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The semi-circular bending specimen (SCB) is employed to perform a total number of 36 mixed mode fracture tests on the prepared nanocomposites.
By manufacturing the specimens with different residual stresses, mixed mode fracture tests with various mixed mode ratios were conducted and the effect of the mixed mode ratio on the energy release rates was investigated.
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A generalized maximum tangential stress criterion is then employed for predicting the mixed mode fracture test results.
The Brazilian disk, a classic mixed mode fracture test specimen, was adopted for the experimental characterization of the crack initiation.
The present work aims to present novel numerical results of complete failure simulations performed on pre-cracked beams made of LWAC, subjected to a mixed-mode fracture test.
While only 50% of as-cast samples demonstrated plastic deformation during mode I fracture tests, 100% of imprinted samples demonstrated measurable plasticity and the scatter in measured mode I fracture toughness was significantly reduced.
For all these configurations mode I fracture tests are carried out.
Single edge notched specimens are prepared from the degraded samples and mode I fracture tests are performed.
Flexural and mode I fracture tests were performed using acid-treated and silane-treated CNT/epoxy/basalt composites, respectively.
Mode I fracture tests were conducted on both as-cast and cold-rolled Zr-Cu-Ni-Al-Nb bulk metallic glass (BMG) single edge notch bend samples.
A typical measure for the toughness of highly stretchable materials is the energy for tearing, determined in mode I fracture tests on wide specimens with a lateral cut.
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