论文标题
液晶弹性体中的不连续公制编程
Discontinuous metric programming in liquid crystalline elastomers
论文作者
论文摘要
液晶弹性体(LCE)是变形的材料,响应于施加的刺激而表现出较大的变形。 LCE的方向的局部控制在空间上指导这些材料的变形,以实现自发形状的变化,以响应刺激。先前在LCES中塑造编程的方法利用了模式技术,涉及在空间变化的列马磁场上详细铭文以生产床单。这些图案纸将其变形为复杂的高斯曲率的精心生态几何形状。在这里,我们提出了一种替代方法,可以在LCES中实现形状变形,其中交联密度的空间图案局部调节了规定的界面曲线两侧的材料变形幅度。我们还提出了一个简单的数学模型,描述了这些材料的行为。进一步的实验与数学模型相结合,证明了高斯曲率符号的控制,该曲率与热传递效应一起使用,以设计由于温度依赖性致动特性而设计的自我清洁的LCE。
Liquid crystalline elastomers (LCEs) are shape-changing materials that exhibit large deformations in response to applied stimuli. Local control of the orientation of LCEs spatially directs the deformation of these materials to realize spontaneous shape change in response to stimuli. Prior approaches to shape programming in LCEs utilize patterning techniques that involve the detailed inscription of spatially varying nematic fields to produce sheets. These patterned sheets deform into elaborate geometries with complex Gaussian curvatures. Here, we present an alternative approach to realize shape-morphing in LCEs where spatial patterning of the crosslink density locally regulates the material deformation magnitude on either side of a prescribed interface curve. We also present a simple mathematical model describing the behavior of these materials. Further experiments coupled with the mathematical model demonstrate the control of the sign of Gaussian curvature, which is used in combination with heat transfer effects to design LCEs that self-clean as a result of temperature-dependent actuation properties.