Motor Non-Oriented Silicon Steel in United Kingdom Trends and Forecast
The future of the motor non-oriented silicon steel market in United Kingdom looks promising with opportunities in the home appliance, power generator, and new energy vehicle markets. The global motor non-oriented silicon steel market is expected to grow with a CAGR of 5.0% from 2025 to 2031. The motor non-oriented silicon steel market in United Kingdom is also forecasted to witness strong growth over the forecast period. The major drivers for this market are the increasing demand for energy-efficient motors and the advancements in electric vehicle technology.
• Lucintel forecasts that, within the type category, hot rolled is expected to witness higher growth over the forecast period.
• Within the application category, home appliance is expected to witness the highest growth.
Emerging Trends in the Motor Non-Oriented Silicon Steel Market in United Kingdom
The motor non-oriented silicon steel market in the United Kingdom is undergoing a dynamic transformation driven by electrification, industrial decarbonisation, and advancements in electric motor technologies. As the UK accelerates its green energy transition and adopts cleaner mobility solutions, demand for high-efficiency magnetic materials is rising. Non-oriented silicon steel, crucial for electric motors, transformers, and generators, is now central to these transitions. Key trends such as electric vehicle integration, renewable energy expansion, and digital manufacturing are influencing production standards and supply chain strategies. These changes are reshaping the market landscape and encouraging investments in innovation, sustainability, and domestic capacity building.
• Integration of Electric Mobility and Powertrains: Electrification of the UK automotive sector is a major driver for demand in motor-grade silicon steel. With the growing production of electric vehicles and hybrid powertrains, manufacturers are seeking high-performance steel for motor cores that enhance efficiency and reduce energy losses. This trend supports advancements in thinner gauges and improved magnetic properties. The shift also encourages local sourcing of materials that meet stringent environmental standards, reinforcing the importance of domestic silicon steel capabilities aligned with the automotive sector‘s zero-emission targets.
• Renewable Energy and Grid Infrastructure Growth: The rapid development of wind, solar, and hydrogen energy systems in the UK is increasing the need for efficient power conversion equipment. Non-oriented silicon steel is a key component in generators, inverters, and power transformers used in these installations. As the energy mix becomes more diversified and decentralised, demand for materials that improve system efficiency and reliability continues to grow. This trend promotes the adaptation of steel grades designed specifically for fluctuating loads and renewable energy frequencies, supporting the UK’s clean energy ambitions.
• Emphasis on Sustainable Steel Production: UK manufacturers are adopting more sustainable steelmaking methods to align with national decarbonisation goals. In the motor silicon steel segment, this involves reducing carbon emissions through electric arc furnaces, recycling scrap material, and enhancing energy efficiency during processing. The push for green steel also includes digital monitoring systems to optimise production parameters. This trend is influencing procurement strategies, as downstream users increasingly prefer steel with a lower environmental footprint, leading to greater market opportunities for sustainable motor steel solutions.
• Technological Advancement in Magnetic Properties: UK-based research institutions and steel producers are collaborating on material science innovations to enhance the performance of non-oriented silicon steel. Efforts include refining grain orientation, reducing core loss, and improving thermal durability under high-frequency operations. These technological improvements are especially valuable for modern motor applications such as electric vehicles, industrial drives, and automation systems. As demand grows for lightweight and compact motor designs, steelmakers are investing in R&D to deliver high-grade materials that meet evolving application needs with greater precision.
• Supply Chain Resilience and Localisation: Global disruptions and Brexit-related trade adjustments have intensified the focus on building resilient and localised supply chains within the UK. For motor non-oriented silicon steel, this means reducing dependency on overseas sources and increasing domestic processing capacity. Manufacturers and government agencies are exploring strategic investments to strengthen local steel infrastructure. This trend supports faster turnaround times, greater material availability, and better alignment with UK-specific standards and regulations. It also encourages partnerships across the value chain to develop homegrown capabilities in motor steel manufacturing.
