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Forming process and optimization direction of structural radar absorbing materials

Time:2024-12-20Number:436

Structural radar absorbing materials have attracted much attention due to their lightweight, high strength, and electromagnetic wave absorption ability. This article provides an overview of the molding process of structural radar absorbing materials and explores the advanced research institute (Shenzhen) Technology Co., LtdResearch Platinum Brand Radar Absorbing MaterialsThe performance characteristics and optimization directions have been proposed.

1. Overview of structural radar absorbing materials

Structural radar absorbing material is a multifunctional resin based reinforced plastic with the characteristics of lightweight and high-strength composite materials. It can be used as a structural component of weapons and equipment, and can also absorb or transmit electromagnetic waves, playing a role in absorbing and stealth.

2. Molding process

Structural absorbing materialsThe molding process includes vacuum assisted molding (VARI) and other techniques. VARI process is a new low-cost molding technology for large-scale composite parts. By eliminating gases from the fiber reinforcement and utilizing the flow and penetration of resin, the fibers and their fabrics are impregnated and cured under certain temperature conditions.吸波材料

3. Research Platinum Brand Radar Absorbing Materials

Advanced Institute (Shenzhen) Technology Co., Ltd. focuses on the research and production of flexible substrate coatings, precious metal pastes, electromagnetic shielding materials and devices, and absorbing materials. itsResearch Platinum Brand Thin Film Absorbing MaterialsIt has significant advantages in the field of electromagnetic compatibility (EMC), with wideband absorption, high absorption rate, small thickness and surface density, good flexibility and plasticity, as well as excellent mechanical properties and environmental resistance.

4. Optimization direction

4.1 Electromagnetic parameter matching

Coating absorbing materials need to have good electromagnetic parameter matching characteristics, that is, the dielectric constant and magnetic permeability of the material need to match the impedance of free space to reduce the reflection of electromagnetic waves.

4.2 Microstructure Design

Coating absorbing materialThe microstructure has a significant impact on its absorption performance. By regulating the microstructure of materials, such as particle size, shape, distribution, etc., the electromagnetic parameters of materials can be optimized to improve the absorption efficiency of electromagnetic waves.吸波材料

4.3 Composite Material Methods

By mixing different magnetic materials, it is possible to enhance the imaginary part while maintaining a higher real part. Advanced Institute (Shenzhen) Technology Co., LtdResearch Platinum brand high magnetic permeability absorbing materialIn the research and development process, this composite material method was adopted to achieve better results.

4.4 Microstructure control

By utilizing advanced nanotechnology to construct microstructures with special shapes and arrangements, the real and imaginary parts of magnetic permeability can be effectively adjusted.

4.5 Parameter Optimization

By combining computer simulation and experimental verification, various process parameters during the preparation process are finely adjusted to ensure that the real and imaginary parts of the magnetic permeability of the final product are in an ideal state.

conclusion

The research and application of structural radar absorbing materials are constantly advancing. Advanced Institute (Shenzhen) Technology Co., Ltd. is researching platinum brand radar absorbing materials, which play an important role in the field of modern electromagnetic protection due to their excellent performance and adjustability. With the continuous advancement of technology, the application scope of radar absorbing materials will be further expanded, providing strong support for the development of electromagnetic compatibility and radar stealth technology.
The above data is for reference only, and specific performance may vary due to production processes and product specifications.
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