市场调查报告书
商品编码
1621966
全球非晶态变压器铁芯合金市场规模(按产品、应用、地区、范围和预测)Global Amorphous Transformer Core Alloy Market Size By Product, By Application, By Geographic Scope And Forecast |
近年来,非晶变压器铁心合金的市场规模一直以相当可观的增长率适度增长,市场估计和预测预计将在2024年至2031年间大幅增长。
消费性电子、航空航太、医疗、工业电力、电力、电动车和高速铁路等应用对非晶态变压器铁芯合金的需求不断增加,推动了市场成长。全球非晶变压器铁芯合金市场报告对市场进行了全面评估。它对关键细分市场、趋势、市场推动因素、阻碍因素、竞争格局以及在市场中发挥关键作用的因素进行了全面的分析。
非晶态变压器铁心合金的全球市场定义
非晶态金属是快速冷却熔融金属而产生的非晶态合金。非晶态金属由于其晶体结构不存在各向异性,也不存在阻碍磁畴壁移动的晶粒边界,因此具有高磁导率、低损耗等优异的磁性能,同时仍具有较高的饱和磁通密度。
电力线变压器和工业变压器皆采用以Fe(铁)为主要成分的非晶态金属材料。非晶态金属材料的空载损耗(铁损)比硅钢等传统材料小,约为硅钢的1/5。因此,非晶态金属能够对节能做出重大贡献。
非晶态合金,通常被称为 "液态金属" 或 "金属玻璃" ,是一种主要由铁、硅、硼和其他元素组成的新型软磁合金。采用快速冷却技术製造非晶合金薄带,是公司主导的产品。熔融合金冷却后产生厚度约0.03mm的非晶态合金薄带,其中金属原子处于无序的非晶态。
这种非晶态合金透过上述极端製造製程形成特殊的原子结构,因而具有低矫顽力、高磁导率、高电阻率、耐高温腐蚀、高韧性等优异性能。非晶变压器铁芯合金在消费性电子、航太、医疗、工业电源、电力、电动车和高铁等产业有着广泛的应用。
非晶态变压器铁心合金的全球市场概况
消费性电子、航空航太、医疗、工业电力、电气、电动车和高速铁路以及其他应用对非晶变压器铁芯合金的需求不断增加,推动了市场成长。随着公用事业公司越来越意识到系统损耗的成本,对更高效变压器铁芯材料的需求推动了输电和配电变压器中非晶合金的发展。结合单相配电变压器的运作特性,讨论了非晶合金铁心的製造。
捲绕张力、优越的芯线退火技术和其他退火因素都被考虑在内。非晶合金铁芯在电导率、磁导率和磁密度方面优于传统铁芯,并且可在更宽的温度范围内有效运作。它们有助于使变压器、电感器、逆变器和电动马达等所有需要高频和低损耗的设备变得更紧凑、轻巧和节能。
因此,它们也用于电网电源和配电变压器。电力公司和配电变压器用户比以往任何时候都更加关注永续性,并正在寻找能够最大限度降低营运成本、提高能源节约并减少环境影响的技术。选择非晶变压器铁芯合金来帮助实现这些重要目标。
非晶态金属是一种独特的合金,具有随机的分子结构,而不是像 CRGO 芯钢那样的有组织的晶体结构。由于其独特的分子结构,非晶态金属芯在通电时很容易磁化和消磁,导致能量损失比CRGO钢低得多。与传统晶粒硅钢相比,非晶合金具有较低的铁损和磁致伸缩性能。非晶态合金结构中的金属分子是随机排列的。
Amorphous Transformer Core Alloy Market size is growing at a moderate pace with substantial growth rates over the last few years and is estimated that the market will grow significantly in the forecasted period i.e. 2024 to 2031.
Rising demand for Amorphous Transformer Core Alloy from Consumer Electronics, Aerospace, Medical, Industrial Power, Electricity, Electric Cars & High-Speed Rail, and other applications driving the growth of the market. The Global Amorphous Transformer Core Alloy Market report provides a holistic evaluation of the market. The report offers a comprehensive analysis of key segments, trends, drivers, restraints, competitive landscape, and factors that are playing a substantial role in the market.
