Broadband dielectric spectroscopy (BDS) is introduced as a new and powerful technique to monitor network and macroscale damage healing in an elastomer. For the proof of concept, a partially cured sulfur-cured natural rubber (NR) containing reversible disulfides as the healing moiety was employed. The forms of damage healed and monitored were an invisible damage in the rubber network due to multiple straining and an imposed macroscopic crack. The relaxation times of pristine, damaged, and healed samples were determined and fitted to the Havriliak−Negami equation to obtain the characteristic polymer parameters. It is shown that seemingly full mechanical healing occurred regardless the type of damage, while BDS demonstrates that the polymer ar...
The introduction of self-healing and reprocessability into conventional vulcanized rubbers has been ...
In this work, we report about the mechanical relaxation characteristics of an intrinsically self-hea...
Self-healing or healable polymers can recuperate their function after physical damage. This process ...
Broadband dielectric spectroscopy (BDS) is introduced as a new and powerful technique to monitor net...
Broadband dielectric spectroscopy (BDS) is introduced as a new and powerful technique to monitor net...
Broadband dielectric spectroscopy (BDS) is introduced as a new and powerful technique to monitor net...
The combination of vulcanizing agents is an adequate strategy to develop multiple networks that cons...
The combination of vulcanizing agents is an adequate strategy to develop multiple networks that cons...
Research in the field of smart materials that exhibit self-repair mechanisms has greatly expanded ov...
Self-healing rubbers have steadily been growing during the last decades. Various strategies have bee...
Self-healing ability in polymers is typically probed by monitoring restorative properties after loca...
An intrinsic self-healing natural rubber featuring reversible metal-thiolate ion networks was fabric...
The dielectric permittivity of synthetic rubber polymers, nitrile butadiene rubber (NBR) and ethylen...
Trabajo fin de Máster defendido en el Instituto de Ciencia y Tecnología de Polímeros, el 13 de junio...
In this work, we report about the mechanical relaxation characteristics of an intrinsically self-hea...
The introduction of self-healing and reprocessability into conventional vulcanized rubbers has been ...
In this work, we report about the mechanical relaxation characteristics of an intrinsically self-hea...
Self-healing or healable polymers can recuperate their function after physical damage. This process ...
Broadband dielectric spectroscopy (BDS) is introduced as a new and powerful technique to monitor net...
Broadband dielectric spectroscopy (BDS) is introduced as a new and powerful technique to monitor net...
Broadband dielectric spectroscopy (BDS) is introduced as a new and powerful technique to monitor net...
The combination of vulcanizing agents is an adequate strategy to develop multiple networks that cons...
The combination of vulcanizing agents is an adequate strategy to develop multiple networks that cons...
Research in the field of smart materials that exhibit self-repair mechanisms has greatly expanded ov...
Self-healing rubbers have steadily been growing during the last decades. Various strategies have bee...
Self-healing ability in polymers is typically probed by monitoring restorative properties after loca...
An intrinsic self-healing natural rubber featuring reversible metal-thiolate ion networks was fabric...
The dielectric permittivity of synthetic rubber polymers, nitrile butadiene rubber (NBR) and ethylen...
Trabajo fin de Máster defendido en el Instituto de Ciencia y Tecnología de Polímeros, el 13 de junio...
In this work, we report about the mechanical relaxation characteristics of an intrinsically self-hea...
The introduction of self-healing and reprocessability into conventional vulcanized rubbers has been ...
In this work, we report about the mechanical relaxation characteristics of an intrinsically self-hea...
Self-healing or healable polymers can recuperate their function after physical damage. This process ...