Go to:
Logótipo
Comuta visibilidade da coluna esquerda
Você está em: Start > Publications > View > Material model proposal for biodegradable materials
Publication

Material model proposal for biodegradable materials

Title
Material model proposal for biodegradable materials
Type
Article in International Conference Proceedings Book
Year
2011
Authors
Marques, AT
(Author)
FEUP
View Personal Page You do not have permissions to view the institutional email. Search for Participant Publications View Authenticus page Without ORCID
Guedes, RM
(Author)
FEUP
View Personal Page You do not have permissions to view the institutional email. Search for Participant Publications View Authenticus page View ORCID page
Tita, V
(Author)
Other
The person does not belong to the institution. The person does not belong to the institution. The person does not belong to the institution. Without AUTHENTICUS Without ORCID
Conference proceedings International
Pages: 1597-1602
11th International Conference on the Mechanical Behavior of Materials (ICM)
Como, ITALY, 2011
Scientific classification
FOS: Engineering and technology > Other engineering and technologies
Other information
Authenticus ID: P-002-WR4
Abstract (EN): A large range of biodegradable polymers are used in many products with short life cycle. Important applications of these are found in the biomedical field, where biodegradable materials are used to produce scaffolds that temporarily replace the biomechanical functions of a biologic tissue, while it progressively regenerates its capacities. However, the mechanical behavior of biodegradable materials along its degradation time, which is an important aspect of the project, is still an unexplored subject. In this work, hyper elastic constitutive models, such as the Neo-Hookean, the Mooney-Rivlin modified and the second reduced order are discussed. These can be used to predict the mechanical behavior of a blend composed of polylatic acid (PLA) and polycaprolactone (PCL). A numerical approach using ABAQUS (R) is presented, where the material properties of the model proposal are automatically updated in correspondence to the degradation time, by means of a User Material subroutine (UMAT). The parameterization of the material model proposal for different degradation times were achieved by fitting the theoretical curves with the experimental data of tensile tests. The material model proposal implemented in a subroutine could be used as a design toll for generic biodegradable devices. (C) 2011 Published by Elsevier Ltd. Selection and/or peer-review under responsibility of ICM11
Language: English
Type (Professor's evaluation): Scientific
Contact: avieira@inegi.up.pt
No. of pages: 6
Documents
We could not find any documents associated to the publication.
Recommend this page Top
Copyright 1996-2024 © Serviços Partilhados da Universidade do Porto I Terms and Conditions I Acessibility I Index A-Z I Guest Book
Page created on: 2024-07-18 00:39:33 | Acceptable Use Policy | Data Protection Policy | Complaint Portal