Open-Cell Nickel Foam 40 PPI 100×200×10 mm ATOMFAIR®

Price range: $95.00 through $195.00

Institutional Procurement & Supply Compliance: As a verified US supplier, Atomfair accepts formal institutional Purchase Orders (POs), contract billing schedules, and custom procurement loops for university and national laboratories, and corporate R&D departments globally.

Research-grade open-cell nickel foam, 40 PPI, 100 × 200 × 10 mm, model AF-N40-12T10, with ≥98% through-pore rate and ≥500°C resistance. Order now.

Laboratory Open-Cell Nickel Foam, 40 PPI, 100 × 200 × 10 mm, 1/5 pcs
Research-grade laboratory product
Product Overview

Open-cell nickel foam with 40 PPI is a lightweight, electrically conductive porous-metal sheet built around a continuous three-dimensional nickel skeleton. In this 100 × 200 × 10 mm format, the approximately 0.64 mm nominal pore pitch creates a regular open network with extensive internal surface exposure, allowing gases, liquids and electrochemical reactants to move through the material instead of remaining confined to the outer faces.

The interconnected framework gives the sheet a useful balance of permeability, formability and structural continuity. It can be cut, bent or bonded into laboratory assemblies while preserving the open pathways needed for filtration, catalytic contact, electrode loading and heat transfer. The nickel matrix also makes the foam relevant where electrical conduction, thermal response, corrosion resistance, acoustic attenuation or electromagnetic shielding must be combined with a low-mass cellular structure.

This specification is suitable for evaluating battery and fuel-cell electrodes, nickel-carbon composite electrode structures, catalyst carriers, exhaust and air-purification media, oil-water separation, industrial filtration, hydrogen electrolysis, electrocatalysis, heat-pipe wicks, condenser structures and distillation packing. Select the PPI, sheet dimensions and thickness around the intended flow, surface-area and integration requirements; choose a 1-piece pack for initial evaluation or a 5-piece pack for repeated trials and small-batch assembly.

Technical Specifications
Parameter Specification / Available Values
Atomfair Model AF-N40-12T10
Material Foamed nickel
Product Form Open-cell nickel foam sheet
Cell Structure Homogeneous three-dimensional open-pore network
Pore Density 40 PPI
Nominal Pore Pitch / Approx. Pore Size 0.64 mm
General Pore-Size Capability 0.1–10 mm (5–120 PPI)
General Pore Count per Linear Inch 5–130
Porosity 60–98%
Through-Pore Rate ≥98%
Bulk Density 0.1–0.8 g/cm³
Specific Gravity 0.2–0.3
Sheet Size 100 × 200 × 10 mm
Thickness 10 mm
General Custom Size Capability Up to 500 × 1000 mm
Tensile Strength 8–50 MPa
Compressive Strength ≥250 kPa
Mechanical Strength ≥2–7 MPa
Listed Temperature Resistance ≥500°C
Listed High-Temperature Capability >1100°C
Heat-Transfer Coefficient >3 W/(m²·K)
Package Options 1 pc; 5 pcs
Typical Applications Battery electrodes, catalyst carriers, filtration and separation media, electrochemical processes, heat-transfer structures, acoustic control, vibration damping and electromagnetic shielding
Key Features and Advantages
  • 40 PPI open-cell structure with an approximately 0.64 mm nominal pore pitch.
  • 100 × 200 mm sheet dimensions with a 10 mm nominal thickness.
  • Homogeneous three-dimensional network with 60–98% stated porosity and at least 98% through-pore rate.
  • Stated bulk-density range of 0.1–0.8 g/cm³ and specific gravity of 0.2–0.3.
  • The listed specific gravity is approximately one-quarter that of water, one-third that of wood, one-tenth that of aluminum and one-thirtieth that of iron.
  • Broad-frequency sound absorption and additional sound-insulation capability after suitable treatment.
  • Listed electromagnetic-wave shielding performance is approximately 90 dB with a relatively thin material section.
  • Can be cut, bent and bonded for downstream fabrication and installation.
  • Stable porous structure supports filtration and steady gas or liquid flow.
  • Thermally conductive network supports rapid heating and heat-transfer applications.
  • Fire-resistant, recyclable metallic structure with listed resistance to high-temperature and acid/alkali conditions.
  • Can be processed for interior decorative and functional surface applications.
  • Available as a single sheet for initial evaluation or a 5-piece pack for repeated trials and small-batch assembly.
Application Scope

Suitable for laboratory and engineering evaluations that require a 40 PPI open nickel network in a 100 × 200 × 10 mm format. Application areas include nickel-metal-hydride, nickel-cadmium and fuel-cell positive and negative electrodes; nickel-carbon composite electrodes for lithium batteries; catalyst and exhaust-purification carriers; air purification, oil-water separation and industrial filtration; hydrogen electrolysis, electrocatalysis and electrochemical metallurgy; infrared-burner surfaces and industrial or domestic drying-heater structures; heat-pipe wicks and condenser heat-transfer media; distillation-tower packing; and functional damping, acoustic, vibration-buffering, electromagnetic-shielding, thermal-insulation and decorative structures.

