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Motor Non-Oriented Silicon Steel in Canada Trends and Forecast

The future of the motor non-oriented silicon steel market in Canada 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 Canada 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.

Motor Non-Oriented Silicon Steel Market in Canada Trends and Forecast

Emerging Trends in the Motor Non-Oriented Silicon Steel Market in Canada

The motor non-oriented silicon steel (NGOES) market in Canada is undergoing notable transformation, driven by the rise of electrification, sustainability priorities, and shifts in manufacturing practices. With industries focusing on energy efficiency and electric mobility, the demand for high-quality NGOES is rising steadily. Canada’s focus on clean energy, regional sourcing, and advanced technology adoption is influencing both supply and demand dynamics. As domestic manufacturers align with global motor efficiency standards and invest in innovation, new trends are emerging that are redefining production priorities and end-user expectations. These developments are setting the foundation for a more resilient and competitive market landscape.

• Electrification of Transportation Systems: Canada’s push for electric vehicle adoption and infrastructure growth is accelerating demand for NGOES in traction motors. These motors require electrical steel with low core loss and high permeability to ensure efficiency and extended battery range. As automotive OEMs localize EV manufacturing, Canadian steel producers are aligning their offerings with EV-specific motor requirements. This trend is pushing investments into advanced processing and coatings to support high-performance electric motors, making transportation electrification a key driver of NGOES innovation and volume growth in Canada.
• Expansion of Renewable Energy Infrastructure: Wind turbines and solar inverters rely on efficient generators and converters, which incorporate NGOES for their magnetic cores. Canada’s commitment to clean energy, including onshore wind and utility-scale solar farms, is expanding the role of NGOES in power systems. This trend is driving demand for low-loss, high-frequency electrical steels that can support variable energy loads and ensure long-term reliability. Steelmakers are exploring new product developments to meet renewable-specific motor needs, reinforcing NGOES as a critical enabler in Canada’s energy transition.
• Energy Efficiency Standards in Industrial Motors: Canadian industries are increasingly adopting high-efficiency motor systems to meet government-mandated energy standards and reduce operational costs. This shift is encouraging the use of NGOES with optimized magnetic properties in motors used in HVAC, compressors, and pumps. The transition to IE3 and IE4 efficiency levels across sectors is fueling innovation in steel grades and material handling processes. As manufacturers retrofit or upgrade existing systems, NGOES demand is expected to climb, linking material advancement closely with industrial policy and corporate sustainability goals.
• Localized Supply Chain Development: Global supply chain uncertainties are prompting Canadian stakeholders to reduce dependency on imports and build local capabilities for NGOES production. Steel companies are investing in regional sourcing, manufacturing upgrades, and partnerships to secure a more stable and responsive supply chain. This localization trend is enhancing production resilience, reducing lead times, and supporting Canadian manufacturing self-sufficiency. It is also fostering job creation and aligning with national industrial strategies that prioritize domestic capacity over offshore reliance, especially for critical materials in motor systems.
• Rise in Smart Manufacturing and Automation: The adoption of smart manufacturing technologies in Canada is influencing demand for precision-driven motors used in robotics, automation, and digital machinery. These applications require NGOES with high uniformity and low core losses for improved responsiveness and performance. As factories transition toward Industry 4.0 environments, the need for customized, high-grade electrical steel is increasing. Steel producers are responding by upgrading production lines with digital quality control systems, enabling them to meet tight tolerances and technical specifications required in intelligent motor applications.

The Canadian NGOES market is evolving in response to key trends including EV electrification, clean energy adoption, industrial efficiency upgrades, localized manufacturing, and smart technology integration. These developments are expanding the role of NGOES in high-growth applications while encouraging product innovation, sustainability, and supply chain transformation. Together, these trends are reshaping the Canadian market into a more advanced and strategically important segment within the broader electrical steel landscape, offering new opportunities for producers, end-users, and policymakers alike.

Recent Developments in the Motor Non-Oriented Silicon Steel Market in Canada

Canada‘s motor non-oriented silicon steel (NGOES) market is evolving in response to the growing demand for energy-efficient solutions, electrification trends, and sustainability objectives. With the rise of electric vehicles, renewable energy expansion, and stricter industrial efficiency standards, manufacturers are adapting production processes and material innovations to meet market requirements. As Canada strengthens its role in the clean energy transition and regional manufacturing, recent developments are driving both innovation and localization within the NGOES sector. These changes are reshaping supply dynamics and industry priorities.

