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BT5V1320

5VX-1320 Super HC V-belt

Item Code: BT5V1320
Category Belting

Description

High horsepower solution for power transmission applications constrained by drive weight or physical space. Provides a superior combination of flex and load-carrying capacity, transmitting up to 3x the horsepower versus comparably sized belts. Belts put more power where high speeds, high speed ratios or small pulley diameters are required, offering significant benefits over classical section V-belts. Highly recommended for use on all industrial heavy-duty, narrow section V-belt drives. With an increased transmission efficiency this belt allows for a more compact and highly economical drive design. Flex-bonded tensile cords are vulcanized as one solid unit making the belt highly resistant to tensile and flexing forces, fatigue and shock loads. Precision-ground straight sidewalls give a uniform wedging action and ensure the belt fits correctly in the pulley grooves. Molded notches reduce and evenly distribute thermal and bending stresses. Applications: all industrial applications, particularly where space, weight and horsepower capacity are critical. Recommended for Super HC sheaves. Flex-Bonded Cords adhere strongly to the body of the belt, resulting in equal load distribution and absorption of bending stress without cord deterioration Machined belt edge provides maximum sheave groove contact for even wear and extended belt life Proprietary Flex-Weave cover protects the belt's interior from oil, contaminants, and heat Promotes smoother, quieter operation, with less slippage and belt wear Elastomeric compound protects the belt against heat, ozone and sunlight Even with severe slippage, the belt will not catch fire from heat build-up Improved belt life reducing expensive maintenance time Optimally constructed for small sheave diameter drives Molded notch pattern also reduces noise Patented Ethylene Material construction Temperature Range: -30 deg. C to +60 deg. C (-70 deg. F to +250 deg. F) More compact design compared to classical section V-belts Cost and space savings by reducing size of pulleys, bearings, guards and mounts Match system: all sizes meet Gates UNISET tolerances, they can be installed without matching Static conductive (ISO 1813) and can as such be used in the conditions described in the Directive 2014/34/EU- ATEX REACH and RoHS 2 compliant Gates Super HC Molded Notch Belts are constructed from a patented ethylene material that provides high temperature tolerance and exceptional strength. This enables our belts to deliver more horsepower, up to three times more, in less space, making them extremely versatile for a variety of manufacturing and field power transmission applications True notch Gates ethylene compound material 5VX Cross section

Specifications

UNSPSC Code

26111801

Angle

41°

Brand

Gates

Category

Belting

Effective Length

132.24" (3359 mm)

Outside Circumference

132.71" (3371 mm)

Thickness

0.53" (13 mm)

Top Width

0.59" (15 mm)

UOM

EA

Starting from
$160.16 / EA
/
EA
LIST PRICE $160.16
%
- +
Compare
BT5V1320

5VX-1320 Super HC V-belt

Item Code: BT5V1320
Category Belting

Description

High horsepower solution for power transmission applications constrained by drive weight or physical space. Provides a superior combination of flex and load-carrying capacity, transmitting up to 3x the horsepower versus comparably sized belts. Belts put more power where high speeds, high speed ratios or small pulley diameters are required, offering significant benefits over classical section V-belts. Highly recommended for use on all industrial heavy-duty, narrow section V-belt drives. With an increased transmission efficiency this belt allows for a more compact and highly economical drive design. Flex-bonded tensile cords are vulcanized as one solid unit making the belt highly resistant to tensile and flexing forces, fatigue and shock loads. Precision-ground straight sidewalls give a uniform wedging action and ensure the belt fits correctly in the pulley grooves. Molded notches reduce and evenly distribute thermal and bending stresses. Applications: all industrial applications, particularly where space, weight and horsepower capacity are critical. Recommended for Super HC sheaves. Flex-Bonded Cords adhere strongly to the body of the belt, resulting in equal load distribution and absorption of bending stress without cord deterioration Machined belt edge provides maximum sheave groove contact for even wear and extended belt life Proprietary Flex-Weave cover protects the belt's interior from oil, contaminants, and heat Promotes smoother, quieter operation, with less slippage and belt wear Elastomeric compound protects the belt against heat, ozone and sunlight Even with severe slippage, the belt will not catch fire from heat build-up Improved belt life reducing expensive maintenance time Optimally constructed for small sheave diameter drives Molded notch pattern also reduces noise Patented Ethylene Material construction Temperature Range: -30 deg. C to +60 deg. C (-70 deg. F to +250 deg. F) More compact design compared to classical section V-belts Cost and space savings by reducing size of pulleys, bearings, guards and mounts Match system: all sizes meet Gates UNISET tolerances, they can be installed without matching Static conductive (ISO 1813) and can as such be used in the conditions described in the Directive 2014/34/EU- ATEX REACH and RoHS 2 compliant Gates Super HC Molded Notch Belts are constructed from a patented ethylene material that provides high temperature tolerance and exceptional strength. This enables our belts to deliver more horsepower, up to three times more, in less space, making them extremely versatile for a variety of manufacturing and field power transmission applications True notch Gates ethylene compound material 5VX Cross section

Specifications

UNSPSC Code

26111801

Angle

41°

Brand

Gates

Category

Belting

Effective Length

132.24" (3359 mm)

Outside Circumference

132.71" (3371 mm)

Thickness

0.53" (13 mm)

Top Width

0.59" (15 mm)

UOM

EA

Starting from
$160.16 / EA
/
EA
LIST PRICE $160.16
%
- +
Compare
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