School of Physics and Astronomy, University of Leeds, Leeds, LS2 9JT, UK.
Soft Matter. 2018 Feb 21;14(8):1301-1310. doi: 10.1039/c7sm02107k.
The mechanical properties of an all-acrylate liquid crystal elastomer (LCE) with a glass transition of 14 ± 1 °C are reported. The highly nonlinear load curve has a characteristic shape associated with semi-soft elasticity (SSE). Conversely, measurements of the director orientation throughout tensile loading instead indicate a "mechanical-Fréedericksz" transition (MFT). Values of the step length anisotropy, r, are independently calculated from the theories of SSE (r = 3.2 ± 0.4), MFT (9.3 < r < 30.0) and thermally-induced length change (r = 3.8 ± 0.5). From simultaneously recorded polarising microscopy textures, the consequences of the above discrepancies are considered. Further, a mechanically-induced negative order parameter is observed. Results show the tensile load curve shape cannot solely be used to determine the underlying physics. Consequently, the LCE properties cannot be fully described by theories of SSE or MFTs alone. This suggests that the theory of LCEs is not yet complete. The conclusions suggest that both the LC order parameter and r must be functions of the mechanical deformation.
报告了玻璃化转变温度为 14 ± 1°C 的全丙烯酸酯液晶弹性体 (LCE) 的力学性能。高度非线性的负载曲线具有与半软弹性 (SSE) 相关的特征形状。相反,在拉伸加载过程中测量的指向矢取向表明存在“力学-弗雷德里克斯过渡”(MFT)。从 SSE 的理论(r = 3.2 ± 0.4)、MFT(9.3 < r < 30.0)和热诱导长度变化(r = 3.8 ± 0.5)的理论独立计算出步长各向异性 r 的值。从同时记录的偏光显微镜纹理中,考虑了上述差异的后果。此外,观察到机械诱导的负序参数。结果表明,拉伸负载曲线的形状不能单独用于确定潜在的物理性质。因此,LCE 的性能不能仅用 SSE 或 MFT 理论来完全描述。这表明 LCE 的理论尚不完善。结论表明,LC 序参量和 r 都必须是机械变形的函数。