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Nonlinear Dynamic Analysis and Nonlinear Structure of Self-propagating High-temperature Synthesis Process

机译:自蔓延高温合成过程的非线性动力学分析和非线性结构

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摘要

The Self-propagating High-temperature Synthesis(SHS) process is a nonlinear one far from thermodynamic equilibrium, many nonlinear structures present in the process. After SHS processes of Ti-C-Fe and Ni-Si systems have been studied by the numbers, the effects of initial parameter conditions on nonlinear structure have been gained. On the base of establishing the model of combustion reaction dynamic characteristics, backward finite-difference approximation equations and central finite-difference approximation equations were applied to numerically calculate and simulate the characteristics of combustion wave and its' change rules in the SHS process. All the experimental results are consistent with the simulative results.
机译:自蔓延高温合成(SHS)过程是一个远离热力学平衡的非线性过程,该过程中存在许多非线性结构。通过数值研究了Ti-C-Fe和Ni-Si体系的SHS过程,得到了初始参数条件对非线性结构的影响。在建立燃烧反应动力学特性模型的基础上,应用后向有限差分逼近方程和中心有限差分逼近方程对SHS过程中燃烧波的特性及其变化规律进行了数值计算和模拟。所有实验结果均与模拟结果一致。

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