types of drainage applications including soil & waste, above ground, below ground and chemical waste. These pipes and fittings can be joined by butt-fusion, electro-fusion, flanges or rubber ring joints. The characteristics of the PE drainage system such as the outstanding chemical resistance, high temperature rating, flexibility and low noise make it the ideal selection for residential and industrial buildings, laboratories, hospitals and hotels.

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HDPE Drainage Pipe <br> Standard: ISO 8772:2006
HDPE Drainage Pipe <br> Standard: ISO 8772:2006
HDPE Drainage Pipe <br> Standard: ISO 8772:2006
HDPE Drainage Pipe <br> Standard: ISO 8772:2006

Feature

Benefits of HDPE (High Density Polyethylene) Drainage Pipe

• Corrosion resistance: HDPE is an inert material that is resistant tovarious chemical media.

• Leak-free performance: HDPE pipes are joined by butt fusion, with the interface strength higher than that of the pipe itself.

• High toughness: The elongation at break of HDPE pipes exceeds 500%. It boasts excellent adaptability to uneven ground settlement and superior seismic performance.

• Excellent resistance to rapid crack propagation (RCP).

• Good flexibility and scratch resistance.

• Trenchless installation: It can be installed via a variety of trenchless methods, facilitating easy and efficient construction.

• Low system cost: Minimal maintenance requirements significantly reduce overall project costs.

• Long service life: Underground HDPE pipes can last for more than 50 years.

• Recyclable: Recyclable and environmentally friendly, as it can be reused.

• Smooth inner wall: Low flow resistance and excellent conveying capacity, which minimizes solid buildup and scaling inside the pipe.

HDPE drainage pipe

Quality raw materials

HDPE drainage pipe

Inner wall is smooth

HDPE drainage pipe

Smooth melting surface

Feel free to contact us for product catalogs, quotations and professional technical support.

Please contact us by email: sales@hengdepipes.com or WhatsApp: +86 15265578500.

Specification

ISO 8772:2006 Plastics piping systems for non-pressure underground drainage and sewerage — Polyethylene (PE)
PE100 - SN2 SN4 SN8
Nominal Size DN (mm) SDR41 SDR33 SDR26 SD21
Thickness (mm) Weight (kg/m) Thickness (mm) Weight (kg/m) Thickness (mm) Weight (kg/m) Thickness (mm) Weight (kg/m)
110 2.7 0.86 3.3 1.18 4.2 1.45 5.3 1.8
125 3 1.11 3.8 1.53 4.8 1.87 6 2.31
160 3.9 1.82 4.9 2.46 6.2 3.09 7.7 3.77
200 4.9 2.84 6.2 3.89 7.7 4.76 9.6 5.86
250 6.1 4.44 7.7 6 9.6 7.4 11.9 9.05
315 7.7 7.04 9.7 9.49 12.1 11.74 15 14.38
355 8.7 8.95 10.9 12 13.6 14.83 16.9 18.63
400 9.8 11.36 12.3 15.27 15.3 18.8 19.1 23.69
450 11 14.37 13.8 19.22 17.2 24.27 21.5 29.88
500 12.2 17.75 15.3 23.7 19.1 29.93 23.9 36.79
630 15.4 28.17 19.3 38.49 24.1 47.57 30 58.47
800 19.5 45.43 24.5 61.87 30.6 76.54 38.1 94.32
1000 24.4 70.98 30.6 96.49 38.2 119.73 47.7 147.44
1200 29.3 102.21 36.7 138.77 45.9 172.04 57.2 212.02
1400 34.1 139.12 42.9 173.67 53.5 226.2 66.7 279.24
1600 39 181.71 49 226.71 62.1 284.89 76.2 346.37
1800 43.9 229.98 54.5 283.77 69.1 356.78 85.7 438.25
2000 48.8 283.93 60.6 350.58 76.9 441.15 95.2 540.93
ISO 8772:2006 specifies the requirements for polyethylene (PE) pipes, fitings and piping systems intended for use for non pressure underground drainage and sewerage for the conveyance of soil and waste discharge of domestic and industrial origin, as well as surface water. It covers buried pipework, as well as piping systems buried within the building structure. In the case of industrial discharge, it is necessary that the chemical and temperature resistance be taken into account, but this will need to be done separately. ISO 8772:2006 is applicable to PE pipes with or without an integral socket.

Feel free to contact us for product catalogs, quotations and professional technical support.

Please contact us by email: sales@hengdepipes.com or WhatsApp: +86 15265578500.

