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Low strain rate compressive behavior of high porosity closed-cell aluminum foams 被引量:3
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作者 LI BinChao ZHAO GuiPing LU TianJian 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第2期451-463,共13页
The impact of a rigid body(protected structure) together with cushion material(cellular metal foam) on hard ground from a fixed height was investigated.An analytical one-degree-of-freedom colliding model(ODF-CM) was e... The impact of a rigid body(protected structure) together with cushion material(cellular metal foam) on hard ground from a fixed height was investigated.An analytical one-degree-of-freedom colliding model(ODF-CM) was established to analyze the protection ability and energy absorption by the foam under low velocity impact conditions.For validation,drop hammer experiments were carried out for high porosity closed-cell aluminum foam specimens subjected to low velocity impact loading.The dynamic deformation behavior of the specimen was observed and the velocity attenuation of the drop hammer was measured.The results demonstrated that the aluminum foam had excellent energy absorption capabilities,with its dynamic compressive behavior similar to that obtained under quasi-static loading conditions.Finite element method(FEM) was subsequently employed to obtain stress distributions in the foam specimen.As the propagating period of stress in the specimen was far less than the duration of attenuation,the evolution of the stress was similar to that under quasi-static loading conditions and no obvious stress wave effect was observed,which agreed with the experimental observation.Finally,the predicted velocity attenuation by the ODF-CM was compared with both the experimental measurements and FEM simulation,and good agreements were achieved when the stress distribution was considered to be uniform and the "quasi-static" compressive properties are employed. 展开更多
关键词 闭孔泡沫铝 压缩行为 高孔隙率 低应变速率 有限元数值模拟 能量吸收能力 静态压缩性能 衰减测量
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高孔隙率闭孔泡沫铝的低应变率压缩行为 被引量:13
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作者 李斌潮 赵桂平 卢天健 《力学学报》 EI CSCD 北大核心 2011年第1期122-135,共14页
通过落锤冲击实验研究高孔隙率闭孔泡沫铝的动态压缩性能及抗低速冲击特性,同时通过高速摄影仪观察试件的动态压缩行为,并记录落锤冲击速度的衰减过程.结果表明,高孔隙率闭孔泡沫铝的抗冲击缓冲效果明显,且在低速冲击条件下其变形特征... 通过落锤冲击实验研究高孔隙率闭孔泡沫铝的动态压缩性能及抗低速冲击特性,同时通过高速摄影仪观察试件的动态压缩行为,并记录落锤冲击速度的衰减过程.结果表明,高孔隙率闭孔泡沫铝的抗冲击缓冲效果明显,且在低速冲击条件下其变形特征与准静态变形类似.采用有限元方法分析了落锤和泡沫中应力的分布特点以及表面摩擦系数对应力分布的影响.由于摩擦力阻碍了接触面处泡沫的横向位移,致使其压缩外形呈"鼓形";在低速冲击时,应力在泡沫铝试件内部的传播周期远小于冲击的缓冲时间,应力波现象并不明显,应力的变化与准静态压缩时相似.在考虑接触面上摩擦力的基础上,通过第2类Lagrange方程建立了落锤-泡沫材料的碰撞解析模型,将预测的落锤冲击速度的衰减过程分别与实验和有限元结果进行比较,取得了较为一致的结论,并进一步讨论了不同冲击速度和材料参数对冲击过程的影响. 展开更多
关键词 泡沫铝 低速冲击 落锤实验 碰撞解析模型
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