Electric Furnace Transformer for Steel & Metallurgy

Rated Capacity
18000kVA
Voltage Ratio
110kV / 175–305V
Cooling Method
OFAF
Application
Steel & Metallurgy

Warranty 1 year

Product Overview

The electric furnace transformer is a special transformer designed for electric furnace equipment, mainly supplying stable power for electric arc furnaces, ladle refining furnaces, and other metallurgical smelting systems.

This product features high-current output, wide voltage regulation range, strong impact current resistance, and reliable operation under high-load and frequently changing working conditions.

DHDL electric furnace transformers are widely used in steel smelting, metallurgy, non-ferrous metal smelting, and heavy industrial power systems where stable high-current power supply is required.

Technical Specifications

Item Specification
Product Type Electric Furnace Transformer
Product Model HSPSZ-18000/110
Rated Capacity 18000kVA
Voltage Ratio Main Transformer: 110000 / 175–305V; Compensation Transformer: 11608.3–20231.7 / 175–305V
Cooling Method OFAF
Application Steel smelting, metallurgy, electric arc furnace, refining furnace, and non-ferrous metal smelting

Technical Parameters

Parameter Unit Value
Product Model HSPSZ-18000/110
Rated Capacity kVA 18000
Rated Voltage Ratio V Main Transformer: 110000 / 175–305; Compensation Transformer: 11608.3–20231.7 / 175–305
Short-circuit Impedance % ≤6% for main transformer
Rated Frequency Hz 50
Connection Symbol Main Transformer: single phase Ii0, three phase Dd0; Compensation Transformer: single phase Ii0, three phase Yd11
Insulation Level kV Main Transformer: LI480AC200 / AC45 / AC5; Compensation Transformer HV: LI200AC85
Cooling Method OFAF
Temperature Rise Limit K Top oil: 50; Average winding: 65
Noise Level dB(A) ≤65

Note: Final technical parameters can be customized according to furnace type, smelting process, voltage regulation requirements, installation environment, and applicable project standards.

Product Features

High-current Output Capability

Designed to provide high-current output for electric furnace smelting systems and high-power metallurgical processes.

Wide Voltage Regulation Range

Supports multi-level voltage regulation to meet different furnace operating stages and smelting process requirements.

Strong Impact Resistance

The optimized structure helps withstand impact current and frequent load fluctuations during electric furnace operation.

Reliable Operation & Efficient Cooling

High-quality materials, an oil-immersed structure, and OFAF cooling support stable long-term operation under heavy-load and high-temperature conditions.

Factory Test Items

Test Item Test Type
Insulation Resistance Test Routine Test
Winding DC Resistance Test Routine Test
Voltage Ratio Test Routine Test
Vector Group Test Routine Test
No-load Loss and No-load Current Test Routine Test
Load Loss and Impedance Voltage Test Routine Test
Power Frequency Withstand Voltage Test Routine Test
Induced Withstand Voltage Test Routine Test
Sealing Test Routine Test
Transformer Oil Test Routine Test
Appearance and Nameplate Inspection Routine Test
Packing Inspection Before Shipment Routine Test

Applications

Utility Distribution Networks

Utility Distribution Networks

Reliable transformer solutions for urban and rural power distribution systems, helping ensure stable voltage conversion and continuous power supply.

Industrial Facilities

Industrial Facilities

Suitable for factories, workshops, production lines, mining sites, and industrial power systems that require long-term stable operation.

Renewable Energy Projects

Renewable Energy Projects

Applied in solar power plants, wind farms, energy storage stations, and microgrid systems for power conversion and distribution.

AI Data Center Power Infrastructure

AI Data Center Power Infrastructure

Suitable for data center campus substations, medium-voltage power intake systems, and reliable power distribution infrastructure supporting high-density computing loads.

Why Choose DHDL Transformer

DHDL provides reliable transformer manufacturing, strict quality control, and project-based technical support for power distribution, industrial, commercial, and renewable energy applications.

Manufacturing Capability

  • Transformers
  • Distribution Cabinets
  • Prefabricated Substation
  • Energy Storage Cabinets
  • Charging Piles

Quality Control

  • Material inspection
  • Winding and assembly control
  • Drying and oil treatment process
  • Routine testing
  • Final inspection before delivery

International Standards

  • IEC
  • ANSI
  • IEEE
  • GB
  • Project-specific technical requirements

Why does an electric furnace require a dedicated transformer?

An electric furnace requires a dedicated transformer because it has extreme current fluctuations, frequent impact loads, and long-term high-load operation that ordinary transformers cannot withstand.

What happens if the transformer selection is incorrect?

Incorrect transformer selection can cause unstable furnace temperature, lower smelting efficiency, frequent transformer failures, shutdown maintenance, and long-term costs far higher than the initial equipment price difference.

Why do transformers with the same capacity have such different prices?

The price difference mainly depends on whether the transformer is designed for arc impact, whether the low-voltage winding structure is strong enough, and whether it supports real electric furnace operating conditions.

Will large electric furnace load fluctuations affect the equipment?

Yes, electric furnaces are strong fluctuating loads, and ordinary transformers may suffer from excessive temperature rise and accelerated insulation aging without anti-fluctuation design.

Can your equipment improve production efficiency?

Yes, our electric furnace transformers help improve production efficiency by making the arc more stable, increasing heating efficiency, and reducing downtime.

What makes you different from ordinary suppliers?

Instead of only selling transformer parameters, we design equipment according to actual electric furnace operating conditions to improve operating stability and reduce overall smelting costs.

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