论文标题

物理三叶线结的形状

The shapes of physical trefoil knots

论文作者

Johanns, Paul, Grandgeorge, Paul, Baek, Changyeob, Sano, Tomohiko G., Maddocks, John H., Reis, Pedro M.

论文摘要

我们在封闭和开放构型中进行了比较和对比的调查。理想的结是纯粹的几何抽象,用于与完全柔性的,自我避免的管子绑定的最紧密的构型,具有不可扩展的中心线和不可辨认的横截面。在这里,我们构建了在弹性杆中绑扎的紧身结节的物理实现,并使用X射线断层扫描和3D有限元模拟进行详细表征。具体而言,我们评估了弹性在决定物理结的整体形状,自我接触区域,曲率轮廓和横截面变形方面的作用。我们将弹性结的形状与相应理想配置的先前计算进行比较。我们在紧密的结上的结果与它们的几何形状相似,但我们详细检查了一些引人注目的差异。这些观察结果提出了以下假设:几何模型未捕获的局部弹性变形区域可以作为损害打结丝的强度的弱点的前体。

We perform a compare-and-contrast investigation between the equilibrium shapes of physical and ideal trefoil knots, both in closed and open configurations. Ideal knots are purely geometric abstractions for the tightest configuration tied in a perfectly flexible, self-avoiding tube with an inextensible centerline and undeformable cross-sections. Here, we construct physical realizations of tight trefoil knots tied in an elastomeric rod, and use X-ray tomography and 3D finite element simulation for detailed characterization. Specifically, we evaluate the role of elasticity in dictating the physical knot's overall shape, self-contact regions, curvature profile, and cross-section deformation. We compare the shape of our elastic knots to prior computations of the corresponding ideal configurations. Our results on tight physical knots exhibit many similarities to their purely geometric counterparts, but also some striking dissimilarities that we examine in detail. These observations raise the hypothesis that regions of localized elastic deformation, not captured by the geometric models, could act as precursors for the weak spots that compromise the strength of knotted filaments.

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