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The difference in tensile behaviour of different silks of the spider A. diadematus

机译:蜘蛛A不同丝网的拉伸行为差异。diadematus

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During recent years, spider silk has attracted the interest of a lot of scientists because spider silk, and in particular the "dragline" thread, is a fibre with a unique combination of high tensile strength, high strain and an ultra-low weight. In order to help explain the structure-property relationship of spider silk, the tensile behaviour of both dragline and cocoon silk of A. diadematus is compared. Although their breaking strain is almost the same, the stress-strain behaviour of both spider silks is completely different. Moreover, the influence of the testing speed is discussed. In the case of cocoon spider silk, the testing speed has a statistically significant influence on the measured tensile properties, especially on tenacity, and on initial and post-moduli. For draglines, no statistically significant influence of speed on the measured properties could be found, probably because of the high variability between and within samples. It is also observed that the filaments constituting the dragline can show different tensile behaviour. Further research on the microstructure of both spider silks should help revealing the secrets of nature and could open new ways for the production of environmentally friendly biopolymers.
机译:近年来,蜘蛛丝吸引了许多科学家的兴趣,因为蜘蛛丝,特别是“拖龙”螺纹,是一种具有独特组合的高拉伸强度,高菌株和超低重量的纤维。为了帮助解释蜘蛛丝的结构 - 财产关系,比较了龙骨和茧丝的拉伸行为。比较了Diadematus。虽然它们的断裂应变几乎相同,但蜘蛛丝网的应力 - 应变行为完全不同。此外,讨论了测试速度的影响。在茧蜘蛛丝的情况下,测试速度对测量的拉伸性能具有统计学意义的影响,特别是在韧度上以及初始和后形成的韧性。对于龙头,可以找到在测量属性上没有统计学上显着的影响,可能是因为样品之间的高度变化。还观察到构成龙线的长丝可以显示出不同的拉伸行为。进一步研究蜘蛛丝网的微观结构应该有助于揭示自然的秘诀,可以开辟生产环保生物聚合物的新方法。

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