
Upcoming Events

High Desert SAMPE September Technical Presentation
This presentation will showcase Syensqo’s comprehensive portfolio of advanced materials, emphasizing our ability to support customers from initial prototyping through to high rate production. We will provide an overview of state-of-the-art high rate manufacturing processes that enable efficient, scalable, and reliable product delivery across diverse industries. Attendees will also be introduced to Syensqo’s robust material and process databases, which facilitate informed decision-making and accelerate development cycles. The session will highlight the Syensqo Tech Support Model, designed to offer expert guidance and responsive assistance throughout the product lifecycle. Finally, we will explore the application development resources available to customers, demonstrating how Syensqo empowers innovation and supports successful product launches.

Technical Presentation with Kaneka Aerospace
https://www.eventbrite.com/e/sampe-high-desert-technical-presentation-kaneka-corporation-tickets-1389873381699?aff=oddtdtcreator
Advancements in Processable Extreme-Temperature Thermosets for Aerospace Applications
Kaneka Aerospace will present recent innovations in extreme-temperature thermosetting materials engineered for demanding aerospace environments, emphasizing enhanced processability and thermal performance. Key developments include a room-temperature-processable filament winding resin with extended pot life and a high glass transition temperature (Tg) of 230 °C, and a bismaleimide hybrid resin that processes at 50 °C while offering thermal resistance up to 310 °C, and a cost-effective, non-phenolic ablative prepreg that cures void-free and delivers high-quality components. We will also introduce resins suitable for cryogenic applications that maintain high fracture strength below –250 °C. Additionally we present our latest developmental products which include a novel polyimide resin with a Tg exceeding 330 °C and exceptional thermal shock resistance and a modified benzoxazine formulation optimized for carbon–carbon composites with high char yield. Across these innovations, our research focuses on simplifying manufacturing by reducing resin viscosity, lowering cure temperatures, and shortening cure cycles without compromising the superior thermal and mechanical properties required for next-generation aerospace applications.
