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BALINIT DUPLEX-series coated
Combining the best of two worlds.
Combining the best of two worlds: nitriding and hard coatings.
BALINIT DUPLEX Series
Duplex Die Casting 2

Heavy duty forming tools must be able to withstand extreme loads, whilst, at the same time, being productive, efficient and reliable for manufacturing. The BALINIT® DUPLEX Series meets these demands by combining two well-proven wear protection solutions: nitriding and hard coatings.

Nitriding increases surface hardness, compressive strength and hot hardness, and creates a homogeneous hardness profile. BALINIT® coatings are characterized by extreme hardness, high thermal stability and excellent protection against abrasive wear.

Together, they decisively improve your forming tools, and, thereby, the results of demanding manufacturing processes, such as mass forming, hot forming or sheet metal forming with tensile strength > 500 N/mm2.

DUPLEX versions of the BALINIT coatings ALCRONA PRO and LUMENA are available

BALINIT® ALCRONA PRO DUPLEX
Coating material AlCrN
Coating technology Arc
Coating colour Light grey
Coefficient of friction (dry) vs. steel** 0.35
Max. service temp. [°C]**** 1100
General remark All given data are approximate values, they depend on application, environment and test condition.
**Coefficient of friction (dry) vs. steel Determined by ball-on-disc test in dry condition with an Steel ball according to ASTM G99. During run-in the given values may be exceeded.
****Max. service temp. [°C] These are approximate values out of the field. Due to thermodynamic laws there is a dependency of pressure in application.
BALINIT® LUMENA DUPLEX
Coating material TiAlN
Coating technology Arc
Coating colour Violet-grey
Coefficient of friction (dry) vs. steel** 0.30 – 0.35
Max. service temp. [°C]**** 900
General remark All given data are approximate values, they depend on application, environment and test condition.
**Coefficient of friction (dry) vs. steel Determined by ball-on-disc test in dry condition with an Steel ball according to ASTM G99. During run-in the given values may be exceeded.
****Max. service temp. [°C] These are approximate values out of the field. Due to thermodynamic laws there is a dependency of pressure in application.

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