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Arc Furnace Transformer
Arc Furnace Transformer
Arc Furnace Transformer
Arc Furnace Transformer

Arc Furnace Transformer

MOQ : 1 Unit

Arc Furnace Transformer Specification

  • Cooling Type
  • Oil Natural Air Natural (ONAN)/ Oil Natural Air Forced (ONAF)/ Oil Forced Air Forced (OFAF)/ Oil Forced Water Forced (OFWF)
  • Operating Temperature
  • 500 Celsius (oC)
  • Coil Material
  • Copper Core
  • Product Type
  • Oil Immersed
  • Material
  • Copper
  • Output
  • Product wise
  • Frequency (MHz)
  • 50 Hertz (HZ)
  • Efficiency
  • 99.9%
  • Phase
  • Three Phase
  • Coil Structure
  • Laminated Core
  • Power Scope
  • Upto 10 MVA
 

Arc Furnace Transformer Trade Information

  • Minimum Order Quantity
  • 1 Unit
  • Supply Ability
  • 100 Units Per Month
  • Delivery Time
  • 2-3 Months
  • Main Export Market(s)
  • Australia, North America, South America, Eastern Europe, Middle East, Africa, Central America, Western Europe, Asia
  • Main Domestic Market
  • All India
 

About Arc Furnace Transformer

Backed by in-house testing unit & panel of experienced professional, we are instrumental in manufacturing and exporting Arc Furnace Transformer. Broadly used in arc furnace or induction furnace applications, these transformers are highly demanded by diverse industries. We source high grade quality material and components from leading vendor base for manufacturing these transformers as per industrial standards. Apart from this, Arc Furnace Transformer is provided to our valuable clients without any delay.

Features of Power Transformer :

  • Efficient control
  • Low-voltage windings
  • High efficiency
  • Corrosion resistance
  • Supreme quality
  • Durability
  • Excellent functionality rate
  • Sturdy & Steely design to take care of frequent short circuits.
  • Broad process of wrinkle and siccative of coils resulting in a robust construction.
  • Step-up and Step-down transformers manufactured.
  • Manufactured with prime CRGO using step-lap design for low losses.
  • Various ratings type tested from National Accreditation Board for Testing and Calibration Laboratories (NABL) accredited labs
  • Able to withstand Impulse Voltage and Short Circuit tests as per IS/IEC
  • Excellent finish of powder coating.
  • Available as completely self protected (csp) type.
  • Designed to meet customized specifications as per requirement.
  • Available as Corrugated Hermetically Sealed Type which is compact in size
Applications:
  • Gas factories
  • Steel plants
  • Calcium carbide industries

Specifications:

  • "Off Circuit Manually Operated" and "On Load Tap Changer" (OLTC) with AVR and RTCC panel.
  • OFWF cooling with ONAN cooling optional.
  • ONAN cooling with conventional pressed steel radiators.
  • Requisite series reactors for arc furnace transformers to reduce the short circuit stresses generated in transformer during the furnace operation.
  • Designed to withstand the harmonics generated due to furnace operation.
  • 'Tap Changer' options available in these furnace transformers and arc furnace transformers.


Advanced Copper Core for Optimal Performance

The Arc Furnace Transformer utilizes a copper-laminated core that maximizes conductivity and reduces energy losses. The three-phase configuration ensures stable power output, while its robust construction enables it to function efficiently even under high operational temperatures. This makes it highly suitable for industrial scenarios where sustained performance and reliability are vital.


Multiple Cooling Options for Versatile Operations

Equipped with adaptable cooling mechanisms like ONAN, ONAF, OFAF, and OFWF, this transformer allows customization to match your process needs. This flexibility significantly enhances the transformer's lifespan and maintains performance integrity, even during prolonged heavy-duty usage. Such adaptability is crucial in industries working with fluctuating loads and high thermal stress.

FAQ's of Arc Furnace Transformer:


Q: How does the Arc Furnace Transformer maintain efficiency at high temperatures?

A: The Arc Furnace Transformer is constructed with a high-grade copper-laminated core, which offers superior thermal conductivity. Its design, along with advanced cooling options (ONAN, ONAF, OFAF, OFWF), ensures consistent performance and remarkable efficiency (99.9%) even at operating temperatures up to 500C.

Q: What industries benefit most from using this Arc Furnace Transformer?

A: Industries such as steel manufacturing, alloy production, and any application requiring high power at elevated temperatures benefit greatly from this transformer. Its robust design and flexible cooling make it suitable for intense industrial environments.

Q: When should I choose a specific cooling type for this transformer?

A: Cooling type selection depends on the operational load and environmental conditions. For moderate loads and standard environments, ONAN or ONAF suffice, while OFAF and OFWF are recommended for continuous heavy-duty or high-temperature scenarios to prevent overheating and extend equipment life.

Q: Where can this Arc Furnace Transformer be installed?

A: This transformer is versatile and can be installed in steel plants, foundries, and any industrial site requiring arc furnace applications. Its sturdy construction and multiple cooling options support varied installation environments throughout India and for export.

Q: What is the manufacturing process of this transformer?

A: Manufacturing involves precise layering of copper in a laminated core structure, assembly into a three-phase configuration, and integration with adaptable cooling systems. Rigorous quality checks ensure endurance and efficiency before shipment.

Q: How is the transformer's output determined?

A: The output is tailored based on product specifications and customer requirements. This product-wise customization ensures you receive a transformer best suited to your process and power needs, within the power scope of up to 10 MVA.

Q: What are the key benefits of using a copper core laminated transformer?

A: A copper-laminated core provides superior electrical conductivity, efficient heat dissipation, minimized core losses, and ensures reliability for high-power industrial applications. This translates into reduced energy expenses and increased operational safety.

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