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EMDS PE100-RC

  • Gerodur EMDS PE100-RC protective pipes made of resistant PE100_RC material

EMDS PE100-RC

Protective pipes made of resistant PE100-RC material with increased resistance to point loads and crack-initiating stress peaks. For underground installation of high and medium voltage lines with continuous service temperatures up to 40°C.

TECHNICAL SPECIFICATIONS

  • SDR
    7,4 | 11 | 17 | more on request
  • Dimension
    32 - 630 mm
  • Usage
    High and medium voltage cables
  • Pipe structure
    EMDS protection pipe according to DIN and EN standards | solid wall pipe made of crack resistant polyethylene (PE100-RC) with smooth ends
  • Marking
    Solid wall pipe in black (optionally with red identification stripes or co-extruded, coloured outer layer) | Complete metre marking in accordance with standard specifications
  • Application/­intended use
    EMDS protective conduit for buried installation for blowing in, pulling in and inserting cables and fibre optics | Cable protection conduit for high- and medium-voltage cables with continuous service temperatures up to 40°C
  • Special feature(s)
    Increased resistance to point loads and crack-initiating stress peaks
  • Material
    PE100-RC according to PAS 1075
  • Delivery forms
    straight length | coil | drum
  • Tender texts
    EMDS conduit pipe High performance class PE100-RC at Ausschreiben.de
    EMDS conduit pipe PE100-RC with protective jacket at Ausschreiben.de

This product is also available with ISCC Plus sustainability certification on request. We have summarised all the information for you here -> ISCC Plus

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References

Suitable installation

  • Gerodur laying in sand bed Computer graphics

    Sand bedding


    When laying in a sand bed, the excavated material must be replaced with a sand bedding in accordance with DIN EN 805. Restrictions on the grain sizes of the bedding material must be observed.
  • Gerodur laying without sand bed Computer graphics

    Without sand bedding


    Due to the verification by an independent testing institute, the installation is possible without a sand bed. This eliminates the additional expense of replacing the excavation with a sand bedding in accordance with DIN EN 805 (transport, landfill).
  • Gerodur ploughing method Computer graphics

    Ploughing


    In the ploughing method, the soil is displaced by a plough blade and the pipeline is placed on the bottom of the soil.
  • Gerodur milling process Computer graphics

    Milling


    In the milling process, a pipe trench is cut into the subsoil by machine and the pipeline is laid on the bottom of the trench.
  • Gerodur pipe bursting computer graphics

    Pipe bursting


    Static pipe bursting is the renewal of the old pipeline along the same of the old pipe route, which is shattered by the bursting head and the remaining fragments are pressed into the surrounding soil.
  • Gerodur Horizontal Directional Drilling (HDD) computer graphics

    Horizontal Directional Drilling (HDD)


    The new installation by HDD is usually carried out in three successive work steps. With the continuous pilot borehole, which is controlled by positioning the route is determined. This is followed by the widening of the borehole and the pulling in of the pipe string.
  • Gerodur relining installation computer graphics

    Relining


    In the case of relining with annular space, the new pipe string with a smaller cross-section is pulled into the cleaned old pipeline using a pull-in device.
  • Gerodur soil displacement method computer graphics

    Soil Displacement Method


    In the soil displacement method, a pneumatically operated displacement hammer, a so-called "rocket", is used to excavate an underground cavity. The new pipeline is then pulled into it.

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Want to find out more?
We look forward to hearing from you.
Gerodur MPM Kunststoffverarbeitung GmbH & Co. KG
01844 Neustadt i. Sa.
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