Emerging trends in the UK’s motor non-oriented silicon steel market are deeply intertwined with the broader industrial shift toward electrification, sustainability, and supply chain independence. From powering electric vehicles to supporting renewable grids and decarbonized manufacturing, this material is becoming a cornerstone of national transformation strategies. Technological innovation, policy support, and market demand are collectively fostering a more adaptive and forward-looking industry. These trends are positioning the UK as a competitive player in the global motor steel landscape with a sustainable and high-performance focus.
Recent Developments in the Motor Non-Oriented Silicon Steel Market in United Kingdom
The motor non-oriented silicon steel market in the United Kingdom is evolving amid national efforts to strengthen industrial resilience, reduce carbon emissions, and support the electrification of transport and energy systems. Recent developments include policy reforms, modernisation of domestic steel infrastructure, and closer integration with clean energy and mobility sectors. These changes are reshaping how MNO silicon steel is produced, distributed, and utilised across applications such as electric motors and transformers, ensuring the UK is better positioned in a competitive global market.
• Transition to Electric Arc Furnace-Based Steelmaking: A major development in the UK steel sector is the strategic shift toward electric arc furnace (EAF) technology. Traditional blast furnaces are being replaced or supplemented by EAFs, which enable lower-emission steel production using scrap as input. For the MNO silicon steel market, this transition supports a cleaner, more energy-efficient manufacturing process. The move allows for greater flexibility in producing specialized grades suited to electric motors and transformers, enhancing the technical quality of domestic output and aligning the industry with environmental and efficiency standards expected in the electric vehicle and energy sectors.
• Government Support for Domestic Steelmaking Capacity: The UK government has taken direct steps to safeguard critical steelmaking facilities and ensure long-term industrial security. By introducing emergency measures and providing operational support to key plants, authorities are maintaining the country’s ability to produce virgin steel. This has significant implications for the MNO silicon steel market, as it ensures a steady supply of base material essential for producing high-performance electrical steel. Such support also boosts investor and manufacturer confidence, encouraging new initiatives to expand and upgrade capabilities specific to silicon steel used in electrical machinery and energy systems.
• Strengthened Collaboration with Automotive Sector: The domestic automotive industry is increasingly prioritising the development of electric and hybrid vehicles, driving demand for advanced motor components. This trend has led to enhanced collaboration between steel producers and automotive manufacturers to ensure MNO silicon steel meets evolving performance needs. Customised steel grades that improve motor efficiency, reduce energy loss, and handle higher operating frequencies are now being prioritised. This synergy between sectors is fostering innovation, reducing reliance on imports, and positioning the UK steel industry as a strategic partner in the nation’s electric mobility transition.
• Expansion of Renewable Energy Infrastructure: The rapid growth of renewable energy projects in the UK has increased demand for components like wind turbine generators and grid transformers—applications that heavily rely on MNO silicon steel. As offshore and onshore wind installations expand, the need for electrical steel that can support consistent, high-performance operation under variable loads is becoming more pronounced. This development is influencing production targets and standards, prompting steelmakers to refine their processes and produce grades with optimal magnetic and mechanical properties suited for the evolving energy landscape.
• Modernisation Grants and Research Investment: Public and private investment in upgrading steel production facilities and advancing research into high-performance electrical steel is gaining momentum. Grants and funding are being directed toward process innovation, automation, and the development of new steel compositions. For the MNO silicon steel market, this enables manufacturers to improve product consistency, reduce production costs, and respond more quickly to emerging technical demands. These advancements are critical for ensuring that UK-made steel remains competitive and capable of supporting next-generation electric motors and power systems used across multiple industries.
Recent developments in the motor non-oriented silicon steel market in United Kingdom reflect a broader commitment to industrial renewal and environmental responsibility. By investing in cleaner technologies, protecting domestic capacity, and aligning with high-growth sectors like electric vehicles and renewable energy, the UK is strengthening its position in this strategically vital market. These changes are not only modernising production but also creating an environment that encourages innovation and long-term sustainability, making the UK a key contributor to the future of electric steel applications.
