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Uncoupling shear and uniaxial elastic moduli of semiflexible biopolymer networks: compression-softening and stretch-stiffening

机译:半挠性生物聚合物网络的解耦剪切和单轴弹性模量:压缩软化和拉伸加硬

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摘要

Gels formed by semiflexible filaments such as most biopolymers exhibit non-linear behavior in their response to shear deformation, e.g., with a pronounced strain stiffening and negative normal stress. These negative normal stresses suggest that networks would collapse axially when subject to shear stress. This coupling of axial and shear deformations can have particularly important consequences for extracellular matrices and collagenous tissues. Although measurements of uniaxial moduli have been made on biopolymer gels, these have not directly been related to the shear response. Here, we report measurements and simulations of axial and shear stresses exerted by a range of hydrogels subjected to simultaneous uniaxial and shear strains. These studies show that, in contrast to volume-conserving linearly elastic hydrogels, the Young s moduli of networks formed by the biopolymers are not proportional to their shear moduli and both shear and uniaxial moduli are strongly affected by even modest degrees of uniaxial strain.
机译:由半挠性长丝(例如大多数生物聚合物)形成的凝胶在其对剪切变形的响应中表现出非线性行为,例如,具有明显的应变硬化和负法向应力。这些负法向应力表明,当受到剪应力作用时,网络将轴向塌陷。轴向和剪切变形的这种耦合对于细胞外基质和胶原组织可能具有特别重要的后果。尽管已经在生物聚合物凝胶上进行了单轴模量的测量,但这些与剪切响应没有直接关系。在这里,我们报告了一系列同时承受单轴和剪切应变的水凝胶施加的轴向和剪切应力的测量和模拟。这些研究表明,与体积守恒的线性弹性水凝胶相反,由生物聚合物形成的网络的杨氏s模量与它们的剪切模量不成比例,即使是适度的单轴应变,剪切力和单轴模量也都受到很大影响。

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