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Characterization of the adhesive properties between structural battery electrolytes and carbon fibers

机译:结构电池电解质和碳纤维之间的粘合性能的表征

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摘要

Structural batteries can simultaneously store electrical energy and carry mechanical load, being similar to both laminated carbon fiber composites and lithium ion batteries. The matrix in a structural battery must both conduct ions and transfer load between the fibers, made possible with a phase-separated combination of a solid polymer and a liquid electrolyte. This leads to a trade-off between the polymer contact creating adhesion and liquid contact creating ionic conductivity. Here we investigate the fiber-matrix adhesion between carbon fibres with different sizing and two different matrix systems, using microbond testing supported by transverse tensile tests. The results show that the mechanical adhesion of the fiber-matrix interface is lower than that of a commercial non-ion conducting polymer matrix but sufficient for structural battery applications.
机译:结构电池可以同时存储电能并携带机械负荷,类似于层叠碳纤维复合材料和锂离子电池。结构电池中的基质必须在纤维之间进行离子和转移载荷,用固体聚合物和液体电解质的相分离的组合使得可以。这导致聚合物接触之间的折衷产生粘附和液体接触产生离子电导率。在这里,我们研究了使用横向拉伸试验支持的微杆测试的不同尺寸和两种不同基质系统之间的碳纤维之间的纤维 - 基质粘附。结果表明,光纤矩阵界面的机械粘合低于商用非离子传导聚合物基质的机械粘附,但足以用于结构电池应用。

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