Quantification of internal strain in bent soft materials by a cholesteric liquid crystal elastomer

Masayuki Kishino, N. Akamatsu, S. Kubo, K. Hisano, O. Tsutsumi, A. Shishido
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Abstract

To develop flexible devices that have mechanical durability, understanding the bending behavior of soft material components is quite important. However, measuring bending strain in soft materials has been limited to their surface due to experimental constraints. In addition to the surface strain analysis, internal strain analysis will further clarify the bending behavior of soft materials. In this study, we quantified internal strain in bending polydimethylsiloxane (PDMS) films, which are a common soft material, through the selective reflection of a cholesteric liquid crystal elastomer (CLCE). The strain analysis with the CLCE revealed that internal strains depend on the position of the bending PDMS films. This internal strain quantification of soft materials leads to the development of flexible devices with high mechanical durability.
用胆甾液晶弹性体定量测定弯曲软材料的内部应变
为了开发具有机械耐久性的柔性器件,了解软材料部件的弯曲行为是非常重要的。然而,由于实验的限制,测量软材料的弯曲应变仅限于其表面。除了表面应变分析外,内部应变分析将进一步阐明软材料的弯曲行为。在这项研究中,我们量化了弯曲聚二甲基硅氧烷(PDMS)薄膜的内部应变,这是一种常见的软材料,通过选择性反射胆甾液晶弹性体(CLCE)。CLCE应变分析表明,内部应变取决于弯曲PDMS薄膜的位置。这种软质材料内部应变的量化导致了具有高机械耐久性的柔性器件的发展。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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