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首页> 外文期刊>Journal of Applied Polymer Science >Molecular Order in Spider Major Ampullate Silk (Dragline): Effects of Spinning Rate and Post-Spin Drawing
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Molecular Order in Spider Major Ampullate Silk (Dragline): Effects of Spinning Rate and Post-Spin Drawing

机译:蜘蛛主要无性丝(Dragline)中的分子顺序:纺丝速度和纺丝后拉伸的影响。

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摘要

Optical birefringence measurements are used to characterize how the molecular order of sipider (Nephila clavipes) major ampullate silk is affected by linear spinning rate, by the extent of post-spin drawing, and by post-spin drawing rate. Results are interpreted qualitatively in terms of a simple microstructural model, in which birefringence depends on both the overall degree of molecular orientation and the extent to which crystalline regions are present. In contrast tot he behavior of conventional, synthetic polymers, birefringence is found to be an unreliable predictor of tensile stiffness: microstructural changes that lead to increased birefringence may leave stiffness unchanged or, in some cases, lower than before. It is unlikely that economic processing of silk-like polymers into fiber that exhibits biomimetic tensile porperties can be achieved with spinning followed by drawing, or with a single spinning, step. Instead, spinning followed by thermochemical treatment under load may be needed to obtain the critical combination of molecular orientation and crystallinity in commercially satisfactory tiemk scales.
机译:光学双折射测量用于表征纺(Nephila clavipes)主要壶腹丝的分子顺序如何受线性纺丝速度,纺丝后拉伸程度和纺丝后拉伸速率的影响。通过简单的微观结构模型对结果进行定性解释,其中双折射取决于分子取向的整体程度和存在结晶区域的程度。与传统的合成聚合物的行为相反,双折射被认为是抗拉刚度的可靠指标:导致双折射增加的微观结构变化可能会使刚度保持不变,或者在某些情况下,比以前更低。将丝状聚合物经济地加工成具有仿生拉伸特性的纤维的方法不太可能通过纺丝,随后拉伸或单步纺丝来实现。取而代之的是,可能需要旋转纺丝,然后在负载下进行热化学处理,以获得商业上满意的锡姆克级的分子取向和结晶度的关键组合。

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