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用空间保持技术制备的316L钢泡沫的压缩性能和能量吸收行为

Compressive Properties and Energy Absorption Behavior of 316L Steel Foam Prepared by Space Holder Technique.

作者信息

Hu Guangyu, Xu Guili, Gao Qiang, Feng Zhanhao, Huang Peng, Zu Guoyin

机构信息

School of Materials Science and Engineering, Northeastern University, Shenyang 110819, China.

出版信息

Materials (Basel). 2023 Feb 8;16(4):1419. doi: 10.3390/ma16041419.

Abstract

The effect of porosity and pore size on the quasi-static compression properties and energy absorption characteristics of the steel foam was investigated in this paper. The 316L steel foams were prepared through powder metallurgy using urea as the space holder. The macrostructure of steel foam and microstructure of the pore walls were characterized, and the quasi-static compression experiments were conducted on the specimens in the axial direction at a strain rate of 10 s. The results show that the increase in porosity decreases the yield strength and plastic modulus of the steel foam but increases the densification strain of the steel foam. The yield strength of the steel foam decreases significantly when the pore size is 2.37 mm. However, the pore size has little effect on the plastic modulus. Moreover, the energy absorption per volume of the steel foam decreases with increasing porosity at the same strain. The effect of porosity on energy absorption efficiency is greater than that of pore size.

摘要

本文研究了孔隙率和孔径对泡沫钢准静态压缩性能及能量吸收特性的影响。采用尿素作为造孔剂,通过粉末冶金法制备了316L泡沫钢。对泡沫钢的宏观结构和孔壁微观结构进行了表征,并在轴向以10 s的应变速率对试样进行了准静态压缩试验。结果表明,孔隙率的增加会降低泡沫钢的屈服强度和塑性模量,但会增加泡沫钢的致密化应变。当孔径为2.37 mm时,泡沫钢的屈服强度显著降低。然而,孔径对塑性模量的影响较小。此外,在相同应变下,泡沫钢的单位体积能量吸收随孔隙率的增加而降低。孔隙率对能量吸收效率的影响大于孔径对能量吸收效率的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f99/9964153/9cdc68599da4/materials-16-01419-g001.jpg

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