Water Supply Pipe Series

HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011
HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011
HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011
HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011
  • HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011
  • HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011
  • HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011
  • HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011

HDPE Water Supply Pipe
Standard: EN 12201-2:2011

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, 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

The full form of HDPE is High-Density Polyethylene. HDPE pipes are made through a process known as extrusion. In this process, HDPE material is heated to a semi-molten state and then forced through a die to form a tube. The tube is then cooled to solidify the material and cut to the desired length. This process ensures consistent quality and high durability of the final product. Thus, the final product is a high-quality, flexible, and durable pipe that can be used for a variety of applications. HDPE pipes are widely used in water supply, gas distribution, sewage and drainage systems, and industrial processes.

Description of HDPE (High Density Polyethylene) Water Supply Pipe

HDPE pipe, also known as high-density polyethylene pipe, is made of HDPE granular material and is a flexible plastic pipe used for fluid and gas transportation.

As a sturdy and safe component for potable water systems, HDPE piping helps deliver clean drinking water in many applications. When used correctly and under the right conditions, HDPE pipes are the most durable and flexible option available.

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HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011
HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011
HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011
HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011

Feature

Benefits of (High Density Polyethylene) Water Supply Pipe

The right piping materials must be chosen in the domain of potable water supply to guarantee the safety, reliability, and durability of infrastructure. High-density polyethylene (HDPE) has become the preferred choice for water distribution systems because it is highly resistant to corrosion, chemicals, and environmental stressors.

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01

Environmental stresses such as corrosion and chemical attack do not significantly affect HDPE pipes. They have a service life of up to 50 years.

02

Larger-diameter HDPE pipes can handle a wide range of pressure ratings, usually around 1,000 psi.

03

HDPE’s inherent flexibility makes its installation easier, particularly for trenchless construction practices.

04

Since HDPE pipes are connected by butt welding and electro-fusion welding, they are leak-proof.

05

With a pH resistance range of 1 to 14, HDPE pipes are highly resistant to various chemicals, which means they will not degrade when conveying potable water containing various chemical components.

06

HDPE’s smooth internal surface minimizes hydraulic friction, which helps optimize flow rates or reduce energy costs associated with water pumping systems, thereby improving the efficiency of the entire water distribution network.

Specification

EN 12201-2:2011 Pipe Series
(The Specification of the Standard DIN8074/8075, GOST 18599 are same with EN12201)
SDR6 SDR7.4 SDR9 SDR11 SDR13.6 SDR17 SDR21 SDR26 SDR33 SDR41
S2.5 S3.2 S4 S5 S6.3 S8 S10 S12.5 S16 S20
Norminal Pressure, PNa in Bar
PE80 PN25 PN20 PN16 PN12.5 PN10 PN8 PN6 PN5 PN4 PN3.2 PE80
PE100 PN32 PN25 PN20 PN16 PN12.5 PN10 PN8 PN6 PN5 PN4 PE100
Nom. Size    DN/OD Wall Thicknessb Nom. Size     DN/OD
emin emin emin emin emin emin emin emin emin emin
16 3 2.3 2 - - - - - - 16
20 3.4 3 2.3 2 2 - - - - - 20
25 4.2 3.5 3 2.3 2.4 - - - - - 25
32 5.4 4.4 3.6 3 3 2 - - - - 32
40 6.7 5.5 4.5 3.7 3.7 2.4 2 - - - 40
50 8.3 6.9 5.6 4.6 4.7 3 2.4 2 - - 50
63 10.5 8.6 7.1 5.8 5.6 3.8 3 2.5 - - 63
75 12.5 10.3 8.4 6.8 6.7 4.5 3.6 2.9 - - 75
90 15 12.3 10.1 8.2 8.1 5.4 4.3 3.5 - - 90
110 18.3 15.1 12.3 10 9.2 6.6 5.3 4.2 - - 110
125 20.8 17.1 14 11.4 10.3 7.4 6 4.8 - - 125
140 23.3 19.2 15.7 12.7 11.8 8.3 6.7 5.4 - - 140
160 26.6 21.9 17.9 14.6 13.3 9.5 7.7 6.2 - - 160
180 29.9 24.6 20.1 16.4 14.7 10.7 8.6 6.9 - - 180
200 33.2 27.4 22.4 18.2 16.6 11.9 9.6 7.7 - - 200
225 37.4 30.8 25.2 20.5 18.4 13.4 10.8 8.6 - - 225
250 41.5 34.2 27.9 22.7 20.6 14.8 11.9 9.6 - - 250
280 46.5 38.3 31.3 25.4 23.2 16.6 13.4 10.7 - - 280
315 52.3 43.1 35.9 28.6 26.1 18.7 15 12.1 9.7 7.7 315
355 59 48.5 39.7 32.2 29.4 21.1 16.9 13.6 10.9 8.7 355
400 - 54.7 44.7 36.6 33.1 23.7 19.1 15.3 12.3 9.8 400
450 - 61.5 50.3 40.9 36.8 26.7 21.5 17.2 13.8 11 450
500 - 67.6 55.8 45.4 41.2 29.7 23.9 19.1 15.3 12.3 500
560 - 75.7 62.5 50.8 46.3 33.2 26.7 21.4 17.2 13.7 560
630 - 85.1 70.3 57.2 52.2 37.4 30 24.1 19.3 15.4 630
710 - 95.9 79.3 64.5 58.8 41.2 33.9 27.2 21.8 17.4 710
800 - - 89.3 72.6 66.1 47.4 38.1 30.6 24.5 19.6 800
900 - - - 81.7 73.4 53.3 42.9 34.4 27.6 22 900
1000 - - - 90.8 88.2 59.3 47.7 38.2 30.6 24.5 1000
1200 - - - - 102.9 71.1 57.2 45.9 36.7 29.4 1200
1400 - - - - 117.5 83 66.7 53.5 42.9 34.3 1400
1600 - - - - - 94.8 76.2 61.2 49 39.2 1600
1800 - - - - - 106.6 85.5 68.8 55.1 44 1800
2000 - - - - - 118.4 95.3 76.4 61.2 48.9 2000
2250 - - - - - - 107.2 86 70 55 2250
2500 - - - - - - 119.1 95.6 77.7 61.2 2500
a  PN Values are based on C=1.25.
b  Tolerance in accordance with grade V of ISO11922-7

