Assessment of dynamic mode-I delamination driving force in double cantilever beam tests for fiber-reinforced polymer composite and adhesive materials
The double cantilever beam (DCB) tests are widely used to assess the interfacial delamination properties of laminated composites. For quasi-static loads, the DCB tests are standardized based on the beam mechanics; for dynamic loads, however, such as high-loading-rate impact and cyclic loads, there is no established analytical theory. This presents a significant obstacle preventing the research community from assessing the delamination behavior of composites or adhesives for their application under complex in-service loads. In this paper, the theory of evaluating dynamic mode-I delamination driving force for DCBs under general displacement loads is developed for the first time, accounting for structural vibration effects. The developed theory is demonstrated by two examples: high-loading-rate split Hopkinson bar impact and cyclic fatigue loads. The analytical solutions are validated by published experiment results and in-house tests. This work provides a fundamental analytical tool to study and assess the fracture behavior of fiber reinforced polymer composite and adhesive materials under various loading conditions.
Item Type | Article |
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Uncontrolled Keywords | double cantilever beam test; dynamic energy release rate; general displacement loads; cyclic loads; high loading rate and impact; Dynamic energy release rate; Cyclic loads; High loading rate and impact; Double cantilever beam test; General displacement loads |
Subjects |
Engineering(all) > General Engineering Materials Science(all) > Ceramics and Composites |
Divisions |
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Date Deposited | 18 Nov 2024 12:23 |
Last Modified | 18 Nov 2024 12:23 |