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Sintered Titanium and Porous Titanium Foam Sheet, 100 µm Filtration Rating, 100 × 200 × 3 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 document records the product-specific constraints for handling, compatibility, cleaning, and assembly of the sintered porous titanium sheet. Operators must follow these constraints to avoid surface damage, media incompatibility, or out-of-limit service.
- Media and Operating Conditions Review: Verify media compatibility, material grade, operating pressure, temperature, target flow, and dimensional tolerance against the sheet's ratings before installation.
- Surface Damage Prevention: Protect the porous surface from crushing and contamination during handling, storage, and assembly.
- Service Temperature Limit: Do not exceed the manufacturer's recommended maximum service temperature for the sintered titanium material.
- Cleaning Method Selection: Select backflushing, steam, ultrasonic, or compatible chemical cleaning according to the process medium and operating procedure.
- Assembly Integration Allowance: The metallic structure may be cut, welded, or machined when assembly integration requires modification.
This procedure defines the required sequence for compatibility review, surface protection, assembly integration, and cleaning selection. Execute these steps before installation and during routine service.
Required Equipment: Backflushing equipment, Steam cleaning equipment, Ultrasonic cleaning equipment
- Review assembly requirements
Review the cellular structure and filtration precision values together when matching the sheet to the intended assembly. - Confirm operating compatibility
Confirm that the process media, operating pressure, temperature, target flow, and dimensional envelope are within the stated ratings before installation. - Protect the porous surface
Protect the porous surface from crushing and contamination throughout handling, storage, and assembly. - Integrate into the assembly
Integrate the sheet using cutting, welding, or basic machining when the assembly design requires modification. - Select a cleaning method
Choose a backflushing, steam, ultrasonic, or compatible chemical cleaning method according to the process medium and operating procedure.
How does the 110 PPI pore density affect the filtration performance of the 100 µm sintered titanium foam sheet?
The 110 PPI (pores per inch) describes the cellular structure, while the 100 µm value specifies the filtration precision. The sheet's 35–45% porosity and approximately 0.23 mm cell spacing create interconnected flow paths. Both values must be evaluated together when matching the sheet to an assembly, as PPI influences flow resistance and the micron rating determines particle retention.
Can the 100×200×3 mm sintered titanium foam sheet be machined or welded for custom integration?
Yes, the metallic titanium construction supports cutting, welding, and basic machining for assembly integration. However, the porous surface must be protected from crushing and contamination during processing. The 3 mm thickness provides structural integrity for such operations.
What cleaning methods are recommended for the 100 µm sintered titanium foam sheet to avoid damaging the porous structure?
Recommended cleaning methods include backflushing, steam, ultrasonic, and compatible chemical procedures. The choice depends on the process medium and operating procedure. The porous surface must be protected from crushing and contamination, as the 35–45% porosity and interconnected structure are critical for filtration performance.
This 100 µm, 110 PPI sintered titanium foam sheet (100 × 200 × 3 mm) offers an interconnected porous structure with 35–45% porosity, providing corrosion resistance, thermal stability up to 300°C, and low flow resistance for solid-liquid and gas separation applications. Its metallic construction permits cleaning and machining, but requires careful handling to avoid pore crushing and media compatibility verification.
Positive
- Corrosion and thermal resistance: Titanium-based porous structure provides corrosion resistance and thermal stability up to 300°C in compatible media, enabling use in aggressive chemical and high-temperature process streams.
- Interconnected porous flow paths: The 35–45% porosity with approximately 0.23 mm cell spacing creates interconnected passages that support low flow resistance, uniform pore distribution, and stable separation across solid-liquid, gas-solid, and gas-liquid filtration.
Trade-offs
- Limited service temperature: Recommended maximum service temperature is 300°C; exceeding this limit may compromise structural integrity or filtration performance in high-temperature processes.
- Porous surface vulnerability: The porous surface is susceptible to crushing and contamination; handling, cleaning (backflushing, steam, ultrasonic, or chemical), and media compatibility must be carefully reviewed to avoid damage or blockage.
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).







