TY - JOUR
T1 - Polyacrylamide hydrogels. I. Network imperfection
AU - Yang, Canhui
AU - Yin, Tenghao
AU - Suo, Zhigang
N1 - Publisher Copyright:
© 2019
PY - 2019/10
Y1 - 2019/10
N2 - A real polymer network is never perfect, but the quantification of network imperfection has been elusive. Here we quantify the network imperfection of a polyacrylamide hydrogel through its mechanical properties. We find that the ultimate properties—strength, extensibility, and work of fracture—have narrow scatter, comparable to the scatter of modulus. Despite the narrow scatter, the work of fracture is about four orders of magnitude lower than that of the perfect network. This reduction in work of fracture is a measure of network imperfection. The toughness of the hydrogel is about two orders of magnitude higher than that of the perfect network. When the effects of other inelastic processes are minimized, this amplification in toughness is likely due to distributed chain scission, and is another measure of network imperfection. We find that the ultimate properties of the hydrogel are insensitive to cuts up to about 1 mm. We trace this cut insensitivity to network imperfection.
AB - A real polymer network is never perfect, but the quantification of network imperfection has been elusive. Here we quantify the network imperfection of a polyacrylamide hydrogel through its mechanical properties. We find that the ultimate properties—strength, extensibility, and work of fracture—have narrow scatter, comparable to the scatter of modulus. Despite the narrow scatter, the work of fracture is about four orders of magnitude lower than that of the perfect network. This reduction in work of fracture is a measure of network imperfection. The toughness of the hydrogel is about two orders of magnitude higher than that of the perfect network. When the effects of other inelastic processes are minimized, this amplification in toughness is likely due to distributed chain scission, and is another measure of network imperfection. We find that the ultimate properties of the hydrogel are insensitive to cuts up to about 1 mm. We trace this cut insensitivity to network imperfection.
KW - Fractocohesive length
KW - Hydrogel
KW - Network imperfection
KW - Polyacrylamide
KW - Rupture
UR - https://www.scopus.com/pages/publications/85068137260
U2 - 10.1016/j.jmps.2019.06.018
DO - 10.1016/j.jmps.2019.06.018
M3 - 文章
AN - SCOPUS:85068137260
SN - 0022-5096
VL - 131
SP - 43
EP - 55
JO - Journal of the Mechanics and Physics of Solids
JF - Journal of the Mechanics and Physics of Solids
ER -