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Design of resonant structures in resin matrix to mitigate the blast wave with a very wide frequency range

机译:树脂矩阵中的谐振结构设计,以极宽频率范围减轻隆波

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In this work, resonant structures (RSs) are embedded in the resin matrix to form the micro-scale artificial composite materials to mitigate the blast wave with a very wide frequency range (BWR). The propagation of stress waves in the resin and composite materials is described, and the composite materials exhibit stronger blast wave attenuation characteristic compared with the pure resin material. The attenuation mechanism of the composite materials is explained in detail through the absorption, storage and conversion of impact energy. In addition, the influences of materials of the RSs on the performances of the composite materials are analyzed, and the RS is redesigned to further improve the attenuation effect of the composite material. Equivalent model of the composite material is first proposed and established based on the weakly nonlinear lattice system (WNLS). At the same time, artificial tree algorithm is applied to design its spring stiffness parameters. Based on the WNLS, a three-dimensional composite material plate structure is built to mitigate the overpressure of blast wave at the macro-scale. Compared with traditional materials, the composite material exhibits superior attenuation effect and greater lightweight.
机译:在这项工作中,谐振结构(RSS)嵌入树脂基质中以形成微级人工复合材料,以减轻具有非常宽的频率范围(BWR)的喷频。描述了应力波在树脂和复合材料中的传播,与纯树脂材料相比,复合材料表现出较强的高频波衰减特性。通过吸收,储存和转化,详细解释了复合材料的衰减机理。此外,分析了RSS材料对复合材料性能的影响,重新设计了RS以进一步改善复合材料的衰减效果。首先基于弱非线性晶格系统(WNLS)建立并建立复合材料的等效模型。同时,应用人造树算法以设计其弹簧刚度参数。基于WNLS,建立了一种三维复合材料板结构,以减轻宏观级的爆发波的超压。与传统材料相比,复合材料表现出优越的衰减效果和更轻的重量。

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