The XK-R130RC is a 43 × 22 × 0.30 mm premium tungsten carbide industrial razor blade with rounded corners for improved operator safety and reduced material damage. The 3-hole mounting ensures secure positioning for accurate slitting and converting applications.
XK-R130RC Industrial razor Blade | Double Edge | Tungsten Carbide | 43 x 22 x 0.30 mm | Round Corners
€4.52
Additional information
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Description
XK-R130RC Industrial Razor Blade – Tungsten Carbide with Rounded Corners
The XK-R130RC is a premium 3-hole double edge industrial razor blade manufactured from 88% tungsten carbide with 12% cobalt binder. Measuring 43 × 22 × 0.30 mm, this blade combines exceptional wear resistance with increased rigidity, making it ideal for demanding industrial slitting and converting operations.
Unlike standard square-corner blades, the rounded corner (RC) design improves operator safety during blade handling and installation while reducing the risk of accidental scratches, scoring or damage to sensitive materials and machine components. This makes the XK-R130RC particularly suitable for frequent blade changes and high-volume production environments.
The precision-ground double cutting edges provide clean, accurate cuts with excellent edge retention, while the 3-hole mounting pattern guarantees secure positioning and repeatable cutting performance.
Manufactured in Europe to strict quality standards, the XK-R130RC delivers consistent cutting quality, long production runs and reduced machine downtime.
Advantages of Rounded Corners
- Improved operator safety during blade changes
- Reduced risk of hand injuries
- Less chance of scratching rollers and machine components
- Minimises accidental damage to delicate materials
- Easier blade installation and removal
- Better handling in high-volume production environments
- Maintains identical cutting performance to standard square-corner blades
Benefits
- Longer service life than steel blades
- Superior wear resistance
- Excellent edge retention
- Increased blade rigidity
- Safer handling during blade changes
- Reduced risk of damage to materials and machine components
- Consistent cutting quality
- Reduced blade replacement frequency
- Lower production downtime
- High precision cutting performance



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