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Experimental Study of the Mechanical Properties of a Novel Supramolecular Polymer Filament Using a Microtensile Tester Based on Electronic Balance

机译:基于电子秤的新型超分子聚合物长丝力学性能的实验研究

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摘要

A novel kind of supramolecular polymer filament with a diameter of 2-5 mu m was artificially synthesized, which is in fact a bundle of self-assembled nanotubes with a diameter of about 40 nm. The filament can be drawn from a special alkaline aqueous solution directly and free standing in room temperature, which has never been performed earlier. A microtensile tester was developed with the aid of an electronic balance to investigate the mechanical properties of the new filament. Monotonic and load-unload tensile tests were performed, respectively. The maximum tensile strength and the elastic modulus of the filament were 23.8 MPa and 1.9 GPa, respectively, which were higher than previous supramolecular polymers and comparable to some covalent-linked polymers.
机译:人工合成了一种新型的直径为2-5微米的超分子聚合物长丝,实际上是一束直径约40 nm的自组装纳米管。可以从特殊的碱性水溶液中直接拉出长丝,并在室温下自由放置,这是从未有过的。借助于电子天平,开发了一种微张力测试仪,以研究新长丝的机械性能。分别进行了单调和无负荷拉伸试验。长丝的最大抗张强度和弹性模量分别为23.8 MPa和1.9 GPa,这高于以前的超分子聚合物,与某些共价连接的聚合物相当。

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