Global Amorphous Transformer Core Alloy Market Definition
Amorphous metal is a non-crystalline alloy produced by quenching molten metal at a high rate. Amorphous metal has excellent magnetic properties such as high permeability and low loss while having a high-saturation magnetic flux density because it lacks anisotropic properties that come from a crystalline structure and there are no crystalline grain boundaries to prevent motion of magnetic domain walls.
In power line transformers and industrial transformers, amorphous metal materials with Fe (iron) as the main ingredient are used. Amorphous metal materials have a small no-load loss (iron loss) compared to traditional materials such as silicon steel, about 1/5 that of silicon steel. Therefore, Amorphous metals make a major contribution to energy conservation.
Amorphous alloy, often known as "liquid metal" or "metallic glass," is a new type of soft magnetic alloy composed primarily of iron, silicon, boron, and other elements. Rapid cooling technology is used in the production of its primary product, amorphous alloy thin ribbon. The alloy molten liquid is cooled and generates an amorphous alloy thin ribbon with a thickness of roughly 0.03mm and a physical state of disordered amorphous metal atoms.
The amorphous alloy has excellent properties such as low coercivity, high permeability, high resistivity, high-temperature corrosion resistance, and high toughness owing to the special atomic structure formed by the above extreme production process. Amorphous Transformer Core Alloy has different applications in Consumer Electronics, Aerospace, Medical, Industrial Power, Electricity, Electric Cars & High-Speed Rail, and Other industries.
Our reports include actionable data and forward-looking analysis that help you craft pitches, create business plans, build presentations and write proposals.
Global Amorphous Transformer Core Alloy Market Overview
Rising demand for Amorphous Transformer Core Alloy from Consumer Electronics, Aerospace, Medical, Industrial Power, Electricity, Electric Cars & High-Speed Rail, and other applications driving the growth of the market. The development of amorphous alloy in power transmission and distribution transformers has been encouraged by the demand for more efficient transformer core materials, as electric utilities have become more aware of the costs of system losses. The production of amorphous alloy cores is explored in relation to single-phase distribution transformer operating characteristics.
Winding tension, a superior core annealing technique, and other annealing factors are all considered. Amorphous-Alloy Cores outperform conventional cores in terms of electrical conductivity, permeability, and magnetic density, as well as efficient functioning over a larger temperature range. Transformers, inductors, inverters, motors, and any other device requiring high frequency, low loss performance can be made smaller, lighter, and more energy-efficient.
Owing to this, it is used in transformers for electric grid power and distribution. Electric utilities and other distribution transformer users are putting a larger focus on sustainability than ever before, and are looking for technologies that can minimize operating costs, improve energy savings, and reduce environmental impact. The Amorphous Transformer Core Alloy is the product of choice for helping in the fulfillment of these important objectives.
Amorphous metal is a one-of-a-kind alloy that has a random molecular structure rather than the organized crystalline structure of CRGO core steel. When energized amorphous metal cores are more easily magnetized and demagnetized due to their unique molecular structure, resulting in much lower energy loss than CRGO steel. In comparison to conventional grain-oriented silicon steel, amorphous alloys have low core loss and magnetostriction. The metallic molecules in an amorphous alloy's structure are organized in a random way.
The Global Amorphous Transformer Core Alloy Market is Segmented on the basis of Product, Application, And Geography.
Based on Product, The market is segmented into 5-50mm, 50mm-100mm, 142mm-213mm, and Others. The 5-50mm segment is dominating the market with the highest market share and is expected to increase significantly and continue to dominate the global market over the forecast period.
Based on Application, The market is segmented into Consumer Electronics, Aerospace, Medical, Industrial Power, Electricity, Electric Cars And High-Speed Rail, and Others. The Consumer Electronics component is witnessing the highest market share and is expected to increase at a rapid rate throughout the forecast period.
Our market analysis also entails a section solely dedicated to such major players wherein our analysts provide an insight into the financial statements of all the major players, along with its product benchmarking and SWOT analysis. The competitive landscape section also includes key development strategies, market share, and market ranking analysis of the above-mentioned players globally.