Solving Vibration Issues in Flying Saw Applications
Practical engineering approaches to reduce vibration in flying saw lines and improve cut consistency.
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Precision-engineered blades and application engineering that drive consistent performance across steels, stainless, and aerospace alloys.
GCr15, H13, hardened steels (high hardness applications)
SUS 304 / SUS 316, stainless tubes and decorative profiles
TC4 Titanium, Inconel, nickel and other high-temp alloys
6061/7075 aluminium, copper, brass profiles
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Cermet tip geometry and material provide consistent edge integrity and superior surface finish where it matters most.
TiSi and AlCrN coatings combined with tailored hook angles keep chips moving and surfaces pristine.
We provide specialized geometries for various machine types to ensure optimal performance and longevity of your cutting tools.
Precision fixed cutting for batch work.
Continuous-line sync-cutting with low vibration.
High-speed online cutting for automated lines.
Geometries and coating pairings available for your specific machine.
The latest in cutting technology and industry trends.
Practical engineering approaches to reduce vibration in flying saw lines and improve cut consistency.
Read MoreTechnical note describing how TiSi nano-coating improves stainless steel cutting by reducing adhesion and preventing discoloration.
Read MorePractical guidance for achieving burr-free, high-RPM cuts on aluminium using the Aluminum Alloy Master series.
Read MoreOur applications engineers are ready to advise on the perfect blade selection for your specific needs.