Agricultural Pipe Series

HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2
HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2
HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2
HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2
  • HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2
  • HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2
  • HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2
  • HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2

HDPE Agricultural Irrigation Pipe
Standard: ISO 4427-2

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

HDPE pipes play a crucial role in agricultural irrigation systems. Compared with traditional metal pipes, HDPE pipes boast superior corrosion resistance and durability, and can withstand higher pressure. This allows farmers to build more reliable and stable irrigation systems, ensuring a steady water supply for crops. In addition, HDPE pipes feature a low friction coefficient, which reduces water flow resistance and enhances irrigation efficiency.

Description of HDPE (High Density Polyethylene) Agricultural Irrigation Pipe

Efficiency, sustainability and resource management are essential components of modern agriculture. High-density polyethylene (HDPE) pipes are gaining growing popularity among contemporary farmers, thanks to their versatility and durability in agricultural applications. Their uses in the agricultural sector are extensive, ranging from optimizing water distribution and improving waste management to upgrading irrigation systems. HDPE pipes are highly durable tubing manufactured from high-density polyethylene, a type of thermoplastic polymer. They are widely adopted across diverse industries, especially agriculture, due to their outstanding durability, versatility, as well as resistance to corrosion and chemical damage.

 

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HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2
HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2
HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2
HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2

Feature

Benefits of (High Density Polyethylene) Agricultural Irrigation Pipe

HDPE pipes are ideal for agricultural applications due to their exceptional reliability and durability, which helps cut down the operational and maintenance costs typically associated with agricultural piping systems.

Common reasons why farmers opt for HDPE pipes in agricultural applications include:

HDPE Agricultural Irrigation Pipe

Why Xinhengde?

Use brand-new raw materials for a safe and reliable product.

HDPE Agricultural Irrigation Pipe

Why Xinhengde?

Uniform wall thickness; smooth and shiny inner and outer surfaces.

HDPE Agricultural Irrigation Pipe

Why Xinhengde?

Strong toughness, no deformation under pressure, rebound without rupture.

 

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.

