Machining

Today, the traditional machining industry faces numerous challenges: more complex geometries, diverse workpiece materials, tighter dimensional tolerances, and higher machining efficiency. These demand higher performance from cutting tools and molds, such as wear resistance, lubricity, high-temperature oxidation resistance, smooth surfaces, and anti-adhesion. PVD (Physical Vapor Deposition) coatings, applied via arc evaporation or magnetron sputtering, deposit target materials onto substrates to form a 0.5-15μm thin film, effectively protecting the substrate and extending its service life.

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Overall cutting tool

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CNC insert

Image Name

Gear cutting tool

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Mold

Today, the traditional machining industry faces numerous challenges: more complex geometries, diverse workpiece materials, tighter dimensional tolerances, and higher machining efficiency. These demand higher performance from cutting tools and molds, such as wear resistance, lubricity, high-temperature oxidation resistance, smooth surfaces, and anti-adhesion. PVD (Physical Vapor Deposition) coatings, applied via arc evaporation or magnetron sputtering, deposit target materials onto substrates to form a 0.5-15μm thin film, effectively protecting the substrate and extending its service life.

Image Name

Overall cutting tool

Image Name

CNC insert

Image Name

Gear cutting tool

Image Name

Mold

Today, the traditional machining industry faces numerous challenges: more complex geometries, diverse workpiece materials, tighter dimensional tolerances, and higher machining efficiency. These demand higher performance from cutting tools and molds, such as wear resistance, lubricity, high-temperature oxidation resistance, smooth surfaces, and anti-adhesion. PVD (Physical Vapor Deposition) coatings, applied via arc evaporation or magnetron sputtering, deposit target materials onto substrates to form a 0.5-15μm thin film, effectively protecting the substrate and extending its service life.

Image Name

Overall cutting tool

Image Name

CNC insert

Image Name

Gear cutting tool

Image Name

Mold

Product

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Efficient, durable, and reliable

Our sputtering targets boast exceptional purity, density, and finer grain sizes—qualities that have earned widespread acclaim in the industry. These superior characteristics enable the formation of stronger, denser, and smoother coatings on substrates, ensuring an efficient, durable, and reliable product experience. How do we achieve this? At the raw-material stage, we source only premium-grade materials and rigorously adhere to strict procurement standards. On the production floor, our team brings decades of expertise, mastering the art of crafting high‑quality sputtering targets. And during quality control, standardized inspection procedures combined with state‑of‑the‑art precision equipment ensure that even the slightest imperfections are identified and addressed, delivering products that are flawless.

We offer customized solutions.

We have a dedicated team of materials scientists and engineers ready to provide you with comprehensive, customized services. From dimensions and shapes to product‑specific performance requirements, we can even co‑develop solutions with you, offering design and development services for target material structures, compositions, and more—truly starting from your needs to deliver products that meet your expectations.

We remain steadfast in our pursuit of exceptional quality.

A high-caliber R&D team is the cornerstone of exceptional quality, and the passion and dedication our employees bring to the target‑material business are paramount. Notably, even entry‑level staff hold shares in the company. At TARFILM Technology, every target material is treated with the utmost care—just as if it were their own child. We welcome you to visit TARFILM Technology and experience our unwavering passion for the target‑material industry.