一种新型多孔金属制备方法及缓冲吸能性能研究
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深圳市孔雀计划技术创新资助项目(KQCX20130628112914289)

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Research on a New Type of Cellular Metal Fabrication Method and Energy Absorption Properties
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    摘要:

    多孔金属材料是一种比密度小、比刚度强、吸能效果好的理想型功能材料,因此一直是国内外众多学者研究的热点。文章提出了一种以立方体为基本单元的多孔金属制备方法,为研究其作为吸能材 料的力学性能,对制备样品进行了准静态和动态的冲击实验,根据实验结果进行了相应的分析和总结,从而验证了该制备方法的可行性,拓展了多孔金属材料的种类范围,也为进一步优化该多孔金属的制备方法和工艺提供了实验基础。

    Abstract:

    The porous metal material is an ideal functional material with low density, high specific stiffness, and good energy absorption effect. It has been widely studied and used for various applications. In this paper, a new method to fabricate porous metal based on cubic cells was studied. In order to study the mechanical properties of this energy absorbing material, some samples are prepared for the actual quasi-static and dynamic impact tests. By analyzing the experimental results, feasibility of the method can be verified. This work may extend the range of porous metal materials, and provide foundations for further optimization of porous metals.

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引文格式
冯彦科,何 凯,毛 贺,等.一种新型多孔金属制备方法及缓冲吸能性能研究 [J].集成技术,2017,6(1):53-60

Citing format
FENG Yanke, HE Kai, MAO He, et al. Research on a New Type of Cellular Metal Fabrication Method and Energy Absorption Properties[J]. Journal of Integration Technology,2017,6(1):53-60

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  • 在线发布日期: 2017-01-19
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