Sintered Porous Titanium Foam Sheet 10μm 60 PPI ATOMFAIR®

$150.00

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 sintered titanium foam sheet with 10 μm filtration, 60 PPI structure, 120 × 120 × 10 mm format and 35–45% porosity. Order now.

Sintered Titanium and Porous Titanium Foam Sheet, 10 µm Filtration Rating, 120 × 120 × 10 mm, 60 PPI, 1 Piece
Research-grade laboratory product
Product Overview

This sintered porous titanium foam sheet combines a 10 µm filtration rating with a 60 PPI cellular structure in a 120 × 120 × 10 mm format. Its interconnected titanium framework supports solid-liquid, gas-solid and gas-liquid separation while preserving open pathways for flow.

Made from titanium or titanium-alloy powder through forming and high-vacuum sintering, the sheet contains interconnected passages with 35–45% porosity and about 0.42 mm cell spacing. Its estimated bulk density is 2.48–2.93 g/cm³. The metallic porous structure offers low flow resistance, corrosion resistance, heat tolerance, cleanability and reuse in compatible process conditions.

Supplied as one 120 × 120 × 10 mm sheet, this product fits laboratory trials and engineered filtration assemblies used in water treatment, chemical and petrochemical processing, pharmaceutical and food clarification, gas purification, catalyst recovery, oil filtration, seawater-treatment pretreatment, porous-electrode development, flow distribution, acoustic damping and thermal-management studies. Media compatibility, operating pressure, temperature, target flow and dimensional tolerance should be reviewed before quotation or installation.

Technical Specifications
Parameter Specification / Available Values
Atomfair Model AF-T60-E1010
Material Titanium and titanium alloy
Product Form Sintered porous titanium / porous titanium foam sheet
Manufacturing Process Powder forming and high-vacuum sintering
Filtration Rating 10 µm
Sheet Size 120 × 120 × 10 mm
Thickness 10 mm
Pore Density 60 PPI
Approximate Cell Spacing 0.42 mm
Porosity 35–45%
Open-Pore / Through-Pore Structure Interconnected porous flow paths
Bulk Density Estimate 2.48–2.93 g/cm³ (derived from 35–45% porosity and 4.51 g/cm³ dense titanium)
Relative Air Permeability 5 × 10^-5 L/(cm²·min·Pa)
General Filtration Range 0.45–100 µm
General Pore-Size Range 2.5–160 µm
Air Permeability Range 1.5–800 m³/(h·m²·kPa)
Recommended Service Temperature ≤300°C
Package Quantity 1 piece
Performance Features
  • 10 µm filtration precision paired with a 60 PPI porous-cell structure.
  • 120 × 120 × 10 mm sheet supplied as one piece.
  • Cell spacing is approximately 0.42 mm for the 60 PPI structure.
  • A 35–45% porosity range leaves interconnected paths for liquids and gases.
  • Uniform pore distribution supports stable separation and controlled filtration.
  • Titanium-based porous structure provides corrosion resistance and thermal stability in compatible media.
  • Metallic construction can support cutting, welding and basic machining for assembly integration.
  • Cleaning options include backflushing, steam, ultrasonic and compatible chemical procedures.
Application Scope

This 10 µm, 60 PPI titanium sheet can be evaluated in porous-metal filtration and separation workflows that fit a 120 × 120 × 10 mm envelope. Relevant fields include pharmaceutical and chemical process filtration, water-treatment prefiltration, food and beverage clarification, oil and solvent filtration, gas and steam purification, catalyst recovery, desalination pretreatment, porous electrodes, flow distribution, acoustic control, thermal transfer and laboratory materials research.

PROCUREMENT CHECK: Confirm filtration rating, PPI, sheet dimensions, material grade, target flow, operating pressure, temperature and media compatibility before quotation.
CONFIGURATION NOTE: PPI describes the cellular structure, while the micrometre value describes filtration precision. Review both values together when matching the sheet to an assembly.
HANDLING & CLEANING: Protect the porous surface from crushing and contamination. Choose backflushing, steam, ultrasonic or chemical cleaning according to the process medium and operating procedure.
RFQ NOTE: Custom dimensions are available upon consultation. Include the required length, width, thickness, PPI, filtration rating and quantity when requesting dimensional review.
LABORATORY PROCUREMENT SUPPORT
For filtration accuracy, dimensional confirmation, material compatibility or custom configuration review, contact our technical sales team.
E-MAIL: inquiry@atomfair.com
Manufacturer: Atomfair LLC
Brand: ATOMFAIR®

The sheet must be protected from crushing and contamination to preserve its porous structure and filtration integrity. Cleaning methods such as backflushing, steam, ultrasonic, or chemical procedures must be selected based on the process medium and operating procedure.

