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市场调查报告书
商品编码
1645259
全球电工钢市场:成长、未来展望、竞争分析,2025-2033 年Electrical Steel Market - Growth, Future Prospects and Competitive Analysis, 2025 - 2033 |
电工钢市场涵盖特定类型钢材的生产和销售,主要用于电力变压器、电动机和发电机的製造。电工钢,也称为硅钢或变压器钢,用于製造变压器的铁芯以及电动机和发电机的定子和转子。预计 2025 年至 2033 年期间电工钢板市场的复合年增长率为 4.5%。电工钢板的特性在于,它能最大限度地减少电力变压器和电动机在磁化和退磁过程中的能量损失。此属性对于这些应用中的能源效率和运行性能至关重要。钢上通常涂有高比例的硅,这可以提高电阻并减少以热量形式损失的能量。
市场推动因素:再生能源与电动车的成长
电工钢市场的主要驱动力是再生能源和电动车(EV)产业的全球成长。电工钢对于风力涡轮机和太阳能电池板等再生能源系统中使用的变压器和发电机的製造至关重要。随着世界越来越多地转向永续能源来应对气候变化,对再生能源基础设施的需求正在迅速增长。这一趋势直接推动了对取向电工钢的需求,这对于能源传输和分配至关重要。同时,电动车市场的快速成长正在推动对无取向电工钢板的需求。这种钢材是电动车必不可少的电动马达的关键部件。随着世界各国政府鼓励电动车的普及以及製造商扩大其电动车产品,对高效电动马达以及最终的电工钢板的需求正在大幅增长。
机会:能源效率与技术进步
电工钢市场的主要商机在于高效率钢种的开发与技术创新。随着能源效率变得越来越重要,对于具有优异磁性能以最大限度减少能量损失的电工钢板的需求也日益增长。生产过程和材料科学的进步促使了新型、更高效的电工钢的产生。这一发展不仅迎合了日益增强的环保意识的市场,而且还提高了马达和变压器的整体性能。此外,对合金成分和处理过程的不断研究和开发为进一步改善这种钢的电磁性能提供了机会,以满足现代电气应用不断变化的需求。
抑制因素:原物料价格波动
然而,原料尤其是硅价格的波动是一个主要阻碍因素。电工钢板的成本在很大程度上受其生产中大量使用的硅的价格的影响。硅价的波动导致电工钢价格波动,影响製造商的获利能力和最终用户的负担能力。这种波动给电工钢产业带来了课题,并可能影响再生能源和电动车生产等领域的投资决策和新项目开发。
课题:环境影响与永续性
电工钢板市场的关键问题之一是解决生产过程对环境的影响和永续性。电工钢的生产,尤其是高硅含量的电工钢的生产,涉及能源密集型工艺,会导致碳排放。此外,开采和提炼硅和其他原料也会对环境产生影响。随着全球注意力转向永续实践,该行业面临着减少对环境影响的课题。这包括采用清洁的生产技术、改善废弃物管理和探索替代的、更环保的材料和製程。平衡日益增长的电工钢需求与永续生产实践的需求对于市场的长期生存至关重要。
依产品进行市场区隔
电工钢板市场依产品分为取向电工钢板和无取向电工钢板。无取向电工钢板目前产生的收入最高,因为它们广泛应用于汽车和家电领域的马达和电感器等各种用途。这种类型的钢因其多功能性和高效性而在磁通方向不恆定的应用中受到青睐。另一方面,取向电工钢的复合年增长率(CAGR)最高。该领域的成长是由配电和输电网路对节能变压器的需求不断增长,特别是随着再生能源基础设施的扩张而推动的。取向电工钢具有优异的磁性能,是变压器铁芯不可或缺的材料,可显着降低能量损失,并提高电力传输效率。
按应用细分市场
按应用划分,市场动态因变压器、电动机、电感器等行业而异。由于变压器在能源分配中的重要作用以及全球对电力的需求不断增长,变压器部门占据了市场最大的收入占有率。传统能源和再生能源领域对高效可靠变压器的需求推动了对高品质电工钢的需求。然而,受快速成长的电动车(EV)产业以及电动马达在各种工业和消费应用中日益广泛的使用所推动,汽车产业预计将实现最高的复合年增长率。随着世界走向电气化和自动化,对高效能、高性能电动机的需求迅速增长,推动了马达应用无取向电工钢领域的成长。电工钢的多样化应用使其成为现代基础设施的重要组成部分,并凸显了其在正在进行的全球能源转型和工业进步中的重要性。
区域见解
在电工钢板市场的地理细分中,各种区域趋势都很突出。 2024 年,以中国和印度为主导的亚太地区预计将为市场创造最高的收入。这主要归功于该地区製造业(特别是汽车和电子产业)的实力以及不断扩大的可再生能源基础设施。这些快速工业化的经济体中存在大型电工钢製造商,并且对变压器和电动马达的高需求促成了这种主导地位。预计 2025 年至 2033 年期间亚太地区的复合年增长率 (CAGR) 最高。这一增长将受到该地区工业化程度的提高、发电和配电投资的增加以及电动车市场的不断增长的推动。
主要公司分析
就电工钢板市场主要参与者的竞争趋势和策略而言,2024 年企业将专注于产能扩张、技术进步和策略伙伴关係。安赛乐米塔尔、克里夫兰克利夫斯公司、JFE钢铁公司、新日本製铁公司、浦项製铁公司、塔塔钢铁公司和蒂森克虏伯股份公司等主要市场参与者凭藉全面的高品质取向和无取向电工钢产品引领着产业发展。这些公司投资研发以提高其产品的效率和性能,以满足能源和汽车产业不断变化的需求。在 2025-2033 年的预测期内,预计参与者将继续优先考虑材料科学方面的创新,以改善电工钢的磁性并减少变压器和马达等应用中的能量损失。预计竞争格局将由对永续生产实践、新兴市场扩张以及满足高性能应用所需的严格品质标准的关注来塑造。这种竞争环境的推动因素包括满足全球日益增长的能源效率需求、不断发展的可再生能源产业所带来的课题以及电工钢在高科技应用中日益广泛的使用。
The electrical steel market encompasses the production and sale of a specific type of steel tailored primarily for the manufacture of electrical power transformers, motors, and generators. Electrical steel, also known as silicon steel or transformer steel, is a material used to construct the cores of transformers and the stators and rotors of electric motors and generators. Electrical steel market is estimated to grow at a CAGR of 4.5% from 2025 to 2033. Electrical steel is characterized by its ability to minimize energy loss during the process of magnetization and demagnetization, which occurs in electric power transformers and motors. This property is crucial for energy efficiency and operational performance in these applications. The steel is typically coated and includes a high proportion of silicon, which enhances its electrical resistance and reduces energy loss in the form of heat.
Growth in Renewable Energy and Electric Vehicles as a Market Driver