Physical Parameter

Characteristic Requirement Test parameters Test method(s)
Parameter Value
Elongation at break for e u≤ 5 mm ≥350 % Test piece shape Type 2 ISO 6259-1
ISO 6259-3
Test speed 100 mm/min
Number of test pieces According to ISO 6259
Elongation at break for 5 mm < e u 12 mm ≥ 350 % Test piece shape Type 1 ISO 6259-1
ISO 6259-3
Test speed 50 mm/min
Number of test pieces According to ISO 6259
Elongation at break for e > 12 mm ≥ 350 % Test piece shape Type 1 ISO 6259-1
 ISO 6259-3
Test speed 25 mm/min
Number of test pieces According to ISO 6259
OR
Test piece shape Type 3
Test speed 10 mm/min
Number of test pieces According to ISO 6259
Longitudinal reversion u 3 % No effect on surface Shape and number of test pieces According to ISO 2505 ISO 2505
Test temperature:
PE 40 100 ± 2 °C
PE 63, PE 80, PE 100 110 ± 2 °C
Time See ISO 2505
Melt mass-flow rate MFR for PE 40 Change of MFR by processing ± 20 % d Load 2,16 kg ISO 1133:2005,
Condition D
Test temperature 190 °C
Time 10 min
Number of test pieces According to ISO 1133
Melt mass-flow rate MFR for PE 63, PE 80, PE 100 Change of MFR by processing ± 20 % d Load 5,0 kg ISO 1133:2005,Condition T
Test temperature 190 °C
Time 10 min
Number of test pieces According to ISO 1133
Oxidation induction time ≥20 min Test temperature 200 °C  ISO 11357-6:2002
Number of test pieces 3
Effect on water quality National regulations apply
Hydrostatic strength
at 20 °C
No failure of any test piece during test period End caps Type a ISO 1167-1
ISO 1167-2
Conditioning period According to ISO 1167-1
Number of test pieces 3
Type of test Water-in-water
Test temperature 20 °C
Test period 100 h
Circumferential (hoop)
stress for:
PE 40 7.0 MPa
PE 63 8.0 MPa
PE 80 10.0 MPa
PE 100 12.4 MPa
Hydrostatic strength
at 80 °C
No failure of any test piece during test period End caps Type a ISO 1167-1
ISO 1167-2
Conditioning period According to ISO 1167-1
Number of test pieces 3
Type of test Water-in-water
Test temperature 80 °C
Test period 165 h
Circumferential (hoop)
stress for:
PE 40 2.5 MPa
PE 63 3.5 MPa
PE 80 4.5 MPa
PE 100 5.4 MPa
Hydrostatic strength
at 80 °C
No failure of any test piece during test period End caps Type a ISO 1167-1
ISO 1167-2
Conditioning period According to ISO 1167-1
Number of test pieces 3
Type of test Water-in-water
Test temperature 80 °C
Test period 1000 h
Circumferential (hoop)
stress for:
PE 40 2.0 MPa
PE 63 3.2 MPa
PE 80 4.0 MPa
PE 100 5.0 MPa

Feel free to contact us for product catalogs, quotations and professional technical support.

Please contact us by email: sales@hengdepipes.com or WhatsApp: +86 15265578500.

Application

HDPE drainage pipes are widely used in various applications due to their excellent properties, such as durability, flexibility, and corrosion resistance. Below are some of their primary application areas, along with relevant parameters:

• Storm Water Management: HDPE pipes are used for transporting stormwater runoff in urban and rural areas. Thanks to their ability to easily adapt to dynamic loads and heavy rain (which often causes ditches to overflow and flooding), they effectively reduce flood risks.

• Sewage and Wastewater Transfer: HDPE pipes are chemically inert and highly durable, making them ideal for sewage systems—especially in scenarios where wastewater has corrosive molecular properties.

• Agricultural Drainage: These pipes are particularly beneficial in agriculture as they help remove excess water from farmland, thereby promoting soil health and crop growth. Key parameters include resistance to environmental factors and compatibility with various soil types.

• Landfill Drainage Systems: With excellent impermeability and strength in harsh environments, HDPE pipes are used in landfills to drain leachate seeping from waste.

• Industrial Applications: Their ability to withstand water and other fluids even under high pressure and temperature, coupled with low leakage risk, makes HDPE pipes suitable for industrial chemical and fluid transportation.

• Culverts and Cross Drains: HDPE pipes used for culverts and cross drains under roads feature in-situ construction. They are lightweight, cost-effective, easy to install, and simple to maintain.

HDPE drainage pipe

HDPE drainage pipe

HDPE drainage pipe

Feel free to contact us for product catalogs, quotations and professional technical support.

Please contact us by email: sales@hengdepipes.com or WhatsApp: +86 15265578500.

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