• Electrification of Transportation Systems: The increasing adoption of electric vehicles in Canada is reshaping the requirements for NGOES used in traction motors. These motors demand materials with high magnetic performance, low energy loss, and the ability to withstand variable speeds and temperatures. Domestic steel producers are aligning their processes with automotive needs by refining steel grades, enhancing quality control, and adopting precise lamination techniques. As Canada emphasizes electric mobility, this development is fostering collaboration between steel manufacturers and automotive OEMs, supporting the broader electrification agenda while enhancing domestic production capabilities.
• Growth in Renewable Energy Applications: Canada’s investment in renewable energy infrastructure, especially in wind and solar, is contributing to greater use of NGOES in generators and converters. These energy systems rely on electrical steel with high permeability and low core loss for efficiency and reliability. In response, steel manufacturers are focusing on producing grades suited for dynamic energy loads and frequency variations. This development not only diversifies end-use applications for NGOES but also strengthens its role as a strategic material supporting Canada’s clean energy goals and long-term sustainability vision.
• Enforcement of Industrial Efficiency Standards: Canada’s regulatory environment is becoming more stringent in enforcing motor efficiency standards across industries such as manufacturing, HVAC, and utilities. This has increased demand for NGOES in the production of IE3 and IE4 compliant motors, which require enhanced magnetic properties and reduced energy losses. Steel producers are responding by upgrading technology and refining materials to meet the technical specifications. This development is encouraging modernization in motor systems and promoting energy savings across industrial operations, reinforcing the value of high-performance NGOES in regulatory compliance and sustainable manufacturing.
• Advancement in Domestic Processing Capabilities: There is a noticeable shift toward strengthening local production of NGOES in Canada, driven by the need for resilient supply chains and reduced dependency on imports. Canadian mills are investing in advanced processing equipment and automation to improve consistency, reduce thickness variation, and increase production precision. This development supports high-spec applications such as electric motors for automation and specialized machinery. By enhancing processing capabilities, Canada is positioning itself as a reliable supplier of quality NGOES, fostering industrial autonomy and enabling faster response to market demands.
• Integration of Smart Manufacturing Technologies: Canadian steel producers are adopting smart manufacturing tools, including digital monitoring, real-time analytics, and precision control systems, to enhance NGOES quality and process efficiency. These technologies allow for improved surface treatments, reduced defects, and tailored material characteristics suited to specific motor applications. The integration of smart manufacturing not only ensures compliance with global quality standards but also boosts competitiveness in high-demand sectors like robotics, automation, and transportation. This development is transforming NGOES production into a more agile and value-driven process aligned with Industry 4.0 goals.

Recent developments in Canada‘s motor NGOES market reflect a strategic shift toward innovation, localization, and quality enhancement. The growing demand from electric vehicles, renewable energy systems, and industrial applications is pushing steel producers to refine materials and modernize operations. Regulatory pressures and digital transformation are further driving improvements in efficiency and precision. Together, these changes are reshaping the Canadian NGOES landscape, positioning the country as a forward-looking, resilient player in the evolving global electrical steel market.

Strategic Growth Opportunities for Motor Non-Oriented Silicon Steel Market in Canada

The motor non-oriented silicon steel (NGOES) market in Canada is witnessing strategic growth opportunities across various application sectors due to the country’s focus on electrification, sustainability, and energy efficiency. As industries modernize and shift toward low-carbon technologies, the demand for high-performance electrical steel is rising in motors used in transport, energy, automation, and infrastructure. These changes present significant opportunities for manufacturers to develop advanced steel solutions, support domestic industries, and position Canada as a key contributor to the global electric mobility and energy transition.

