Effect of Block Immiscibility on Strain-Induced Microphase Segregation and Crystallization of Model Block Copolymer Elastomers

被引:3
|
作者
Nowak, Christian [1 ]
Escobedo, Fernando A. [1 ]
机构
[1] Cornell Univ, Sch Chem & Biomol Engn, Ithaca, NY 14853 USA
基金
美国国家科学基金会;
关键词
LIQUID-CRYSTAL ELASTOMERS; MOLECULAR-DYNAMICS SIMULATION; NEMATIC ELASTOMERS; SEMIFLEXIBLE POLYMERS; DEFORMATION; FIBRONECTIN; BIOPOLYMER; NETWORKS; SITES; GELS;
D O I
10.1021/acs.macromol.8b00965
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Main-chain liquid crystalline elastomers (LCE) of ABA block copolymer chains are simulated using a polymer bead-spring model to understand how their sawtooth tensile behavior is affected by changes in the degree of immiscibility between the A and B block as parametrized by chi N, playing a role akin to reciprocal temperature. It is found that the toughness, namely, the energy absorbed under uniaxial extension, increases with chi N, but its behavior depends upon a threshold value of chi N that marks the emergence of crystalline domains. Below the threshold, the toughness increases slowly with chi N and has an irregular dependence on composition, while above it the toughness increases more rapidly with chi N and depends on the volume fraction of the minority block. These trends differ from those found in a previous analysis of LCEs [Nowak, C.; Escobedo, F. A. Tuning the Sawtooth Tensile Response and Toughness of Multiblock Copolymer Diamond Networks. Macromolecules 2016, 49 (17), 6711-6721] where the toughness was found to increase linearly with chi N and always be the largest for the equimolar block composition. The uniaxial deformation behavior of un-cross-linked block copolymer chains is also studied to show that block immiscibility is insufficient to engender a sawtooth tensile response and that it can only emerge with the further confluence of appropriate network topology and chain semiflexibility.
引用
收藏
页码:5685 / 5693
页数:9
相关论文
共 50 条
  • [41] Strain-induced crystallization in natural rubber: A model for the microstructural evolution
    Laghmach, R.
    Biben, T.
    Laghmach, R.
    Chazeau, L.
    Chenal, J. M.
    Munch, E.
    Gauthier, C.
    CONSTITUTIVE MODELS FOR RUBBER VIII, 2013, : 473 - 477
  • [42] THE USE OF MODEL POLYISOBUTYLENE NETWORKS TO STUDY STRAIN-INDUCED CRYSTALLIZATION
    JIANG, CY
    MARK, JE
    CHANG, VSC
    KENNEDY, JP
    POLYMER BULLETIN, 1984, 11 (04) : 319 - 324
  • [43] An affine full network model for strain-induced crystallization in rubbers
    Nateghi, A.
    Keip, M. A.
    Miehe, C.
    CONSTITUTIVE MODELS FOR RUBBER X, 2017, : 121 - 127
  • [44] STRAIN-INDUCED CRYSTALLIZATION OF NATURAL RUBBER: EFFECT OF PROTEINS AND PHOSPHOLIPIDS
    Amnuaypornsri, Sureerut
    Sakdapipanich, Jitladda
    Toki, Shigeyuki
    Hsiao, Benjamin S.
    Ichikawa, Naoya
    Tanaka, Yasuyuki
    RUBBER CHEMISTRY AND TECHNOLOGY, 2008, 81 (05): : 753 - 766
  • [45] The Effect of Epoxidation on Strain-Induced Crystallization of Epoxidized Natural Rubber
    Zhang, Xi
    Niu, Kaijing
    Song, Weixiao
    Yan, Shouke
    Zhao, Xiuying
    Lu, Yonglai
    Zhang, Liqun
    MACROMOLECULAR RAPID COMMUNICATIONS, 2019, 40 (14)
  • [46] Block-copolymer micro-emulsion with solvent-induced segregation
    Arleth, Lise
    Svensson, Birgitta
    Mortensen, Kell
    Pedersen, Jan Skov
    Olsson, Ulf
    LANGMUIR, 2007, 23 (04) : 2117 - 2125
  • [47] The effect of isophthalic acid modification of the strain-induced crystallization of PET
    Sakellarides, SL
    ANTEC'97 - PLASTICS SAVING PLANET EARTH, CONFERENCE PROCEEDINGS, VOLS 1 - 3, 1997, : 822 - 826
  • [48] Strain and stress concentrations in elastomers at finite deformations: effects of strain-induced crystallization, filler reinforcement, and deformation rate
    H. Khajehsaeid
    S. Reese
    J. Arghavani
    R. Naghdabadi
    Acta Mechanica, 2016, 227 : 1969 - 1982
  • [49] Strain and stress concentrations in elastomers at finite deformations: effects of strain-induced crystallization, filler reinforcement, and deformation rate
    Khajehsaeid, H.
    Reese, S.
    Arghavani, J.
    Naghdabadi, R.
    ACTA MECHANICA, 2016, 227 (07) : 1969 - 1982
  • [50] Microphase Separation of Linear-Comb Block Copolymer Electrolyte: Electrostatic Effect and Conformational Asymmetry
    Shen, Lei
    Liu, Rui
    Zhou, Yue
    Song, Tiantian
    Guan, Yu
    Wu, Xiaoxue
    Wei, Zizhen
    Chen, Xiaotong
    Zhang, Wangqing
    Shi, Weichao
    MACROMOLECULES, 2024, 57 (11) : 5230 - 5242