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Sintered Titanium and Porous Titanium Foam Sheet, 100 µm Filtration Rating, 100 × 100 × 1 mm, 110 PPI, 1 Piece
Research-grade laboratory product
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LABORATORY PROCUREMENT SUPPORT
For filtration accuracy, dimensional confirmation, material compatibility or custom 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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This sintered porous titanium sheet requires confirmation of media compatibility, service temperature, operating pressure, flow, and dimensional tolerance before installation. The porous surface must be protected from crushing and contamination, and the PPI structure and filtration rating must be reviewed together when matching the sheet to an assembly.
- Compatibility Review: Confirm media compatibility, operating pressure, service temperature, target flow, and dimensional tolerance before quotation or installation.
- Surface Protection: Protect the porous surface from crushing and contamination during handling and installation.
- Pore-Structure Matching: Review the PPI cellular structure and the micrometre filtration rating together when matching the sheet to an assembly.
- Cleaning Selection: Select backflushing, steam, ultrasonic, or compatible chemical cleaning according to the process medium and operating procedure.
- Service Temperature Limit: Do not exceed the recommended maximum service temperature for this sintered porous titanium sheet.
Confirm filtration rating, PPI, dimensions, media compatibility, and process limits before using the sheet in a filtration assembly. Protect the sheet from surface crushing and contamination, and verify cleaning compatibility with the process medium.
- Confirm Process Compatibility
Confirm filtration rating, PPI, sheet dimensions, material grade, target flow, operating pressure, service temperature, and media compatibility before installation. - Protect Porous Surface
Protect the porous surface from crushing and contamination during handling and installation. - Verify Pore-Structure Match
Verify the PPI cellular structure and the micrometre filtration rating together when matching the sheet to the assembly. - Select Cleaning Method
Clean the sheet using backflushing, steam, ultrasonic, or compatible chemical procedures according to the process medium and operating procedure.
How does the 110 PPI pore density interact with the 100 µm filtration rating for this sintered titanium foam sheet?
The 110 PPI (pores per inch) defines the cellular structure, while the 100 µm filtration rating specifies the particle size retention. These two parameters are independent but complementary: higher PPI increases surface area and flow tortuosity, which can enhance filtration efficiency for a given micron rating. The sheet's 35–45% porosity and 0.23 mm cell spacing support interconnected flow paths suitable for solid-liquid, gas-solid, and gas-liquid separations.
What is the maximum service temperature for this porous titanium foam sheet, and does it require any special media compatibility considerations?
The recommended service temperature is ≤300°C. The titanium-based porous structure provides corrosion resistance, but media compatibility, operating pressure, and target flow must be reviewed before installation because performance depends on the specific chemical environment. The sheet is suitable for applications such as water treatment, chemical processing, pharmaceutical clarification, and gas purification, but aggressive media may require additional validation.
What cleaning and handling procedures are recommended for maintaining the 100 µm filtration performance of this sintered titanium sheet?
Protect the porous surface from crushing and contamination during handling. Accepted cleaning methods include backflushing, steam cleaning, ultrasonic cleaning, and compatible chemical procedures, depending on the process medium. The metallic construction also supports cutting, welding, and basic machining for assembly integration, but care must be taken to avoid clogging the pores or damaging the interconnected structure.
This 100 µm, 110 PPI sintered titanium foam sheet in a 100 × 100 × 1 mm format provides an interconnected, corrosion-resistant porous structure for filtration and flow-distribution research, but its ≤300°C service limit and the need to confirm media compatibility, operating pressure, and dimensional tolerance define its installation envelope.
Positive
- Interconnected porosity supports broad phase-separation duties: The 35–45% porosity with open through-pore paths and approximately 0.23 mm cell spacing supports solid-liquid, gas-solid, and gas-liquid separation with low flow resistance in compatible process conditions.
- Corrosion-resistant and cleanable metallic media: Titanium/titanium-alloy construction provides corrosion resistance and thermal stability in compatible media, and the sheet can be cleaned by backflushing, steam, ultrasonic, or compatible chemical procedures for reuse.
Trade-offs
- Service temperature limited to 300°C: The recommended service temperature is ≤300°C, so process streams above this threshold require a different media material before installation.
- Porous surface requires handling and process review: The porous surface must be protected from crushing and contamination, and media compatibility, operating pressure, target flow, and dimensional tolerance must be confirmed before assembly integration.
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).