• Electric Vehicle (EV) Traction Motors: As Canada accelerates its transition to electric mobility, the demand for traction motors is growing rapidly. These motors require NGOES with high magnetic permeability and low core loss to ensure energy-efficient performance. The growing investment in local EV assembly and battery plants is expanding opportunities for Canadian steelmakers to supply NGOES tailored for traction systems. This growth area not only supports domestic production but also encourages technical partnerships between steel manufacturers and EV OEMs, positioning NGOES as a core material for the country’s clean transportation infrastructure.
• Renewable Energy Generators and Converters: Canada’s commitment to wind and solar energy development has increased the use of NGOES in generators and converters used in renewable installations. These components demand materials that maintain efficiency under fluctuating frequencies and harsh operating conditions. NGOES with specialized coatings and enhanced thermal stability are increasingly important in these applications. This trend creates a robust opportunity for steel producers to supply to energy OEMs and utility projects, reinforcing NGOES as a foundational material in supporting Canada’s clean energy expansion and grid modernization initiatives.
• Industrial Automation and Robotics: With Canadian industries adopting smart manufacturing and automation, there is a surge in demand for motors in robotics, conveyors, and precision machinery. These applications require NGOES with tight dimensional tolerances and consistent magnetic properties. The rise of Industry 4.0 across sectors like manufacturing, logistics, and warehousing presents a significant opportunity for producers to supply high-grade NGOES tailored for low-noise, energy-efficient motors. This shift enhances the value of domestic steel production and supports industrial innovation, making NGOES integral to the country’s digital transformation.
• HVAC and Energy-Efficient Appliances: Rising energy efficiency standards in residential and commercial buildings are boosting demand for high-efficiency HVAC systems and appliances. Motors in these applications rely on NGOES with reduced hysteresis losses and enhanced magnetic performance to meet stringent energy codes. As energy-saving appliances gain traction across Canada, this creates a strong growth opportunity for local steel manufacturers to provide premium-grade NGOES. Supplying to HVAC and appliance OEMs strengthens their presence in a stable, high-volume market, while aligning with Canada’s national climate goals and building regulations.
• Electric Rail and Transit Systems: Canada’s investment in public transportation electrification, including electric trains and urban transit systems, is expanding opportunities for NGOES in traction systems and auxiliary motors. These systems require reliable, high-frequency magnetic materials that perform consistently under heavy loads and extended operation. As more provinces invest in sustainable transit networks, demand for NGOES in rail applications offers a long-term opportunity for Canadian producers. This application aligns with infrastructure development and clean mobility policies, contributing to lower urban emissions and stronger domestic supply chain integration.

The motor NGOES market in Canada is benefiting from strategic growth across electric vehicles, renewable energy, automation, HVAC, and transit systems. These applications are driving demand for high-performance, locally produced electrical steel, offering steelmakers new opportunities to innovate and collaborate with OEMs. As industries shift toward energy-efficient technologies and clean infrastructure, NGOES are becoming a critical enabler in Canada‘s low-carbon transformation. These opportunities not only strengthen domestic capabilities but also reinforce Canada‘s competitive position in the evolving global electrical steel market.

Motor Non-Oriented Silicon Steel Market in Canada Driver and Challenges

The motor non-oriented silicon steel market in Canada is shaped by a complex mix of technological, economic, and regulatory dynamics. As industries push toward decarbonization and energy efficiency, the demand for advanced electrical steel is growing rapidly. Technological advancements are enhancing product quality and application scope, while economic shifts are influencing sourcing and production strategies. At the same time, evolving regulations are guiding material performance and environmental standards. However, this growth is not without obstacles, as challenges such as high production costs, skilled labor shortages, and market competition continue to impact the industry landscape.

