pvd and cvd coatings

Surface refinement and finishing. Innovative and versatile.

pvd/pacvd and cvd: achieve more.

Both processes stand for good lubricity, low coefficient of friction, extreme hardness and corrosion resistance. While the PVD/PACVD process is considered a central technology that performs convincingly in a broad spectrum of applications, the CVD process unlocks new opportunities with the ability to coat or line inner surfaces with carbide materials.

DURIT COATING SOLUTIONS—
TARGETED OPIMIZATION OF PERFORMANCE AND ENDURANCE

PVD/PACVD AND CVD COATINGS

PVD and CVD processes are often applied to chipping and forming tools, specifically to extend service life.

PROPERTIES
Ø High hardness
Ø Good lubricity
Ø Low coefficient of friction
Ø Corrosion resistant
Ø Bio compatibility

ADVANTAGES
• very good impression of textured and polished surfaces
• very good dimensional accuracy and exact contours
• No impact on support structure with respective material selection

Products ::

forming tools • cutting tools • slide feed • stamping tools • chipping tools • bearings • valve components • stamps • dies • shearing tools • hot channel tools • ejector pins  knockouts • seal faces • guides • bearing bushing

Typical Applications ::

general wear protection in all varieties of trades and industries.

Forming die made of sintered carbide with advanced PVD coating – ideal for manufacturers requiring high durability and exact forming results.

Forming die

PVD-Coating MegaTiN®

PVD coated tungsten carbide profile drawing die for precise cold forming and shaping of complex wire profiles.

Profile drawing die

CVD-Coating TiC/TiN®

DURIT valve ball with CVD coating on cemented carbide – engineered for exceptional wear resistance, dimensional accuracy, and operational reliability

Valve ball

CVD-Coating TiC/TiN®

HIGH-TECH WEAR PROTECTION

The amount and variety of products that DURIT can optimize using PVD and CVD coating processes is nearly limitless.

PVD coated tungsten carbide valve cone for enhanced wear resistance and precise flow control in industrial valve systems

Valve cone

PVD-Coating HardCrom®

Piston made of sintered carbide with advanced PVD coating – ideal for oil and gas, automotive, and heavy machinery sectors requiring reliable performance

Piston

PVD-Coating MegaTiN®

High-performance forming die featuring PVD coating on tungsten carbide substrate – reduces friction and extends service intervals in cold forming applications

Forming die

PVD-Coating D-Mold®

DURIT inner mandrel with CVD coating on cemented carbide – engineered for reliable internal shaping, durability, and long-term process stability

Inner mandrel

CVD-Coating TiC/TiN®

PROCESS OPTIMIZATION

DURIT coatings can significantly increase the thermal and chemical resistance of tools and precision parts.

PVD coated tungsten carbide multi-stage valve cone designed for enhanced wear resistance and precise flow control in complex valve systems

Multi-stage valve cone

PVD-Coating HardTiN®

CVD coated cemented carbide threaded drawing mandrel engineered for high durability, dimensional stability, and smooth thread formation

Threaded drawing mandrel

CVD-Coating TiC/TiN®

PVD coated tungsten carbide scraper for effective surface cleaning and enhanced wear resistance in metal processing applications

Scraper

PVD-Coating Galaxy®

OVERALL VALUE ADDED

PVD- and CVD-Coatings offer multi-faceted opportunities for targeted improvement of individual material properties.

DURIT press stamp with CVD coating on cemented carbide – engineered for precision, wear resistance, and reliable performance in industrial pressing

Press stamp

PVD-Coating HardTiN®

High-precision die with PVD coating on tungsten carbide substrate – reduces friction and wear, ensuring long-lasting performance in metal forming

Die

PVD-Coating HardTiN®

Hole insert made of sintered carbide with advanced PVD coating – ideal for manufacturers requiring durable and accurate hole formation.

Hole insert

PVD-Coating HardTiN®

PVD coated tungsten carbide valve cone for high wear resistance and precise flow regulation in industrial valve assemblies.

Valve cone

PVD-Coating HardCrom®

Profile stamp made of sintered carbide with advanced PVD coating – ideal for manufacturers requiring consistent profile shaping and durability

Profile stamp

PVD-Coating DiExtraUltra®

PVD coated tungsten carbide mixer insert for enhanced wear resistance and durability in industrial mixing applications.

Mixer insert

PVD Coating HardTiL®

PVD coated tungsten carbide clamping jaw for secure gripping and enhanced wear resistance in cold forming and machining applications

Clamping jaw

PVD-Coating Galaxy®

DURIT valve seat with PVD coating on cemented carbide – engineered for maximum durability, dimensional accuracy, and long-term reliability

Valve seat

PVD-Coating HardTiL®

Wear-resistant forming mandrel with PVD coating on tungsten carbide substrate – ensures smooth material flow and reduced tool wear.

Forming mandrel

PVD-Coating HardTiN®

Embossing insert made of sintered carbide with advanced PVD coating – ideal for manufacturers requiring consistent embossing quality and extended tool life.

Embossing insert

PVD-Coating HardTiN®

INCREASED PRODUCTIVITY

Both processes ensure, depending on the application, substantially improved properties with regard to output, durability, and performance.

PVD coated tungsten carbide lead nozzle for precise material flow control and enhanced wear resistance in industrial applications.

Lead nozzle

PVD-Coating D-Mold

Wear-resistant lead nozzle with PVD coating on tungsten carbide substrate – ensures extended service life and minimal maintenance

Lead nozzle

PVD-Coating HardTiL®