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Laboratory Open-Cell Nickel Foam, 60 PPI, 100 × 200 × 10 mm, 1/5 pcs
Research-grade laboratory product
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LABORATORY PROCUREMENT SUPPORT
For PPI selection, sheet-dimension confirmation, package support or application-specific configuration review, contact our technical sales team.
E-MAIL: inquiry@atomfair.com
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Manufacturer: Atomfair LLC
Brand: ATOMFAIR®
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The open-cell nickel foam sheet must be stored in a clean, dry environment to prevent contamination and structural damage. The porous cellular surface requires protection from heavy impact, crushing, and contamination during handling and storage.
- Storage Environment: Store the sheets in a clean, dry area to maintain material integrity and prevent oxidation or contamination.
- Impact Protection: Protect the open cellular surface from heavy impact, crushing, and contamination to preserve the pore structure and mechanical properties.
- Pre-Use Inspection: After delivery, verify package condition, sheet dimensions, and visible pore structure before cutting, bonding, or installing the material.
- Application Verification: Confirm application-critical corrosion, temperature, mechanical, and integration requirements before ordering or using the material.
What is the maximum operating temperature of the Atomfair 60 PPI nickel foam sheet?
The foam has a listed temperature resistance of at least 500°C and can withstand temperatures exceeding 1100°C for high-temperature applications, as stated in the technical specifications.
Can this nickel foam be used as an electrode substrate in hydrogen electrolysis applications?
Yes, the 60 PPI open-cell nickel foam is suitable for hydrogen electrolysis and electrocatalysis applications. Its continuous three-dimensional nickel skeleton provides electrical conductivity, corrosion resistance, and a high surface area for electrochemical reactions, as listed in the application scope.
How should the nickel foam sheet be stored and handled to maintain its structural integrity?
Store the sheets in a clean, dry area and protect the open cellular surface from heavy impact, crushing, and contamination. The foam can be cut, bent, or bonded for fabrication while preserving the open pore network.
This 60 PPI open-cell nickel foam sheet provides a high-porosity, thermally conductive, and corrosion-resistant substrate for battery electrodes, catalyst carriers, and filtration media, but its relatively low mechanical strength and sensitivity to physical damage necessitate careful handling and support structures.
Positive
- High porosity and through-pore rate: Porosity of 60–98% with ≥98% through-pore rate ensures excellent fluid permeability and internal surface area exposure for electrochemical and filtration applications.
- Broad temperature and thermal tolerance: Listed temperature resistance ≥500°C and high-temperature capability >1100°C, combined with a heat-transfer coefficient >3 W/(m²·K), support use in high-temperature catalytic and thermal management processes.
Trade-offs
- Limited mechanical strength range: Tensile strength of 8–50 MPa and compressive strength ≥250 kPa require careful handling and structural support to avoid deformation during assembly or operation.
- Sensitive to physical damage and contamination: The open-cell structure is vulnerable to impact, crushing, and contamination, requiring storage in clean, dry conditions and protective handling before, during, and after installation.
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).







