En muchos de los artículos que utilizamos a diario se utilizan materiales magnéticos blandos. Los materiales magnéticos blandos tradicionales se han utilizado durante más de un siglo o casi, incluido el hierro electrónico, el acero al silicio y la ferrita blanda. Incluso los tipos más recientes de materiales magnéticos blandos, como las aleaciones amorfas y nanocristalinas , se han producido durante más de 40 años. El proceso de fabricación y la composición de la aleación han mejorado continuamente. Por ejemplo, la pérdida del núcleo a 1,7 T, 50 Hz se redujo de 1,2 a 0,7 W/kg, mientras que el espesor del acero al silicio se redujo de 0,30 a 0,23 mm. La pérdida del núcleo cae a 0,21 W/kg a medida que el espesor de la lámina se reduce aún más a 32 μm.
Los materiales magnéticos blandos son aquellos que tienen una curva de magnetización ascendente pronunciada, un bucle de histéresis pequeño y estrecho y, por lo tanto, pérdidas de energía bajas por cada ciclo de magnetización. Debido a que mejoran el campo creado por el bobinado del motor, el material magnético blando se emplea con frecuencia en aplicaciones de motores. Además, los materiales a base de hierro, como las aleaciones de hierro- silicio y hierro-cobalto, se utilizan principalmente en aplicaciones de motores. Hoy en día, los componentes de los motores se fabrican principalmente mediante la técnica de pulvimetalurgia. Los materiales magnéticos blandos reducen la pérdida por corrientes parásitas, lo que aumenta la eficiencia de los motores.
Los componentes funcionales para medir el campo magnético, la corriente eléctrica, el desplazamiento y la tensión mecánica incluyen materiales magnéticos blandos. Ofrecen una alta magnetización de saturación, una fuerza coercitiva mínima, una pequeña pérdida por histéresis y una permeabilidad máxima. Los núcleos magnéticos de transformadores, inductores, motores y generadores de todo el mundo los utilizan. El hierro puro, las aleaciones de hierro y silicio y las aleaciones de níquel-hierro son algunos de los materiales magnéticos blandos que se utilizan con frecuencia.
Due to advantages including minimal noise, compact design, and energy savings, soft magnetic materials are typically utilized in electric motors, which are commonly seen in electric vehicles. Moreover, brushless DC motors, stepper motors, brushed DC motors, switch reluctance motors, claw pole motors, transformers, and alternators all frequently employ soft magnetic materials in their stators. Soft magnetic materials with high permeability and low coercivity operate as electrical insulators and have lower eddy current losses. They also have high electrical resistivity to iron. This will likely result in a significant increase in soft magnetic material demand, which will propel the market for these materials to expand.
| ATTRIBUTE | DETAILS |
| Study period | 2020-2029 |
| Base year | 2021 |
| Estimated year | 2022 |
| Forecasted year | 2022-2029 |
| Historical period | 2018-2020 |
| Unit | Value (USD BILLION) |
| Segmentation | By Type, By Application, By End-User, By Region |
| By Type |
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| By Application |
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| By End-User |
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| By Region |
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Iron, nickel, and/or cobalt are the principal metals in amorphous alloys, together with boron, carbon, phosphorus, or silicon. Industrial users are using magnetic components made from amorphous alloys to run processes more effectively, save energy, and save operating costs. Amorphous soft magnetic materials are ideal for the majority of electrical and electronic applications due to important characteristics like lower core losses at higher frequencies, higher & wide range of permeability, increased operational temperatures, low coercive field, core weight & volume reduction ability, excellent corrosion resistance, versatility, good mechanical strength, flux density, and various hysteresis loops, among others. It would fuel the expansion of this market even further.
To get a competitive edge, the main corporations are typically refocusing their efforts on creating new and inventive goods and expanding their production capabilities in the market for soft magnetic materials. There will be a lot of chances in the soft magnetic material market as a result of the development of nano-structured soft magnetic materials in new applications. The growing investments by major market players further offer the numerous growth opportunities within the market.
The unexpected changes in the price of soft magnetic raw material are predicted to impede the expansion of the market for soft magnetic materials. As a result, it hampered the flow of soft magnetic raw materials and presented difficulties for producers. The prices of iron ore saw a substantial decline 2019, due to the seasonal decline in superalloy demand and the recovery of supply by iron ore majors restrain for the market growth.
En términos de oferta y demanda, la epidemia de la pandemia de COVID-19 ha tenido un impacto negativo en varios mercados, incluido el de los materiales magnéticos blandos. La demanda de dispositivos médicos como los respiradores ha aumentado como resultado de la pandemia, lo que aumenta la necesidad de motores para un control óptimo, un flujo de aire regulado, una alta densidad de par y poco ruido. Debido al aumento de pacientes en todo el mundo provocado por el coronavirus, existe una mayor demanda de respiradores, lo que probablemente aumentará la demanda de motores y, en última instancia, impulsará la expansión del mercado de materiales magnéticos blandos. La COVID-19 puede afectar a la economía mundial de tres formas principales: afectando directamente la producción y la demanda, creando disrupciones en la cadena de suministro y el mercado, y por su impacto financiero en las empresas y los mercados financieros.
The soft magnetic materials market is expected to grow at 8.5% CAGR from 2020 to 2029. It is expected to reach above USD 53 billion by 2029 from USD 26.1 billion in 2020.
Asia Pacific held more than 30 % of the soft magnetic materials market revenue share in 2021 and will witness expansion in the forecast period.
