top of page

QUALITY

Internal and External Quality Control

You keep your process.

We add one input.

A pre-mixed input that adds one line in your bill of materials.

No retooling, no new equipment, no requalifying a line from scratch.  

Value to end customers is delivered.

MARKETS


•Lubricants

•Cement and concrete

•Asphalt

•Paint & Coatings

•Conductive Inks

US SOURCED

Domestic supply, domestic production

DROP-IN

Enhances an input you already buy

AmGraph-3 bars-flame.gray.black_edit-image.png

Product Portfolio

AmGraph develops graphene products tailored for specific industrial applications.

From additive manufacturing to industrial coatings, our platform can deliver precision-engineered materials that push the boundaries of durability and performance.

Contact us if you are considering a custom formulation for your product.

HIGH PURITY GRAPHENE

We utilize innovative technology to deliver top tier quality graphene. The graphene we produce has ultra-high purity at >95%, and forms multi-layered graphene stacks. We have eliminated the need for pretreatments of carbon-rich sources, which produce low-defect graphitic structure, easy dispersion, and controlled particle size in a cost-effective production for commercial manufacturing where heat transmission, electrical conductivity, and material longevity are desired.

PAINT AND
COATING ADDITIVES

Compared to industry epoxies, our specialized coating provides 2–5× improved barrier impedance retention while maintaining perfect adhesion levels. While keeping the improved barrier, this also correlates to an 80% reduction in wear rate, prolonging the use of equipment. The coating also continues to have exceeding performance if any micro-cracks are induced and utilize a low volume of solids to keep dispersion for mixing with products that nearly doubled thermal conductivity, and increased fracture toughness by about one-third.

**Our material can also be used for passive fire-protection. These coatings will create a foaming char on various surfaces that will block heat and fire. Our formulation provides a 15–25% lower substrate temperature from the charred surface and 15–30% more retained char at equal coating thickness compared to alternative coatings.**

LUBRICANT ADDITIVES

Our formulation is built to drive enhanced properties for lubricants, oils and greases used in oil and gas applications. Our grease formulation features a 5–15% reduction in friction and 8–15% lower wear rate. These enhancements are achieved while ensuring stable NLGI grading, excellent pumpability, and consistent resistance to bleeding and water ingress. While our gear oil additives show 5–10% lower friction, 8–15% less wear, and at least 20% lower post-test roughness without settling, foam, filterability, or demulsibility penalties.

CEMENT AND CONCRETE ADDITIVES

We have built concrete and cement formulations that enhance the strength and durability of these products. Our formulation is able to bridge early microcracks, and improve stress transfer through the hardened matrix. We have designed this additive to enhance concrete and cement with 15–25% higher compressive strength and 10–20% higher flexural strength at constant water/cement ratio and workability.

ASPHALT ADDITIVES

Our products are developed with petroleum applications and that carries advantages into asphalt applications. Our product creates an impermeable platelet barrier, reinforces the binder, while also slowing oxygen, moisture, and UV-driven aging. This product delivers enhanced asphalt properties with 20–40% lower vapor transmission alongside significantly superior flexibility retention following thermal and QUV aging protocols, all while avoiding the typical low-temperature stiffening penalties.

CONDUCTIVE INKS

Our product development is also continued into conductive inks where durability and continuity are essential for power exchange based against traditional carbon based inks. We produce variations of inks that are high conductivity and 88% lower resistivity for organic inks. A flexible ink that 5× greater conductivity for flexible sensors and applications where reduced VOCs and lower curing temperatures matter. As well as inks designed for additive manufacturing where shape retention is necessary for embedded 3D traces, flexible heaters, bend and strain sensors with 12× greater conductivity.

bottom of page