Aluminum Foam Disk Open Cell
Aluminum Foam Disk Open Cell
| Aluminum Foam Disk Open Cell | |
| Product No | NRE-51018 |
| CAS | 7429-90-5 |
| Pore Size | 50 PPI (can be customized) |
| Density | 2.7 g/cm³ |
| Compressive Strength | 44Mpa |
| Porosity | 60% |
| Blending Strength | 27Mpa |
| Diameter | 100mm (can be customized) |
| Heat Resistivity | 660 °C |
| Thickness | 10mm (can be customized) |
Aluminum Foam Disk Open Cell
Aluminum Foam Disk Open Cell is an advanced lightweight material characterized by its interconnected porous structure, high surface area, excellent energy absorption, and superior thermal and acoustic properties. Due to these unique characteristics, it has gained significant importance across a wide range of industrial and technological applications.
One of the major applications of open-cell aluminum foam is in thermal management systems. Its high thermal conductivity combined with a large internal surface area makes it ideal for heat exchangers, heat sinks, and cooling systems used in electronics, batteries, and automotive components. The porous structure allows efficient airflow and heat dissipation, improving the performance and lifespan of electronic devices and power systems.
In the automotive and transportation industry, open-cell aluminum foam is widely used for lightweight structural components and energy absorption systems. It helps reduce vehicle weight, which improves fuel efficiency and lowers emissions. The foam’s excellent impact absorption capability also makes it suitable for crash protection, bumpers, and vibration damping components in automobiles, trains, and aerospace structures.
Another important application is in sound absorption and noise control. The interconnected pores effectively absorb and dissipate sound waves, making aluminum foam useful in acoustic panels, silencers, engine enclosures, and industrial noise reduction systems. It is commonly used in factories, power plants, and transportation systems where noise control is essential.
Open-cell aluminum foam is also highly valuable in filtration and fluid flow applications. Its porous network enables the filtration of gases, liquids, and molten metals. It is extensively used in chemical processing, water treatment, air purification, and foundry industries for removing impurities and improving fluid distribution.
In the field of energy and environmental technology, aluminum foam is utilized in fuel cells, battery electrodes, and catalyst supports because of its large surface area and corrosion resistance. It enhances electrochemical performance and improves reaction efficiency in advanced energy systems.
Additionally, open-cell aluminum foam is increasingly used in biomedical and architectural applications. In biomedical engineering, it can serve as a scaffold material for bone implants due to its lightweight and porous structure. In architecture and interior design, it is used for decorative panels, facades, and lightweight construction materials that combine modern aesthetics with functional benefits.
Overall, open-cell aluminum foam is a versatile material offering lightweight performance, thermal efficiency, sound absorption, and structural advantages for modern engineering applications.




