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An electrical-heating and self-sensing shape memory polymer composite incorporated with carbon fiber felt

机译:结合碳纤维毡的电加热和自感应形状记忆聚合物复合材料

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Shape memory polymers (SMPs) have the ability to adjust their stiffness, lock a temporary shape, and recover the permanent shape upon imposing an appropriate stimulus. They have found their way into the field of morphing structures. The electrically Joule resistive heating of the conductive composite can be a desirable stimulus to activate the shape memory effect of SMPs without external heating equipment. Electro-induced SMP composites incorporated with carbon fiber felt (CFF) were explored in this work. The CFF is an excellent conductive filler which can easily spread throughout the composite. It has a huge advantage in terms of low cost, simple manufacturing process, and uniform and tunable temperature distribution while heating. A continuous and compact conductive network made of carbon fibers and the overlap joints among them was observed from the microscopy images, and this network contributes to the high conductive properties of the CFF/SMP composites. The CFF/SMP composites can be electrical-heated rapidly and uniformly, and its' shape recovery effect can be actuated by the electrical resistance Joule heating of the CFF without an external heater. The CFF/SMP composite get higher modulus and higher strength than the pure SMP without losing any strain recovery property. The high dependence of temperature and strain on the electrical resistance also make the composite a good self-sensing material. In general, the CFF/SMP composite shows great prospects as a potential material for the future morphing structures.
机译:形状记忆聚合物(SMP)具有在施加适当刺激后能够调节其刚度,锁定临时形状并恢复永久形状的能力。他们已经找到了进入变形结构领域的方法。导电复合材料的电焦耳电阻加热可能是一种理想的刺激,无需外部加热设备即可激活SMP的形状记忆效应。在这项工作中探索了碳纤维毡(CFF)引入的电诱导SMP复合材料。 CFF是一种极好的导电填料,可以轻松地散布到整个复合材料中。它具有成本低,制造工艺简单以及加热时温度分布均匀且可调的巨大优势。从显微镜图像观察到由碳纤维制成的连续且紧密的导电网络以及它们之间的搭接接头,该网络有助于CFF / SMP复合材料的高导电性能。 CFF / SMP复合材料可以快速,均匀地进行电加热,并且无需外部加热器即可通过CFF的电阻焦耳加热来启动其形状恢复效果。 CFF / SMP复合材料比纯SMP具有更高的模量和强度,而不会失去任何应变恢复性能。温度和应变对电阻的高度依赖性也使复合材料成为良好的自感应材料。总的来说,CFF / SMP复合材料具有广阔的前景,可作为未来变形结构的潜在材料。

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