LITAFLEX uPVC Conduit Pipes and uPVC Conduit Fittings are produced from a specially formulated compound, Polyvinyl Chloride. They are manufactured to comply with the British Standard BS EN 61386-21: 2004 and BS 4607 Part 5 respectively.

LITAFLEX uPVC Conduit Pipes are widely used for surface installation, and also particularly for wiring system buried in concrete slab.


uPVC CONDUIT PIPE

British Standard BS EN 61386-21: 2004
uPVC CONDUIT PIPE
Norminal Size
Wall Thickness

Packing

Product No.
Outer Dimension
Medium Gauge
Heavy Gauge
Local
Export
CP 20
20mm
1.6
1.8
20
50
CP 25
25mm
1.7
1.9
20
40
CP 32
32mm
2.0
2.2
10
10
CP 40
40mm
2.2
2.5
10
10
CP 50
50mm
2.5
2.8
5
5

CLASSIFICATION : MEDIUM GAUGE CLASS 332112
  : HEAVY GAUGE CLASS 442112
STANDARD LENGTH : 2.9 METERS
WALL THICKNESS TOLERANCE : ± 0.1mm
COLOUR : WHITE / BLACK



ADVANTAGE OF LITAFLEX uPVC CONDUIT SYSTEM
Lightweight - uPVC is approximately 1/6 the weight of equivalent galvanized steel system, making it easier to transport, install and handle.

Time Saving Installation - It is easy to cut and push fit to accessories. No treading and special tools are required to cut and joint. The conduit cuts easily with a sharp handsaw or PVC cutter and is securely joined by solvent cement.

Cold bending - Form a 90° angle with just the aid of a bending spring.

Safety - u PVC is a non-conductive material, producing a fully insulated system.

Corrosion resistant - Rigid, non-conducting PVC conduit is immune to almost all types of corrosive such as chemical, inorganic acids biological, or electrochemical encountered in either underground or aboveground systems.

Cost effectiveness - uPVC Conduit is less expensive compared to steel. Further savings on labour cost can also be generated due to a faster installation time.




Physical Properties of LITAFLEX Conduit Material

Unit
PVC
Specific Gravity
g/ cm3
1.35
Water Absorption
-
negligible
Module of Elasticity
kg/ cm2
30,000
Softening Temperature
°C
75-85
Forming Temperature
°C
120
Insulating Temperature
Megohm
2.8 X 105
Elongation at Tear
%
30