HDPE Pipe For Trench-less Installation

Trench-less installation high-density polyethylene (HDPE) pipe is a pipe used in trench-less technology. It can pull the pipe through the road like threading a needle without damaging the roadbed to complete the laying of the pipe.

1.Dia: OD20-1600mm for water, OD20-630mm for gas.
2.SDR: SDR11, SDR13.6, SDR17, SDR21, SDR26, SDR33, SDR41.
3.PN: PN16, PN10, PN8, PN6, PN5, PN4.
4.Material: PE63, PE80, PE100, PE4710, PE3608, PE3408, PE100RC.
5.Applications: drainage pipes, low pressure gas pipe etc.
6.Standard: ISO 4427,EN12201, AS/NZS4130, ASTM 3035, DIN8074, GOST18599, DIPS, ASTM F714…
7.Delivery: 10-20 days depending on the total quantity.
8.Packing: 11.8m or 5.8m/ Pcs for straight, 100-200m by coils for DN20-90mm.
9.CO (Certificate of Origin): China, CO could be provided for free.
10.Product Test: Raw material test, production process test, shipment end product test, third party test.

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Category:

Description of Trench-less Installation HDPE pipe

1-Trench-less installation underground pipeline laying technology (referred to as non-excavation technology) refers to the construction technology that uses rock drilling, guidance, measurement and control and other technical means to lay public utility HDPE pipelines such as water supply, gas, sewage, cables, etc. without digging trenches on the surface and with minimal damage to the ground structure.

2-The main technologies include directional drilling, micro-tunneling, impact spear and ramming pipe laying technology. Trench-less HDPE pipe laying technology can be used to lay various underground pipelines with diameters from 40mm to 1000mm, and the distance can reach thousands of meters.

3-Trench-less installation high-density polyethylene HDPE has strong resistance to external pressure (can withstand large tensile forces), good flexibility (can adapt to settlement well, strong earthquake resistance), and light unit weight (can reduce friction with the hole wall during traction), making it very suitable for traction construction.

To ensure the quality of the project, the HDPE pipeline material must meet various design requirements

1. The inner and outer walls of the pipeline are smooth and flat, the pipe body has no cracks, and the pipe mouth has no defects such as damage, cracks or deformation;
2. The end face of the pipeline should be flat (perpendicular to the axis of the pipe), and there should be no obvious axial bending. The size and roundness of the outer diameter of the pipe spigot and the inner diameter of the socket should meet the requirements;
3. The internal pressure strength and rigidity of the pipe should meet the design requirements;

Compared with the traditional “digging trenching and burying pipe method”, trench-less installation HDPE pipe laying technology has the following advantages

1. Does not pollute the environment
2. Does not affect traffic
3. Little damage to the formation structure
4. Safe and reliable construction
5. Short cycle
6. No need to transport and stack soil
7. Low cost, significant social and economic benefits

We have completed HDPE Fittings and Welding Machine, and tools to complete with our HDPE Pipe for your construction, One-stop supply, to meet your different requirements, and save your cost and time, Please visit our HDPE Fittings Category and Welding Machine Category, Contact Us To get more details.

Please Contact us to Get More Details, Send Email: [email protected]. or Mobile:(WhatsApp): +86 155 15596408.

    Specification

    Specification of Trench-less Installation HDPE pipe

    ISO 4427-2: Plastics piping systems. Polyethylene pipes & fittings for water supply – Part 2: Pipes
    EN 12201-2: Plastics piping systems for water supply – Polyethylene – Part 2: Pipes

