|
Sintered Titanium and Porous Titanium Foam Sheet, 10 µm Filtration Rating, 120 × 120 × 15 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®
|
This sintered titanium foam sheet requires protection from crushing and contamination to maintain its porous structure and filtration integrity. Media compatibility, operating pressure, temperature, and target flow must be reviewed before installation to prevent corrosion or structural failure.
- Temperature Constraint: Recommended service temperature does not exceed 300°C to avoid thermal degradation of the sintered titanium structure.
- Cleaning Compatibility: Cleaning methods include backflushing, steam, ultrasonic, and compatible chemical procedures, selected according to the process medium.
- Machining Constraint: Metallic construction supports cutting, welding, and basic machining for assembly integration without compromising structural integrity.
This procedure describes safe handling and installation of the sintered titanium foam sheet for filtration or separation applications. Proper steps prevent damage to the porous structure and ensure reliable performance.
Required Equipment: Clean gloves, Soft brush or lint-free cloth, Filtration housing or assembly
- Inspect the sheet
Inspect the sheet for visible damage, deformation, or contamination before handling. - Clean the surface
Gently brush or wipe the porous surface with a soft brush or lint-free cloth to remove loose particles. - Install in housing
Place the sheet into the filtration housing or assembly, ensuring proper alignment and sealing to avoid bypass. - Verify flow direction
Confirm that the flow direction matches the intended orientation to prevent back-pressure damage. - Secure the assembly
Secure the assembly according to manufacturer torque specifications to avoid crushing the porous structure.
How does the 20 PPI cellular structure relate to the 10 µm filtration rating, and what does that mean for separation efficiency versus flow resistance?
The 20 PPI (pores per inch) describes the cell density of the porous foam, while the 10 µm filtration rating specifies the particle size retention. The 20 PPI structure with approximately 1.27 mm cell spacing creates a coarse cellular framework, but the effective filtration is determined by the sintered titanium's pore structure, which achieves 10 µm precision. The combination provides both structural integrity and fine particle capture, while the open 35–45% porosity and interconnected pores ensure low flow resistance, with a relative air permeability of 5×10^-5 L/(cm²·min·Pa).
What are the maximum operating temperature and media compatibility considerations for this sintered titanium foam sheet?
The recommended service temperature is ≤300°C. The titanium and titanium alloy construction provides corrosion resistance in compatible media, but specific chemical compatibility must be reviewed for each application. The manufacturer advises confirming media compatibility, operating pressure, and temperature before quotation or installation. The sheet can be cleaned with backflushing, steam, ultrasonic, or compatible chemical procedures, indicating resistance to a range of cleaning agents.
How should the porous titanium foam sheet be handled and cleaned to maintain its filtration performance?
The porous surface must be protected from crushing and contamination because the open-pore structure can be damaged by mechanical impact. Cleaning methods include backflushing, steam, ultrasonic, and compatible chemical procedures, chosen according to the process medium and operating procedure. The metallic construction supports cutting, welding, and basic machining for assembly integration, but care must be taken not to clog or deform the pores.
This 120 × 120 × 15 mm sintered porous titanium foam sheet provides a 10 µm filtration rating with a 20 PPI interconnected pore structure (35–45% porosity), supporting liquid and gas separation with open flow paths. Operational planning must respect the ≤300°C service limit and protect the porous surface from crushing and contamination during handling and cleaning.
Positive
- 10 µm Rating with Interconnected Porosity: The sheet combines a 10 µm filtration rating with a 35–45% interconnected pore network and approximately 1.27 mm cell spacing at 20 PPI, supporting solid-liquid, gas-solid, and gas-liquid separation with open flow paths.
- Corrosion-Resistant Reusable Metallic Structure: The titanium-based porous structure provides corrosion resistance and thermal stability in compatible media, and the metallic part can be cleaned by backflushing, steam, ultrasonic, or compatible chemical procedures for reuse.
Trade-offs
- Service Temperature Limited to 300°C: Recommended service temperature is ≤300°C, so higher-temperature process streams require explicit engineering review before installation.
- Porous Surface Requires Crush Protection: Handling guidance requires protecting the porous surface from crushing and contamination; the cleaning method must be matched 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).