01

Corrosion resistance&UV resistance

02

Superior durability and damage resistance

03

Excellent flexibility and ease of installation

04

Lower repair and replacement costs

05

Minimal water leakage and a 10% improvement in water delivery efficiency

06

Higher flow rate and stable pressure for faster delivery of clean water to crops

Specification

ISO 4427-2-2019
SDR 6 SDR 7.4 SDR 9 SDR 11 SDR 13.6 SDR 17 SDR 21 SDR 26 SDR 33 SDR 41
S 2.5 S 3.2 S 4 S 5 S 6.3 S 8 S 10 S 12.5 S 16 S 20
Nominal pressure (PN) bar
PE 40 - PN 10 PN 8 PN 6 PN 5 PN 4 PN 3.2 PN 2.5 - -
PE 80 PN 25 PN 20 PN 16 PN 12.5 PN 10 PN 8 PN 6 PN 5 PN 4 PN 3.2
PE 100 - PN 25 PN 20 PN 16 PN 12.5 PN 10 PN 8 PN 6 PN 5 PN 4
Nominal size Wall Thicknessb
Min T.W. Max T.W. Min T.W. Max T.W. Min T.W. Max T.W. Min T.W. Max T.W. Min T.W. Max T.W. Min T.W. Max T.W. Min T.W. Max T.W. Min T.W. Max T.W. Min T.W. Max T.W. Min T.W. Max T.W.
16 3 3.4 2.3a 2.7 2.0a 2.3 - - - - - - - - - - - - - -
20 3.4 3.9 3 3.4 2.3a 2.7 2.0a 2.3 - - - - - - - - - - - -
25 4.2 4.8 3.5 4 3 3.4 2.3a 2.7 2.0a 2.3 - - - - - - - - - -
32 5.4 6.1 4.4 5 3.6 4.1 3 3.4 2.4a 2.8 2.0a 2.3 - - - - - - - -
40 6.7 7.5 5.5 6.2 4.5 5.1 3.7 4.2 3 3.4 2.4a 2.8 2.0a 2.3 - - - - - -
50 8.3 9.3 6.9 7.7 5.6 6.3 4.6 5.2 3.7 4.2 3 3.4 2.4a 2.8 2.0a 2.3 - - - -
63 10.5 11.7 8.6 9.6 7.1 8 5.8 6.5 4.7 5.3 3.8 4.3 3 3.4 2.5a 2.9 - - - -
75 12.5 13.9 10.3 11.5 8.4 9.4 6.8 7.6 5.6 6.3 4.5 5.1 3.6 4.1 2.9a 3.3 - - - -
90 15 16.7 12.3 13.7 10.1 11.3 8.2 9.2 6.7 7.5 5.4 6.1 4.3 4.9 3.5 4 - - - -
110 18.3 20.3 15.1 16.8 12.3 13.7 10 11.1 8.1 9.1 6.6 7.4 5.3 6 4.2 4.8 - - - -
125 20.8 23 17.1 19 14 15.6 11.4 12.7 9.2 10.3 7.4 8.3 6 6.7 4.8 5.4 - - - -
140 23.3 25.8 19.2 21.3 15.7 17.4 12.7 14.1 10.3 11.5 8.3 9.3 6.7 7.5 5.4 6.1 - - - -
160 26.6 29.4 21.9 24.2 17.9 19.8 14.6 16.2 11.8 13.1 9.5 10.6 7.7 8.6 6.2 7 - - - -
180 29.9 33 24.6 27.2 20.1 22.3 16.4 18.2 13.3 14.8 10.7 11.9 8.6 9.6 6.9 7.7
200 33.2 36.7 27.4 30.3 22.4 24.8 18.2 20.2 14.7 16.3 11.9 13.2 9.6 10.7 7.7 8.6
225 37.4 41.3 30.8 34 25.2 27.9 20.5 22.7 16.6 18.4 13.4 14.9 10.8 12 8.6 9.6
250 41.5 45.8 34.2 37.8 27.9 30.8 22.7 25.1 18.4 20.4 14.8 16.4 11.9 13.2 9.6 10.7
280 46.5 51.3 38.3 42.3 31.3 34.6 25.4 28.1 20.6 22.8 16.6 18.4 13.4 14.9 10.7 11.9
315 52.3 57.7 43.1 47.6 35.2 38.9 28.6 31.6 23.2 25.7 18.7 20.7 15 16.6 12.1 13.5 9.7 10.8 7.7 8.6
355 59 65 48.5 53.5 39.7 43.8 32.2 35.6 26.1 28.9 21.1 23.4 16.9 18.7 13.6 15.1 10.9 12.1 8.7 9.7
400 - - 54.7 60.3 44.7 49.3 36.3 40.1 29.4 32.5 23.7 26.2 19.1 21.2 15.3 17 12.3 13.7 9.8 10.9
450 - - 61.5 67.8 50.3 55.5 40.9 45.1 33.1 36.6 26.7 29.5 21.5 23.8 17.2 19.1 13.8 15.3 11 12.2
500 - - - - 55.8 61.5 45.4 50.1 36.8 40.6 29.7 32.8 23.9 26.4 19.1 21.2 15.3 17 12.3 13.7
560 - - - - 62.5 68.9 50.8 56 41.2 45.5 33.2 36.7 26.7 29.5 21.4 23.7 17.2 19.1 13.7 15.2
630 - - - - 70.3 77.5 57.2 63.1 46.3 51.1 37.4 41.3 30 33.1 24.1 26.7 19.3 21.4 15.4 17.1
710 - - - - 79.3 87.4 64.5 71.1 52.2 57.6 42.1 46.5 33.9 37.4 27.2 30.1 21.8 24.1 17.4 19.3
800 - - - - 89.3 98.4 72.6 80 58.8 64.8 47.4 52.3 38.1 42.1 30.6 33.8 24.5 27.1 19.6 21.7
900 - - - - - - 81.7 90 66.1 73 53.3 58.8 42.9 47.3 34.4 38.3 27.6 30.5 22 24.3
1000 - - - - - - 90.8 100 73.5 80.9 59.3 65.4 47.7 52.6 38.2 42.2 30.6 33.5 24.5 27.1
1200 - - - - - - - - 88.2 97.2 71.1 74.8 57.2 63.1 45.9 50.6 36.7 40.5 29.4 32.5
1400 - - - - - - - - 102.8 113.3 83 90.8 66.7 73.5 53.5 59 42.9 47.3 34.3 37.9
1600 - - - - - - - - 117.5 129.5 94.8 103.7 76.2 84 61.2 67.5 49 54 39.2 43.3
1800 - - - - - - - - - - 106.6 116.6 85.8 94.4 68.8 76.2 55.1 60.1 44 48.3
2000 - - - - - - - - - - 118.5 129.5 95.3 104.9 76.4 84.7 61.2 66.8 48.9 53.8
2250 - - - - - - - - - - - - 107.2 118.1 86 94.8 68.9 75.9 55 60.7
2500 - - - - - - - - - - - - 119.1 131.2 95.5 105.2 76.5 84.3 61.2 67.5
2800 - - - - - - - - - - - - 133.4 146.9 107 117.8 85.7 94.4 68.5 75.5
3000 - - - - - - - - - - - - 142.9 157.3 114.6 126.2 91.8 101.1 73.4 80.9
NOTE1  1 bar= 0.1 MPa= 105 Pa; 1 MPa= 1 N/mm2.
NOTE2  PN values are based on C= 1.25.
NOTE3  Tolerances in accordance with ISO 11922-1:2018, grade V, calculated from (0.1
Min T.W. + 0.1) mm rounded upto the next 0.1 mm. For certain applications for Min T.W.> 30 mm, ISO 11922-1:2018, grade T, tolerances may be used calculated from 0.15 Min T.W., rounded up to the next 0.1 mm.
NOTE4  The calculated value of emin accrdingto ISO 4065:2018 is rounded up to the nearest value of either 2.0, 2.3 or 3.0.
For practicalreasons.a minimm wallthicknes of 3.0 mm is reommended for electrofusion jointing and jointing with but fusion fitings and for lining applications.

 

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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 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

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.

HDPE Agricultural Irrigation Pipe

HDPE Agricultural Irrigation Pipe

HDPE Agricultural Irrigation 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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HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2
HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2
HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2
HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2
HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2
HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2
HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2
HDPE Agricultural Irrigation Pipe<br> Standard: ISO 4427-2

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