Analysis of orientation behavior in extruded tricalcium phosphate/poly(lactic acid) composite billet using finite element method and chain network model
Author:
Affiliation:
1. Department of Mechanical and Electronic Engineering, Salesian Polytechnic
2. Department of Mechanical Systems Engineering, Tokyo Metropolitan University
Publisher
Japan Society of Mechanical Engineers
Subject
General Medicine
Link
https://www.jstage.jst.go.jp/article/mej/8/5/8_21-00190/_pdf
Reference17 articles.
1. Bergsma, E. J., Rozema, F. R., Bos, R. R. M. and DeBruijn, W. C., Foreign body reactions to resorbable poly(l-lactide) bone plates and screws used for the fixation of unstable zygomatic fractures, Journal of Oral and Maxillofacial Surgery, Vol. 51, No. 6, (1993), pp. 666-670, DOI : 10.1016/S0278-2391(10)80267-8.
2. Cui, Y., Liu, Y., Cui, Y., Jing, X., Zhang, P. and Chen, X., The nanocomposite scaffold of poly(lactide-co-glycolide) and hydroxyapatite surface-grafted with L-lactic acid oligomer for bone repair, Acta Biomaterialia, Vol. 5, No. 7 (2009), pp. 2680-2692, DOI : 10.1016/j.actbio.2009.03.024.
3. Droscher, M. and Bandara, U., Extrusion of thermoplastic elastomers in the solid state, Rheologica Acta, Vol. 21 (1982), pp. 435-437, DOI : 10.1007/978-3-662-12809-1_20.
4. Eisbein, W., Sachs, G., Kuntze, W. and Linicus, W., Kraftbedarf und fließvorgänge beim stangenpressen, Spanlose Formung der Metalle, Vol. 16 (1931), pp. 67-96.
5. Eling, B., Gogolewski, S. and Pennings, A.J., Biodegradable materials of poly(L-lactic acid): 1. Melt-spun and solution-spun fibres, Polymer, Vol. 23, No. 11 (1982), pp. 1587-1593, DOI : 10.1016/0032-3861(82)90176-8.
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