Localized soft elasticity in liquid crystal elastomers

被引:156
作者
Ware, Taylor H. [1 ,2 ]
Biggins, John S. [3 ]
Shick, Andreas F. [1 ]
Warner, Mark [3 ]
White, Timothy J. [1 ]
机构
[1] Air Force Res Lab, Mat & Mfg Directorate, Wright Patterson AFB, OH 45433 USA
[2] Univ Texas Dallas, Dept Bioengn, Richardson, TX 75080 USA
[3] Univ Cambridge, Cavendish Lab, Cambridge CH3 0HE, England
基金
英国工程与自然科学研究理事会;
关键词
COMPOSITES; MECHANICS;
D O I
10.1038/ncomms10781
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Synthetic approaches to prepare designer materials that localize deformation, by combining rigidity and compliance in a single material, have been widely sought. Bottom-up approaches, such as the self-organization of liquid crystals, offer potential advantages over top-down patterning methods such as photolithographic control of crosslink density, relating to the ease of preparation and fidelity of resolution. Here, we report on the directed self-assembly of materials with spatial and hierarchical variation in mechanical anisotropy. The highly nonlinear mechanical properties of the liquid crystalline elastomers examined here enables strain to be locally reduced >15-fold without introducing compositional variation or other heterogeneities. Each domain (>= 0.01mm(2)) exhibits anisotropic nonlinear response to load based on the alignment of the molecular orientation with the loading axis. Accordingly, we design monoliths that localize deformation in uniaxial and biaxial tension, shear, bending and crack propagation, and subsequently demonstrate substrates for globally deformable yet locally stiff electronics.
引用
收藏
页数:7
相关论文
共 22 条
[1]   Highly Stretchable and Sensitive Strain Sensor Based on Silver Nanowire-Elastomer Nanocomposite [J].
Amjadi, Morteza ;
Pichitpajongkit, Aekachan ;
Lee, Sangjun ;
Ryu, Seunghwa ;
Park, Inkyu .
ACS NANO, 2014, 8 (05) :5154-5163
[2]  
[Anonymous], 2001, E-POLYMERS, DOI DOI 10.1515/EPOLY.2001.1.1.111
[3]   Photopatterning the mechanical properties of polydimethylsiloxane films [J].
Cotton, D. P. J. ;
Popel, A. ;
Graz, I. M. ;
Lacour, S. P. .
JOURNAL OF APPLIED PHYSICS, 2011, 109 (05)
[4]   Composites Reinforced in Three Dimensions by Using Low Magnetic Fields [J].
Erb, Randall M. ;
Libanori, Rafael ;
Rothfuchs, Nuria ;
Studart, Andre R. .
SCIENCE, 2012, 335 (6065) :199-204
[5]   HALPIN-TSAI EQUATIONS - REVIEW [J].
HALPIN, JC ;
KARDOS, JL .
POLYMER ENGINEERING AND SCIENCE, 1976, 16 (05) :344-352
[6]   A viscoelastic model for fiber-reinforced composites at finite strains: Continuum basis, computational aspects and applications [J].
Holzapfel, GA ;
Gasser, TC .
COMPUTER METHODS IN APPLIED MECHANICS AND ENGINEERING, 2001, 190 (34) :4379-4403
[7]   Soft network composite materials with deterministic and bio-inspired designs [J].
Jang, Kyung-In ;
Chung, Ha Uk ;
Xu, Sheng ;
Lee, Chi Hwan ;
Luan, Haiwen ;
Jeong, Jaewoong ;
Cheng, Huanyu ;
Kim, Gwang-Tae ;
Han, Sang Youn ;
Lee, Jung Woo ;
Kim, Jeonghyun ;
Cho, Moongee ;
Miao, Fuxing ;
Yang, Yiyuan ;
Jung, Han Na ;
Flavin, Matthew ;
Liu, Howard ;
Kong, Gil Woo ;
Yu, Ki Jun ;
Rhee, Sang Il ;
Chung, Jeahoon ;
Kim, Byunggik ;
Kwak, Jean Won ;
Yun, Myoung Hee ;
Kim, Jin Young ;
Song, Young Min ;
Paik, Ungyu ;
Zhang, Yihui ;
Huang, Yonggang ;
Rogers, John A. .
NATURE COMMUNICATIONS, 2015, 6
[8]   In Situ Measurements of Strains in Composite Battery Electrodes during Electrochemical Cycling [J].
Jones, E. M. C. ;
Silberstein, M. N. ;
White, S. R. ;
Sottos, N. R. .
EXPERIMENTAL MECHANICS, 2014, 54 (06) :971-985
[9]  
Jones E.M. C., Improved Digital Image Correlation (DIC)
[10]   Nematic main-chain elastomers: Coupling and orientational behavior [J].
Krause, Simon ;
Zander, Frank ;
Bergmann, Gerd ;
Brandt, Holger ;
Wertmer, Hendrik ;
Finkelmann, Heino .
COMPTES RENDUS CHIMIE, 2009, 12 (1-2) :85-104