Al/ al2o3和Al/ b4c复合材料的力学性能

IF 1.9 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
V. K. Pandey, B. P. Patel, S. Guruprasad
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引用次数: 10

摘要

通过微观力学模型和实验,估计了粉末冶金制备的Al/Al2O3和Al/B4C复合材料在50% Al2O3和35% B4C重量分数下的力学性能。陶瓷0.40重量分数下的实验Young模量接近于Ravichandran /Hashin-Shtrikman下界/上界,接近自洽法/Miller和Lannutti法/修正混合规则/模糊逻辑法的单值预测。实测泊松比介于混合规则/Ravichandran下界和修正的Ravichandran上界之间。实验Charpy能介于hopkins -chamis法/等效Charpy能/Ravichandran下限之间,且在Al2O3含量较高时接近混合物的互易规律。Al/Al2O3的洛氏硬度(RB)和显微硬度更接近修正的混合预测规则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanical properties of Al/Al 2 O 3 and Al/B 4 C composites
Mechanical properties of Al/Al2O3 and Al/B4C composites prepared through powder metallurgy are estimated up to 50% Al2O3 and 35% B4C weight fractions using micromechanics models and experiments. The experimental Young\'s modulus up to 0.40 weight fraction of ceramic is found to lie closely between Ravichandran\'s/Hashin-Shtrikman lower/upper bounds, and close to self consistent method/Miller and Lannutti method/modified rule of mixture/fuzzy logic method single value predictions. Measured Poisson\'s ratio lies between rule of mixture/Ravichandran lower and upper bound/modified Ravichandran upper bounds. Experimental Charpy energy lies between Hopkin-chamis method/equivalent charpy energy/Ravichandran lower limit up to 20%, and close to the reciprocal rule of mixture for higher Al2O3 content. Rockwell hardness (RB) and Micro-hardness of Al/Al2O3 are closer to modified rule of mixture predictions.
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来源期刊
Advances in Materials Research-An International Journal
Advances in Materials Research-An International Journal MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
3.50
自引率
27.30%
发文量
0
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