Flexible Recycled Polyethylene DPC for Protection Against Rising Damp
Timco Damp Proof Course (DPC) is a high-quality polyethylene barrier designed to prevent rising damp within masonry walls. Installed within the inner leaf of brick or blockwork, it creates an effective moisture barrier to protect buildings from water ingress and long-term structural damage.
Manufactured from 100% recycled polyethylene and compliant with BS 6515:1984 standards, this durable and flexible membrane is suitable for a wide range of construction and renovation projects. Supplied in 30 metre rolls with multiple width options, it provides a reliable and easy-to-install solution for damp-proofing applications.
Key Features & Benefits
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Effective Damp Protection: Prevents rising damp within brick and block walls.
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Durable Construction: Made from tough recycled polyethylene for long-lasting performance.
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Flexible & Easy to Install: Lightweight and easy to cut and position on-site.
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Standards Compliant: Conforms to BS 6515:1984.
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Versatile Application: Suitable for new builds, extensions, and refurbishment projects.
Product Details
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Material: Recycled Polyethylene (PE)
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Colour: Black
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Roll Length: 30 metres
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Thickness: 500 micron (2000 gauge)
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Pack Type: Roll
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Standard: BS 6515:1984 compliant
Available Sizes
| Product Code |
Width (mm) |
Length (m) |
Thickness |
Pack Type |
| 887100 |
100 |
30 |
500 micron (2000 gauge) |
Roll |
| 887112 |
112 |
30 |
500 micron (2000 gauge) |
Roll |
| 887150 |
150 |
30 |
500 micron (2000 gauge) |
Roll |
| 887225 |
225 |
30 |
500 micron (2000 gauge) |
Roll |
| 887300 |
300 |
30 |
500 micron (2000 gauge) |
Roll |
| 887450 |
450 |
30 |
500 micron (2000 gauge) |
Roll |
| 887600 |
600 |
30 |
500 micron (2000 gauge) |
Roll |
Typical Uses
- Installed within brick or block cavity walls to prevent rising damp
- Used in new build construction and extensions
- Suitable for refurbishment and remedial damp-proofing works
Timco Damp Proof Course provides a reliable moisture barrier within masonry structures, helping to protect internal finishes and structural integrity over the long term.