*和實測值E可知,非均勻Plateau多孔結(jié)構(gòu)細觀力學模型不適合高密度多孔材料,但可以較好地預測中密度多孔材料的彈性模量。"/>

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FeAl金屬間化合物多孔材料壓縮力學性能研究
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中南林業(yè)科技大學,中南大學,中南大學

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國家自然青年科學(11502307),湖南省自然青年科學(2016JJ3187),湖南省教育廳一般項目(14C1189),中南林業(yè)科技大學青年科學研究基金資助(QJ2010038B)


Mechanical Properties of the FeAl Intermetallic Compound Porous Material in Compression
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Central South University of Forestry Technology,Central South University,Central South University

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    摘要:

    針對本課題組采用元素混合粉偏擴散-反應合成-粉末燒結(jié)方法制備的Fe-40at%Al金屬間化合物多孔材料,采用單軸壓縮實驗研究其壓縮應力-應變曲線特征以及孔隙率對其力學性能的影響規(guī)律,并通過掃描電鏡實驗揭示其微觀斷裂機理。結(jié)果表明:FeA1多孔材料的壓縮應力-應變曲線可分為彈性、屈服、強化和破壞四個階段,其中較大孔隙率的FeAl多孔材料表現(xiàn)出明顯的非線性彈性特征;隨著孔隙率的增大,其壓縮屈服極限變化不大,而彈性模量和抗壓強度顯著降低;其斷口特征宏觀上表現(xiàn)為脆性斷裂,微觀上為微觀沿晶斷裂。比較FeAl多孔材料的理論值E*和實測值E可知,非均勻Plateau多孔結(jié)構(gòu)細觀力學模型不適合高密度多孔材料,但可以較好地預測中密度多孔材料的彈性模量。

    Abstract:

    Uni-axial compression test was used to analyze characteristics of stress-strain curves and effects of porosity on mechanical properties and deformations of the Fe-40at%Al intermetallic compound porous material, which was prepared by the element mixture partial diffusion - reactive synthesis – sintering method. Its microscopic fracture mechanism were revealed by scanning electron microscope test. Research results show that the compressive stress-strain curves of the FeAl porous material with different porosities can be divided into four stages: elasticity, yielding, strengthening and failure, where the larger the porosity (i.e., the lower the relative density), the more obvious the nonlinear elasticity. As the porosity is increased, the yield strength is almost unchanged, while the compressive strength and elastic modulus are decrease greatly. Its characteristic of the fracture surface is of brittle fracture in macroscopy and of intergranular fracture in microscopy. Compared with the theoretical values and experimental values of the elastic modulus of FeAl porous material,the micromechanics model of heterogeneous Plateau porous structure is more accurate for predicting the effective elastic modulus of the medium-density porous material but not for high-density porous materials.

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蘇淑蘭,饒秋華,賀躍輝. FeAl金屬間化合物多孔材料壓縮力學性能研究[J].稀有金屬材料與工程,2018,47(8):2453~2457.[Su Shulan, Rao Qiuhua, He Yuehui. Mechanical Properties of the FeAl Intermetallic Compound Porous Material in Compression[J]. Rare Metal Materials and Engineering,2018,47(8):2453~2457.]
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  • 收稿日期:2016-08-13
  • 最后修改日期:2016-11-14
  • 錄用日期:2016-12-02
  • 在線發(fā)布日期: 2018-10-17
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