Performance of bicontinuous structural electrolytes

Performance of bicontinuous structural electrolytes
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双连续结构电解质的性能

DOI:
10.1088/2399-7532/ab8d9b
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发表时间:
2020-04
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通讯作者:
V. Tu;L. Asp;N. Shirshova;F. Larsson;K. Runesson;R. Jänicke
V. Tu;L. Asp;N. Shirshova;F. Larsson;K. Runesson;R. Jänicke
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文献类型:
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作者:
V. Tu;L. Asp;N. Shirshova;F. Larsson;K. Runesson;R. Jänicke

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结构动力复合材料是一种同时具有承载和储能功能的多功能材料。这是因为碳纤维不仅可以作为结构增强材料,还可以作为电极组件。结构动力复合材料的一个重要组成部分是结构电解液,它要求同时具有高刚性和高离子导电性。为了探索具有最佳双功能性能的微结构性能,提出了一种用于计算机模拟的生成各种类型的具有广泛性能的合成微结构的过程。通过虚拟材料测试获得了所生成的人工结构电解质的有效性质,并与实验数据进行了比较。最终确定了一种具有很好的双功能性质的微结构类别。
Structural power composites are multifunctional materials with simultaneous load bearing and energy storing functionality. This is made possible due to carbon fibers’ ability to act not only as structural reinforcement materials, but also as electrode components. A crucial component of structural power composites is the structural electrolyte that is required to have both high stiffness and high ionic conductivity. To explore microstructure properties that bear optimal bifunctional performance a procedure is presented to generate various classes of synthetic microstructures with a wide span of properties for computer simulation. The effective properties of the generated artificial structural electrolytes are obtained via virtual material testing and compared with experimentally obtained data. Ultimately, a microstructure class with very good bifunctional properties is identified.