    HDPE Pipe for Drinking Water
    HDPE Pipe and Fittings from Bingo Pipeline
    ISO Size and Dimension Data
    Henan Bingo Pipeline ISO
    Pressure Ratings are calculated using a 1,25 design coefficient (C) for MRS at 20°C as listed in PPI TR-4 for PE 100 materials.  Pressure ratings are based on water applications. Temperature, Chemical, and Environmental use considerations may require use of additional design coefficients.
    ISO 4427 Pipe Series S 3.2 S 4 S 5 S 6,3 S 8 S 10 S 12,5 S 16
    ASTM F714 DR DR 7.4 DR 9 DR 11 DR 13.6 DR 17 DR 21 DR 26 DR 33
    Nominal Pressure PE 100 PN = 25 bar PN = 20 bar PN = 16 bar PN = 12,5 bar PN = 10 bar PN = 8 bar PN = 6 bar PN = 5 bar
    Nominal Size DN (mm) Equiv Size (in) Min Wall (mm) Average ID (mm) Min Wall (mm) Average ID (mm) Min Wall (mm) Average ID (mm) Min Wall (mm) Average ID (mm) Min Wall (mm) Average ID (mm) Min Wall (mm) Average ID (mm) Min Wall (mm) Average ID (mm) Min Wall (mm) Average ID (mm)
    20 0.79 3.0 13.6 2.3 15.12 2.0 15.76 1.5 16.88 1.2 17.51 1.0 17.98 0.6 18.72 0.61 18.72
    25 0.98 3.5 17.60 3.0 18.64 2.3 20.12 2.0 20.76 1.5 21.88 1.2 22.48 0.8 23.39 0.76 23.39
    32 1.26 4.4 22.70 3.6 24.37 3.0 25.64 2.4 26.91 2.0 27.76 1.5 28.77 1.0 29.94 0.97 29.94
    40 1.57 5.5 28.30 4.5 30.46 3.7 32.16 3.0 33.64 2.4 34.91 2.0 35.76 1.2 37.43 1.21 37.43
    50 1.97 6.9 35.40 5.6 38.13 4.6 40.25 3.7 42.16 3.0 43.64 2.4 44.91 2.0 45.76 1.52 46.79
    63 2.48 8.6 44.80 7.1 47.95 5.8 50.70 4.7 53.04 3.8 54.94 3.0 56.64 2.5 57.70 1.91 58.95
    75 2.95 10.3 53.20 8.4 57.19 6.8 60.58 5.6 63.13 4.5 65.46 3.6 67.37 2.9 68.85 2.27 70.18
    90 3.54 12.3 63.90 10.1 68.59 8.2 72.62 6.7 75.80 5.4 78.55 4.3 80.88 3.5 82.58 2.73 84.22
    110 4.33 15.1 78.00 12.3 83.92 10.0 88.80 8.1 92.83 6.6 96.01 5.3 98.76 4.2 101.10 3.33 102.93
    125 4.92 17.1 88.70 14.0 95.32 11.4 100.83 9.2 105.50 7.4 109.31 6.0 112.28 4.8 114.82 3.79 116.97
    140 5.51 19.2 99.30 15.7 106.72 12.7 113.08 10.3 118.16 8.3 122.40 6.7 125.80 5.4 128.55 4.24 131.01
    160 6.30 21.9 113.60 17.9 122.05 14.6 129.05 11.8 134.98 9.5 139.86 7.7 143.68 6.2 146.86 4.85 149.72
    180 7.09 24.6 127.80 20.1 137.39 16.4 145.23 13.3 151.80 10.7 157.32 8.6 161.77 6.9 165.37 5.45 168.44
    200 7.87 27.4 141.90 22.4 152.51 18.2 161.42 14.7 168.84 11.9 174.77 9.6 179.65 7.7 183.68 6.06 187.15
    225 8.86 30.8 159.70 25.2 171.58 20.5 181.54 16.6 189.81 13.4 196.59 10.8 202.10 8.6 206.77 6.82 210.55
    250 9.84 34.2 177.50 27.9 190.85 22.7 201.88 18.4 210.99 14.8 218.62 11.9 224.77 9.6 229.65 7.58 233.94
    280 11.02 38.3 198.80 31.3 213.64 25.4 226.15 20.6 236.33 16.6 244.81 13.4 251.59 10.7 257.32 8.48 262.01
    315 12.40 43.1 223.60 35.2 240.38 28.6 254.37 23.2 265.82 18.7 275.36 15.0 283.20 12.1 289.35 9.70 294.44
    355 13.98 48.5 252.20 39.7 270.84 32.2 286.74 26.1 299.67 21.1 310.27 16.9 319.17 13.6 326.17 10.90 331.89
    400 15.75 54.7 284.00 44.7 305.24 36.3 323.04 29.4 337.67 23.7 349.76 19.1 359.51 15.3 367.56 12.30 373.92
    450 17.72 61.5 319.60 50.3 343.36 40.9 363.29 33.1 379.83 26.7 393.40 21.5 404.42 17.2 413.54 13.80 420.74
    500 19.69 67.6 356.70 55.8 381.70 45.4 403.75 36.8 421.98 29.7 437.04 23.9 449.33 19.1 459.51 15.30 467.56
    560 22.05 75.7 399.50 62.5 427.50 50.8 452.30 41.2 472.66 33.2 489.62 26.7 503.40 21.4 514.63 17.20 523.54
    630 24.80 85.1 449.60 70.3 480.96 57.2 508.74 46.3 531.84 37.4 550.71 30.0 566.40 24.1 578.91 19.30 589.08
    710 27.95 95.9 506.70 79.3 541.88 64.5 573.26 52.2 599.34 42.1 620.75 33.9 638.13 27.2 652.34 21.80 663.78
    800 31.50 108.1 583.8 89.3 610.68 72.6 646.09 58.8 675.34 47.4 699.51 38.1 719.23 30.6 735.13 24.50 748.06
    900 35.43 126.62 646.76 100.0 700.00 81.7 726.80 66.2 759.66 53.3 787.00 42.9 809.05 34.4 827.07 27.60 841.49
    1000 39.37 135.14 729.72 111.12 777.76 90.2 808.78 72.5 846.30 59.3 874.28 47.7 898.88 38.2 919.02 30.60 935.13
    1200 47.24 162.16 875.68 133.34 933.32 109.1 981.82 88.2 1013.02 67.9 1056.05 57.2 1078.74 45.9 1102.69 36.70 1122.20
    1400 55.12 189.19 1021.62 155.56 1088.88 127.3 1145.46 102.9 1181.85 82.4 1225.31 66.7 1258.60 53.5 1286.58 42.90 1309.05
    This product flyer is intended for reference purposes.  It should not be used in place of the advice from a licensed Professional Engineer.  Nominal pressure (PN) is based on C = 1,25 and an operating temperature of 20°C.  Weight is calculated using DN and Minimum wall plus 6% for use in estimating fluid flow. Actual ID will vary. When designing components to fit the pipe ID, refer to pipe dimensions and tolerances in the applicable pipe manufacturing specification.  To obtain pressure in psi, multiply bar by 14.5 (1 bar ≈ 14.5 psi).  Additional information is available at www.bingopipes.com.

