石墨烯基吸波材料的研究进展 |
| 倪梦然, 张超智, 高蕾 |
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Research progress of graphene⁃based electromagnetic wave absorbing materials |
| Mengran Ni, Chaozhi Zhang, Lei Gao |
| 图12 (a) NiMR?H气凝胶上水滴的图片;(b) NiMR?H,NiR?H,NiM?H和NiMR?A气凝胶的WCA图像;(c) NiMR?H气凝胶对各种有机液体的吸收能力(插图显示了被苏丹红Ⅲ染色的己烷的吸收过程);(d) EPS、高密度/低密度聚氨酯泡沫和NiMR气凝胶的导热率;(e)用酒精灯加热的NiMR?H气凝胶的红外热像和(f)测试点的温度?时间曲线;(g) NiMR?H气凝胶温度变化的有限元模拟;(h) NiMR?H气凝胶在20%应变下500次循环的循环压缩应力?应变曲线【 |
| Fig.12 (a) Digital photo of water droplets standing on a NiMR?H aerogel; (b) WCA images of NiMR?H,NiR?H,NiM?H,and NiMR?A aerogels; (c) absorption capacities of the NiMR?H aerogel for various organic liquids (inset shows the absorption process for hexane dyed by Sudan red Ⅲ); (d) thermal conductivities of EPS,high?density/low?density PU foams,and NiMR aerogels; (e) infrared thermal image of NiMR?H aerogel heating by an alcohol lamp and (f) corresponding temperature?time curves of the test points; (g) finite element simulation of the temperature change in the NiMR?H aerogel; (h) cyclic compressive stress?strain curves of the NiMR?H aerogel at 20% strain for 500 cycles (after ref.[ |
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