Tungsten Carbide K10 Wear Parts
Product Description
K10 is an ISO-standard cobalt-based tungsten carbide grade engineered for maximum wear resistance. Featuring a fine-grained microstructure and a precisely controlled cobalt binder, K10 achieves an optimal balance of extreme hardness and superior edge retention.
It is the industry-standard choice for the precision machining of cast iron, non-ferrous metals, and non-metallic materials.
By choosing K10, you gain:
- Superior Surface Integrity: Ensuring high-precision finishes for your most demanding machining tasks.
- Industrial-Leading Wear Resistance: Maximizing component lifespan in high-friction environments.
Features of Tungsten Carbide K10 Wear Parts
1. Exceptional Hardness & Abrasive Resistance
As a quintessential K-grade carbide, K10 features an extremely high concentration of fine-grained tungsten carbide (WC). This dense micro-structure provides superior hardness, delivering outstanding performance in resisting severe abrasive wear.
2. Optimized Toughness & Impact Resistance
While its toughness is strategically lower than higher-cobalt grades (such as K20 or K30), K10 still offers reliable resistance to mechanical and thermal shocks. Compared to P01 and other ultra-fine finishing grades, it provides significantly better structural strength for consistent performance.
3. Superior Edge Retention
K10 is engineered to maintain a sharp cutting edge during high-speed precision operations. This excellent edge stability ensures a superior surface finish and consistent dimensional accuracy over long production runs.
Specification of Tungsten Carbide K10 Wear Parts
| Equal to ISO Category Number | K10 |
| WC% | 93.5% |
| Co% | 6% |
| Density (g/Cm3) | 14.8-15.1 |
| Bend Strength (N/mm2) | ≥1600 |
| Hardness | ≥91 |
Typical Applications
1. Precision Machining & Cutting
- Cast Iron: Ideal for precision and semi-precision machining of grey cast iron and ductile iron.
- Non-Ferrous Metals: Delivers superior surface finishes on copper alloys, aluminum alloys, and Babbitt alloys.
- Non-Metallic Materials: Efficiently processes plastics, fiberglass, graphite, and ceramic composites.
- Tooling: Widely used for high-performance turning, milling, and boring inserts.
2. Wear-Resistant Components & Tooling
- Precision Tooling: High-accuracy punching dies for lead frames.
- Drawing Dies: Premium-grade stretching and drawing dies for fine-wire processing of copper and aluminum.
- Industrial Wear Parts: High-durability liners, nozzles, and sealing rings designed for environments with severe particle erosion.
- Metrology Tools: Used for measuring probes, gauges, and anvils that require extreme dimensional stability and exceptional grindability.
3. Woodworking Industry
- Engineered Wood: Superior performance when processing high-density fiberboard (HDF) and adhesive-bonded wood panels.
- Abrasive Conditions: K10 significantly extends tool life when cutting wood containing mineral impurities or abrasive resins.
Why choose our Tungsten Carbide K10 Wear Parts?
01 Tailored Material Solutions
We offer a comprehensive range of material grades customized to your specific operating conditions. Every product is manufactured using 100% virgin raw materials, ensuring consistent performance and zero recycled impurities.
02 ISO9001 International Quality Control
Our production facilities are strictly managed under the ISO 9001 International Quality Management System. We implement rigorous testing at every stage to ensure that every component meets global industry standards.
03 30 Years of Engineering Expertise
With nearly 30 years of specialized experience, our professional engineering team excels not only in precision manufacturing but also in design optimization. We provide expert technical support to refine your drawings and improve component performance based on field data.
04 Fast Delivery
We leverage advanced production efficiency to offer highly competitive pricing without compromising quality. Combined with our streamlined supply chain, we guarantee rapid lead times to keep your projects on schedule.
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