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Tetris-Style Stacking Process to Tailor the Orientation of Carbon Fiber Scaffolds for Efficient Heat Dissipation
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作者 shida han Yuan Ji +4 位作者 Qi Zhang Hong Wu Shaoyun Guo Jianhui Qiu Fengshun Zhang 《Nano-Micro Letters》 SCIE EI CAS CSCD 2023年第9期310-324,共15页
As the miniaturization of electronic devices and complication of electronic packaging,there are growing demands for thermal interfacial materials with enhanced thermal conductivity and the capability to direct the hea... As the miniaturization of electronic devices and complication of electronic packaging,there are growing demands for thermal interfacial materials with enhanced thermal conductivity and the capability to direct the heat toward heat sink for highly efficient heat dissipation.Pitch-based carbon fiber(CF)with ultrahigh axial thermal conductivity and aspect ratios exhibits great potential for developing thermally conductive composites as TIMs.However,it is still hard to fabricate composites with aligned carbon fiber in a general approach to fully utilize its excellent axial thermal conductivity in specific direction.Here,three types of CF scaffolds with different oriented structure were developed via magnetic field-assisted Tetris-style stacking and carbonization process.By regulating the magnetic field direction and initial stacking density,the self-supporting CF scaffolds with horizontally aligned(HCS),diagonally aligned and vertically aligned(VCS)fibers were constructed.After embedding the polydimethylsiloxane(PDMS),the three composites exhibited unique heat transfer properties,and the HCS/PDMS and VCS/PDMS composites presented a high thermal conductivity of 42.18 and 45.01 W m^(−1)K^(−1)in fiber alignment direction,respectively,which were about 209 and 224 times higher than that of PDMS.The excellent thermal conductivity is mainly ascribed that the oriented CF scaffolds construct effective phonon transport pathway in the matrix.In addition,fishbone-shaped CF scaffold was also produced by multiple stacking and carbonization process,and the prepared composites exhibited a controlled heat transfer path,which can allow more versatility in the design of thermal management system. 展开更多
关键词 Carbon fiber Magnetic field Thermal management Thermally conductive composites
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交替发泡多层结构对三元乙丙橡胶基耐烧蚀绝热层性能的影响
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作者 陈志恒 韩世达 +4 位作者 戢元 吴宏 郭少云 闫宁 李宏岩 《高分子材料科学与工程》 EI CAS CSCD 北大核心 2022年第7期31-37,共7页
为了进一步改善三元乙丙橡胶(EPDM)基耐烧蚀绝热层的隔热性能,在EPDM绝热层材料的背部引入相同厚度的未发泡层、发泡层及交替发泡多层等3种基体层结构,对比分析了不同基体层结构对EPDM绝热层材料隔热性能的影响。实验结果表明,相较于传... 为了进一步改善三元乙丙橡胶(EPDM)基耐烧蚀绝热层的隔热性能,在EPDM绝热层材料的背部引入相同厚度的未发泡层、发泡层及交替发泡多层等3种基体层结构,对比分析了不同基体层结构对EPDM绝热层材料隔热性能的影响。实验结果表明,相较于传统EPDM绝热层材料,基体层结构的引入均能使绝热层材料的导热率有不同程度的下降,其中交替发泡多层结构样品的导热率下降幅度较大,且烧蚀过程中的最大背面温度明显降低,交替发泡8层和16层样品分别降低了14.7℃和23℃。与发泡层结构相比,交替发泡多层结构中引入未发泡层作为支撑层保护发泡层,使其在烧蚀过程承受高压冲击时,泡孔结构不会被挤压变形,从而充分发挥其隔热优势。 展开更多
关键词 三元乙丙橡胶 耐烧蚀性能 交替发泡多层结构 隔热性能
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