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首页> 外文期刊>Applied Energy >A carbon fiber thermoelectric generator integrated as a lamina within an 8-ply laminate epoxy composite: Efficient thermal energy harvesting by advanced structural materials
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A carbon fiber thermoelectric generator integrated as a lamina within an 8-ply laminate epoxy composite: Efficient thermal energy harvesting by advanced structural materials

机译:碳纤维热电发电机,作为薄板集成在8层层压环氧复合材料中:通过先进的结构材料有效收集热能

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For the first time, the fabrication of a thermoelectric generator (TEG) consisting of carbon fiber (CF) tows and its integration as a lamina within an 8-ply laminate epoxy composite is reported. Commercially available M40B and A-38 CF tows exhibited a Seebeck coefficient (S) of +33.85 mu V/K (p-type) and -11.83 mu V/K (n-type), respectively. Scanning electron microscopy highlighted the CF morphological characteristics and the fiber mean diameters. Electrical conductivity measurements revealed the extremely high values of 1.63 +/- 0.04x10(5) S/m for the CF-M40B and 1.14 +/- 0.03x10(5) S/m for the CF-A38. CF-M40B of 33.4mm length were employed to fabricate a TEG consisting of ten serially interconnected thermocouples. The TEG-enabled CF reinforced polymer (CFRP) composite consisted of unidirectional fabrics at an alternating [0/90](2s) symmetric configuration, with the CF TEG module comprising the bottom lamina. The CFRP TEG laminate exhibited a voltage output of 19.56 +/- 1.31 mV at a temperature difference (Delta T) of 75 degrees C. A reference CFRP was tested in terms of mechanical performance via three point bending and compared to the TEG-enabled one. Finite Elements modeling validated the CFRP thermoelectric performance corroborating the experimental findings. Structural TEG-enabled CFRPs demonstrated for the first time in this work are envisaged to harvest thermal energy losses on a large scale during the operational lifetime of advanced composites.
机译:首次报道了由碳纤维(CF)丝束组成的热电发生器(TEG)的制造及其在8层层压环氧复合材料中作为薄片的集成。市售的M40B和A-38 CF丝束的塞贝克系数(S)分别为+33.85μV / K(p型)和-11.83μV / K(n型)。扫描电子显微镜突出显示了CF的形态特征和纤维平均直径。电导率测量显示,CF-M40B的极高值为1.63 +/- 0.04x10(5)S / m,CF-A38的极高值为1.14 +/- 0.03x10(5)S / m。使用33.4mm长的CF-M40B来制造由十个串联的热电偶组成的TEG。启用TEG的CF增强聚合物(CFRP)复合材料由交替[0/90](2s)对称配置的单向织物组成,其中CF TEG模块包含底部薄片。 CFRP TEG层压板在75摄氏度的温度差(Delta T)下表现出19.56 +/- 1.31 mV的电压输出。通过三点弯曲测试了参比CFRP的机械性能,并与启用TEG的CFRP进行了比较。有限元建模验证了CFRP热电性能,证实了实验结果。构想在这项工作中首次展示的启用TEG的结构CFRP可以在先进复合材料的使用寿命期间大规模收集热能损失。

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