分形在高强度材料生产中的应用研究

S. Choi, Eunsung Jekal
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引用次数: 0

摘要

SiC陶瓷具有重量轻、高温强度好、抗热震性高等特点,是应用于高温环境的优良材料。为了获得更好的工程性能,我们采用分形晶格制备碳化硅。利用分子动力学软件LAMMPS S/W分析了室温至1250℃的应力-应变行为和模量变化。本研究证实,SiC晶体的弹性模量从室温升高到1250℃时,在475 ~ 425 GPa的范围内发生变化,从而保证了SiC晶体在1000℃以上高温下无法测量的应力位移特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fractal Research to the Production of High-strength Materials
: SiC ceramics are excellent materials applied at high temperatures because of their light-weight, excellent high-temperature strength, and high thermal shock resistance. For better engineering properties, we made SiC with fractal lattices. Stress-strain behavior and modulus changes from room temperature to 1,250 o C were analyzed using LAMMPS S/W, a molecular dynamics program. As a result of this study, it was confirmed that the modulus of elasticity of SiC crystals changed in the range of about 475 GPa to 425 GPa as it increased from room temperature to 1,250 o C. The stress-displacement characteristics of SiC crystals, which could not be measured at a high temperature of 1,000 o C or higher, could be ensured.
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