Carbon Fiber Hat Stiffener 1.5 x 2 x 48

Carbon Fiber Hat Stiffener 1.5 x 2 x 48

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DragonPlate is a leading innovator in high-performance carbon fiber-reinforced composites. From custom carbon fiber shapes, to products including tubes, sheets, plates and more, DragonPlate has a solution to fit you.
Do you have a design that needs increased panel stiffness? Are you looking to increase the structural performance of our carbon fiber sheets? Solve your problems with DragonPlate's carbon fiber hat stiffeners. They can easily be incorporated into existing designs to increase the structural performance by adding stiffness.Our carbon fiber hat stiffeners are comprised of plain weave carbon fiber in both 0/90 and ±45 orientations, with 0 uni-directional carbon fiber to add stiffness and strength along the length of the hat stiffener. To optimize the design, we have added the unidirectional only to the cap of the hat stiffener. This fiber placement lets us create a stronger and stiffer hat stiffener while minimizing hat stiffener weight. This design creates a high stiffness to weight ratio, and also creates a beam that is more torsionally rigid when bonded than an i-beam. The carbon fiber hat stiffener has a textured finish on the outside and on the flange surfaces to create an ideal bonding surface.

Comparative manufacture and testing of induction- welded and adhesively bonded carbon fibre PEEK stiffened panels - M Flanagan, A Doyle, K Doyle, M Ward, M Bizeul, R Canavan, B Weafer, CM Ó

Frontiers Buckling Behavior of Poly-Phenylene-Sulfide/Carbon L-Shaped Stringers and a Stiffened Panel Obtained by Induction Welding

Comparative manufacture and testing of induction- welded and adhesively bonded carbon fibre PEEK stiffened panels - M Flanagan, A Doyle, K Doyle, M Ward, M Bizeul, R Canavan, B Weafer, CM Ó

Frontiers Buckling Behavior of Poly-Phenylene-Sulfide/Carbon L-Shaped Stringers and a Stiffened Panel Obtained by Induction Welding

Modeling of Biaxial Compression Behavior of Carbon Fiber–Reinforced Composite after Low-Velocity Impact, Journal of Aerospace Engineering

An investigation into the performance of composite hat stringers incorporating nanocomposites using a multiscale framework - Zeaid Hasan, Aditi Chattopadhyay, Yingtao Liu, 2014

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Strengthening of composite T-joints using Ø 0.11 mm Z-pins via an ultrasound-guided insertion process - ScienceDirect

Dynamic behavior of top-hat bonded stiffened composite panels: Experimental characterization - ScienceDirect

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PDF) Influence of Intermediate Stiffeners on Axial Capacity of Thin-Walled Built-Up Open and Closed Channel Section Columns