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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 EN ISO 6259-1 and
ISO 6259-3:1997
Test speed 100 mm/min
Number of test pieces  Shall confirm to EN ISO 6259-1
Elongation at break for 5 mm < e u 12 mm ≥ 350 % Test piece shape Type 1 EN ISO 6259-1 and
ISO 6259-3:1997
Test speed 50 mm/min
Number of test pieces  Shall confirm to EN ISO 6259-1
Elongation at break for e > 12 mm ≥ 350 % Test piece shape Type 1 EN ISO 6259-1 and
ISO 6259-3:1997
Test speed 25 mm/min
Number of test pieces  Shall confirm to EN ISO 6259-1
OR
Test piece shape Type 3
Test speed 10 mm/min
Number of test pieces  Shall confirm to EN ISO 6259-1
Longitudinal reversion
Wall thickness ≤16mm
≤ 3 %
 Original appearance of the pipe shall remain.
Test temperature: EN ISO 2505
PE 40 100°C
PE 80 110 °C
PE 100 110  °C
Length of test piece 200mm
Immersion time Shall confirm to EN ISO 2505
Test Method EN ISO 2505
Number of test pieces Shall confirm to EN ISO 2505
Melt mass-flow rate MFR for PE 40 After processing maximum deviation of ±20% of the value measured on the batch used to manufacture the pipe Load 2,16 kg EN ISO 1133
Test temperature 190 °C
Time 10 min
Number of test pieces  Shall confirm to EN ISO 1133
Melt mass-flow rate MFR for PE 80, PE 100 After processing maximum deviation of ±20% of the value measured on the batch used to manufacture the pipe Load 5,0 kg EN ISO 1133
Test temperature 190 °C
Time 10 min
Number of test pieces  Shall confirm to EN ISO 1133
Oxidation induction time ≥20 min Test temperature 200 °C ISO 11357-6
Test environment Oxygen
Specimen weight (15±2)mg
Number of test pieces 3
Effect on water quality National regulations apply
Hydrostatic strength
at 20 °C
No failure during test period of any test pieces End caps Type a EN ISO 1167-1 and
EN ISO 1167-2
Conditioning period Shall confirm to EN 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 80 10.0 MPa
PE 100 12.0 MPa
Hydrostatic strength
at 80 °C
No failure during test period of any test pieces End caps Type a EN ISO 1167-1 and
EN ISO 1167-2
Conditioning period Shall confirm to EN 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 80 4.5 MPa
PE 100 5.4 MPa
Hydrostatic strength
at 80 °C
No failure during test period of any test pieces End caps Type a EN ISO 1167-1 and
EN ISO 1167-2
Conditioning period Shall confirm to EN 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 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

High-Density Polyethylene (HDPE) pipes are the ideal piping material choice for applications including drinking water supply, wastewater management, mining operations, industrial fluid transfer systems, power engineering, communications infrastructure, agricultural irrigation, fire protection systems, marine aquaculture, dredging projects, and oil and gas distribution.

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.

  • Water Supply
  • Sewerage and Drainage
  • Mining
  • Chemical Transportation
Water Supply

Water Supply

HDPE pipes are made of food-grade virgin polyethylene material, making them safe for the transfer of potable water. These pipes are used in both private and public water supply systems due to their high resistance to corrosion, wear and tear, and chemical exposure.

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Sewerage and Drainage

Sewerage and Drainage

HDPE pipes are widely used in sewerage and drainage systems due to their excellent chemical and corrosion resistance. These pipes are sturdy enough to withstand high pressure.

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Mining

Mining

HDPE pipes are ideally suited for mining applications, such as slurry transport and process water transport. Thanks to their outstanding abrasion and impact resistance, they perform exceptionally well in harsh environments.

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Chemical Transportation

Chemical Transportation

With excellent chemical resistance, HDPE pipes are suitable for the transportation of chemicals and hazardous materials.

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HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011
HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011
HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011
HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011
HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011
HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011
HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011
HDPE Water Supply Pipe <br> Standard: EN 12201-2:2011

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