The primary driver for the electrical steel market is the global growth in renewable energy and the electric vehicle (EV) industry. Electrical steel is essential for manufacturing transformers and generators used in renewable energy systems like wind turbines and solar panels. As the world increasingly shifts towards sustainable energy sources to combat climate change, the demand for renewable energy infrastructure is rapidly expanding. This trend directly boosts the need for grain-oriented electrical steel, which is pivotal in energy transmission and distribution. Simultaneously, the burgeoning EV market propels the demand for non-grain-oriented electrical steel. This type of steel is a key component in electric motors, which are integral to EVs. With governments worldwide incentivizing EV adoption and manufacturers expanding their EV offerings, the demand for high-efficiency electric motors, and thus electrical steel, is experiencing significant growth.
Opportunity in Energy Efficiency and Technological Advancements
A significant opportunity in the electrical steel market lies in the development of higher efficiency grades and technological innovations. As energy efficiency becomes increasingly important, there is a growing demand for electrical steel with superior magnetic properties that minimize energy loss. Advancements in production processes and material science can lead to the creation of new, more efficient types of electrical steel. This development not only caters to the growing environmentally conscious market but also improves the overall performance of electrical machinery and transformers. Additionally, continued research and development in alloy composition and treatment processes present opportunities to further enhance the electrical and magnetic properties of this steel, meeting the evolving requirements of modern electrical applications.
Price Volatility of Raw Materials as a Restraint
However, the volatility in the price of raw materials, particularly silicon, acts as a major restraint. The cost of electrical steel is significantly influenced by the price of silicon, used extensively in its production. Fluctuations in silicon prices can lead to instability in electrical steel pricing, affecting profitability for manufacturers and affordability for end-users. This volatility poses a challenge for the electrical steel industry, potentially impacting investment decisions and the development of new projects in sectors like renewable energy and electric vehicle production.
Environmental Impact and Sustainability as a Challenge
One of the key challenges in the electrical steel market is addressing the environmental impact and sustainability of production processes. The manufacturing of electrical steel, particularly the incorporation of high silicon content, involves energy-intensive processes that contribute to carbon emissions. Additionally, the mining and refining of silicon and other raw materials have environmental implications. As global focus shifts towards sustainable practices, the industry faces the challenge of reducing its environmental footprint. This includes adopting cleaner production technologies, improving waste management, and potentially exploring alternative materials or processes that are more environmentally friendly. Balancing the increasing demand for electrical steel with the need for sustainable production practices is crucial for the long-term viability of the market.
