论文标题
通过初始残留应力在生长管状软物质中开出图案
Prescribing patterns in growing tubular soft matter by initial residual stress
论文作者
论文摘要
初始残留应力在生物组织和软物质中无所不在,并且可以显着影响生长诱导的模式选择。在这里,我们通过在存在或不存在初始残留应力并观察不同生长模式的演化的情况下使软管生长,从而在实验中证明了这种效果。这些实验激发了我们在生长的双层管风琴自发地在其内表面上显示屈曲模式时,使我们对起作用的机制进行建模。我们证明,不仅差异生长,几何学和弹性,而且对初始残留应力分布都对这些模式现象产生了显着影响。开处方初始残留应力分布提供了一种替代或更有效的方式,可以为生物生物生物生物或软物质实施模式选择。结果还显示了4D生物模拟打印协议或控制水凝胶执行器的设计的希望。
Initial residual stress is omnipresent in biological tissues and soft matter, and can affect growth-induced pattern selection significantly. Here we demonstrate this effect experimentally by letting soft tubes grow in the presence or absence of initial residual stress and by observing different growth pattern evolutions. These experiments motivate us to model the mechanisms at play when a growing bilayer tubular organ spontaneously displays buckling patterns on its inner surface. We demonstrate that not only differential growth, geometry and elasticity, but also initial residual stress distribution, exert a notable influence on these pattern phenomena. Prescribing an initial residual stress distribution offers an alternative or a more effective way to implement pattern selection for growable bio-tissues or soft matter. The results also show promise for the design of 4D bio-mimic printing protocols or for controlling hydrogel actuators.