Due to advantages including minimal noise, compact design, and energy savings, soft magnetic materials are typically utilized in electric motors, which are commonly seen in electric vehicles. Moreover, brushless DC motors, stepper motors, brushed DC motors, switch reluctance motors, claw pole motors, transformers, and alternators all frequently employ soft magnetic materials in their stators. Soft magnetic materials with high permeability and low coercivity operate as electrical insulators and have lower eddy current losses. They also have high electrical resistivity to iron. This will likely result in a significant increase in soft magnetic material demand, which will propel the market for these materials to expand.
The soft magnetic materials market key players Hitachi Metals.ltd, Toshiba Materials, GKN Sinter Metals inc, Sintex, Mate Co.Ltd, JFE Steel Group, Mahindra CIE, Meyer Sintermetal AG, Arnold Magnetic Technologies.
Based on type, the electric steel market captured a sizable portion. Electric steel decreases magnetic losses while also providing electrical insulation, high permeability, low coercivity, and high electrical resistivity to iron. It is utilized in a variety of devices, including inductors, motors, generators, and electrical power transformers. Moreover, it provides a small hysteresis area that eventually results in decreased eddy current loss, boosting the application's effectiveness. Electric steel is widely used in a variety of applications due to its beneficial qualities, which is causing its utilization to rise rapidly and fostering the expansion of the market as a whole.
Asia Pacific held 30% of the overall market share of soft magnetic materials. Due to the presence of iron ore mining, the market for soft magnetic materials in the world was dominated by the Asia-Pacific region. The biggest producers and consumers in the Asia-Pacific region are underdeveloped nations like China and India. Manufacturers of soft magnetic materials from North American and European nations are motivated to invest in the Asia-Pacific region by the availability of cheap labor and the desire to pursue new market niches. The Asia-Pacific region's countries are experiencing robust industrialization, and this region's geographic advantages—such as the presence of iron mines in China and India—are what are driving the market for soft magnetic materials there.
The soft magnetic materials market is segmented based on type, applications, end-use and region.
By type (soft ferrite, electrical steel, cobalt), by applications (motor, transformer, alternator), by end-use (automotive, electronics & telecommunication, electrical) and region.
Based on type, the electric steel market captured a sizable portion. Electric steel decreases magnetic losses while also providing electrical insulation, high permeability, low coercivity, and high electrical resistivity to iron. It is utilized in a variety of devices, including inductors, motors, generators, and electrical power transformers. Moreover, it provides a small hysteresis area that eventually results in decreased eddy current loss, boosting the application's effectiveness. Electric steel is widely used in a variety of applications due to its beneficial qualities, which is causing its utilization to rise rapidly and fostering the expansion of the market as a whole.
Based on Applications, the majority of revenues more than 50% were generated by electric motors. Several end-use industries, including electric transmission, consumer electronics, electric vehicles, and medical equipment, use electric motors. The soft magnetic material market's second-leading application sector is transformers, where soft magnetic materials are used in transformer cores. Expansion in the transformer sector, which is evident from numerous investments, is anticipated to accelerate market growth.
Based on end use, the electrical and electronics industry held a sizable market share for soft magnetic materials. This resulted from a significant demand for soft magnetic materials in the electricity-generating industry's key power transmission components. Nonetheless, given the industry's transition from a fossil fuel to an electric eco-system, the automobile sector is expected to show positive growth.
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The Soft Magnetic Materials market key players Hitachi Metals.ltd, Toshiba Materials, GKN Sinter Metals inc, Sintex, Mate Co.Ltd, JFE Steel Group, Mahindra CIE, Meyer Sintermetal AG, Arnold Magnetic Technologies.
06-02-2023: - JFE Steel Corporation, which is expanding the electrical steel sheet capacity of its West Japan Works (Kurashiki Area) for startup targeted at the first half of the fiscal year starting in April 2024, announced today that it is now planning an additional expansion targeted at a startup in the fiscal year beginning April 2026
21-12-2022: - JFE Steel Corporation today announced that together with IHI Corporation it will conduct a demonstration test of an automated transport system using retrofitted vehicles at its East Japan Works (Keihin District) from February 2023, aiming to test all sections of the demonstration route within the fiscal year ending in March 2024.
The Soft Magnetic Materials market by region includes North America, Asia-Pacific (APAC), Europe, South America, and Middle East & Africa (MEA).
Asia Pacific held 30% of the overall market share of soft magnetic materials. Due to the presence of iron ore mining, the market for soft magnetic materials in the world was dominated by the Asia-Pacific region. The biggest producers and consumers in the Asia-Pacific region are underdeveloped nations like China and India. Manufacturers of soft magnetic materials from North American and European nations are motivated to invest in the Asia-Pacific region by the availability of cheap labor and the desire to pursue new market niches. The Asia-Pacific region's countries are experiencing robust industrialization, and this region's geographic advantages—such as the presence of iron mines in China and India—are what are driving the market for soft magnetic materials there.
The second-largest regional category, with a revenue share of more than 15.0%, was North America. The U.S. is the primary source of the growth. Electric motors, which are widely employed in many industrial applications like pumping, compressed air, fans, refrigeration, material processing, and handling, are heavily consumed in the nation. Despite a decline in industrial production in 2019 that was prolonged by COVID-19, there was some relief for the nation in May 2020 as some industries, including consumer goods, business equipment, transit equipment, defense and space equipment, and construction supplies, reported gains as they partially resumed operations. Over the projection period, it is anticipated that rising industrial activity would fuel demand for electric motors and ultimately soft magnetic materials.
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