Exhibiting at CAMX 2026
Mitsubishi Chemical will exhibit at CAMX 2026, one of North America’s largest exhibitions for
composites and advanced materials, in Atlanta, Georgia.
We will showcase a broad range of advanced materials, including high-strength and high-modulus carbon
fibers, prepreg resin systems, highly thermally conductive carbon materials, and carbon fiber
compounds capable of forming complex geometries in short cycle times. Through these materials, we
offer solutions that contribute to lightweighting, enhanced component performance, shorter molding
cycles, and greater design freedom.
■ Dates: September 22–24, 2026
■ Venue: Georgia World Congress Center, Building C, 285 Andrew Young International Blvd, NW, Atlanta,
GA 30313, USA
■ Booth No.: AA37
CAMX Official Website
About Exhibits
The following products and technologies will be exhibited or introduced at our booth. Click each item
name for more information.
Fiber-Reinforced Composites Portfolio Brochure
Explore Mitsubishi Chemical Group’s broad portfolio of fiber-reinforced composite materials,
processing technologies, and part manufacturing solutions.
| Exhibit name | Description |
|---|---|
| PYROFIL™ Intermediate- and High-Modulus Carbon Fiber Portfolio | A comprehensive range of intermediate- and high-modulus PAN-based carbon fibers for aerospace, defense, and high-end sports applications, featuring the newly launched HRE40 for ultra-thin prepregs and the developmental HR60 targeting enhanced strength at HR40-class modulus. |
| PYROFIL™ MR Series Carbon Fiber Solutions | A portfolio of intermediate-modulus, high-strength carbon fibers tailored to diverse structural requirements. MR50R for toughness and damage tolerance in CFRTP, MR65A for balanced aerospace structural performance, and MR70, manufactured in both the United States and Japan, for maximum tensile strength and lightweighting. |
| PYROFIL™ TR 30S 1L 1K Carbon Fiber | A new fine 1K carbon fiber tow offering excellent spreadability for ultra-light fabrics and ultra-thin prepregs, enabling greater design flexibility and precision in thin, intricate, and weight-sensitive composite structures. |
| DIALEAD™ K13D2U, K23GHM High-Thermal Conductive Carbon Fiber | Pitch-based carbon fiber offering world-leading thermal conductivity, available as milled fiber for thermally conductive compounds and as continuous tow for use in CFRP heat-dissipation components. |
| Forged bulk compound | A lightweight, high-stiffness carbon fiber compound offering excellent moldability for thick, complex parts and easy machining to tight dimensional tolerances. |
| FMC(Forged Molding Compound) | A styrene-free carbon fiber sheet molding compound manufactured in the United States, combining lightweight, high stiffness, and excellent formability for complex parts. |
| Prepreg Resin Systems | A broad portfolio of prepreg resin systems manufactured and supplied in the United States, offering tailored solutions for aerospace, industrial, marine, medical, and sporting goods applications. |
| Kyron™ ULTRA Thermoplastic Prepreg Demonstrators | Low-void, unidirectional Kyron™ ULTRA thermoplastic prepreg combines high mechanical performance, heat resistance, and rapid formability, as demonstrated by the exhibited PEI hat-shaped stringer and PEEK aircraft rib. |
| KyronTEX™ Thermoplastic Composite Solutions | Highly drapable KyronTEX™ organofleece materials enable efficient, high-volume production of lightweight and complex thermoplastic composite parts, with the exhibits demonstrating wrinkle-free deep drawing, metal replacement, aerospace structural integration, and PPS-based solutions with high mechanical, chemical, thermal, and FST performance. |
| Advanced Heat Resistant Carbon Fiber Composites | A family of lightweight, high-stiffness carbon fiber composites, including phenolic CFRP, C/C, and C/SiC, offering heat resistance up to 1,500°C for demanding aerospace, semiconductor, and other high-temperature applications. |
| High Thermal Conductivity C/C Composites | Lightweight C/C composites made with pitch-based carbon fiber provide thermal conductivity of up to 550 W/m·K, with fiber architectures tailored for heat transfer in one or two directions, making them well suited for demanding thermal-management applications in fusion and aerospace. |
| CFRP Wheel | Manufactured using carbon-fiber SMC and PCM hybrid molding, this wheel employs Fusion Core Molding (FCM) technology to produce 3D hollow structures. |