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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >Elasticity and energy dissipation in the double network hydrogel adhesive of the slug Arion subfuscus
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Elasticity and energy dissipation in the double network hydrogel adhesive of the slug Arion subfuscus

机译:SLUIS Subfuscus双网络水凝胶粘合剂中的弹性和能量耗散

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摘要

The slug Anion subfuscus produces a mucus-based defensive secretion that is remarkably tough. This glue appears to be a double network hydrogel, gaining its toughness through the synergistic actions of two networks of polymers, a relatively stiff network and a relatively deformable network. The double network mechanism has great potential to guide the development of synthetic adhesives. Mechanical tests were performed to analyse key predictions of the mechanism. Stress relaxation tests and tensile tests support the presence of stable cross-links. Cyclic stress-strain tests demonstrate that the glue dissipates a great deal of energy through the failure of these cross-links as sacrificial bonds. Energy dissipation by failure of sacrificial bonds rather than viscous processes is supported by the minimal effect of the time course of the experiments on the measured properties. These sacrificial bonds appear able to reform within minutes after failure. Finally, the glue's stiffness decreases at pH values below 5.5, whereas magnesium and calcium rapidly dissociate from the glue at all pH values tested. Thus, these ions may not be the primary cross-linkers generating the glues stiffness.
机译:SLUIN Anion Subfuscus产生了一种基于粘液的防御性分泌,非常强硬。该胶水似乎是双网络水凝胶,通过两个聚合物网络的协同动作,相对僵硬的网络和相对可变形的网络的协同作用来获得其韧性。双网络机制具有巨大的潜力,引导合成粘合剂的发展。进行机械测试以分析机制的关键预测。应力松弛测试和拉伸试验支持稳定的交联的存在。循环应力 - 应变试验表明,胶水通过这些交叉作为牺牲键的失败来消散大量的能量。通过牺牲键失败而不是粘性过程的能量耗散得到了实验时间过程对测量性能的最小效果。这些牺牲债券出现在失败后几分钟内能够改革。最后,胶水的刚度在5.5以下的pH值下降低,而镁和钙在所测试的所有pH值以胶水迅速解离胶水。因此,这些离子可能不是产生胶水刚度的主要交联剂。

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