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HighQuality WearResistant TiCN Slitter Knife-Cermet SlittingKnife Mfr

We know that every slit counts, so we engineer tools that keep cutting clean and consistent. We are a Wear Resistant TiCN Slitter Knife, Cermet Slitting Knife manufacturer, Cermet Slitting Knife Supplier. Our blades use advanced TiCN coatings and cermet bodies to resist wear, reduce downtime, and extend service life in demanding materials. From material selection to heat treatment and micro-grind geometry, we control quality at every step as a true Manufacturer. This means tighter tolerances, stable edge retention, and predictable performance across batches. We offer customization on blade thickness, width, and mounting options to fit your slitting line. Our team supports you with technical guidance, rapid delivery, and after-sales service. If you seek High-Quality, reliable cutting tools from a trusted Manufacturer, let us show you how our wear resistant knives can boost your throughput and yield.

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Wear Resistant TiCN Slitter Knife,Cermet Slitting Knife manufacturer,Cermet Slitting Knife Supplier Factory Winning in 2025

Global manufacturers seek durable slitter knives. TiCN-coated knives offer high hardness and thermal stability, giving longer life at high speeds and cleaner cuts. Cermet slitting knives, a ceramic-carbide blend, resist wear better and resist edge buildup on tough materials. Together they enable tighter tolerances, faster line speeds, and lower overall costs for steel, aluminum, copper, laminates, and films. For 2025 buyers, key questions are material compatibility, coating thickness, and the ability to maintain consistent quality under changing demand. Smart sourcing means more than price. Look for QA systems, traceable lots, coating tests, and tight tolerances. Ask for customization: contact distance, knife length, thickness, hole pattern, and surface finish; packaging; and after-sales service such as spares and regrind. A capable supplier offers scalable production, short lead times, and clear supply-chain info to ensure steady delivery during peak seasons. When coating tech matches process control and reliable service, wear-resistant slitter knives raise productivity and profitability in 2025 and beyond.

Wear Resistant TiCN Slitter Knife, Cermet Slitting Knife — Data Table 2025
Model Knife Type Substrate / Body Material Coating Coating Thickness (µm) Substrate Hardness (HRC) Coating Hardness (HV) Edge Radius (µm) Wear Resistance (1-5) Slitting Material Range Max Slitting Width (mm) Temperature Resistance (°C) Typical Service Life (hours) Certifications
M-TiCN-01 Micro-grain Cemented Carbide TiCN 3–5 66–68 3200–3600 0.1 4.6 Carbon steel, Alloy steel 450 900 1800–2200 ISO 9001, RoHS
M-Cer-02 Cermet Slitting Knife Cermet composite None (bare cermet) 0 64–67 1700–2100 0.15 4.2 Stainless steel, Aluminum 520 750 2400 ISO 9001, CE
M-Hyb-03 Hybrid TiCN/Cermet Slitter Knife Hybrid composite TiCN 4 65–67 3100–3500 0.12 4.4 Steel, Stainless, Copper 600 850 2600 ISO 9001, RoHS, REACH
M-HiWear-04 Ultra Wear-Resistant TiCN Slitter Knife Cemented carbide TiCN 5 66–68 3400 0.08 4.8 Low-carbon steel 420 950 3200 ISO 9001, RoHS, REACH
M-Eco-05 Eco TiCN Slitter Knife Micro P-VC carbide TiCN 2–3 65–66 3000–3200 0.14 4.0 Tinplate, Zinc-coated steel 380 800 1700 ISO 9001, RoHS

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About SHEN GONG

Wear Resistant TiCN Slitter Knife,Cermet Slitting Knife manufacturer,Cermet Slitting Knife Supplier Service Market Leader

Data Dimension: Material Performance Comparison

This chart presents a comparative view of wear resistance and production cost across five common slitter knife materials. The wear score is scaled from 0 to 10, where higher values indicate faster wear and, therefore, shorter knife life under typical operating conditions. The cost score is also scaled from 0 to 10, representing material cost intensity per meter of production, with higher scores indicating greater expense per length of knife usage. The two metrics are displayed side-by-side for each material to facilitate quick visual assessment of trade-offs between durability and cost. The data in this chart are illustrative and intended to support strategic discussion about material selection for high-volume slitting operations.

Observations from the chart highlight several trade-offs. Ceramic materials show the strongest wear resistance (low wear scores) but tend to incur higher cost scores, reflecting their premium price and potential brittleness in some setups. TiCN and Cermet offer moderate wear resistance with balanced costs, making them practical for a wide range of production speeds and widths. Carbide provides good wear performance but comes with moderate costs; Tool Steel demonstrates relatively higher wear (lower lifespan under aggressive conditions) while offering lower upfront material costs. In practice, the optimal choice depends on run length, slitter speed, maintenance intervals, and total cost of ownership, including downtime and tooling changes. Enterprises should calibrate these scores with real production data to tailor procurement and maintenance strategies for specific converting environments.

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