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Reducing corrosion-driven cost and downtime

LACS enables advanced protective coatings and surface restoration for components exposed to harsh marine, oil & gas and chemical environments.

Reducing corrosion-driven cost and downtime

Corrosion is a recurring cost centre

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Corrosion and surface degradation shorten component life

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Maintenance cycles are costly

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Unplanned downtime disrupts operations

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Replacement can be expensive and slow

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Exposed components often operate in chemically aggressive or erosive environments

WHY EXISTING APPROACHES FALL SHORT

Thermal processes can introduce distortion or material changes

Coatings may not withstand harsh service environments

Repair quality can vary

Replacement does not always address recurring degradation

LACS offers a low-thermal-impact route to dense, well-adhered coatings, supporting both protective and restorative strategies for high-value components.

What success looks like

Extended component life

Reduced unplanned downtime

Lower lifecycle maintenance cost

Improved resilience in harsh environments

Greater confidence in repair and restoration pathways

Material systems relevant to this application

Material families relevant to corrosion, erosion, wear and high-temperature performance in marine, oil & gas and chemical service.

Inconel 625 / nickel-based systems

Corrosion and high-temperature performance for valves, pumps and components in aggressive marine, oil & gas and chemical service.

LACS RELEVANCE

Dense, well-adhered nickel-based coatings applied with low thermal impact — protective or restorative.

Demonstrated material family

WC-Co / Ni-WC carbide systems

Erosion and wear resistance where surfaces face abrasive, high-velocity or particle-laden flow.

LACS RELEVANCE

Hard carbide systems deposited in solid state, avoiding melt-induced degradation of the carbide phase.

Demonstrated by Laser Fusion Technologies

316L stainless steel

General corrosion protection and dimensional restoration of subsea and topside components.

LACS RELEVANCE

Clean stainless deposition for build-up and protection without distortion.

Demonstrated material family

Stellite 6™ / Stellite 21

Combined wear, corrosion and high-temperature hard-facing for valve seats and sealing surfaces.

LACS RELEVANCE

Cobalt hard-facing alloys applied with reduced thermal compromise.

Demonstrated by Laser Fusion Technologies

Explore the full materials capability →

Possible engagement routes

These are possible entry points, not required steps. Engagement can start wherever it fits your situation — and move in any direction from there.

Component review

Send us a corroded or worn component and its service environment for an initial assessment.

Application trial

Run a focused coating trial on a representative valve, pump or subsea part.

Testing & validation

Independent corrosion and adhesion testing against your operating conditions.

Service-led coating

We coat or restore your components as a service — no equipment commitment required.

Technical partnership

Work with our team, through to joint co-development, on a defined corrosion challenge.

Deployment planning

Plan scaled supply or in-house LACS capability once value is proven.

Facing corrosion or degradation on high-value assets?

Discuss corrosion or degradation challenges

Talk to us about your application or investment interest

Bring a component, an operating environment, a failure mode or an application thesis. We'll explore whether LACS can change the economics of the problem and what evidence would be needed to move it forward.

APPLICATION TRIALS

PARTNERSHIPS

INVESTMENT

TECHNICAL COLLABORATION

Where to go from here

Technology

How Laser Assisted Cold Spray deposits advanced materials in solid state — stronger bonding, minimal heat, no melting.

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Materials

The hard, carbide and functional material systems LACS can deposit — with measured performance.

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Partnerships

How LFT works with partners to prove, scale and co-develop surface-performance solutions.

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