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Microwave Absorbing Property of the Nanoparticle Concrete

机译:纳米粒子混凝土的微波吸收性能

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Nano concrete samples with different sizes were prepared by incorporating particles of Nano ferric oxide, Nano silicon dioxide and Nano alumina with good dispersion. The compressive strength, flexural strength and radar reflected wave were tested. Mechanism of Nano concrete enhancement and mechanism of Nano concrete wave elimination were discussed. Result showed that Nano particles of iron oxide and alumina on the compressive strength of concrete had a different degree of resistance increase. The compressive strength of Nano alumina (NA) concrete was the highest, which was increased by 44.4% compared with that of ordinary concrete (PC). The flexural strength of Nano iron oxide (NF) concrete was the highest, which was 44.4% higher than that of ordinary concrete. As for the radar wave reflectivity, different Nano materials on the radar wave reflection effect were different. The full reflectivity of NSF compounded two kinds of Nano particles was lower than -8dB. With the increase of the content of Nano iron oxide particles, the reflectivity of radar wave decreases gradually. The minimum reflectivity of -16.7dB was achieved at 2.5GHz.
机译:通过掺入具有良好分散的纳米氧化氧化物,纳米二氧化碳和纳米氧化铝的颗粒制备具有不同尺寸的纳米混凝土样品。测试压缩强度,弯曲强度和雷达反射波。讨论了纳米混凝土增强机理及纳米混凝土波消除机理。结果表明,氧化铁和氧化铝的纳米颗粒对混凝土的抗压强度具有不同程度的抵抗力。纳米氧化铝(NA)混凝土的抗压强度是最高的,与普通混凝土(PC)相比,该抗压强度最高,而普通的混凝土(PC)增加了44.4%。纳米氧化铁(NF)混凝土的弯曲强度最高,比普通混凝土高44.4%。至于雷达波反射率,雷达波反射效果上的不同纳米材料不同。 NSF的完全反射率复合了两种纳米颗粒低于-8DB。随着纳米氧化铁颗粒含量的增加,雷达波的反射率逐渐降低。 -16.7dB的最小反射率为2.5GHz。

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