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HR & OR Belt (Heat & Oil Resistance) conveyor

HR & OR Belt (Heat & Oil Resistance)

Monster Heat & Oil Resistance belt are manufactured using specially formulated rubber compounds. They are suitable for transporting a very wide range of materials which are coated with oil or may have traces of it.

Few applications demand a certain degree of resistance to oil. The general purpose conveyor belts are designed to withstand abrasion and wear, however they are not designed to withstand a higher level of oil resistance. This results in the swelling of cover when they come into contact with petroleum based oils, greases, animal or vegetable fats, etc. The resultant swelling of the rubber leads to failure of the belt due to reverse troughing, joint separation or cover delamination.

To address this challenge, we offer a large range of Oil Resistant belts in the industry which can be customised to suit individual industry needs.

Application:

  • Metal turnings
  • Hot asphalt/ Hot mix plants
  • Scrap recycling and compost handling
  • Coated fertiliser products
  • Refineries for handling pet coke
  • Soya and grain handling facilities
oil-resistant-conveyor-belt

Benefits:

  • They have a high degree of chemical resistance.
  • They have unique properties to prevent material build up.
  • They can be designed to convey oily materials, thereby resulting in higher belt life.
  • The occurrence of reverse troughing of belts can be eliminated.
Oil and grease resistant conveyor belts

Heat Resistant Conveyor Belting – HR

Performance proven Heat & Oil Resistance belt recommended to protect conveyor belting from surface cracking and hardening by heat from hot service applications like hot sintered ore, hot pellet, hot clinker, hot chemical, fertilizer and hot cement, etc. Heat and abrasion resistant cover rubber has been heat treated and dipped to minimize carcass shrinkage and heat aging.
Please see the table below to get an idea of your needs based on materials transported on belting.

Heat Resistant Conveyor Belt Belts HR Grade, UHR GRADE, SHR

The rubber cover protects the fabric of the belt against hot materials such as alumina, ash, granite, iron and copper, grit etc, available in various grades.
Provide variety of heat resistance conveyor belt
— HR GRADE HEAT RESISTANCE CONVEYOR BELT
— SHR GRADE SUPER HEAT RESISTANCE CONVEYOR BELT
— UHR GRADE ULTRA HEAT RESISTANCE CONVEYOR BELT

COVER GRADE SELECT CHART
Cover Type Standard/ Grade Minimum
Tensile Strength
Minimum
Elongation at
Break (%)
Maximum
Swelling in
Fuel B (%)
Reference Material
High Oil Resistant AR-HiOR 15 350 35 Convey materials like Crude
petroleum, oil coated products,
oil coated products, etc.
Oil Resistant AR-OR
IS-OR, AS-Z, DIN-G
12.5 350 70 Materials like light oil coated sand,
food grains, oil-seeds, etc.
Moderate Oil
Resistant
AR-MOR 12.5 350 110 Materials like oil seeds, wood chips,
vegetable oil coated products, etc.
Oil and Heat
Resistant
AR-SOR-HR 12 300 70 Heat resistant up to 125°C, used for
hot asphalt handling
High Heat and
Oil Resistant
AR-SHR-SOR 12 300 55 Moderate heat resistant up to 100°C,
for handling tar coated material
Oil Resistant and
High Abrasion
AR-OR-HAR 12 300 60 High wear resistant meant for
Oil, Heat and Fire
Resistant
AR-OR-HR-FR 12 300 60
MATERIALS AND BELT SURFACE TEMPERATURES
Materials Carried Lump Size Termperature of Material Carried Belt Surface Temperature
Sintered Ore 25-200 mm (1-8 inch) 200-400ºC (390-750ºF) 130-150ºC (270-300ºF)
Return of Sintered Ore Below 10 mm (0.4 inch) 260ºC (480ºF) 150-190ºC (300-370ºF)
Coke 100-200 mm (4-8 inch) 70-100ºC (160-210ºF) 50-60ºC 120-140ºF)
Raw Material Below 30 mm (1.2 inch) 180-220ºC (360-410ºF) 100-120ºC (210-250ºF)
Clinker 10-30 mm (0.4 – 1.2 inch) 100-220ºC (210-440ºF) 100-110ºC (210-230ºF)
Cement Powder 100-125ºC (210-250ºF) 80-90ºC (170-190ºF)
Metal Powder 170ºC (340ºF) 120-130ºC (250-270ºF)
Molding Sand 200-250ºC (390-480ºF) 80-90ºC (170-190ºF)

Heat resistant belts are best suited for conveying product that is over 60º (140º F). The surface temperature of heat resistant belting varies with the material type, belt speed, loading rate and size. To select the proper heat resistant belting, consider not only the material temperature to be conveyed but the surface temperature of the belt as well.