  • Temperature Limit: Recommended service temperature does not exceed 300°C to avoid structural degradation.
  • Media Compatibility: Media compatibility, operating pressure, and temperature must be reviewed before installation to prevent corrosion or failure.
  • Machining Constraint: Metallic construction supports cutting, welding, and basic machining but requires care to avoid pore collapse.

Protect the porous surface from crushing and contamination during handling and storage. Select a cleaning method appropriate for the process medium to maintain filtration performance.

Required Equipment: Backflushing system, Ultrasonic cleaner, Steam cleaning equipment

  1. Inspect the sheet
    Inspect the sheet for visible damage or contamination before installation.
  2. Install the sheet
    Install the sheet into the filtration assembly ensuring a secure seal without over-tightening to avoid crushing the porous structure.
  3. Monitor operating conditions
    Monitor operating pressure and temperature to stay within the recommended service limit of 300°C.
  4. Select cleaning method
    Select a cleaning method such as backflushing, steam, ultrasonic, or chemical cleaning based on the process medium and operating procedure.
  5. Clean the sheet
    Clean the sheet using the chosen method to remove accumulated particulates without damaging the porous structure.
  6. Rinse and dry
    Rinse the sheet with compatible solvent or deionized water and allow it to dry completely before reuse.

How does the combination of a 10 µm filtration rating with a 60 PPI cellular structure affect flow resistance compared to finer-pore titanium frits?

The relative air permeability is specified at 5 × 10⁻⁵ L/(cm²·min·Pa). The interconnected porosity of 35–45% with ~0.42 mm cell spacing provides low flow resistance while maintaining a nominal filtration rating of 10 µm. This combination balances throughput with particulate retention for solid-liquid and gas-solid separations within the general pore-size range of 2.5–160 µm.

What are the recommended cleaning procedures for this sintered titanium foam sheet to avoid structural damage?

Backflushing (compatible with open-pore structure), steam cleaning within ≤300°C service temperature limit (titanium oxidation threshold), ultrasonic cleaning in compatible solvents (titanium-compatible), and chemical cleaning per process medium are all supported per the manufacturer's handling notes. The metallic construction allows cutting/welding but the porous surface must be protected from crushing during handling; avoid abrasive mechanical cleaning that could collapse the open-pore structure.

Can this sheet be integrated into existing assemblies via welding or machining without compromising its filtration performance?

Yes—the metallic construction supports cutting (e.g., laser/waterjet), welding (e.g., TIG under inert atmosphere), and basic machining for assembly integration as stated in performance features. However any welding must avoid local overheating beyond the recommended service temperature of ≤300°C to prevent pore collapse; post-weld cleaning is required to remove oxide scale from weld zones that could block pores.

This sintered titanium foam sheet delivers 10 µm filtration precision with a 60 PPI interconnected porous structure, supporting low flow resistance, corrosion resistance, and thermal stability up to 300°C for laboratory-scale liquid-gas separation and filtration assembly integration.

Positive

  • Interconnected porous flow paths: 35–45% porosity with through-pore structure enables low flow resistance and efficient solid-liquid, gas-solid, and gas-liquid separation while maintaining open pathways.
  • High temperature tolerance and cleanability: Rated for service up to 300°C and compatible with backflushing, steam, ultrasonic, and chemical cleaning procedures, supporting reuse in compatible process conditions.

Trade-offs

  • Temperature limit of 300°C: Recommended service temperature is ≤300°C; exceeding this limit may degrade the sintered titanium structure or filtration performance.
  • Susceptibility to mechanical damage: The porous surface must be protected from crushing and contamination during handling, cleaning, and assembly to maintain filtration integrity.

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).

Specification

10μm, 120×120×10mm, 60PPI, 1pcs