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Mechanical properties and shape memory effect of short fiber reinforced SMP composite

机译:短纤维增强SMP复合材料的力学性能和形状记忆效应

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By adding randomly distributed short fiber into a shape memory polymer (SMP) matrix, both the mechanical properties and the shape memory behavior are improved significantly, overcoming some traditional defects of SMP composite reinforced by long fiber and particles. In this paper, the short fiber reinforced SMP composite are developed for the improvement of the mechanical and thermal properties of styrene-based SMP bulk. The specimens with different chopped fiber weight fractions are prepared, and then their mechanical behavior and electrical properties are investigated. As a result, the resistance against mechanical and thermal mechanical loads in the developed materials increases due to the role of reinforcement fiber. For the conducting composite filled with short carbon fiber, not only the actuation of SMP composite can be driven by low voltage, but also its tensile, bending strength, glass transition temperature, storage modulus and thermal conductivity increase by a factor of filler content of carbon fiber increasing. The results show meaningful guidance for further design and the performance evaluation of such composite materials.
机译:通过将随机分布的短纤维添加到形状记忆聚合物(SMP)基质中,可以显着改善机械性能和形状记忆行为,克服了长纤维和颗粒增强的SMP复合材料的一些传统缺陷。在本文中,开发了短纤维增强SMP复合材料以改善苯乙烯基SMP块体的机械和热性能。制备具有不同短纤维重量分数的样品,然后研究其机械性能和电性能。结果,由于增强纤维的作用,在开发的材料中对机械和热机械负荷的抵抗力增加了。对于填充有短碳纤维的导电复合材料,不仅可以通过低电压来驱动SMP复合材料,而且其拉伸强度,弯曲强度,玻璃化转变温度,储能模量和热导率也会因碳中碳的含量增加而增加纤维增加。研究结果为此类复合材料的进一步设计和性能评估提供了有意义的指导。

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