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From amorphous alloy ribbons to various transformer cores, providing full-chain product solutions


Iron-based amorphous alloy ribbon is the base raw material for manufacturing high-performance transformer and motor cores. It is formed in a single step from molten steel into thin strips approximately 25-30 micrometers thick using rapid quenching technology. Its atomic arrangement presents a disordered amorphous structure (known as 'metallic glass'). This unique structure gives the material an extremely narrow hysteresis loop, high permeability, and low coercivity, making its resistivity 2-3 times higher than traditional silicon steel, thereby significantly reducing eddy current losses. As a core upstream material, it is key to achieving 'ultra-low no-load loss' and 'high energy efficiency' in downstream products.
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Breaking through the limitations of planar structures, amorphous ribbons are wound into three independent single frames and assembled into an equilateral triangle 3D structure. The magnetic circuit is seamlessly closed with fully symmetrical three-phase performance, making it the ideal core for a new generation of energy-efficient distribution transformers.
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Oil-immersed amorphous transformer cores are made from amorphous alloy ribbons and fully immersed in insulating oil. Their core advantages lie in energy saving and environmental protection: compared to traditional silicon steel transformers, no-load losses can be reduced by approximately 75%, significantly reducing carbon emissions. The oil-immersed design provides excellent insulation and heat dissipation performance, combined with a fully sealed tank structure, making it moisture-proof and corrosion-resistant, very suitable for long-term maintenance-free operation in harsh outdoor environments (such as rural grids and industrial enterprises). Additionally, due to low losses and minimal heat generation, its operational stability is extremely high, making it an ideal choice for green grid construction.
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Dry-type amorphous transformer cores are manufactured based on iron-based amorphous alloy materials, using epoxy resin vacuum casting and other processes for insulation treatment, without using insulating oil. Their outstanding features are fire safety and zero pollution, allowing direct installation at load centers (such as high-rise buildings, subways, airports, commercial centers, and other places with extremely high fire safety requirements). The low-loss characteristics of amorphous alloys are equally reflected in these products, with no-load losses being only about 40% of traditional SCB10 products. At the same time, they have high mechanical strength, strong short-circuit resistance, low noise (10-15 decibels lower than standard), and extremely low partial discharge (controllable below 5pC), ensuring safe and reliable operation in high-density population environments.
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Amorphous multi-layer composite ribbon is an advanced soft magnetic material designed specifically for high-speed, high-frequency motors. It is made by composite bonding 5-8 layers of iron-based amorphous ribbons, with a standard width of 240mm and a maximum width of 260mm-300mm, compatible with in-mold and out-of-mold glue application processes, significantly improving the commercial mass production convenience of amorphous motor cores. The product has excellent electromagnetic performance: under P1.0/400 conditions, iron loss is as low as 2.5W/kg, superior to non-oriented silicon steel cores used in new energy vehicles; under P1.0/2000 conditions, iron loss is 20W/kg. Its design without insulating coating or with self-adhesive coating simplifies the core preparation process while ensuring material consistency and stability, suitable for demanding scenarios such as high-speed motors, smart home appliances, and drones that require strict energy efficiency and performance.
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Amorphous motor cores are core magnetic components designed specifically for high-speed, high-frequency motors, with excellent electromagnetic performance: under P1.0/400 conditions, iron loss is as low as 2.5W/kg, lower than the loss of non-oriented silicon steel cores used in new energy vehicles; under P1.0/2000 conditions, iron loss is 20W/kg. The industrialization of amorphous motor cores is accelerating, with multiple domestic enterprises achieving large-scale mass production and becoming core component suppliers for new energy vehicles. Their advantages lie in significantly reducing motor iron loss, improving energy efficiency, thereby extending electric vehicle range, while also contributing to motor lightweighting and miniaturization, making them an important direction for future high-efficiency motor development.
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Iron-based amorphous alloy ribbon is the base raw material for manufacturing high-performance transformer and motor cores. It is formed in a single step from molten steel into thin strips approximately 25-30 micrometers thick using rapid quenching technology. Its atomic arrangement presents a disordered amorphous structure (known as 'metallic glass'). This unique structure gives the material an extremely narrow hysteresis loop, high permeability, and low coercivity, making its resistivity 2-3 times higher than traditional silicon steel, thereby significantly reducing eddy current losses. As a core upstream material, it is key to achieving 'ultra-low no-load loss' and 'high energy efficiency' in downstream products.
Learn More›
About Us
WCAN Amorphous
WCAN Amorphous Technology (Zhejiang) Co., Ltd. is an innovation-driven enterprise under WCAN Group, dedicated to the R&D and manufacturing of iron-based amorphous alloy materials. Established in 2025 through strategic restructuring, the company inherits fifteen years of deep industry experience and technological expertise from its predecessor. It now has an annual production capacity of 30,000 tonnes of amorphous alloy ribbons, as well as large-scale manufacturing capabilities for dry-type, oil-immersed and three-dimensional wound transformer cores, with product performance and quality ranking among the industry's top tier.
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Stay updated with WCAN's latest developments, industry trends, and technological innovations

2026-08-12
Green Manufacturing Transformation Accelerates, Driving Sustained Growth in Amorphous Alloy Material Demand
Driven by the national dual-carbon strategy, the green transformation of manufacturing is accelerating, with amorphous alloy materials in high demand as key energy-saving materials. This article analyzes the opportunities and prospects of amorphous alloy materials in the green manufacturing wave from three dimensions: policy drivers, market demand, and development trends.

Smart Grid Construction Accelerates, Driving Comprehensive Upgrade of Transformer Industry
As national smart grid construction enters a new phase, demand for high-efficiency energy-saving transformers continues to grow. This article explores smart grid construction progress, new requirements facing the transformer industry, and future upgrade directions, analyzing the development opportunities for amorphous alloy materials in the power equipment sector.
2026-08-12

2026-2030 Global Amorphous Alloy Material Market Size Forecast and Trend Analysis
According to industry research institutions, the global amorphous alloy material market will maintain steady growth over the next five years. This article provides in-depth analysis of development trends and investment opportunities in the amorphous alloy material industry from three dimensions: market size, driving factors, and competitive landscape, providing decision-making reference for industry practitioners.
2026-08-12

Application Prospects of Amorphous Alloy Transformers in Distribution Network Energy-Saving Renovation
As the 'dual-carbon' goal advances, amorphous alloy transformers, with their significant advantage of ultra-low no-load loss, show broad application prospects in distribution network energy-saving renovation. This article analyzes the development opportunities and challenges of amorphous alloy transformers in future distribution network construction from three dimensions: technical characteristics, application scenarios, and market trends.
2026-08-12
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