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Updated: Jan 25, 2026

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Research and Development of High-performance Explosives
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在多重爆炸载荷下,双向梯度三明治圆形板的动态反应
Hairen Wang1,2, Yaoyao Liu3,4, Jianyin Lei5
1School of Architectural Engineering, Yulin University, Yulin, 719000, China. 673505521@qq.com.
Scientific reports
|January 23, 2026
概括
研究人员开发了一种生物渐变三明治模型,其灵感来源于皇家水. 这种设计提高了在多重冲压下结构性能,改善了抗冲压和能量吸收,而没有增加质量.
科学领域:
- 工程机械 工程机械 工程机械
- 材料科学 材料科学 材料科学
- 生物电子学 生物电子学
背景情况:
- 梯度设计在各种工程应用中提供了增强的结构性能.
- 皇家水的膜结构激发了一种新的生物学方法.
研究的目的:
- 为了研究双向梯度三明治圆形板在多重压力下的动态反应.
- 分析梯度安排对变形,偏移和能量吸收的影响.
- 为了优化设计,以提高抗爆炸性和能量吸收效率.
主要方法:
- 一个生物双向梯度三明治模型是基于皇家水的结构创建的.
- 建造了四个三明治圆形板模型,细胞壁厚度各不相同.
- 在不同爆炸冲动的多次爆炸下分析了变形模式,面板偏移和能量吸收.
主要成果:
- 在多重爆炸负载下观察到逐渐积累的变形和能量吸收.
- 面板和蜂核心的增量能量吸收随着爆炸数量的增加而减少.
- 梯度布局使动态响应和能量吸收在没有额外质量的情况下提高了29.92%,即使前面面板厚度减少.
结论:
- 双向梯度三明治圆形板在多重冲压下提供更好的性能.
- 设计修改,例如调整梯度安排和前面面板厚度,可以显著提高能量吸收和抗冲击性能.
- 这项研究为设计受到动态负荷的先进三明治结构提供了宝贵的见解.
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