功能材料
功能材料
공능재료
JOURNAL OF FUNCTIONAL MATERIALS
2014年
8期
8087-8091
,共5页
杨永顺%杨哲%虞跨海%梁斌%康兴国
楊永順%楊哲%虞跨海%樑斌%康興國
양영순%양철%우과해%량빈%강흥국
闭孔泡沫铝%准静态压缩%力学性能%吸能性能%变形机理
閉孔泡沫鋁%準靜態壓縮%力學性能%吸能性能%變形機理
폐공포말려%준정태압축%역학성능%흡능성능%변형궤리
close-cell aluminum foam%quasi-static compression%mechanical properties%energy absorption%de-formation mechanism
在闭孔泡沫铝的准静态压缩实验基础上,研究不同孔隙率下的力学性能和吸能性能,分析其压缩变形机理。结果表明,闭孔泡沫铝的压缩过程存在明显的3个阶段:线弹性阶段、塑性平台阶段和致密化阶段。随着孔隙率的增大,闭孔泡沫铝的屈服强度、弹性模量和压实应力均减小。在压缩过程中,吸能效率和理想吸能效率均是先上升后下降。孔隙率对吸能效率影响较大,对最大理想吸能效率影响不大。将理想吸能效率曲线和吸能效率曲线结合可以选择合适的缓冲材料,发挥其最佳吸能特性。闭孔泡沫铝在准静态压缩条件下有良好的塑性变形能力,变形呈逐层破坏的特征。
在閉孔泡沫鋁的準靜態壓縮實驗基礎上,研究不同孔隙率下的力學性能和吸能性能,分析其壓縮變形機理。結果錶明,閉孔泡沫鋁的壓縮過程存在明顯的3箇階段:線彈性階段、塑性平檯階段和緻密化階段。隨著孔隙率的增大,閉孔泡沫鋁的屈服彊度、彈性模量和壓實應力均減小。在壓縮過程中,吸能效率和理想吸能效率均是先上升後下降。孔隙率對吸能效率影響較大,對最大理想吸能效率影響不大。將理想吸能效率麯線和吸能效率麯線結閤可以選擇閤適的緩遲材料,髮揮其最佳吸能特性。閉孔泡沫鋁在準靜態壓縮條件下有良好的塑性變形能力,變形呈逐層破壞的特徵。
재폐공포말려적준정태압축실험기출상,연구불동공극솔하적역학성능화흡능성능,분석기압축변형궤리。결과표명,폐공포말려적압축과정존재명현적3개계단:선탄성계단、소성평태계단화치밀화계단。수착공극솔적증대,폐공포말려적굴복강도、탄성모량화압실응력균감소。재압축과정중,흡능효솔화이상흡능효솔균시선상승후하강。공극솔대흡능효솔영향교대,대최대이상흡능효솔영향불대。장이상흡능효솔곡선화흡능효솔곡선결합가이선택합괄적완충재료,발휘기최가흡능특성。폐공포말려재준정태압축조건하유량호적소성변형능력,변형정축층파배적특정。
Based on the quasi-static compressive test of close-cell aluminum foam,mechanical properties and en-ergy absorption under different porosities were investigated and deformation mechanism was analyzed.Results showed that the quasi-static compressive process of closed-cell aluminum foam was characterized by three de-formation stages:linear elastic stage,plastic platform stage and densification stage.Yield strength,Young's modulus and compaction stress of closed-cell aluminum foam were both decreased with the increase of porosity. Energy absorption efficiency and ideal energy absorption efficiency were both increased and then decreased in the compressive process.Porosity had great impact on the absorption efficiency,while for maximum ideal energy absorption efficiency had little effect.Combine ideal energy absorption efficiency curves with energy absorption efficiency curve could select the appropriate cushioning material to bear the best energy absorption properties of aluminum foam.Close-cell aluminum foam had good plastic deformation capacity under quasi-static compres-sion.Deformation has characteristics that poles were destroyed layer by layer.