TY - JOUR
T1 - Remote actuation of light activated shape memory polymers via D-shaped optical fibres
AU - Herath, Madhubhashitha
AU - Epaarachchi, Jayantha
AU - Islam, Mainul
AU - Zhang, Fenghua
AU - Leng, Jinsong
AU - Fang, Liang
AU - Yan, Cheng
AU - Peng, Gang Ding
AU - Schade, Wolfgang
N1 - Publisher Copyright:
© 2020 IOP Publishing Ltd.
PY - 2020
Y1 - 2020
N2 - Shape memory polymers (SMPs) and their composites (SMPCs) can hold a programmed temporary shape and recover to their original shape once exposed to a particular external stimulus. The stimulus light has the advantage of being both an excitation energy source and a control signal carrier for remote actuation of SMP materials. Here we present the capability of D-shaped optical fibres to send near infrared (NIR) light into a light activated shape memory polymer composite (LASMPC) which generates the adequate photothermal effect necessary for the shape recovery process of relatively large samples. A D-shaped optical fibre enables dispersion of light through the polished area around the fibre than the dispersion of light through the tip of the fibre. Embedment of a D-shaped optical fibre in a LASMPC creates a single unit smart actuator, which can be remotely activated by light. Remotely controllable smart actuators can be located at any difficult to reach positions and controlled safely with light energy. It would be a breakthrough technology for biomedical, aerospace and many other engineering applications.
AB - Shape memory polymers (SMPs) and their composites (SMPCs) can hold a programmed temporary shape and recover to their original shape once exposed to a particular external stimulus. The stimulus light has the advantage of being both an excitation energy source and a control signal carrier for remote actuation of SMP materials. Here we present the capability of D-shaped optical fibres to send near infrared (NIR) light into a light activated shape memory polymer composite (LASMPC) which generates the adequate photothermal effect necessary for the shape recovery process of relatively large samples. A D-shaped optical fibre enables dispersion of light through the polished area around the fibre than the dispersion of light through the tip of the fibre. Embedment of a D-shaped optical fibre in a LASMPC creates a single unit smart actuator, which can be remotely activated by light. Remotely controllable smart actuators can be located at any difficult to reach positions and controlled safely with light energy. It would be a breakthrough technology for biomedical, aerospace and many other engineering applications.
KW - D-shaped optical fibre
KW - composite
KW - light activated shape memory polymer
KW - photothermal effect
KW - remote controlled actuator
UR - http://www.scopus.com/inward/record.url?scp=85082297758&partnerID=8YFLogxK
U2 - 10.1088/1361-665X/ab72ea
DO - 10.1088/1361-665X/ab72ea
M3 - 文章
AN - SCOPUS:85082297758
SN - 0964-1726
VL - 29
JO - Smart Materials and Structures
JF - Smart Materials and Structures
IS - 4
M1 - 047001
ER -