Browsing by Author "García Masabet, Violeta del Valle"
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3D printed scaffolds with core-shell structure for bone tissue engineering
García Masabet, Violeta del Valle (Universitat Politècnica de Catalunya, 2017-02-07)
Master thesis
Restricted access - author's decisionBiomaterials with core-shell structure have been used as carriers for drug delivery applications and cell encapsulation, allowing several improvements in the field of tissue engineering. Although the usefulness of biomaterials ... -
Effect of the viscosity ratio on the PLA/PA10.10 bioblends morphology and mechanical properties
Cailloux, Jonathan; Abt, Tobias Martin; García Masabet, Violeta del Valle; Santana Pérez, Orlando Onofre; Sánchez Soto, Miguel; Carrasco Alonso, Félix Ángel; Maspoch Rulduà, Mª Lluïsa (2018-01-30)
Article
Open AccessPLA bio-blends with a predominantly biosourced PA10.10 in the composition range 10-50wt.% were prepared by melt blending in order to overcome the advanced brittleness of PLA. Due to the inherent immiscibility of the blends, ... -
Multivariate identification of extruded PLA samples from the infrared spectrum
Riba Ruiz, Jordi-Roger; Cantero, Rosa; García Masabet, Violeta del Valle; Cailloux, Jonathan; Canals, Trini; Maspoch Rulduà, Mª Lluïsa (Springer, 2020-01)
Article
Open AccessPolylactic acid (PLA) is a biodegradable thermoplastic polymer that is presented as a good alternative to petroleum-derived plastics. Some of the major drawbacks of this material are its lack of thermal stability and rapid ... -
PLA/PA bio-blends: induced morphology by extrusion
García Masabet, Violeta del Valle; Santana Pérez, Orlando Onofre; Cailloux, Jonathan; Abt, Tobias Martin; Sánchez Soto, Miguel; Carrasco Alonso, Félix Ángel; Maspoch Rulduà, Mª Lluïsa (Multidisciplinary Digital Publishing Institute (MDPI), 2019-12-19)
Article
Open AccessThe effect of processing conditions on the final morphology of Poly(Lactic Acid) (PLA) with bio-based Polyamide 10.10 (PA) 70/30 blends is analyzed in this paper. Two types of PLA were used: Commercial (neat PLA) and a ...