Strategic Growth Opportunities for Motor Non-Oriented Silicon Steel Market in United Kingdom
The motor non-oriented silicon steel market in the United Kingdom is experiencing renewed momentum driven by the transition to electrification, sustainability goals, and technological advancement. Key applications such as electric vehicles, industrial motors, renewable energy systems, home appliances, and railway electrification are opening up strategic growth avenues. These applications demand high-performance electrical steel that offers efficiency, low core loss, and thermal stability. As industries seek local, sustainable solutions, the UK’s steel producers are increasingly positioned to capture value across these expanding sectors.
• Electric Vehicle (EV) Powertrain Manufacturing: The shift toward electric mobility is a major driver of demand for MNO silicon steel in the UK. Motors used in electric vehicles require steel that supports low energy loss and high efficiency at elevated frequencies. MNO silicon steel’s isotropic magnetic properties make it ideal for traction motor cores. As the automotive sector ramps up EV production, there is a clear growth opportunity for domestic suppliers to cater to motor manufacturers with tailored grades, helping reduce reliance on imported steel while aligning with the UK’s low-emission transport agenda.
• Industrial Motor and Machinery Applications: The UK’s industrial sector depends on energy-efficient motors for manufacturing, automation, and infrastructure. With increased regulatory focus on energy performance and carbon reduction, there is a rising demand for electric motors that use advanced MNO silicon steel to reduce operational losses. This creates a strong growth opportunity for steel producers who can offer high-quality electrical steel suited for variable speed drives, pumps, compressors, and robotics. As industries modernise their machinery, the adoption of premium-grade MNO silicon steel can significantly contribute to energy savings and operational efficiency.
• Wind Turbine and Renewable Energy Equipment: As the UK expands its offshore and onshore wind energy projects, demand for high-performance electrical steel in generators and transformers continues to grow. MNO silicon steel is crucial for wind turbine generator cores where consistent magnetic properties and efficiency under fluctuating loads are essential. Domestic steelmakers can tap into this growth opportunity by supplying specialised grades that meet the performance and durability standards of renewable energy infrastructure. This not only supports local content goals but also aligns the steel industry with national sustainability and energy security initiatives.
• Energy-Efficient Home Appliance Manufacturing: Home appliances such as refrigerators, washing machines, and HVAC systems are increasingly designed to meet stricter energy efficiency standards. MNO silicon steel is integral to the motors that power these appliances. In the UK, the rise in smart and sustainable home technology creates new demand for premium-grade electrical steel. Manufacturers seeking to reduce appliance energy consumption are turning to suppliers who can provide optimised MNO steel. This application offers a consistent and scalable growth channel, especially as the home appliance market aligns with environmental regulations and energy labelling norms.
• Electrification of Rail Transport Systems: The UK government’s strategy for decarbonising rail transport is driving upgrades to electric traction systems across regional and national lines. These systems rely heavily on electric motors and transformers that require high-grade MNO silicon steel. As more rail lines shift from diesel to electric propulsion, there is an expanding need for steel with consistent electromagnetic performance. This trend offers UK steelmakers a valuable opportunity to provide material for the next generation of trains and infrastructure, reinforcing the steel industry’s role in national decarbonisation and transport innovation efforts.
Strategic growth opportunities in the UK motor non-oriented silicon steel market are closely tied to the rise of electrified and energy-efficient applications. From electric vehicles and industrial machinery to renewable power and rail transport, demand is growing for advanced electrical steel. These opportunities allow domestic producers to align with national goals on climate, technology, and infrastructure, while enhancing competitiveness through innovation. As these sectors evolve, the MNO silicon steel industry in the UK stands poised to play a critical role in enabling the energy-efficient future.
Motor Non-Oriented Silicon Steel Market in United Kingdom Driver and Challenges
The motor non-oriented silicon steel market in the United Kingdom is shaped by a combination of technological innovation, economic shifts, and regulatory frameworks. As industries pivot toward electric mobility, renewable energy, and energy-efficient systems, the demand for high-performance electrical steel is rising. However, the market also faces challenges including supply constraints, high production costs, and environmental compliance pressures. Understanding the balance of these drivers and challenges is crucial for stakeholders aiming to optimise strategies in a competitive and fast-evolving market environment.
