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Oil Out Flow Heaters

Oil Out Flow Heaters
Oil Out Flow Heaters

Oil Out Flow Heaters Specification

  • Features
  • Corrosion resistant, High thermal efficiency, Easy installation
  • Frequency
  • 50 Hz
  • Application Areas
  • Oil Tank Heating, Hydraulic Oil Heating, Lube Oil Heating
  • Terminal Type
  • Threaded / Cable Terminal
  • Usage
  • Industrial Oil Heating
  • Heating Element
  • Tube type Immersion Heater
  • Phase
  • Single / Three Phase
  • Voltage
  • 230 V / 415 V
  • Temperature
  • Ambient to 120C
  • Diameter
  • 2 inch to 6 inch
  • Mounting Type
  • Flange / Screw Type
  • Material Specified
  • Mild Steel / Stainless Steel
  • Insulation Material
  • Ceramic Fiber
  • Shape
  • Cylindrical
  • Power
  • 0.5 KW to 12 KW
 
 

About Oil Out Flow Heaters

SME Offers furnace oil out flow heaters. Furnace oil has viscosity of 1500 sec redwood no.1 at 100f, with a fall in temperature, this viscosity goes further up making oil to flow extremely difficult. To meet this demand out flow heater, have been designed. These heaters are installed at little above the tank bottom. The beauty of the heater is that it does not heat entire tank filled with oil- it only heats the oil that flows through the heater thus cutting down the kilowatt ratting which otherwise may require to heat entire oil tank. Installation is easy and safe. Capacity: 1 kw to 800 kw; and oil flow: 10 to 3000 lph.

Advanced Thermal Protection

Each Oil Out Flow Heater incorporates a built-in thermostat for comprehensive thermal protection, ensuring safe and precise temperature management. This feature minimizes risks of overheating and optimizes energy usage. The thermostat works seamlessly with both manual and automatic control options, allowing operators to maintain target oil temperatures with minimal intervention.


Durable Construction and Versatile Installation

Constructed from mild steel or stainless steel with ceramic fiber insulation, the heaters withstand harsh industrial environments while delivering extended service life of over 10,000 hours. Their corrosion-resistant surface finishpowder coated or polishedenhances structural integrity. With flexible connection types and mounting options, installation is simple and adaptable to different tank and vessel designs.

FAQs of Oil Out Flow Heaters:


Q: How do Oil Out Flow Heaters maintain safe operating temperatures during use?

A: These heaters feature built-in thermostat thermal protection, which automatically regulates and maintains desired oil temperatures. Operators can set manual or automatic controls, ensuring consistent and safe heating performance that prevents overheating.

Q: What benefits do I gain by choosing a heater with IP55 ingress protection and corrosion resistance?

A: IP55 ingress protection shields the heater from dust and water, while corrosion-resistant surfaces prevent material degradation. This combination ensures reliable operation in industrial oil heating environments with minimal maintenance needs.

Q: When is it necessary to replace the heating element, and how can replacement be arranged?

A: Replacement of the tube-type immersion heating element is typically considered after prolonged use or noticeable reduction in heating efficiency. A replacement element is available upon request from the manufacturer or supplier, facilitating quick service and minimal downtime.

Q: Where can these Oil Out Flow Heaters be installed?

A: They are suitable for installation in various industrial settings, such as oil tanks, hydraulic oil reservoirs, and lube oil systems. Thanks to flexible mounting optionsflange or screw typeand terminal connections, they adapt easily to different site requirements.

Q: What is the typical heating process and time for these heaters?

A: Oil Out Flow Heaters provide rapid, adjustable heating to achieve temperatures ranging from ambient up to 120C. Users can fine-tune the heating time and temperature using the provided controls to suit different oil heating needs.

Q: What is the advantage of using manual versus automatic temperature control?

A: Manual control enables precise, hands-on adjustment of heating parameters, while automatic control offers convenience and consistency by maintaining preset temperatures without continual supervision. Both options cater to varied operational preferences and requirements.

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