|
Sintered Titanium and Porous Titanium Foam Sheet, 30 µm Filtration Rating, 160 × 160 × 10 mm, 20 PPI, 1 Piece
Research-grade laboratory product
|
|||||||||||||||||||||||||||||||||||||||||||||||
|
|||||||||||||||||||||||||||||||||||||||||||||||
|
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 porous titanium surface is susceptible to crushing and contamination, requiring protection during handling and storage. Recommended service temperature does not exceed 300°C, and media compatibility must be verified before installation.
- Surface Protection: Protect the porous surface from crushing and contamination to maintain filtration integrity.
- Temperature Limit: Do not exceed the recommended service temperature of 300°C to avoid structural degradation.
- Media Compatibility: Confirm media compatibility with the titanium or titanium-alloy structure before process integration.
This procedure describes safe handling and cleaning steps for a sintered porous titanium foam sheet to preserve its filtration performance. Cleaning methods include backflushing, steam, ultrasonic, or compatible chemical procedures depending on the process medium.
Required Equipment: Backflushing system, Steam cleaning equipment, Ultrasonic bath
- Inspect the sheet
Inspect the porous titanium sheet for visible damage or contamination before handling. - Select cleaning method
Select a cleaning method—backflushing, steam, ultrasonic, or chemical—based on the process medium and operating procedure. - Perform cleaning
Perform the chosen cleaning procedure to remove trapped particulates without damaging the porous structure. - Rinse and dry
Rinse the sheet with compatible solvent or deionized water and allow it to dry completely before reuse. - Verify integrity
Verify the sheet's structural integrity and filtration rating after cleaning before returning to service.
How does the 30 µm filtration rating relate to the 20 PPI cell structure, and what are the implications for flow rate and particle retention?
The 30 µm filtration rating specifies the particle size cutoff, while the 20 PPI (pores per inch) describes the cellular density of the porous titanium foam. This combination yields a relative air permeability of 5×10⁻⁴ L/(cm²·min·Pa) and a porosity of 35–45%. The trade-off is that finer filtration typically reduces flow, but the interconnected open-pore structure with approximately 1.27 mm cell spacing helps maintain permeability, making the sheet suitable for applications requiring both particulate retention and reasonable throughput.
What are the operating temperature and media compatibility limitations for this sintered titanium foam sheet?
The recommended service temperature is ≤300°C. The titanium material provides corrosion resistance in compatible media, but specific chemical compatibility must be reviewed before installation. The sheet can be cut, welded, and machined for assembly integration. It is suitable for water treatment, chemical and petrochemical processing, pharmaceutical and food clarification, gas purification, catalyst recovery, and other applications, but media compatibility, operating pressure, and temperature should be confirmed for the target process.
What cleaning and handling procedures are recommended to maintain the integrity of the porous titanium foam sheet?
The porous surface must be protected from crushing and contamination. Cleaning options include backflushing, steam, ultrasonic, and compatible chemical procedures. The metallic construction supports cleaning and reuse, but the choice of method depends on the process medium and operating procedure. Avoid abrasive cleaning that could damage the 30 µm filtration structure or the 20 PPI cellular framework.
This 160 × 160 × 10 mm sintered titanium foam sheet delivers a 30 µm filtration rating within a 20 PPI cellular network (35–45% porosity, ~1.27 mm cell spacing), enabling low-resistance separation and flow-distribution duties in a corrosion-resistant, cleanable metal format. Integration planning must respect the ≤300°C recommended service temperature and protect the porous surface from crushing and contamination.
Positive
- Interconnected 35–45% porosity with open flow paths: The 35–45% porosity and interconnected open/through-pore structure with ~1.27 mm cell spacing provide low flow resistance and stable separation for solid-liquid, gas-solid, and gas-liquid filtration at a 30 µm rating.
- Corrosion-resistant titanium with cleanability and reuse: Titanium/titanium-alloy construction provides corrosion resistance and thermal stability in compatible media, while backflushing, steam, ultrasonic, or compatible chemical cleaning supports reuse of the metal porous structure.
Trade-offs
- Recommended service temperature limited to 300°C: The datasheet specifies a recommended service temperature of ≤300°C; higher-temperature integration would exceed the stated operating envelope and require separate material and process qualification.
- Protect porous surface from crushing and contamination: The porous surface must be protected from crushing and contamination during handling, installation, and cleaning; the cleaning method must be selected according to the process medium and operating procedure.
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).







