Innovation Insights is a one-hour series of presentations from IACMI members and partners, where they provide background on new technology, products, and the key advantages provided, as well as application examples.
Register Here
IACMI's monthly webinar series "Innovation Insights" continues Monday, November 13, as IACMI EVP/CCO Dale Brosius, will moderate discussions on recent technology advancements.
On Monday, November 13, at 12PM ET, join us for a one-hour series of presentations from IACMI members and partners, where they will provide background on new technology, products, and the key advantages provided, as well as application examples.
You will hear from:
Kevin Line
VP of Manufacturing
Rise Building Products
Rise Building Products - Recycling Fibers into Composite Building Materials
Rise has developed and patented a process to recycle polymer fibers into building materials. During this briefing the process and value proposition for the product will be outlined.
Haley Marie Keith
Co-Founder, CEO
MITO Material Solutions
Andrew Maxey
Founder, CEO
Vartega
Graphene-sized Recycled Carbon Fiber Combining Strength and Sustainability without Compromising Performance
MITO Materials and Vartega collaborated to develop Fenix Fiber+, a groundbreaking graphene-sized carbon fiber product. This material greatly enhances interfacial adherence, improving the mechanical performance of fiber-reinforced thermoplastics. Fenix Fiber+ is eco-friendly and durable, made from recycled carbon fiber and graphene derived from wastestream greenhouse gases. Early studies show positive results including over 50% increase in impact resistance and flexibility. Learn about the development process and many applications of this 2023 CAMX Award winner.
Christopher Oberste
President and Chief Engineer
WEAV3D Inc.
Rebar for Plastics: Enabling Cost Effective Body Structures
In partnership with Braskem, Altair, and the Clemson Composites Center, an automotive door structure originally designed in carbon fiber/PA6 organosheet was redesigned utilizing WEAV3D’s Rebar for Plastics® design methodology, which leverages various micro-and macro-mechanical concepts to maximize performance and minimize cost in hybrid length-scale composites. This highly optimized structure achieved 20% weight savings and 50% cost savings vs. the original organosheet, while also reducing trim scrap mass by 63%.
Have a login? Login Now
{{vm.loginInfo.errorMessage}}
Create an Account
Forgot your Username or Password?
Register as Guest
Address
Phone
{{slot.Name}}
{{ vm.EventInfo.EventSettings.NoShowPolicy }}