Further theoretical insight into the mechanical properties of polycaprolactone loaded with organic-inorganic hybrid fillers
Academic Article
Publication Date:
2018
abstract:
Abstract: Experimental/theoretical analyses have already been performed on poly("-caprolactone)
(PCL) loaded with organic-inorganic fillers (PCL/TiO2 and PCL/ZrO2) to find a correlation between
the results from the small punch test and Young's modulus of the materials. PCL loaded with
Ti2 (PCL = 12, TiO2 = 88 wt %) and Zr2 (PCL = 12, ZrO2 = 88 wt %) hybrid fillers showed better
performances than those obtained for the other particle composition. In this context, the aim of
current research is to provide further insight into the mechanical properties of PCL loaded with
sol-gel-synthesized organic-inorganic hybrid fillers for bone tissue engineering. For this reason,
theoretical analyses were performed by the finite element method. The results from the small punch
test and Young's modulus of the materials were newly correlated. The obtained values of Young's
modulus (193 MPa for PCL, 378 MPa for PCL/Ti2 and 415 MPa for PCL/Zr2) were higher than those
obtained from a previous theoretical modelling (144 MPa for PCL, 282 MPa for PCL/Ti2 and 310 MPa
for PCL/Zr2). This correlation will be an important step for the evaluation of Young's modulus,
starting from the small punch test data.
Iris type:
01.01 Articolo in rivista
Keywords:
computer-aided design (CAD);; mechanical analysis; finite element analysis (FEA);; composites; organic-inorganic hybrid materials; biomedical applications
List of contributors:
DE SANTIS, Roberto; Gloria, Antonio; Russo, Teresa
Published in: