4D printing of smart polymer nanocomposites: integrating graphene and acrylate based shape memory polymers

Citation

Chowdhury J, Anirudh PV, Karunakaran C, et al., (2021) 4D printing of smart polymer nanocomposites: integrating graphene and acrylate based shape memory polymers. Polymers, Volume 13, Issue 21, October 2021, Article number 3660

Abstract

The ever-increasing demand for materials to have superior properties and satisfy functions in the field of soft robotics and beyond has resulted in the advent of the new field of four-dimensional (4D) printing. The ability of these materials to respond to various stimuli inspires novel applications and opens several research possibilities. In this work, we report on the 4D printing of one such Shape Memory Polymer (SMP) tBA-co-DEGDA (tert-Butyl Acrylate with diethylene glycol diacrylate). The novelty lies in establishing the relationship between the various characteristic properties (tensile stress, surface roughness, recovery time, strain fixity, and glass transition temperature) concerning the fact that the print parameters of the laser pulse frequency and print speed are governed in the micro-stereolithography (Micro SLA) method. It is found that the sample printed with a speed of 90 mm/s and 110 pulses/s possessed the best batch of properties, with shape fixity percentages of about 86.3% and recovery times as low as 6.95 s. The samples built using the optimal parameters are further subjected to the addition of graphene nanoparticles, which further enhances all the mechanical and surface properties. It has been observed that the addition of 0.3 wt.% of graphene nanoparticles provides the best results.

Description

item.page.description-software

item.page.type-software-language

item.page.identifier-giturl

Keywords

4D printing, shape memory polymer, strain fixity, graphene

Rights

Attribution 4.0 International

item.page.relationships

item.page.relationships

item.page.relation-supplements