论文标题
加载核心壳系统的弹性变形
Elastic deformations of loaded core-shell systems
论文作者
论文摘要
可以将宏观弹性芯壳系统作为玩具模型生成,该模型要通过手动变形和触觉研究。在中尺度上,通过不同类型的显微镜制造并研究了胶体核壳颗粒和微凝胶。我们使用线性弹性理论分析了球形核壳系统在线密度的影响下的响应,该线密度在径向上定向并沿外表面的赤道起作用。有趣的是,壳与芯的变形耦合可以确定响应力的总体外观。我们解决了核心和外壳的半径,刚度和泊松比的各种组合,并说明了所得的变形。从宏观上讲,可以通过将绳索包裹在宏观模型系统的赤道上并将其拉紧来实现情况。在中尺度上,胶体微凝胶颗粒对称地局限于两个不混溶的流体之间的界面,通过表面张力向外拉出。
Macroscopic elastic core-shell systems can be generated as toy models to be deformed and haptically studied by hand. On the mesoscale, colloidal core-shell particles and microgels are fabricated and investigated by different types of microscopy. We analyse, using linear elasticity theory, the response of spherical core-shell systems under the influence of a line density of force that is oriented radially and acts along the equator of the outer surface. Interestingly, deformational coupling of the shell to the core can determine the resulting overall appearance in response to the forces. We address various combinations of radii, stiffness, and Poisson ratio of core and shell and illustrate the resulting deformations. Macroscopically, the situation could be realized by wrapping a cord around the equator of a macroscopic model system and pulling it tight. On the mesoscale, colloidal microgel particles symmetrically confined to the interface between two immiscible fluids are pulled radially outward by surface tension.