Market Segmentation by Product
In the electrical steel market, segmentation by product includes Grain Oriented Electrical Steel and Non-Grain Oriented Electrical Steel. Non-grain oriented Electrical Steel currently generates the highest revenue, owing to its widespread use in various applications, including motors and inductors in the automotive and consumer electronics sectors. This type of steel is preferred for its versatility and efficiency in applications where the direction of magnetic flux is not constant. On the other hand, Grain Oriented Electrical Steel is experiencing the highest Compound Annual Growth Rate (CAGR). The growth in this segment is driven by the increasing demand for energy-efficient transformers in power distribution and transmission networks, particularly in the context of expanding renewable energy infrastructure. Grain Oriented Electrical Steel is essential for transformer cores due to its excellent magnetic properties, which significantly reduce energy loss and improve efficiency in power transmission.
Market Segmentation by Application
When segmented by application, the market dynamics vary across sectors such as Transformers, Motors, Inductors, among others. The Transformer sector represents the largest revenue share in the market due to the critical role of transformers in energy distribution and the growing global demand for electricity. The need for efficient and reliable transformers in both traditional and renewable energy sectors drives the demand for high-quality electrical steel. However, the Motor sector is witnessing the highest CAGR, propelled by the burgeoning electric vehicle (EV) industry and the increasing use of electric motors in various industrial and consumer applications. As the world moves towards electrification and automation, the demand for efficient, high-performance electric motors is rapidly rising, driving the growth in the Non-Grain Oriented Electrical Steel segment for motor applications. The diverse applications of electrical steel in essential components of modern infrastructure underscore its significance in the ongoing global energy transition and industrial advancements.
Regional Insights
In the geographic segmentation of the electrical steel market, various regional trends are noticeable. In 2024, Asia-Pacific, led by China and India, generated the highest revenue in the market. This was primarily due to the region's robust manufacturing sector, particularly in automotive and electronics, and its expanding renewable energy infrastructure. The presence of key electrical steel manufacturers and the high demand for transformers and electric motors in these rapidly industrializing economies contributed to this dominance. Looking forward from 2025 to 2033, the Asia-Pacific region is also expected to exhibit the highest Compound Annual Growth Rate (CAGR). This growth will likely be driven by ongoing industrialization, increasing investments in power generation and distribution, and the growing electric vehicle market in the region.
Analysis of Key Players
Regarding competitive trends and strategies among the top players in the Electrical Steel Market, 2024 saw companies focusing on expanding production capacities, technological advancements, and strategic partnerships. Key market players like ArcelorMittal, Cleveland-Cliffs Corporation, JFE Steel Corporation, Nippon Steel Corporation, POSCO, Tata Steel, thyssenkrupp AG led the industry with their comprehensive range of high-quality grain-oriented and non-grain-oriented electrical steel products. These companies invested in research and development to improve the efficiency and performance of their products, catering to the evolving needs of the energy and automotive sectors. For the forecast period of 2025 to 2033, top players are expected to continue prioritizing innovations in material science to enhance the magnetic properties of electrical steel, thereby reducing energy losses in applications like transformers and motors. The competitive landscape is anticipated to be shaped by a focus on sustainable production practices, expansion into emerging markets, and meeting the stringent quality standards required in high-performance applications. This competitive environment will be driven by the need to cater to the growing global demand for energy efficiency, the challenges posed by the evolving renewable energy sector, and the increasing use of electrical steel in advanced technological applications.
Historical & Forecast Period
This study report represents an analysis of each segment from 2023 to 2033 considering 2024 as the base year. Compounded Annual Growth Rate (CAGR) for each of the respective segments estimated for the forecast period of 2025 to 2033.
The current report comprises quantitative market estimations for each micro market for every geographical region and qualitative market analysis such as micro and macro environment analysis, market trends, competitive intelligence, segment analysis, porters five force model, top winning strategies, top investment markets, emerging trends & technological analysis, case studies, strategic conclusions and recommendations and other key market insights.
Research Methodology
The complete research study was conducted in three phases, namely: secondary research, primary research, and expert panel review. The key data points that enable the estimation of Electrical Steel market are as follows:
Research and development budgets of manufacturers and government spending
Revenues of key companies in the market segment
Number of end users & consumption volume, price, and value.
Geographical revenues generated by countries considered in the report
Micro and macro environment factors that are currently influencing the Electrical Steel market and their expected impact during the forecast period.
Market forecast was performed through proprietary software that analyzes various qualitative and quantitative factors. Growth rate and CAGR were estimated through intensive secondary and primary research. Data triangulation across various data points provides accuracy across various analyzed market segments in the report. Application of both top-down and bottom-up approach for validation of market estimation assures logical, methodical, and mathematical consistency of the quantitative data.