文章摘要
张新玉,张伟,尹一平,任光明.泡沫铝相对密度对泡沫铝-聚氨酯复合材料吸能性能的影响[J].包装工程,2019,40(21):94-98.
ZHANG Xin-yu,ZHANG Wei,YIN Yi-ping,REN Guang-ming.Influence of Relative Density of Aluminum Foam on Energy Absorption Properties of Aluminum Foam-polyurethane Composites[J].Packaging Engineering,2019,40(21):94-98.
泡沫铝相对密度对泡沫铝-聚氨酯复合材料吸能性能的影响
Influence of Relative Density of Aluminum Foam on Energy Absorption Properties of Aluminum Foam-polyurethane Composites
投稿时间:2019-06-21  修订日期:2019-11-10
DOI:10.19554/j.cnki.1001-3563.2019.21.014
中文关键词: 泡沫铝-聚氨酯  相对密度  复合材料  吸能性能
英文关键词: aluminum foam-polyurethane  relative density  composite  energy absorption properties
基金项目:
作者单位
张新玉 1.中北大学太原 030051 
张伟 2.太原市热力集团有限责任公司太原 030001 
尹一平 2.太原市热力集团有限责任公司太原 030001 
任光明 2.太原市热力集团有限责任公司太原 030001 
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中文摘要:
      目的 通过准静态压缩试验研究泡沫铝-聚氨酯复合材料(AF-PU)的压缩性能,并利用试验数据探究泡沫铝(AF)相对密度对整体材料吸能性能的影响规律。方法 首先使用相关仪器和材料制备AF-PU复合材料,其次用相关仪器对其进行准静态压缩试验。结果 AF-PU复合材料通过相关仪器进行准静态压缩试验,计算得到相对应的应力-应变曲线,同时通过计算得到相对应的吸能-应变曲线。当泡沫铝相对密度从5.6%增加到6.7%时,整体复合材料的屈服强度提升了22.18%。在压缩过程中,当复合材料的压缩应变为0.8时,整体复合材料的总吸能增加了70.08%。结论 AF-PU复合材料的吸能性能随着AF相对密度的增加而增强。
英文摘要:
      The work aims to study the compressive properties of aluminum foam-polyurethane (AF-PU) composites through the quasi-static compression experiments, and investigate the rule of effect of relative density of aluminum foams (AF) on the energy absorption properties of the composites. AF-PU composites were first prepared with related instruments and materials, and then the quasi-static compression experiments were carried out with related instruments. The AF-PU composite material was subject to the quasi-static compression experiments by related instruments, the corresponding stress-strain curves were calculated, and the corresponding energy absorption-strain curves were obtained by calculation. When the relative density of aluminum foam increased from 5.6% to 6.7%, the yield strength of the overall composite in-creased by 22.18%. During the compression process, when the compressive strain of the composite was 0.8, the total energy absorption of the overall composite increased by 70.08%. The energy absorption properties of AF-PU composites intensify with the increase of the relative density of AF.
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