Core Capabilities

Mission‑focused materials and maintenance solutions designed for high‑impact defense environments.

Materials Chemistry

Design and optimization of advanced metal coatings, composites, and surface treatments tailored to demanding aerospace and maritime environments.

Treated and corroded metal plates demonstrating corrosion prevention

Corrosion Prevention

Protective systems that mitigate corrosion, extend asset life, and reduce sustainment costs, validated through side‑by‑side treated vs. untreated metal plate testing.

Treated and corroded metal plates demonstrating corrosion prevention

Electroplating & Nanomaterials

Electroplating processes and nanomaterial‑enhanced coatings that deliver durable, high‑adhesion surfaces with improved wear and fluid resistance.

Treated and corroded metal plates demonstrating corrosion prevention

Cold Spray Glow Powder

Integration of Glow Powder technology into cold spray repair processes to enable visual inspection, safety verification, and mission readiness under UV illumination.

Fluorescent metal components under UV light illustrating Glow Powder applications

Laboratory Management

Full‑spectrum laboratory management, from test design and materials characterization to quality assurance and technology transition.

Treated and corroded metal plates demonstrating corrosion prevention

U.S. Navy Experience & Program Management

Reliability & maintainability analysis, innovative maintenance practices, and program management grounded in decades of Navy sustainment experience.

Treated and corroded metal plates demonstrating corrosion prevention

Established Network & High‑Impact Projects

A professional, responsive team connected to an established network of defense and industry partners, delivering high‑impact projects with disciplined risk management.

Treated and corroded metal plates demonstrating corrosion prevention

Electrostamping Method for Plating Copper, Nickel, Tin, Zinc, and Brass

Electrostamped metal coupons and microscopy results

Electrostamped metal coatings produced using dehydrated salt pastes, enabling bathless plating.

Our Recent Article we Published in Materials Advances (Royal Society of Chemistry), this research presents a new electrostamping technique that plates metals using viscous dehydrated salt pastes rather than a traditional liquid bath. This approach enables plating of large, irregular, or water‑sensitive workpieces while producing smooth crystalline deposits with high current efficiencies.

The study demonstrates electrostamping of Ni, Cu, Zn, Sn, and Cu|Zn brass alloys, with full characterization performed using optical microscopy, AFM, XRD, and XRF. These results support specialized applications in modern engineering, additive manufacturing, and aircraft sustainment.

Access the full article or download the PDF: