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Haygor Advanced Coating Service

Advanced coatings for critical components.

Application-focused surface solutions for industrial instrumentation, aerospace and tooling - built around wear, friction, corrosion, heat, dimensional accuracy and uptime.

8 coating technologies ISO 9001:2015 certified
Four cylindrical samples displaying gold, silver, charcoal and black PVD coating finishes
Representative PVD finishes Surface engineering focused on component life and uptime.
Surface performance

The component may be sound. The surface is where performance is lost.

Friction, wear, corrosion, heat, sticking, galling, fouling and seizing can turn a reliable component into a maintenance problem. PVD focuses protection where those failure modes begin: at the surface.

Wear and friction

Reduce friction and surface wear, improve wear resistance, limit sticking and galling, and increase surface hardness.

Corrosion and heat

Improve corrosion resistance, reduce oxidation at high temperatures, and address fouling or buildup in demanding service.

Precision and dimensional control

Protect measurement integrity and help prevent the loss of dimensional accuracy on components where tolerances matter.

Maintenance and uptime

Reduce the surface-driven problems that create premature replacement, repeated maintenance and avoidable downtime.

PVD coating technologies

A broad coating portfolio. One application-first approach.

The right starting point is not a preferred coating name. It is the component, the service environment and the performance problem that must be solved.

AlTiN Aluminum Titanium Nitride High-temperature wear protection for tools and components exposed to heat, oxidation, abrasion and particle erosion.
CrTiN Chromium Titanium Nitride A balanced hard-and-tough surface for abrasive contact, sliding wear, repeated loading and moderate heat.
TiN Titanium Nitride A proven general-purpose coating for abrasive wear, galling reduction and longer tool or component life.
TiAlN Titanium Aluminum Nitride Hot-wear protection for cutting and forming tools operating under high mechanical load and elevated temperature.
CrN Chromium Nitride A tough, smooth coating for wear, sticking and selected corrosion exposure on tools and process components.
TiSiN Titanium Silicon Nitride A very hard, thermally stable coating for hardened materials, high-speed cutting and concentrated heat.
DLC Diamond-Like Carbon A low-friction carbon coating for sliding, rolling and limited-lubrication service prone to scuffing or galling.
Ta Tantalum A corrosion-focused surface for chemically aggressive process service and selected wetted components.

Coating selection should account for the substrate, component geometry, critical dimensions, operating temperature, media exposure and primary failure mode.

Performance priorities

Focus the coating strategy on the result that matters.

Haygor's PVD offering is organized around three practical outcomes: managing wear and friction, protecting against corrosion and heat, and preserving precision and uptime.

Wear & Friction

  • Reduces friction & surface wear
  • Improves wear resistance
  • Reduces sticking & galling
  • Increases surface hardness

Corrosion & Heat

  • Superior corrosion resistance
  • Reduces oxidation at high temperatures
  • Prevents fouling / buildup
  • Eliminates seizing

Precision & Uptime

  • Measurement integrity
  • Prevents loss of dimensional accuracy
  • Reduces maintenance & downtime
  • Cost-effective performance
Extend component life. Eliminate downtime. Build the coating recommendation around the surface condition that is limiting reliability.
Components and markets

Advanced PVD coating solutions for demanding applications.

The program is focused on critical components used across industrial instrumentation, aerospaceand tooling applications.

Industrial Instrumentation Aerospace

Valves & Fittings

Manifolds

Diaphragm Seals

Flowmeters

Transmitters

Sensors & Probes

Tooling

Evaluate surface protection where wear, friction, heat or dimensional control limits tool performance.

Application review

Start with the failure mode, not a coating name.

A useful coating recommendation begins with the part, the operating environment and the performance condition that must be corrected or prevented.

Define the surface problem

Identify the dominant issue: friction, wear, corrosion, heat, oxidation, sticking, galling, fouling, buildup, seizing or dimensional loss.

Review the component and service

Document the base material, geometry, critical dimensions, process media, temperature and operating conditions.

Match the coating technology

Evaluate the available PVD technologies against the performance goal and the component's practical constraints.

Confirm scope and production requirements

Align on the recommended approach, part quantities, preparation requirements, schedule and quotation.

Talk with Haygor

Bring us the component - and the performance problem.

Tell the Advanced Coating Service team what the part is doing, where it is failing, and which dimensions or operating conditions are critical. Haygor can begin the conversation around the application rather than forcing a one-size-fits-all coating.

ISO 9001:2015 Certified Advanced PVD Coating Solutions