A Phenomenological Mathematical Modelling Framework for the Degradation of Bioresorbable Composites by Ismael Moreno-Gomez

A Phenomenological Mathematical Modelling Framework for the Degradation of Bioresorbable Composites by Ismael Moreno-Gomez

Author:Ismael Moreno-Gomez
Language: eng
Format: epub, pdf
ISBN: 9783030049904
Publisher: Springer International Publishing


In summary, a significant majority of the analysed PDLLA-TCP case studies behaved as predicted by the computational model. No apparent reason could be found to explain the behaviour of the discrepant case study which contained a polymeric matrix employed in a different case study showing a buffering effect.

Poly(lactide-co-glycolide) Matrix

For cases with a poly(lactide-co-glycolide) matrix the effect of tricalcium phosphate addition is shown in Fig. 4.15c, with the corresponding analysis in Table 4.7.Table 4.7Analysis of tricalcium phosphate addition effect on composite degradation for case studies with a poly(lactide-co-glycolide) matrix. is the non-catalytic polymer degradation rate and is the autocatalytic polymer degradation rate, with both reported as geometric mean geometric standard deviation



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