The factors responsible for driving the motor non-oriented silicon steel market in United Kingdom include:
• Growing focus on electric vehicle adoption: The United Kingdom is accelerating its transition to electric mobility, creating substantial demand for motor-grade electrical steel. Motor non-oriented silicon steel is widely used in traction motors due to its excellent magnetic properties. This shift is encouraging local steel producers to expand capacities and enhance quality to serve the EV sector. As vehicle manufacturers look to localise supply chains and meet performance standards, the role of domestic MNO silicon steel suppliers becomes increasingly central to supporting sustainable transport initiatives.
• Expansion of renewable energy projects: The rapid development of offshore and onshore wind farms is driving the need for efficient electric generators and transformers. These components depend heavily on non-oriented silicon steel to maintain reliable performance. The increasing share of renewable sources in the national grid creates continuous demand for materials that enhance energy conversion and reduce core losses. As a result, UK steelmakers are investing in advanced grades that support the performance requirements of modern energy systems, reinforcing the material‘s critical role in decarbonisation efforts.
• Advancement in energy-efficient industrial equipment: With heightened focus on energy conservation, industries are upgrading to motors and drives that consume less power while maintaining output. This is pushing demand for MNO silicon steel in applications ranging from HVAC to manufacturing automation. Manufacturers are under pressure to meet energy-efficiency directives, which is strengthening the case for adopting advanced electrical steel. The material‘s consistent performance and low hysteresis losses make it ideal for achieving these goals, positioning it as a foundational material in the shift toward greener industrial practices.
• Government support for domestic steel production: Public policy measures aimed at revitalising the UK steel industry are acting as a catalyst for growth in the MNO silicon steel segment. These include funding for infrastructure upgrades, energy transition support, and industrial decarbonisation incentives. By ensuring domestic production capabilities are preserved and enhanced, the government is enabling the electrical steel market to respond effectively to rising demand. This support reduces dependency on imports and fosters local innovation, helping to build a more resilient and competitive supply chain within the country.
• Increased emphasis on sustainable building systems: The construction sector is also contributing to MNO silicon steel demand, particularly through increased use of energy-efficient systems such as smart HVAC units and elevators. These systems rely on motors built with high-grade electrical steel to reduce energy consumption. As green building certifications become more prominent, developers are integrating sustainable technologies, which boosts the usage of non-oriented silicon steel. This trend creates steady, long-term demand across residential and commercial construction projects aligned with the United Kingdom‘s energy efficiency goals.
Challenges in the motor non-oriented silicon steel market in United Kingdom are:
• High production costs and energy intensity: Manufacturing MNO silicon steel requires significant energy inputs and specialised processing techniques. The high cost of electricity in the UK can affect the competitiveness of local producers. Additionally, refining the grain structure and achieving consistent magnetic properties involve costly technological investments. These factors collectively raise production expenses, creating pricing pressures that can limit market expansion, especially when compared to lower-cost producers abroad. Balancing quality, cost, and environmental compliance remains a significant challenge for domestic steelmakers.
• Volatility in raw material availability: The supply of critical inputs such as ferrosilicon, scrap steel, and specialty alloys can fluctuate due to geopolitical tensions or global market dynamics. Such volatility can impact production schedules and cost structures, particularly for producers dependent on imported materials. Inconsistent availability also disrupts planning and procurement for downstream users of electrical steel. Ensuring a stable and diversified supply of raw materials is essential to maintain manufacturing reliability and meet the growing demand from key application sectors.
• Compliance with strict environmental regulations: As regulatory standards evolve to reduce industrial emissions and promote energy efficiency, steel manufacturers are required to implement cleaner production methods. Meeting these standards can necessitate expensive upgrades to equipment, adoption of carbon capture technologies, and rigorous monitoring protocols. While beneficial in the long term, these requirements place additional financial and operational strain on producers in the short term. Non-compliance risks not only penalties but also loss of access to environmentally conscious clients and markets.
