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Study on Stealth Bulletproof Integrated Composite Material Based on Multi-layer Resistance Film

机译:基于多层电阻膜的隐形防护集成复合材料研究

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A integrated design method based on resistance film and lightweight bulletproof materials is adopted. For this design, the lightweight bulletproof material is also used as the dielectric substrate of composite material structure. And six layers of resistance film is inserted in the seven layers of bulletproof material. The conductivity of each layer of resistance film is 55 S/m. Bulletproof material uses PE laminated. The measured results show that the integrated composite material has an absorption rate of more than 90% in the 6.88GHz~30.58GHz, which also can effectively protect the 53-type 7.62mm ordinary steel core bullet. The thickness of stealth bulletproof integrated composite material is 17.5mm, which achieved the light and thin character. The stealth bulletproof integrated composite material is designed through the combination of the absorbing structure and the bulletproof material. The implement method of stealth bulletproof material is no longer a simple functional overlay, but an integrated fusion design of structure and function. It solves the shortage of traditional stealth bulletproof materials. This design method has great significance for improving the combat capability of new functional vehicles.
机译:采用基于电阻膜和轻型防弹材料的集成设计方法。对于这种设计,轻质防弹材料也用作复合材料结构的介电基板。六层抗性膜插入七层防弹材料中。每层电阻膜的电导率为55 s / m。防弹材料使用PE层压。测量结果表明,6.88GHz〜30.58GHz,集成的复合材料的吸收率超过90%,也可以有效保护53型7.62mm普通钢芯子弹。隐形防护集成复合材料的厚度为17.5mm,实现了光和薄的性格。隐形防护集成复合材料是通过吸收结构和防弹材料的组合设计的。隐形防护材料的实施方法不再是一个简单的功能覆盖,而是结构和功能的集成融合设计。它解决了传统隐形防护材料的短缺。这种设计方法对于提高新功能车辆的战斗能力具有重要意义。

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