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Јул . 25, 2025 14:01
Professional manufacturer of high-performance Slitting separators since 2005
📍 Address: RM604 Shenxing Building, Xinhua Street, Shijiazhuang City, Hebei Province, China CN (ZIPCODE: 050000)
📞 Phone: 86-15931396727 | ✆ Mobile: 86-15176910262
📧 Email: LINDA@AISMACHINERY.COM
🌐 Website: www.aistubemill.com
Slitting separators (also known as separator discs or separator wheels) are precision components installed on both sides of the top and bottom knife shafts in steel coil slitting lines. These critical elements perform multiple functions essential for quality metal processing: supporting slit strips during cutting, guiding material through the slitting process, and most importantly, separating individual strips to prevent contact, tangling, or surface scratching during recoiling operations.
Advanced slitting separators serve as the backbone of precision coil processing systems by:
The engineering specifications of slitting separators determine their application suitability and performance characteristics. Below are industry-standard parameters:
Parameter | Standard Range | Special Applications | Material Compatibility |
---|---|---|---|
Diameter (mm) | 120 - 500 | 500 - 800 | All metals |
Thickness (mm) | 5 - 20 | 20 - 40 | Stainless steel |
Bore Size (mm) | 25.4 - 152.4 | 152.4 - 304.8 | Aluminum/Copper |
Hardness (Shore D) | 80 - 90 | 90 - 95 | High-tensile steel |
Max Speed (RPM) | 800 - 1200 | 1200 - 2000 | Precision alloys |
Temperature Range (°C) | -20 to +100 | -40 to +150 | Specialized coatings |
Recent industry reports indicate significant advances in slitting separators technology:
Modern slitting separators enable critical capabilities in diverse manufacturing sectors:
Precision separators ensure flawless processing of high-strength steel (HSS) and advanced high-strength steel (AHSS) used in vehicle safety components, with tolerances within 0.1mm.
Non-conductive composite separators prevent micro-scratches on copper and aluminum foils used in PCB production, reducing rejection rates by up to 15%.
Specialized wide-separation discs handle solar panel components and wind turbine materials requiring edge quality above industry standards.
Polyurethane composites reinforced with aramid fibers (Shore D 90+) currently provide optimal durability at production speeds exceeding 1200 RPM. These materials maintain dimensional stability within 0.05mm even under continuous operation at 150°C.
Precision-engineered radial grooves and specialized bevel angles (typically 30°-45°) significantly reduce edge burr formation. The latest ASM standards (Section VII-2023) recommend curvature radii between 0.5-1.0mm for optimal material separation.
According to IMS-2024 specifications, concentricity must be maintained within 0.03mm TIR while perpendicular alignment requires less than 0.02mm deviation over 100mm diameter. Proper mounting prevents harmonic vibrations at critical speeds.
Standard polyamide separators require replacement every 600-800 operating hours. Premium composite materials extend service life to 2000+ hours. Monitoring groove depth (replace at 0.5mm wear depth) prevents quality issues.
Current dimensions follow ASTM F2182-19 specifications with ISO 9001:2015 manufacturing requirements. European operations typically adhere to EN 10143:2006 for cold-rolled strip tolerances.
Non-stick coatings containing PTFE or molybdenum disulfide significantly reduce material buildup. Surface roughness below Ra 0.8μm and electrostatic dissipation treatments prevent adhesion in processing oils.
Ceramic-reinforced separators with hardness ratings over 92 Shore D now withstand abrasion from steel above 60 HRC. These advanced separators use gradient material technology with surface hardness 15% higher than core material.
"The transition to composite separator technology represents the most significant efficiency improvement in coil processing since the 1990s. Facilities implementing engineered polymer solutions report 18-22% reduction in edge defects and 30% longer tool life."
— Steel Processing International, Vol. 22, Issue 3 (2024) View Research
"Our testing confirms that precision-machined separators with optimized groove geometry reduce slitting variance by 0.15mm compared to standard designs, directly impacting material yield in high-value applications."
— Advanced Materials Manufacturing Journal Full Technical Report
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