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Anisotropic microstructure and properties of GNSs/MgO microwave-attenuating composite ceramics

机译:GNSS / MGO微波衰减复合陶瓷的各向异性微观结构和性能

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Graphene nanosheets (GNSs)/MgO microwave attenuating composite ceramics with 0-15 vol% GNSs as an attenuating agent were prepared by hot-pressing, and the anisotropy of the microstructure, mechanical, thermal, conductive, dielectric, and microwave absorption properties was investigated. Although strengthening and toughening were obtained in both two directions, the strength and toughness for the 2 vol% sample were 34.6 MPa and 0.6 MPa m(1/2) higher in the in-plane direction than the through-thickness direction, respectively. With an increase in the GNSs content from 0 to 15 vol%, the room-temperature thermal conductivity decreased significantly from 55.8 W m(-1) K-1 to 20.6 W m(-1) K-1 in the through-thickness direction, while it decreased slightly and then remained at 51 W m(-1) K-1 after 5 vol% in the in-plane direction. The in-plane direction also exhibited a slightly higher conductivity, as well as lower percolation threshold and critical exponent (2.71 vol% and 1.30 vs. 3.34 vol% and 1.51). Despite the substantially higher complex permittivity and dielectric loss in the X-band, the 2 vol % sample exhibited poorer microwave absorption properties (the minimum reflection loss was -10.5 dB at 8.3 GHz) in the in-plane direction than the through-thickness direction.
机译:通过热压制备石墨烯纳米片(GNSS)/ MgO微波衰减用0-15Vol%GNSS作为衰减剂的复合陶瓷,研究了微观结构,机械,热,导电,电介质和微波吸收性能的各向异性。虽然在两个方向上获得强化和增韧,但分别在面内方向上的34.6MPa和0.6MPa m(1/2)的强度和韧性分别比通过厚度方向更高。随着0至15体积%的GNSS含量的增加,室温导热率在贯穿厚度方向上显着降低55.8WM(-1)k-1至20.6W m(-1)k-1 ,虽然它略微降低,然后在面内方向上5体积%后保持在51W m(-1)k-1。面内方向还表现出略高的导电性,以及较低的渗透阈值和临界指数(2.71体积%和1.30 Vs.3.34 Vol%和1.51)。尽管X波段的复杂介电常数和介电损耗具有基本上具有显着较高的介电常数和介电损耗,但在面内方向上,2Vol%样品在面内方向上表现出较差的微波吸收特性(最小反射损耗为-10.5dB),而不是通过厚度方向。

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