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Open-Cell Aluminum Foam, 3–4 mm Pore Size, 100 × 200 × 8 mm, 5/10 pcs
Research-grade laboratory product
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TAILORED SOLUTIONS FOR RESEARCH
For pore-size selection, sheet-dimension confirmation, package support or application-specific guidance, contact our engineering sales team.
EMAIL: inquiry@atomfair.com
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Manufacturer: Atomfair LLC
Brand: ATOMFAIR®
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Store the sheets in a clean, dry area, protected from heavy impact, crushing, and contamination. Inspect package condition, dimensions, and visible pore structure before cutting, bonding, or installing the material.
- Storage Environment: Maintain a clean, dry storage environment to prevent contamination and mechanical damage to the cellular structure.
- Pre-Processing Inspection: Verify the sheet dimensions, pore structure, and package integrity before any cutting, bonding, or installation procedure.
- Impact Protection: Protect the foam surface from heavy impact, crushing loads, and particulate contamination during handling and storage.
What is the typical open-cell rate of Atomfair AF-O34-12-T08 aluminum foam and why does it matter?
The typical open-cell rate is 55–65%. This indicates the proportion of pores that are interconnected, which directly affects fluid permeability and surface area for heat transfer or filtration applications.
Can this open-cell aluminum foam sheet be cut or machined to custom dimensions?
Yes, the sheet can be cut to fit specific experimental setups. The product description notes that dimensional customization is available upon consultation, and the sheet is intended for cut-to-fit research components. However, care must be taken to avoid crushing the cellular structure during cutting.
What storage and handling precautions are recommended for open-cell aluminum foam sheets?
Store sheets in a clean, dry area and protect the cellular surface from heavy impact, crushing, and contamination. After delivery, inspect package condition, sheet dimensions, and visible pore structure before cutting, bonding, or installing.
This open-cell aluminum foam sheet (3–4 mm pore size, 100 × 200 × 8 mm) provides a rigid, interconnected porous medium with typical porosity of 70–90% and open-cell rate of 55–65%, suitable for heat transfer, filtration, acoustic control, and light-transmission studies. The lightweight aluminum-alloy framework facilitates integration into test fixtures and prototype assemblies, but the cellular structure is susceptible to crushing under heavy impact and requires clean, dry storage to prevent contamination.
Positive
- Interconnected open-pore network: The continuous open passages through the metallic cellular structure enable airflow, fluid passage, and light transmission, supporting heat-transfer, filtration, and acoustic-control experiments.
- Lightweight rigid aluminum framework: The foamed aluminum alloy provides a rigid porous medium that is easy to integrate into test fixtures, layered assemblies, and prototype housings without adding significant weight.
Trade-offs
- Susceptible to crushing under impact: The cellular surface must be protected from heavy impact and crushing forces, as the open-cell structure can deform or collapse under mechanical stress.
- Requires clean, dry storage conditions: Sheets must be stored in a clean, dry area to prevent contamination of the porous network, which could compromise performance in filtration or flow-distribution applications.
Every advanced material, component, equipment, and instrument in our catalog is backed by rigorous testing. We maintain strict internal quality management frameworks and align with CE conformity metrics to deliver transparent, reproducible performance data via our public open-science repository.
To request raw batch performance data, submit formal vendor registration paperwork, or execute a fast-turnaround R&D manufacturing loop, contact us at inquiry@atomfair.com.
Item is dispatched under the Atomfair Shipping & Delivery Framework (Free worldwide shipping on orders over $59 USD excl. heavy equipment). Return is governed by the Atomfair Return & Refund Policy (7-day technical return window).








