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Click I already have my license file to install key input activation key '3-0-7' Start the installation, you can click Select All. Click the file using the installation key, the next step. Matlab installation tutorial: 1, download the file, get the crack file. Why am I continuously prompted to activate when I try to launch MATLAB,please help me out. Every time I start MATLAB, it asks me to activate, even though I done with all the process and it states activation is complete each time.Even I did every process mentioned above still getting the same problem. I am trying to activate and use MATLAB trial. Administrators License administrators can obtain the Activation Key and File Installation Keys through through the. Our results indicate that our cohesive damage model could potentially be used to estimate the adverse conditions in injured soft tissue such as osteochondral lesions, menisci tears, or partial ligament ruptures under (ab)normal biomechanical scenarios.Entering a File Installation Key into a MATLAB installer downloaded directly from the MathWorks website will not enable you to install MATLAB on an offline machine. The crack growth predictions obtained by the FRPHE models showed the influence of anisotropy of the fibrillar matrix on the cartilage response. Damage initiation stress (4.35–4.73 MPa) and fracture energy (0.97–1.55 N/mm) values obtained for the poro-hyperelastic, poro-hyper-viscoelastic, and parallel-FRPHE models were within the range of what has been reported previously. Our numerical cohesive damage model was able to replicate the experimental crack length reported in the literature, showing greater crack length with an increasing number of loading cycles. Four different material models for cartilage (hyperelastic, poro-hyperelastic, poro-hyper-viscoelastic, and fibril-reinforced poro-hyperelastic (FRPHE) with different collagen orientations) were implemented.
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Here, we present a numerical approach to estimate crack propagation in articular cartilage under cyclic loading using a cohesive damage model. Currently, no numerical predictive methods exist for estimating crack propagation in cartilage under cyclic loading, yet they would provide essential insights into crack growth in injured tissue after trauma. However, the mechanisms behind their propagation remain unknown. The propagation of these lesions may contribute to the development of post-traumatic osteoarthritis (PTOA). Severe joint injuries often involve cartilage defects that propagate after mechanical loading.
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