首页|期刊导航|高压物理学报|爆炸载荷下剪切增稠胶填充蜂窝夹芯板的动态响应实验研究

爆炸载荷下剪切增稠胶填充蜂窝夹芯板的动态响应实验研究OA北大核心

Dynamic Response of Shear Thickening Gel-Filled Honeycomb Sandwich Panels under Blast Loading:Experimental Research

中文摘要英文摘要

将 2 种不同配比的剪切增稠胶(shear thickening gel,STG)SG和TG分别填充到铝合金蜂窝芯层中,设计并制备了一种具有优良抗爆性能的夹芯板结构.通过一系列实验,研究了其在爆炸载荷下的动态响应,采用数字图像相关(digital image correlation,DIC)技术记录并分析了夹芯板结构的实验过程,探究了STG填充材料与蜂窝芯层的耦合作用机制对夹芯结构动力学行为的影响规律.此外,通过分析不同夹芯结构前后面板及芯层的变形模态、应变历程和失效模式,得出了不同蜂窝边长及STG类型对夹芯板结构的抗爆炸冲击性能的影响.实验发现:未填充STG的蜂窝夹芯板的前后面板均出现了明显的破坏,防护性能较弱;填充STG能够有效地增强结构的抗爆炸冲击性能,而具有更高剪切增稠效应的TG填充夹芯板相较于SG填充夹芯板拥有更好的防护效果.当蜂窝边长为 4mm时,SG填充夹芯板的前面板发生破裂,而TG填充夹芯板的前面板则发生较均匀的塑性凹陷,且背面板挠度降低了 61.0%;当蜂窝边长为8mm时,相较于SG填充夹芯板,TG填充夹芯板的前面板和背面板挠度分别降低了 5.6%和17.7%.实验结果表明,通过改变填充胶类型和蜂窝结构参数可以调控结构的抗爆性能.

A sandwich panel with superior blast resistance was designed and fabricated by filling aluminum honeycomb cores with two shear thickening gels(STGs)of different compositions,SG and TG.A series of blast experiments were conducted to investigate its dynamic response.The digital image correlation(DIC)technique was used to record and analyze the experimental process,exploring the coupling mechanism between the STG filling and the honeycomb core and its effect on the dynamic behavior of the structure.In addition,by analyzing the deformation modes,strain histories,and failure patterns of the front and back face sheets as well as the core layer,the effects of honeycomb cell size and STG type on the blast resistance of the sandwich panel were determined.Experimental results showed that the unfilled honeycomb sandwich panel suffered severe damage to both face sheets,indicating poor protective performance.The STG filling significantly enhanced the blast resistance,and the TG-filled panel achieved better protection than the SG-filled panel due to its stronger shear thickening effect.When the honeycomb cell size was 4 mm,the front face sheet of the SG-filled panel fractured,whereas the TG-filled panel exhibited more uniform plastic indentation,and the back face sheet deflection was reduced by 61.0%.When the honeycomb cell size was 8 mm,the TG-filled panel achieved reductions of 5.6%(front panel)and 17.7%(back panel)in deflection compared to the SG-filled panel.The experimental results indicate that optimizing the type of STG and honeycomb structural parameters can effectively modulate the blast resistance of the sandwich panel.

纵侨;易昶成;李子豪;李世强

太原理工大学航空航天学院应用力学研究所,山西 太原 030024太原理工大学航空航天学院应用力学研究所,山西 太原 030024太原理工大学航空航天学院应用力学研究所,山西 太原 030024太原理工大学航空航天学院应用力学研究所,山西 太原 030024

数理科学

剪切增稠胶夹芯结构爆炸载荷动态响应蜂窝芯层

shear thickening gel(STG)sandwich structureblast loadingdynamic responsehoneycomb core

《高压物理学报》 2025 (9)

81-92,12

国家自然科学基金(12472388)

10.11858/gywlxb.20251069

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