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The process described in this manuscript can be used to assess the quality and consistency of the tubular braided composite manufacturing process.
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Three types of braided composite tubes were manufactured by changing the number of braiding layers.
Braid geometry and void content will affect the mechanical behavior of the tubular braided composite samples.
The pultrusion experiments were fabricated the tubular braided composite with varying the structure of braided preform and pultrusion molding condition.
The braided composite is considered as consisting of three layers.
The energy absorbed by the 3-D braided composite increases with the strain rate.
These deformations in the tri-axial braided composite were then measured experimentally using Moiré interferometry.
However, as an independently produced structure, a braided composite may not meet all design requirements.
Simulations of quasi-static coupon tests and impact tests of a represented braided composite are conducted.
The presented modelling capability can improve design of braided composite structures for sports and other protective and structural applications.
A finite element model of the braided composite tube was established at microstructure level to analyze the transverse impact behaviors.
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