Market Highlights
The Electrical Steel Market was valued at USD 49.12 billion in 2025 and is projected to reach USD 85.71 billion by 2033, growing at a CAGR of 7.2% over the forecast period.
The figures cited here represent the midpoint of that range, normalised to a common 2025 to 2035 frame. Asia Pacific, North America, Europe, LAMEA constitute the principal regional markets, with demand concentrated where end-use adoption and manufacturing capacity are strongest. The market is analysed across segments including Electrical Steel Market, by Product Type, Electrical Steel Market, by Application, Electrical Steel Market, by End Use, each contributing a distinct growth profile through the forecast period.
- Valued at USD 49.12 billion in 2025.
- Projected to reach USD 85.71 billion by 2033, at a 7.2% CAGR.
- Asia Pacific is the largest regional market.
- Segmented across 6 axes, including Product Type.
- Profiles 8 key companies, including Voestalpine Stahl GmbH.
Market Size & Forecast (USD Billion)
2025
2026
2027
2028
2029
2030
2031
2032
2033
Market size of the electrical steel market, 2025โ2033.
Growth Drivers
- Rising demand for electrical across core end-use industries
- Product innovation and premiumisation
- Increase in demand for electric hybrid vehicles coupled with stringent regulations to prevent energy loss to propel Electrical Steel Market growth. Developed and developing countries are increasingly shifting toward sustainable energy systems. The electric/hybrid vehicle industry is also in the growth phase. This industry requires high-grade electrical steel for various applications. Companies such as ArcelorMittal and ThyssenKrupp are producing high-grade electrical steel to meet the increase in demand for electrical steel. They are improving the magnetic properties of electrical steel and introducing higher grades. This is expected to fuel the market during the forecast period. Rise in production of electrical steel is anticipated to be primarily driven by growth in various application segments, where electrical steel is largely consumed (e.g. transformer and motor industries).
- Abundance of Iron Ore and Other Minerals for Electrical Steel Production. The abundance of iron ore and critical alloying minerals provides a foundational supply-side advantage for electrical steel production, supporting scalability amid rising demand from energy and mobility sectors. The availability of high-quality iron ore will also produce consistently low-impurity steel with superior magnetic properties, resulting in the best-quality iron for grain-oriented and non-grain-oriented electrical steel. Furthermore, access to other key raw materials, such as silicon, will enable precise alloy compositions that reduce core losses and improve electrical resistance. The availability of these resources will stabilize raw material costs, reduce supply chain interruptions, and support large-scale investment in manufacturing. Additionally, because there are mineral reserves in key producing regions, it allows for backward integration to enhance cost competitiveness and increase supply security as the demand for electrical steel continues to grow, resulting from expansion of the grid, development of renewable energy sources, and production of electric vehicles.
Restraints & Challenges
- Input cost volatility and supply-chain pressure
- Regulatory and compliance complexity
- Challenges in processing of electrical steel and threat from external substitutes to hamper market. Electrical steel improves efficiency and reduces losses in many applications; however, its magnetic properties are insufficient to meet the complex requirements of precision and efficiency. Nickel iron alloys offer more innovative and intelligent solutions than electrical steel. They are ideal substitutes for electrical steel. Nickel iron alloys play an important role in the production of relays, sensors, and motor laminations. They also offer better magnetic permeability and magnetic induction than electrical steel. Hence, increase in adoption of nickel iron alloys in electro-technical applications is projected to hamper the global electrical steel market during the forecast period.
