PVD Coating Technology

NTI Nanofilm optimises Physical Vapour Deposition technology, delivering superior hardness, wear & corrosion resistance coatings for tooling, decorative, and industrial parts.

Physical Vapour Deposition (PVD) Technology

PVD is a dry surface treatment and thin film deposition method that forms hard, durable, low-friction coatings in vacuum. Material from a solid target is vaporised by sputtering, cathodic arc, or electron beam, transported as a vapour to the substrate, then nucleates and grows into a functional thin film. PVD improves wear resistance, adhesion, and appearance on precision, tooling, and decorative parts while supporting a wide range of colours and finishes with an environmentally friendly process.

Main Advantages of NTI Nanofilm PVD

Compared to electroplating and wet coating methods, PVD delivers harder, more durable, and environmentally friendly finishes.

  • Eco-Friendly Process

    Environmentally safe vacuum coating process eliminating hazardous waste and minimizing emissions for a cleaner, sustainable production environment.

  • Outstanding Performance

    Produces harder, corrosion-resistant thin films with high impact strength, excellent scratch resistance, and superior abrasion resilience.

  • Coating Capabilities

    Supports a wide range of inorganic and select organic coatings on diverse substrates for tailored decorative and functional performance.

  • Nanofilm FCVA Coating Technology

    Produces ultra-dense, high-purity ta-C coatings with superior hardness, low friction, and minimal particles—ideal for semiconductor, optical, and precision components.

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  • Nanofilm PVD Coating Technology

    Delivers durable, decorative, and functional coatings with excellent adhesion, wear, and corrosion resistance through advanced sputtering and arc processes.

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  • Nanofilm Ion Beam Technology

    Combines precise film control with pre-deposition surface activation, enhancing coating density, adhesion, and uniformity on high-performance engineering components.

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  • PVD Portfolio
  • Sputtering
  • Ion-Beam
  • FCVA

  • Sputtering

  • Ion-Beam

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