Abstract
A modified theoretical method for the punch shear test is derived by considering the influence of stress wave reflections caused by cross section discontinuities in the incident and transmitted bars. The dynamic punch shear behavior of 2D plain weave carbon/aramid hybrid composites was researched. The failure strength and strain are sensitive to strain rate. The stress-strain curves were obtained by the modified method. Significant shear deformation was observed under a single loading. An effective punch shear mesoscopic simulation model that accounts for the strain rate effect of the component materials was developed using the multi-scale analysis method. The model reveals the damage characteristics in the component materials. Damage modes are affected by hybridization and strain rates. The high elongation at the fracture of aramid fibers at high strain rates plays a crucial role in absorbing impact energy.
| Original language | English |
|---|---|
| Article number | 105162 |
| Journal | International Journal of Impact Engineering |
| Volume | 197 |
| DOIs | |
| State | Published - Mar 2025 |
Keywords
- 2D plain weave hybrid composite
- Damage mode
- High strain rate
- Multi-scale simulation
- punch shear
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