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- W2967165026 abstract "Abstract New stone composite samples, fabricated using nano- to micro-sized recycled granite particles with irregular shapes and random distribution within a ABS matrix, demonstrate a highly nonlinear and complex fracture behavior. To model this behavior, a mixed mode cohesive zone finite element model is identified using the single-leg bending (SLB), in order to represent the granite particles-ABS interfacial debonding. An inverse methodology is then proposed to determine the parameters of the cohesive zone (CZM). A direct method based on J-integral approach is employed to determine the effective parameters of the traction-separation law. A two dimensional micromechanical extended finite element model (XFEM) of the composite is generated using X-ray micro-computed tomography (XMT) to mimic the actual shape of the particles. Finally, the identified cohesive model parameters have been employed to simulate the crack growth within the granite particulates/ABS composite. The comparison of the numerical and experimental results of the SLB test demonstrated the effectiveness of the proposed simulation framework." @default.
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- W2967165026 date "2019-11-01" @default.
- W2967165026 modified "2023-09-25" @default.
- W2967165026 title "Recycled Stone/ABS particulate composite: Micromechanical finite element fracture analysis" @default.
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- W2967165026 doi "https://doi.org/10.1016/j.compositesb.2019.107315" @default.
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