论文标题
柔韧性/屈光电触点中的浅色形状和梯度弹性
Asperity Shape and Gradient Elasticity in Flexoelectric/Triboelectric Contacts
论文作者
论文摘要
负责摩擦电性的基本机制尚未完全理解。我们先前提出了一个模型,该模型通过机电(尤其是柔韧性)的变形效应以及工作函数差异而通过机电(尤其是柔韧性)效应来解释非金属中的电荷转移。在这里,我们调查了绿色的形状是否对摩擦电性很重要。结果表明,形状通常很重要,因为机电响应如何用力和十足的大小尺寸取决于形状。这与实验结果一致。此外,我们讨论了形状的影响如何取决于材料,几何和电子传输细节。另外,将梯度弹性纳入模型。由于阳离子的接触是纳米级现象,因此大小依赖的力学可以变得很重要,并带来更合理的结果。在某些情况下,梯度弹性术语对机电电位的影响非常大,这表明标准弹性理论不足以涵盖对摩擦电性建模的一些相关案例。
The underlying mechanisms responsible for triboelectricity have yet to be completely understood. We have previously proposed a model which explains charge transfer in non-metals via band bending due to electromechanical, especially flexoelectric, effects at deformed asperities coupled with work function differences. Here, we investigate whether the shape of asperities is important for triboelectricity. The results indicate that the shape is important in general, since how the electromechanical response scales with force and asperity size depends on the shape. This is qualitatively in agreement with experimental results. Further, we discuss how the impact of the shape depends on material, geometric, and electronic transport details. Additionally, gradient elasticity is incorporated into the model. As asperity contact is a nanoscale phenomenon, size-dependent mechanics can become significant and give more physically reasonable results. In some cases, the impact of gradient elasticity terms on the electromechanical potentials is very large, indicating that standard elasticity theory is not enough to cover some relevant cases in modelling triboelectricity.