Serrated blades
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Assorted Precision Shavor Blades for Wide Double Serrated Cutting
Premium Double Serrated Shaver Blades for Arthroscopic Procedures
Aluminum Alloy Serrated Low Noise Axail Fan Blade for Ventilation
Serrated Grinding Wheels Knife Carbide Saw Blades for Cutting Shearing Steel Made in China
Grader Blade for Tractor Serrated Cutting Edges Blades
High Speed Steel Serrated Cutting Blade for Packing Machine Packaging Materials
Serrated Cutting Blade Used for Custom Film Paper Bag Making Automatic Processing Machine
Sk2 Serrated Trapezoid Utility Blade Replacement Knife for Carpet Industry
Back Sealing Packing Precision Packing Machine Serrated Knife Saw Toothed Zigzag Blade
High-Efficiency Double-Sided Serrated Bandknife Blade for Cutting Flower Foam, Factory Supply, Built for Longevity
Serrated Blades for Cutting Plastic Film Food Package
Serrated Edge Circular Nonwoven Fabric Slitting Professional Manufacturing Blade
T-Type Packing Machine Serrated Cutting Knife Cutter Blade Serrated Sealing Blade
Tungsten Carbide Flat Bars Tungsten Carbide Strip Used to Makereamer Serrated Knife Blade
Sharped and Shaped Stainless Steel Serrated Cutting Blade for Food Packaging Machine
Durable Construction Equipment Spare Parts for XCMG- Serrated Agitator Blade
Yinuo Cutting Long Serrated Blade Knife for Food Plastic Bag Package and Wrapping Paper Machine
Shomea Customized Deburred Stainless Steel Bent Serrated Shaver Blade for Orthopedic Use
Durable Machine Knives OEM Circular Cutter Serrated Saw Blade for Poultry Processing
High Quality Package Industrial Blade Packing Serrated Knife Sealing Cutter Blades
Cutting Food Plastic Bag Package Saw Blade Toothed Serrated Knives
Customized Hardened Serrated Toothed Blade for Packaging Equipment
Band Saw Serrated Paper Cutting Blade for Tissue Paper
Serrated Toothed Cutting Blade HSS SKD11 Plastic Film Bag Packaging Blade
High Quality Industrial Blades for Packaging Machine Serrated Blade Design
Sourcing guidance for Serrated Blades
What are the key material specifications to consider when sourcing industrial serrated blades?
The performance of a serrated blade is primarily determined by its base material. For food processing, prioritize 304 or 420 stainless steel to ensure corrosion resistance and hygiene compliance. For industrial cutting (packaging, plastics, or textiles), High Carbon Steel (SK5) or High-Speed Steel (HSS/M2) is preferred for superior edge retention. For high-wear environments, Tungsten Carbide inserts or coatings can extend blade life by 3 to 5 times compared to standard steel.
How do tooth geometry and pitch affect the cutting performance?
The Tooth Pitch (TPI - Teeth Per Inch) must match the material thickness; a finer pitch is required for thin materials to prevent snagging, while a coarser pitch is better for thick, soft materials to allow for chip clearance. The serration profile (V-tooth, scalloped, or wavy) should be selected based on the desired finish. Induction hardening of the teeth is a critical process to look for, as it ensures the tips remain sharp while the body of the blade retains flexibility to prevent snapping.
What quality standards and certifications should a professional buyer verify?
Ensure the manufacturer adheres to ISO 9001:2015 for quality management systems. If the blades are for the food industry, they must comply with FDA or LFGB standards for food contact materials. For safety, check for hardness testing reports (HRC scale)—typically, industrial blades should fall between 52-62 HRC depending on the application. You should also request a Material Mill Certificate to verify the chemical composition of the steel.
How can buyers ensure technical compatibility with existing machinery?
Precision is vital. Buyers should provide or request CAD drawings (DWG or DXF formats) to verify dimensions, including overall length, width, thickness, and mounting hole patterns. Even a 0.05mm variance in thickness can cause machine vibration or failure. It is highly recommended to source from suppliers on Made-in-China.com who offer OEM/ODM customization and can produce samples based on your specific machine model (e.g., Bosch, Urschel, or custom packaging lines).
Cross-Border Procurement & Risk Management for Serrated Blades
What are the primary risks when importing industrial blades and how can they be mitigated?
The biggest risks are material substitution (using lower-grade steel) and shipping damage. To mitigate this, use Trade Assurance services and mandate a Pre-Shipment Inspection (PSI) by third parties like SGS or Intertek. Ensure the blades are treated with anti-rust oil and packed in vacuum-sealed VCI (Volatile Corrosion Inhibitor) bags to prevent oxidation during long-term sea freight.
How should buyers negotiate with suppliers for long-term supply stability?
Focus on Total Cost of Ownership (TCO) rather than just the unit price. Negotiate a blanket order where you commit to a yearly volume to lock in prices against steel market fluctuations, but request staggered shipments. Ask for a 10-15% discount on bulk orders exceeding 500-1,000 pieces. On Made-in-China.com, look for 'Audited Suppliers' to ensure you are dealing with a factory rather than a middleman, which provides better pricing leverage and technical support.
What are the logistics and customs considerations for sharp industrial tools?
Serrated blades are classified under specific HS Codes (e.g., 8208.xx for machine blades). Ensure the supplier provides a detailed Commercial Invoice and Packing List to avoid customs delays. Because they are sharp objects, they must be packed in heavy-duty wooden crates or reinforced cartons with internal protective guards on the edges to comply with international carrier safety regulations and prevent injury to handlers.
How can I verify the reliability of a new supplier before placing a large order?
Start by requesting a paid sample and subjecting it to a destructive stress test in your facility. Check the supplier's export history and buyer reviews on their Made-in-China.com profile. A reliable supplier should be able to provide video proof of their CNC grinding and heat treatment facilities, demonstrating their internal quality control capabilities.





























