Product Main Parameters
Parameter | Value |
Material Composition | FeCuNbSiB |
Thickness (μm) | 28~35 |
Saturation induction Bs (T) | 1.25 |
Curie temperature (°C) | 570 |
Hardness Hv | 880 |
Crystalline temperature Tc (°C) | 500 |
Saturation magnetostriction | 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 |
Operating Temperature Range (°C) | -50~120 |
Common Product Specifications
Part No. | Core Dimension (OD x ID x H) | Finished Dimension (OD x ID x H) | Note |
JJ800 | 180 x 50 x 50 | 85 x 45 x 55 | - |
Product Manufacturing Process
The factory manufacturing process of Nanocrystalline 1K107 typically involves rapid solidification, where the molten alloy is cooled at an extremely high rate to form nanocrystalline grains. This prevents the formation of large crystalline grains, ensuring the material has a nanometer-sized grain structure. Post rapid solidification, an annealing process is often conducted to further enhance the magnetic properties. The factory's advanced metallurgical techniques and equipment ensure high-quality production, maintaining the superior magnetic characteristics of Nanocrystalline 1K107.
Product Application Scenarios
Nanocrystalline 1K107 shows impressive performance in various applications:
- Power Electronics: Components such as transformers and inductors benefit from high magnetic permeability and low losses, ensuring efficient performance in power supplies and converters.
- Telecommunications: The material's properties enhance signal transmission efficiency and reduce energy losses, making it ideal for telecommunications equipment.
- Medical Equipment: Precision and reliability are critical in medical devices. Nanocrystalline 1K107's low energy losses and high efficiency are beneficial in devices like MRI machines.
- Automotive Industry: Electric and hybrid vehicles utilize nanocrystalline materials in power electronics and motor components, leading to longer battery life and superior performance.
Product After-Sales Service
We provide comprehensive after-sales services, including technical support, troubleshooting, and replacement of defective products. Our factory ensures that all customer inquiries and issues are addressed promptly to maintain high customer satisfaction.
Product Transportation
Our factory ensures safe and secure transportation of Nanocrystalline 1K107 products, utilizing robust packaging materials to prevent damage during transit. We collaborate with reliable logistics partners to guarantee timely delivery.
Product Advantages
- High magnetic permeability for efficient magnetization and demagnetization.
- Low coercivity reduces energy losses in AC applications.
- Minimal magnetic losses ensure efficient energy conversion.
- Suitable for various high-tech applications, including power electronics, telecommunications, and medical equipment.
- Cost-effective compared to other magnetic materials with similar properties.
Product FAQ
- Q: What are the main components of Nanocrystalline 1K107?
A: The main components of Nanocrystalline 1K107 are iron, silicon, boron, copper, and niobium, forming a nanocrystalline structure. - Q: What are the primary applications of Nanocrystalline 1K107?
A: Nanocrystalline 1K107 is primarily used in power electronics, telecommunications, medical equipment, and the automotive industry. - Q: How does the factory ensure the quality of Nanocrystalline 1K107?
A: The factory ensures quality through rigorous manufacturing processes, including rapid solidification and annealing, along with thorough quality control checks. - Q: What is the operating temperature range of Nanocrystalline 1K107?
A: The operating temperature range of Nanocrystalline 1K107 is -50°C to 120°C. - Q: What makes Nanocrystalline 1K107 cost-effective?
A: Nanocrystalline 1K107 is cost-effective due to its high performance, low energy losses, and the factory's advanced production techniques that optimize manufacturing costs.
Product Hot Topics
- Q: How does the factory ensure the high permeability of Nanocrystalline 1K107?
A: The factory ensures high permeability through precise control over the rapid solidification and annealing processes, resulting in a nanocrystalline structure that offers superior magnetic properties. - Q: Why is Nanocrystalline 1K107 preferred in power electronics?
A: Nanocrystalline 1K107 is preferred in power electronics due to its high magnetic permeability, low coercivity, and reduced magnetic losses, which enhance the efficiency and performance of power supply components. - Q: Can Nanocrystalline 1K107 be customized according to specific requirements?
A: Yes, the factory offers customization options for Nanocrystalline 1K107 to meet specific application requirements, including tailored dimensions and protective coatings. - Q: What are the advantages of using Nanocrystalline 1K107 in medical equipment?
A: Using Nanocrystalline 1K107 in medical equipment offers reduced energy losses, high efficiency, and reliability, which are critical for the precise performance required in diagnostic devices. - Q: How does the nanocrystalline structure of 1K107 enhance its performance?
A: The nanocrystalline structure of 1K107 enhances performance by minimizing eddy currents and hysteresis losses, thus improving overall magnetic efficiency and reducing heat generation.
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