The motor non-oriented silicon steel market in the United Kingdom is being shaped by powerful forces that drive both growth and complexity. Technological adoption, renewable integration, and industrial support initiatives are unlocking new demand, while cost pressures, supply uncertainties, and regulatory obligations present significant hurdles. The market‘s success will depend on the ability of stakeholders to innovate, collaborate, and invest in sustainable practices. Navigating these drivers and challenges will determine how well the industry adapts and thrives in the evolving energy and mobility landscape.
List of Motor Non-Oriented Silicon Steel Market in United Kingdom Companies
Companies in the market compete on the basis of product quality offered. Major players in this market focus on expanding their manufacturing facilities, R&D investments, infrastructural development, and leverage integration opportunities across the value chain. Through these strategies, motor non-oriented silicon steel companies cater to increasing demand, ensure competitive effectiveness, develop innovative products & technologies, reduce production costs, and expand their customer base. Some of the motor non-oriented silicon steel companies profiled in this report include:
• Company 1
• Company 2
• Company 3
• Company 4
• Company 5
• Company 6
• Company 7
Motor Non-Oriented Silicon Steel Market in United Kingdom by Segment
The study includes a forecast for the motor non-oriented silicon steel market in United Kingdom by type and application.
Motor Non-Oriented Silicon Steel Market in United Kingdom by Type [Analysis by Value from 2019 to 2031]:
• Hot Rolled
• Cold Rolled
Motor Non-Oriented Silicon Steel Market in United Kingdom by Application [Analysis by Value from 2019 to 2031]:
• Home Appliances
• Power Generator
• New Energy Vehicles
• Others
Features of the Motor Non-Oriented Silicon Steel Market in United Kingdom
Market Size Estimates: Motor non-oriented silicon steel in United Kingdom market size estimation in terms of value ($B).
Trend and Forecast Analysis: Market trends and forecasts by various segments.
Segmentation Analysis: Motor non-oriented silicon steel in United Kingdom market size by type and application in terms of value ($B).
Growth Opportunities: Analysis of growth opportunities in different type and application for the motor non-oriented silicon steel in United Kingdom.
Strategic Analysis: This includes M&A, new product development, and competitive landscape of the motor non-oriented silicon steel in United Kingdom.
Analysis of competitive intensity of the industry based on Porter’s Five Forces model.
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FAQ
Q1. What are the major drivers influencing the growth of the motor non-oriented silicon steel market in United Kingdom?
Answer: The major drivers for this market are the increasing demand for energy-efficient motors and the advancements in electric vehicle technology.
Q2. What are the major segments for motor non-oriented silicon steel market in United Kingdom?
Answer: The future of the motor non-oriented silicon steel market in United Kingdom looks promising with opportunities in the home appliance, power generator, and new energy vehicle markets.
Q3. Which motor non-oriented silicon steel market segment in United Kingdom will be the largest in future?
Answer: Lucintel forecasts that hot rolled is expected to witness the higher growth over the forecast period.
Q4. Do we receive customization in this report?
Answer: Yes, Lucintel provides 10% customization without any additional cost.
This report answers following 10 key questions:
Q.1. What are some of the most promising, high-growth opportunities for the motor non-oriented silicon steel market in United Kingdom by type (hot rolled and cold rolled), and application (home appliances, power generator, new energy vehicles, and others)?
Q.2. Which segments will grow at a faster pace and why?
Q.3. What are the key factors affecting market dynamics? What are the key challenges and business risks in this market?
Q.4. What are the business risks and competitive threats in this market?
Q.5. What are the emerging trends in this market and the reasons behind them?
Q.6. What are some of the changing demands of customers in the market?
Q.7. What are the new developments in the market? Which companies are leading these developments?
Q.8. Who are the major players in this market? What strategic initiatives are key players pursuing for business growth?
Q.9. What are some of the competing products in this market and how big of a threat do they pose for loss of market share by material or product substitution?
Q.10. What M&A activity has occurred in the last 5 years and what has its impact been on the industry?
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