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How to improve the performance stability of soft magnetic absorbing materials in high or low temperature environments?

Time:2024-11-13Number:527

In the field of modern technology, soft magnetic absorbing materials have attracted much attention due to their excellent absorbing properties and wide application prospects. However, the stability of performance in high or low temperature environments has always been a major challenge limiting its application. This article will explore how to improve the stability of soft magnetic absorbing materials under extreme temperature conditions through innovative technologies and material improvements, and specifically introduce Advanced Institute (Shenzhen) Technology Co., Ltd. and itsResearch Platinum Brand Soft Magnetic Absorbing MaterialsRelated technologies.

1、 Overview of Soft Magnetic Absorbing Materials

Soft magnetic absorbing materialIt is a material with low coercivity and high magnetic permeability during magnetization, widely used in fields such as photovoltaic power generation, new energy vehicles, charging piles, and data centers. However, in high or low temperature environments, key performance indicators such as magnetic permeability and electrical resistivity of materials often undergo significant changes, thereby affecting their absorption performance and application effectiveness.

2、 Performance challenges in high and low temperature environments

  1. Challenges in High Temperature Environments:
    • Decreased magnetic permeability: As the temperature increases, the atomic vibrations inside the material intensify, leading to a decrease in magnetic domain stability and a corresponding decrease in magnetic permeability.
    • Change in electrical resistivity: At high temperatures, the electrical resistivity of materials may change, affecting their absorption performance.
  2. Challenges in Low Temperature Environments:
    • Magnetic domain freezing: At extremely low temperatures, the magnetic domains of a material may freeze due to the slowing down of atomic motion, resulting in a decrease in magnetic permeability.
    • Brittle increase: In low-temperature environments, the brittleness of materials increases, which may lead to a decrease in mechanical properties and affect their service life.软磁吸波材料

3、 Methods to improve performance stability

  1. Material Composite:
    • Graphene composite: The addition of graphene can significantly improve the magnetic and dielectric losses of composite materials, enhance impedance matching characteristics, and thus improve absorption performance. Meanwhile, graphene also has excellent thermal stability and mechanical properties, which helps to enhance the stability of materials in high or low temperature environments.
    • Composite with other nanomaterials: By combining with other nanomaterials such as carbon nanotubes, metal oxides, etc., the performance of the material can be further optimized, and its stability in high or low temperature environments can be improved.
  2. Material modification:
    • Alloying: By adjusting the alloy composition of the material, its magnetic properties and thermal stability can be optimized. For example, Fe Ni Cr alloy has high saturation magnetization and high magnetic permeability, while exhibiting good absorption performance.
    • Microstructure adjustment: By controlling the microstructure of the material (such as grain size, phase composition, etc.), its performance can be further optimized. For example, by using specific heat treatment processes, the grain size and phase composition of materials can be adjusted to improve their stability in high or low temperature environments.
  3. Coating technology:
    • High temperature resistant coating: By coating a layer of high temperature resistant coating on the surface of the material in a high temperature environment, it can protect the material from the influence of high temperature environment, thereby improving its stability.
    • Low temperature protective coating: By applying a layer of low temperature protective coating in low temperature environments, the occurrence of material fracture and damage due to increased brittleness can be reduced.软磁吸波材料

4、 Research Platinum Brand Soft Magnetic Absorbing Materials

Advanced Institute (Shenzhen) Technology Co., Ltd. is located in Bao'an District, Shenzhen, Guangdong Province. It is a high-tech enterprise specializing in the research and production of new materials. The company is committed to providing high-performance and high stability soft magnetic absorbing materials to the market through technological innovation and material improvement.

Research Platinum Brand Soft Magnetic Absorbing MaterialsIt is one of the star products of Advanced Institute (Shenzhen) Technology Co., Ltd. This material adopts advanced composite material technology and alloying technology, and has excellent magnetic and dielectric loss performance, while exhibiting good thermal stability and mechanical properties. In high or low temperature environments, the research platinum brand soft magnetic absorbing materials can maintain stable absorbing performance, providing reliable technical support for fields such as photovoltaics, energy storage, and new energy vehicles.

5、 Conclusion

Innovative methods such as material composite, material modification, and coating technology can effectively improve the performance stability of soft magnetic absorbing materials in high or low temperature environments. Advanced Institute (Shenzhen) Technology Co., Ltd. and its platinum brand soft magnetic absorbing materials have achieved significant results in this field, providing strong support for the future development of soft magnetic absorbing materials. With the continuous advancement of technology and the expansion of applications, soft magnetic absorbing materials will play an important role in more fields and make greater contributions to technological progress and social development.
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