SELECTION GUIDANCE: Confirm PPI, nominal pore pitch, porosity requirement, through-pore rate, sheet length and width, thickness, bulk-density range, operating environment and required quantity before quotation. Confirm application-critical corrosion, temperature, mechanical and integration requirements before ordering.
HANDLING & INSPECTION: Store the sheets in a clean, dry area and protect the open cellular surface from heavy impact, crushing and contamination. After delivery, check the package condition, sheet dimensions and visible pore structure before cutting, bonding or installing the material.
IMPORTANT NOTICE: Custom dimensions are available upon consultation. For a dimensional feasibility review by e-mail, provide the target length, width, thickness, PPI and estimated quantity.
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
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

Nickel foam sheets require storage in a clean, dry environment to prevent contamination and structural damage. The open-cell network is susceptible to collapse from impact or crushing, so careful handling is necessary.

  • Storage Conditions: Store the sheets in a clean, dry area and protect the open cellular surface from heavy impact, crushing, and contamination.
  • Inspection Before Use: After delivery, check the package condition, sheet dimensions, and visible pore structure before cutting, bonding, or installing the material.
  • Cutting and Shaping: Cut or bend the foam using sharp tools to maintain the integrity of the open-cell network.
  • Bonding Compatibility: Use bonding methods that do not block the pores to preserve the material's permeability and functionality.
  • Environmental Compatibility: Confirm application-critical corrosion, temperature, mechanical, and integration requirements before ordering to ensure suitability.

This procedure describes the basic steps for handling, inspecting, and preparing the nickel foam sheet for laboratory use. Proper handling ensures the open-cell structure remains intact and functional.

  1. Inspect the foam sheet
    Inspect the foam sheet for visible damage, dimensional accuracy, and pore integrity upon delivery.
  2. Store the sheet
    Store the nickel foam sheet in a clean, dry environment away from heavy impact and contamination.
  3. Cut the sheet
    Cut the sheet to the required dimensions using a sharp blade or shears to preserve the open-cell structure.
  4. Bond or integrate the foam
    Bond the foam into the assembly using a method that does not obstruct the open pores.

How does the 40 PPI pore density of this nickel foam balance permeability and surface area for electrode or catalyst support applications?

The 40 PPI (pores per inch) corresponds to a nominal pore pitch of approximately 0.64 mm, creating a regular open network with extensive internal surface exposure. The foam has a porosity range of 60–98% and a through-pore rate of at least 98%, ensuring that gases, liquids, and electrochemical reactants can move through the material while maintaining high surface contact. This balance makes it suitable for battery electrodes, catalyst carriers, and filtration media where both flow and surface area are critical.

Can this open-cell nickel foam be integrated into alkaline electrolysis or fuel-cell assemblies without additional corrosion protection?

Yes, the nickel matrix provides inherent corrosion resistance under acid/alkali conditions, as stated in the product specifications. The foam is listed as fire-resistant and recyclable with temperature resistance ≥500°C and high-temperature capability >1100°C, making it suitable for hydrogen electrolysis, electrocatalysis, and fuel-cell electrode structures. However, users should confirm application-specific corrosion, temperature, and mechanical requirements before ordering.

What storage and handling precautions are necessary to preserve the structural integrity of this 10 mm thick nickel foam sheet?

The sheets should be stored in a clean, dry area and protected from heavy impact, crushing, and contamination to avoid damaging the open cellular structure. After delivery, inspect package condition, sheet dimensions, and visible pore structure before cutting, bending, or bonding. The foam can be cut, bent, and bonded for downstream fabrication, but care must be taken to maintain the open pathways.

The 40 PPI open-cell nickel foam sheet in 100×200×10 mm format provides a high-porosity (≥98% through-pore) three-dimensional network with tensile strength of 8–50 MPa and temperature resistance above 500°C, making it suitable for electrode, filtration, and catalytic applications. The open cellular structure, however, requires careful handling to prevent crushing and contamination during storage and installation.

Positive

  • High porosity and through-pore rate: The 60–98% porosity with ≥98% through-pore rate ensures excellent fluid permeability and internal surface area for filtration, catalytic, and electrode applications.
  • Thermal and mechanical robustness: With tensile strength of 8–50 MPa and temperature resistance ≥500°C (up to >1100°C), the foam withstands demanding thermal and mechanical environments while being cut, bent, or bonded for integration.

Trade-offs

  • Susceptible to impact deformation: The open-cell structure can be crushed or deformed by heavy impact or stacking pressure, requiring careful handling and protective storage to preserve pore geometry.
  • Contamination-sensitive surface: The high-surface-area open network readily traps particulates and contaminants, so sheets must be stored in clean, dry conditions and handled with gloves to avoid fouling.

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).

Package Quantity

1 pcs, 5 pcs

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