The factors responsible for driving the motor non-oriented silicon steel market in Canada include:
• Growth in Electric Vehicle Production: Canada is expanding its electric vehicle manufacturing ecosystem, driving demand for traction motors that use non-oriented silicon steel. These motors require materials with high magnetic performance and reduced energy losses. Steel producers are adapting by refining their processes and aligning specifications to meet automotive standards. This trend presents a strategic opportunity to support local EV production and reduce dependence on imported components. As transportation electrification advances, this driver is expected to elevate the role of motor-grade silicon steel in enabling a sustainable mobility infrastructure.
• Expansion of Renewable Energy Projects: The rise in renewable energy installations across Canada, particularly wind and solar, is increasing the need for efficient electric generators and converters. Non-oriented silicon steel is essential in these systems due to its ability to function under variable magnetic conditions and load cycles. Manufacturers are targeting this application by developing steels with improved thermal and magnetic stability. This driver is reinforcing the steel sector‘s contribution to Canada‘s clean energy goals while opening new application areas beyond traditional industrial uses.
• Government Support for Energy Efficiency: Federal and provincial governments in Canada are implementing policies that mandate higher energy efficiency in electric motors used in buildings, manufacturing, and public infrastructure. This regulatory support is pushing demand for premium grades of non-oriented silicon steel that enable compliance with energy codes. As regulations evolve, steel producers are investing in product innovation to offer materials that meet these new standards. This driver plays a critical role in shaping demand trends and ensures long-term growth opportunities for compliant steel suppliers.
• Industrial Modernization and Automation: Canadian industries are increasingly investing in automation, smart manufacturing, and robotics. These systems rely on efficient electric motors that use non-oriented silicon steel with precise magnetic characteristics. As manufacturers adopt high-speed machinery and precision tools, there is a growing demand for advanced steel solutions with tight tolerances and stable performance. This driver promotes a shift toward high-value steel products, encouraging domestic mills to upgrade technologies and align output with the needs of emerging industrial sectors.
• Localization of Supply Chains: Supply chain disruptions and international trade uncertainties have prompted Canadian manufacturers to prioritize locally sourced materials. There is growing interest in establishing domestic capabilities for processing and supplying non-oriented silicon steel. This trend is supported by increased investment in steel production infrastructure and recycling technologies. Localization enhances supply reliability, reduces lead times, and improves traceability. This driver is contributing to the development of a more resilient and autonomous value chain within Canada.

Challenges in the motor non-oriented silicon steel market in Canada are:
• High Production Costs: Producing high-grade non-oriented silicon steel involves specialized processing techniques, advanced equipment, and significant energy consumption. These factors result in elevated production costs compared to standard steels. Smaller steel mills may struggle to absorb these costs or invest in necessary upgrades. As global competition intensifies, cost pressure can limit the competitiveness of Canadian producers unless they innovate or achieve scale efficiencies. This challenge is a barrier to broader market expansion and price competitiveness.
• Skilled Labor Shortages: The electrical steel industry requires a highly skilled workforce capable of managing complex manufacturing processes and quality control measures. Canada is experiencing a shortage of such skilled labor, particularly in metallurgical and technical roles. This gap can slow down production, limit innovation, and create operational inefficiencies. Addressing this challenge will require workforce development programs and stronger collaboration between industry and academic institutions to build a talent pipeline suited to advanced steel manufacturing.
• Volatile Demand from End-Use Sectors: The demand for non-oriented silicon steel is closely linked to investment cycles in sectors such as automotive, energy, and construction. Economic fluctuations or policy changes in these sectors can cause sudden shifts in demand. This volatility makes it difficult for producers to forecast requirements and scale production accordingly. It also increases business risk and may lead to underutilization of capacity during downturns. Managing this challenge involves developing diversified customer bases and flexible production models.

The motor non-oriented silicon steel market in Canada is being driven by strong trends in electrification, clean energy, industrial automation, and supply chain localization. These drivers are creating new opportunities for domestic producers and encouraging investment in technology and innovation. However, high production costs, labor shortages, and demand fluctuations continue to challenge the market‘s full potential. Balancing these dynamics will be essential for building a resilient and competitive industry that supports Canada‘s transition to a low-carbon and energy-efficient economy.

List of Motor Non-Oriented Silicon Steel Market in Canada 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 Canada by Segment

The study includes a forecast for the motor non-oriented silicon steel market in Canada by type and application.

Motor Non-Oriented Silicon Steel Market in Canada by Type [Analysis by Value from 2019 to 2031]:


• Hot Rolled
• Cold Rolled

Motor Non-Oriented Silicon Steel Market in Canada by Application [Analysis by Value from 2019 to 2031]:


