Ionbond™ CVD 08
Ionbond™ CVD 08 TiBN is a special multi-layer coating applied on tools used in high-volume machining. Applied by means of the CVD coating procedure, it exhibits a particular hardness and wear resistance due to Bor in TiBN.
In addition, Ionbond™ CVD 08 TiBN features a particularly low coefficient of friction, which facilitates chip flowl when machining stainless steels.
The combination of κ-Al2O3 and TiBN delivers an extremely high hot-hardness and a very low thermal conductivity, which significantly increases the tool’s lifetime. TiN, as a top layer, protects the hard TiBN coating from breakage during the cutting start-up phase.
Ionbond™ CVD 08 TiBN is applied at ca. 1000°C and is suited for cemented carbide cutting inserts exclusively.


Technical data


AuroraX Plus


Hardcut™


Hardcut™ Plus
Hardcut™ Plus, a TiSiN based multi-layer coating, has been developed for high speed end-milling and gear hobbing of the hardest and toughest materials including exotic nickel and titanium alloys under low lubrication and dry conditions.


Crosscut™


Crosscut™ Plus


Maximizer


Maximizer Plus


Tetrabond™


Tetrabond™ Plus


Optimizer™ Plus
Optimizer™ Plus is the latest premium coating of the Ionbond plus-family. At the top of our product line, and in addition to Crosscut™ Plus, this new AlCrN based coating is the optimal coating for wet and dry machining at medium to high speeds for milling, hobbing and bevel cutting operations with temperatures reaching up to 1080°C.


Ionbond™ 01


Ionbond™ 42


Ionbond™ CVD 10


Ionbond™ CVD 13


Ionbond™ CVD 29


Ionbond™ CVD 29 HSA Plus
Ionbond™ CVD 29 HSA Plus is exceptionally well-suited for high-volume machining of cast iron and cast steel at medium to high cutting speeds and high temperatures due to the thermo-dynamically stable structure of its ceramic content.
Ionbond™ CVD 29 Ultra
Ionbond™ CVD 29 Ultra is the latest addition to the Ionbond’s CVD coatings for cutting tool applications. Engineered for enhanced toughness and exceptional hardness, it offers outstanding wear resistance that reduces crater as well as flank wear, providing longer tool life.