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Ø250 mm Inlet-Outlet Easy-Clean Housed Magnetic Separator – Fully Stainless Steel
General features;
- Domestic production, Stainless and leak-proof
- Easy cleaning system (Extra sheathed)
- Food grade Neodymium magnets
- Neodymium 12000 Gauss magnetic power
- Food grade, BRC and HACCP certified
Technical specifications;
- Housing inlet-outlet: Ø250 mm
- Bar diameter: 32 mm, Number of bars: 4
- Max Temperature: Neodymium 80° or 150°
Advanced Easy-Clean Magnetic Housing Separator – Enhanced Protection Design
Our state-of-the-art self-cleaning magnetic separators represent the pinnacle of metal detection technology, featuring ultra-powerful neodymium magnets. Each unit is precision-engineered to your specific facility requirements, ensuring optimal flow dynamics. We customize the bar configuration based on your unique product specifications.
These sophisticated separators harness the exceptional power of neodymium magnets to effectively capture and retain metal contaminants, safeguarding both your equipment and product quality. The fully stainless steel construction meets the highest food-grade standards.
Engineered with premium AISI 304 and AISI 316 stainless steel, our separators offer unmatched corrosion resistance – a critical feature for food processing environments. While we offer traditional ferrite and 300 oxide magnetic options, our neodymium configurations provide superior separation capabilities.
- Advanced detection and removal of ferrous contamination, including microscopic particles
- Streamlined integration into existing production lines
- Hermetically sealed construction for reliable performance in wet processing environments
- Temperature-optimized magnetic configurations available – please specify your operational parameters
The Strategic Advantage of 304 and 316 Stainless Steel
Our commitment to excellence drives our selection of premium stainless steel grades for food processing applications. Austenitic stainless steel, with its precise 10 percent chromium composition, creates an instantaneous passive barrier upon exposure to oxygen. This advanced metallurgy prevents corrosion at the molecular level, establishing an exceptionally durable protective shield that maintains both structural integrity and hygiene standards.