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Bottom Sieve Insert for Fritsch Cross Beater Mill, 1.5mm Trapezoidal
These specialized Bottom Sieve Inserts are an essential component of the Fritsch Cross Beater Mill, precisely determining the final fineness of your milled sample. Critical for achieving consistent and reproducible results, the choice of sieve directly impacts the particle size output, ranging from 120µm up to 10mm, depending on the material's properties and the specific sieve selected.
We offer two primary types of sieve openings to optimize your milling process:
- Trapezoidal Openings (120µm–10mm): Engineered for efficiency, trapezoidal sieve inserts are ideal for rapid milling of medium-hard to soft materials. Their design facilitates faster throughput, making them excellent for applications where speed is a priority without compromising quality.
- Round Openings (3–10mm): Perfect for processing brittle materials where uniform particle size is paramount. Round inserts provide superior control over the fineness, ensuring a highly consistent output for sensitive downstream analyses or product formulations.
Key Considerations for Sieve Selection: Generally, to achieve a finer final particle size, smaller perforations are required. Conversely, larger openings will significantly increase throughput and minimize wear on both the sieve and the mill, optimizing operational efficiency and lifespan.
Robust Construction for Demanding Environments: Each bottom sieve insert is meticulously constructed from premium durable stainless steel 316L. This high-grade material ensures exceptional resistance to corrosion, wear, and chemical exposure, guaranteeing long-term reliability and maintaining sample integrity, even with aggressive materials.
Enhanced Usability Features:
- Premium 316L Stainless Steel: Guarantees superior durability, chemical resistance, and hygiene standards for consistent performance.
- Tool-Free Removal: Designed for maximum convenience, the bottom sieve can be quickly and easily removed without the need for any tools. This significantly reduces downtime for cleaning, inspection, and rapid changeovers between different fineness requirements, enhancing overall laboratory productivity.