• Home Appliances
• Power Generator
• New Energy Vehicles
• Others

Lucintel Analytics Dashboard

Features of the Motor Non-Oriented Silicon Steel Market in Canada

Market Size Estimates: Motor non-oriented silicon steel in Canada market size estimation in terms of value ($B).
Trend and Forecast Analysis: Market trends and forecasts by various segments.
Segmentation Analysis: Motor non-oriented silicon steel in Canada market size by type and application in terms of value ($B).
Growth Opportunities: Analysis of growth opportunities in different type and application for the motor non-oriented silicon steel in Canada.
Strategic Analysis: This includes M&A, new product development, and competitive landscape of the motor non-oriented silicon steel in Canada.
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 Canada?
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 Canada?
Answer: The future of the motor non-oriented silicon steel market in Canada 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 Canada 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 Canada 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?
For any questions related to Motor Non-Oriented Silicon Steel Market in Canada, Motor Non-Oriented Silicon Steel Market in Canada Size, Motor Non-Oriented Silicon Steel Market in Canada Growth, Motor Non-Oriented Silicon Steel Market in Canada Analysis, Motor Non-Oriented Silicon Steel Market in Canada Report, Motor Non-Oriented Silicon Steel Market in Canada Share, Motor Non-Oriented Silicon Steel Market in Canada Trends, Motor Non-Oriented Silicon Steel Market in Canada Forecast, Motor Non-Oriented Silicon Steel Companies, write Lucintel analyst at email: helpdesk@lucintel.com. We will be glad to get back to you soon.
 
                                                            Table of Contents

            1. Executive Summary

            2. Motor Non-Oriented Silicon Steel Market in Canada: Market Dynamics
                        2.1: Introduction, Background, and Classifications
                        2.2: Supply Chain
                        2.3: Industry Drivers and Challenges

            3. Market Trends and Forecast Analysis from 2019 to 2031
                        3.1. Macroeconomic Trends (2019-2024) and Forecast (2025-2031)
                        3.2. Motor Non-Oriented Silicon Steel Market in Canada Trends (2019-2024) and Forecast (2025-2031)
                        3.3: Motor Non-Oriented Silicon Steel Market in Canada by Type
                                    3.3.1: Hot Rolled
                                    3.3.2: Cold Rolled
                        3.4: Motor Non-Oriented Silicon Steel Market in Canada by Application
                                    3.4.1: Home Appliances
                                    3.4.2: Power Generator
                                    3.4.3: New Energy Vehicles
                                    3.4.4: Others

            4. Competitor Analysis
                        4.1: Product Portfolio Analysis
                        4.2: Operational Integration
                        4.3: Porter’s Five Forces Analysis

            5. Growth Opportunities and Strategic Analysis
                        5.1: Growth Opportunity Analysis
                                    5.1.1: Growth Opportunities for the Motor Non-Oriented Silicon Steel Market in Canada by Type
                                    5.1.2: Growth Opportunities for the Motor Non-Oriented Silicon Steel Market in Canada by Application
                                   
                        5.2: Emerging Trends in the Motor Non-Oriented Silicon Steel Market in Canada
                        5.3: Strategic Analysis
                                    5.3.1: New Product Development
                                    5.3.2: Capacity Expansion of the Motor Non-Oriented Silicon Steel Market in Canada
                                    5.3.3: Mergers, Acquisitions, and Joint Ventures in the Motor Non-Oriented Silicon Steel Market in Canada
                                    5.3.4: Certification and Licensing

            6. Company Profiles of Leading Players
                        6.1: Company 1
                        6.2: Company 2
                        6.3: Company 3
                        6.4: Company 4
                        6.5: Company 5
                        6.6: Company 6
                        6.7: Company 7
.

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Lucintel has been in the business of market research and management consulting since 2000 and has published over 1000 market intelligence reports in various markets / applications and served over 1,000 clients worldwide. This study is a culmination of four months of full-time effort performed by Lucintel's analyst team. The analysts used the following sources for the creation and completion of this valuable report:
  • In-depth interviews of the major players in this market
  • Detailed secondary research from competitors’ financial statements and published data 
  • Extensive searches of published works, market, and database information pertaining to industry news, company press releases, and customer intentions
  • A compilation of the experiences, judgments, and insights of Lucintel’s professionals, who have analyzed and tracked this market over the years.
Extensive research and interviews are conducted across the supply chain of this market to estimate market share, market size, trends, drivers, challenges, and forecasts. Below is a brief summary of the primary interviews that were conducted by job function for this report.
 
Thus, Lucintel compiles vast amounts of data from numerous sources, validates the integrity of that data, and performs a comprehensive analysis. Lucintel then organizes the data, its findings, and insights into a concise report designed to support the strategic decision-making process. The figure below is a graphical representation of Lucintel’s research process. 
 

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