TF2MT-20 BY THE INCH : Alfagomma Double Compact Wire FLEXOPAK 2 MINETUFF 100R16 Hydraulic Hose, 1-1/4 (-20) ID, 2000psi

Save $1.61
AlfagommaSKU: TF2MT-20 BY THE INCH
Same Day

Price:
Sale price$1.12 Regular price$2.73

Product Details

Data Sheet Click here to download
Usually Ships Within Same Day
Factory Location Batavia, Illinois
Material Black Synthetic Rubber, Blue Cover, Hot Water-resistant
Pressure Rating 2000
Inside Diameter 1-1/4 (-20)
Hose Outside Diameter 1.65
Burst Rating 8000
Bend Radius 8.3
Tube Material Black synthetic rubber
Reinforcement Material Two high tensile steel wire braids, separated by a layer of synthetic rubber
Cover Material Black Synthetic rubber, weather, oil, fuel, ozone and excellent abrasion-resistance
Hose Type FLEXOPAK 2 MINE TUFF
Series TF2MT-IN
Country of Manufacture Italy
Height 1.65
Length 1
Width 1.65
Weight 0.08

Description

The Alfagomma TF2MT Series Double Compact Wire Hydraulic Hose is designed for high-pressure applications that require tight bends, offering excellent performance with petroleum-based hydraulic fluids, water/glycol, fire-resistant fluids, hot oil, grease, lubricants, and fuel oils. With two high-tensile steel wire braids reinforced by a synthetic rubber layer, this hose is highly durable and excels in impulse testing, exceeding 1,000,000 cycles when used with compatible ALFAGOMMA couplings. The hose features a synthetic rubber tube that is resistant to weather, oil, fuel, ozone, and abrasion, making it ideal for demanding environments. It operates within a temperature range of -40°F (-40°C) to +212°F (+100°C) for constant service, with a maximum operating temperature of +257°F (+125°C). For air or gas applications above 250 PSI, the cover should be pin-pricked to prevent damage. This hose meets or exceeds EN 857 2SC and SAE 100 R16 standards, providing superior flame resistance and reliability in various hydraulic and industrial applications. With excellent flexibility and longevity, the TF2MT hose is perfect for heavy-duty service, offering optimal performance and durability in high-pressure, demanding environments.