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    王展光, 张勇明, 何思渊, 何德坪, 单建. 球形孔泡沫纯铝的静态力学性能[J]. 机械工程材料, 2007, 31(9): 41-43.
    引用本文: 王展光, 张勇明, 何思渊, 何德坪, 单建. 球形孔泡沫纯铝的静态力学性能[J]. 机械工程材料, 2007, 31(9): 41-43.
    WANG Zhan-guang, ZHANG Yong-ming, HE Si-yuan, HE De-ping, SHAN Jian. Static Mechanical Property of New Type Spherical Pores Al Foam[J]. Materials and Mechanical Engineering, 2007, 31(9): 41-43.
    Citation: WANG Zhan-guang, ZHANG Yong-ming, HE Si-yuan, HE De-ping, SHAN Jian. Static Mechanical Property of New Type Spherical Pores Al Foam[J]. Materials and Mechanical Engineering, 2007, 31(9): 41-43.

    球形孔泡沫纯铝的静态力学性能

    Static Mechanical Property of New Type Spherical Pores Al Foam

    • 摘要: 在获得球形孔泡沫纯铝压缩应力-应变曲线基础上,研究了泡沫纯铝的压缩屈服强度、吸能能力.结果表明:球形孔泡沫纯铝与球形孔泡沫铝合金的压缩应力-应变曲线相似,分为三个部分:线弹性阶段、平台阶段和密实阶段;球形孔泡沫纯铝相对于球形孔泡沫铝合金是一种吸能能力更强、韧性更好的新材料;采用Gibson-Ashby模型来分析球形孔泡沫纯铝的压缩屈服强度,吻合良好.

       

      Abstract: Based on compression curves of spherical pores Al foam measured,compressive yield strength and energy absorption were investigated.The compressive stress-strain curve of cellular Al alloy consists of three distinct regions,i.e.,the linear elasticity region,the plastic collapse region or brittle crushing region,and the densification region.Spherical pores Al foam is a cellular metal material of high plastic performance,so energy absorption capability of it is bigger than that of spherical pores Al alloy foam.Compressive yield stress was in good agreement with Gibson-Ashby model’s expectation.The prediction for compressive yield stress is in agreement with the experimental results.

       

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