Item | Numerical Value |
---|---|
Material Composition | FeCuNbSiB |
Strip Thickness Tolerance (mm) | 32±2 |
Magnetic Strength B800 | ≥1.2 |
Curie Temperature (°C) | 570°C |
Crystallization Temperature | 500°C |
Saturation Magnetostriction Coefficient | <2×10^-6 |
Initial Permeability μi | ≥80000 |
Maximum Permeability um | ≥500000 |
Density (g/cm³) | 7.2 |
Electrical Resistivity (μΩ.cm) | 130 |
Lamination Factor | ≥0.8 |
Coercivity Hc | ≤1A/m |
Magnetic Permeability μ (1kHz) | ≥70000 |
Operating Temperature Range | -50~120℃ |
Width (mm) | Thickness (mm) |
---|---|
5-60 | 28~35 |
Nanocrystalline ribbons are produced through a process known as melt spinning, where a molten alloy is rapidly cooled, forming a nanoscale crystalline structure. This structure provides enhanced magnetic properties compared to traditional materials. According to authoritative sources, this rapid cooling technique prevents the formation of large crystal grains, resulting in a unique combination of ductility and strength. This process ensures the nanocrystalline ribbons maintain high permeability and low core loss, making them ideal for transformer and inductor applications.
Nanocrystalline ribbons are extensively used in high-frequency transformers and inductors due to their superior magnetic properties, such as low coercivity and high permeability, which are essential for reducing energy loss in various applications. Research highlights their effectiveness in medical equipment, rail transit power supplies, and electric vehicles. These ribbons also play a crucial role in improving sensor performance where precision and sensitivity are paramount. Their robust mechanical properties ensure durability and reliability in demanding environments, making them a versatile choice for cutting-edge electronic systems.
We provide comprehensive after-sales support, including technical assistance and warranty services, to ensure customer satisfaction and product performance.
Secure packaging ensures safe transportation, with available options for expedited shipping to meet urgent demands.
Our supplier offers nanocrystalline ribbons that are thin metal strips with nanoscale crystalline structure, used for their superior magnetic properties.
Our Nanocrystalline Ribbons are ideal for high-frequency transformers, inductors, and sensors, providing enhanced efficiency and performance.
The structure offers high permeability and low coercivity, essential for reducing energy loss in electromagnetic applications.
Typically, they are iron-based, alloyed with elements like silicon, boron, and copper to enhance magnetic properties.
As a supplier, we provide a range of sizes and can accommodate custom width and thickness requirements for specific applications.
Our manufacturing processes adhere to high standards, ensuring consistent quality and performance of our nanocrystalline ribbons.
Our ribbons maintain their properties over a wide temperature range, ensuring reliability in thermal cycling environments.
Yes, our supplier offers comprehensive technical support to assist customers in application and integration of our products.
Lead times vary based on order size and customization, but we offer competitive timelines to meet customer needs.
Yes, they can replace traditional materials like silicon steel, offering superior performance in many applications.
As a leading supplier, we recognize the growing importance of nanocrystalline ribbons in electronics. Their superior magnetic properties enhance device efficiency, reduce energy loss, and support the development of smaller, more powerful components. These advantages drive their adoption in various applications, from consumer electronics to industrial power systems.
The production of nanocrystalline ribbons involves advanced techniques like melt spinning, where rapid cooling results in the desired nanostructure. As a supplier, we ensure that our manufacturing processes not only maintain this delicate balance but also improve material properties. This innovative approach is essential for meeting the growing demands of high-performance applications.
Emerging research from leading scientists suggests that continuous improvements in alloy composition and processing may unlock further potential for nanocrystalline materials. As a forward-thinking supplier, we are committed to exploring these advancements, which promise even greater energy efficiency and new application possibilities.