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Foam iron nickel mesh
Foam iron nickel mesh
Foam iron nickel mesh
Foam iron nickel mesh
Foam iron nickel mesh

Foam iron nickel mesh: $r
Thickness: 5-30mm, $r
Specification: customized according to user requirements $r
Aperture: 0.1mm-5mm (50PPI-10PPI) $r
Porosity: more than 96% $r
Weight: 0.1-0.8g/cm3 $r
Temperature resistance: ≥ 500 ℃ $r
Heat transfer coefficient: ≥ 3W/m2

01Product Description

Foam iron nickel meshKey Features:

1. Ultra lightweight, the iron nickel skeleton is hollow and interconnected in an alloy state, with a porosity of up to 96-98%, a large specific surface area, a specific gravity of 0.2-0.3, which is 1/4 of water, 1/3 of wood, 1/10 of aluminum metal, and 1/30 of iron

2. Sound absorption: Due to its irregular porous structure, it has strong wideband sound absorption characteristics.

3. Electronic wave shielding: Shielding around 90dB of electronic waves through a relatively thin thickness.

4. Fireproof: Maintain stable shape and are difficult to burn at high temperatures.

5. Recycling: Metal waste can be 100% recycled.

6. Thermal conductivity: Metal porous materials have strong thermal conductivity.

7. Breathable: A homogeneous three-dimensional mesh structure with filtering effect, providing excellent flow stability for gases and fluids.

8. Sound insulation: Through additional processing, a high noise interception can be achieved, and the sound insulation effect is good.

9. Temperature resistance: resistant to high temperatures above 1100 degrees, resistant to various acid and alkali corrosion, good permeability, and uniform pore structure.

Foam iron nickel meshApplication fields:

1. Carrier materials for exhaust purifiers, various catalyst carriers, especially for filter materials that require high temperature resistance and acid alkali corrosion resistance.

2. In the field of chemical power supply, foam nickel positive and negative electrodes such as nickel hydride and nickel cadmium batteries can double the performance of batteries.

3. In the field of electrochemical engineering, it can be used as a catalyst and its carrier, filter medium, and medium in separators.

4. In the field of thermal engineering, it can be used as both a damping material and an efficient thermal conductivity "wick" material for "heat pipes".

5. In the field of functional materials, it can absorb wave energy, reduce noise, absorb vibration, and buffer electromagnetic shielding.

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