Category

Steinbacher Izoterm - PUR sheath in a PVC foil Steinonorm 720

manufacturer: Steinbacher Izoterm

Category: STEINBACHER IZOTERM - polystyrene, polyurethane

product #: 20985

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Price on request

price-list
net unit price
90,13zł
for item
discount price
net unit price
60,57zł
for item
minimum trading quantity
the amount of product
1.00 item
unit
trading
1.00 item
total price
net list price
90,13zł
for 1.00 item
total price
discounted net price
60,57zł
for 1.00 item
price-list
gross unit price
110,86zł
for item
discount price
gross unit price
74,50zł
for item
minimum trading quantity
the amount of product
1.00 item
unit
trading
1.00 item
total price
gross list price
110,86zł
for 1.00 item
total price
gross discount price
74,50zł
for 1.00 item

Product description

For thermal insulation of the pipeline (straight section and arc in) and heat exchanger in heating networks sending a heat carrier with a continuous temperature up to +135 C. For thermal insulation of the pipeline in and heating equipment located in buildings (heating nodes, boiler rooms, heating plants, etc. ) or heating ducts. For insulating the pipeline in and equipment outside buildings, i.e. above ground in an additional cover. Heat-insulating cover made of rigid PUR foam in a PVC foil cover.

insulated pipe diameter Wed. ext. Coating [mm] insulation thickness [mm] quantity in a box [mb]
all DN
2 50 60 50 14
2 1/2 65 78 55 10
3 80 92 60 8
4 100 117 40 11
4 100 117 60 7
4 100 117 100 3
5 125 137 40 10
5 125 137 50 7
5 125 137 75 5
6 150 163 45 7
6 150 163 80 4
8 200 225 50 5
8 200 225 87 2
10 250 280 60 3
12 300 330 60 -
12 300 330 80 -
12 300 330 100 -
14 350 364 60 -
16 400 416 60 -
18 450 464 60 -
twenty 500 516 60 -
24 600 624 80 -
24 600 624 90 -
24 600 624 100 -
24 600 624 120 -

Technical data

fire classification - reaction to fire:
materiał nie rozprzestrzeniający ognia
internal diameter range lagging:
117 - 416 mm
length:
1 m
maximum temperature of use:
+135 °C
range of thickness of insulation lagging:
40 - 60 mm
thermal conductivity λ:
0,030 W/mK

Attachments