    Other specifications have not been shown on our dimension chart, please CONTACT US for more information

    Please Send Email: [email protected] or Mobile:(WhatsApp): +86 155 15596408.

      Application

      It is mainly used for laying pipelines in areas where excavation cannot be carried out
      – Historical monument protection areas, downtown areas, crop and plant protection areas,
      – Crossing highways, railways, buildings, rivers, etc.
      – Widely used in pipeline projects such as rainwater, sewage, telecommunications, electricity and gas, oil and gas, tap water, and heat,
      – Horizontal precipitation projects, pipe shed support projects
      – Pollutant anti-seepage control projects.

      Different types of application

      Trench-less high-density polyethylene HDPE pipeline crossing road construction
      Trench-less high-density polyethylene HDPE pipeline crossing highway construction
      Trench-less high-density polyethylene HDPE pipeline construction across farmland
      Trench-less High-Density Polyethylene HDPE Pipeline Road Construction
      Trench-less high-density polyethylene HDPE pipe municipal construction

      Trench-less Installation HDPE Pipe Trench-less Installation HDPE Pipe
      Trench-less Installation HDPE Pipe is used for drainage Trench-less Installation HDPE Pipe is used for gas
      Trench-less Installation HDPE Pipe Trench-less Installation HDPE Pipe
      Trench-less Installation HDPE Pipe is used for construction Trench-less Installation HDPE Pipe is used for gas

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        ISO4427 HDPE PIPES

        📄EN1555-2 Plastics piping systems for the supply of gaseous fuels-Polyethylene (PE)- Part 2 Pipes

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        📄EN1555-2 Plastics piping systems for the supply of gaseous fuels-Polyethylene (PE)- Part 2 Pipes

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