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Antistatica |
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Mandals Antistatica is a lightweight hose for transfer of fuels and other flammable liquids.
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Download Antistatica datasheet as PDF
Mandals Antistatica is used for for transfer of fuels and other flammable liquids. The hose can also be used in the construction and general industry.
Mandals Antistatica is made from a blend of nitrile rubber and PVC, with added UV barrier to prevent damage from UV radiation. Further more, the nitrile rubber blend has additives making the hose itself electrically conductive. The electrical resistance tested on the hose according to ISO 8031 confirms maximum 10^5 Ohm/m.
This method of achieving conductivity removes the risk of breaking conductive wires commonly used in rubber hoses for this purpose.
The rubber blend is extruded through a circular woven reinforcement made from filament polyester yarn.This production method gives a very strong bonding between cover and lining as well as firmly encapsulating the reinforcing polyester.The hose has high resistance against commonly used chemicals.
Due to the interlocking circular weave, the hose does not stretch when pulled. For the same reason, it has a very high pressure rating to wall thickness ratio.
It can operate from -30°C to +75°C. Intermittent use to +80°C.
Mandals Antistatica
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Inner Diameter
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Wall Thickness
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Weight
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Burst Pressure
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Tensile Strength
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inch
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mm
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inch
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mm
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lbs/ft
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kg/m
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psi
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bar
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lbs
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kg
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3/4
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20,0 +1,6
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0,09
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2,3
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0,14
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0,21
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1500
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100
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4 200
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1 900
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1
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25,4 +1,6
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0,10
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2,5
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0,18
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0,28
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1500
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100
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5 100
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2 300
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1 1/2
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38,0 +1,6
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0,09
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2,2
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0,20
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0,30
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800
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55
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6 400
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2 900
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2
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51,0 +2,0
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0,09
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2,2
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0,25
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0,38
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650
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45
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8 350
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3 800
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2 1/2
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65,0 +2,0
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0,09
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2,2
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0,35
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0,53
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650
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45
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9 200
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4 200
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3
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76,0 +2,0
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0,12
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3,1
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0,64
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0,95
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725
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50
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17 800
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8 100
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4
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102,0 +2,5
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0,13
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3,3
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0,90
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1,35
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550
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38
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22 450
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10 200
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5
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127,0 +3,0
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0,13
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3,3
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1,14
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1,70
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435
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30
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26 850
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12 200
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6
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150,0 +3,0
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0,12
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3,0
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1,14
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1,70
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525
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36
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35 400
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16 100
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To obtain maximum lifetime for the hose, it is recommended that actual Working Pressure and Working Tensile Stress do not exceed 1/3 of the above listed values. * Total theorethical longitudinal strength.
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