- Energy-Intensive Processing with Rising Decarbonization Pressure. Producing electrical steel is very energy-intensive because it requires specific conditions (ultra-thin-gauge rolling, controlled annealing, and precise magnetic domain refinement) to meet the needs of end-user applications. High temperatures are required for each of these processes, and a stable electric supply is required during the high temperature operations; therefore, electrical steel producers have significant exposure to rising energy costs and increasing carbon pricing mechanisms due to the stringent requirements. Electrical steel has a very limited ability to replace processes without negatively affecting the material's magnetic performance, making it increasingly difficult and expensive for producers to meet required emissions reductions. The high-purity raw materials and specialty coatings used in the manufacturing of electrical steel contribute to CO2 emissions. Consequently, producers are being pressured to invest in low-carbon solutions while producing products that perform as required, resulting in cost pressures and delayed growth in production capacity despite increases in demand from the energy and e-mobility markets.
Opportunities
- Expansion into underpenetrated geographies
- Expansion into underpenetrated geographic markets for Electrical Steel. Emerging markets in Southeast Asia, Latin America, and parts of Africa represent significant untapped demand for Electrical Steel products as industrialization accelerates.
- Development of premium, sustainability-aligned product tiers. Growing buyer willingness to pay a premium for products with verifiable sustainability credentials is creating new high-margin product opportunities for differentiated manufacturers.
- Expansion into EV-Specific NGO Steel Grades. Expansion into EV-specific non-grain-oriented electrical steel grades presents a strong growth opportunity as automakers increasingly demand materials optimized for high-speed, high-frequency motor performance. These new NGO grades offer lower core losses, higher magnetic flux density, and improved thermal stability under dynamic operating conditions, such as in electric drive systems. As EV platforms continue to develop towards greater power density and more compact motor designs, there is a growing demand for ultra-thin gauges and the highest grades of surface coatings, creating opportunities for steel manufacturers to develop differentiated, application-specific solutions that meet OEM specifications. In addition, the trend toward localizing EV supply chains and the increase in investments to support electric mobility infrastructure provide steel mills with access to new regional markets and create opportunities to develop longer-term contracts, while positioning them as key partners in the electrification of automobiles.
Regional Analysis
Asia Pacific accounts for the largest share of the electrical steel market, supported by concentrated demand, manufacturing capacity, and established supply chains. North America, Europe and LAMEA account for the balance of global demand, each shaped by distinct regulatory and industrial dynamics. Growth is tilting toward economies where industrialisation and investment are expanding the addressable market through 2033.
Country-Level Trends
Asia Pacific: Demand is led by China, India, Japan, South Korea and Australia, where industrial activity, infrastructure investment, and downstream consumption shape adoption through 2033.
North America: Demand is led by the U.S., Canada and Mexico, where industrial activity, infrastructure investment, and downstream consumption shape adoption through 2033.
Europe: Demand is led by Germany, the U.K., France, Italy and Spain, where industrial activity, infrastructure investment, and downstream consumption shape adoption through 2033.
LAMEA: Demand is led by Brazil, Saudi Arabia, the UAE and South Africa, where industrial activity, infrastructure investment, and downstream consumption shape adoption through 2033.
Competitive Landscape
Leading participants in the electrical steel market include Voestalpine Stahl GmbH, POSCO, Nippon Steel, Sumitomo Metal Corporation, ThyssenKrupp AG, JFE Steel Corporation, CogentPower and ArcelorMittal SA. Competition centres on product performance, pricing, sustainability, and the ability to serve large accounts at scale.
Electrical Steel Market Report Scope
| Particulars | Details |
|---|---|
| Market Size 2025 | USD 49.12 Billion |
| Market Size 2026 | USD 52.66 Billion |
| Forecast Market Size 2033 | USD 85.71 Billion |
| CAGR (2025โ2033) | 7.2% |
| Base Year | 2025 |
| Forecast Period | 2025โ2033 |
| Largest Market | Asia Pacific |
| Fastest-Growing Region | Asia Pacific |
| Market Concentration | Medium |
| Segments Covered |
By End-use Industry
|
| Regions Covered | Asia Pacific, North America, Europe, LAMEA |
| Key Companies | Voestalpine Stahl GmbH, POSCO, Nippon Steel, Sumitomo Metal Corporation, ThyssenKrupp AG, JFE Steel Corporation |