Mathematical Modeling of the Graphitization Process Applied to Nodular Cast Iron Parts

E. Vasilescu, M. Neacsu
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引用次数: 0

Abstract

Used mainly in the construction of automobiles as a substitute for steel, or in the metallurgical industry, mainly in the manufacture of rolling mill cylinders, the mechanical properties of nodular cast iron depend largely on their structure, consisting of a ferritic metal mass, ferrite - pearlitic mass or pearlitic and graphite formations (graphite nodules) of maximum compactness. The modification of the structure in the desired direction of use properties, possible by applying appropriate heat treatments, can be achieved in conditions of technical and economic efficiency by applying the optimal heat treatment variant, in which the technological parameters temperature - time have a decisive influence. The paper summarizes some research results that aimed to establish the influence of annealing temperature and maintenance time to determine the optimal variant of graphite annealing heat treatment. Process modeling by statistical methods, indicated in the analysis of complex technological processes, has allowed, based on a preliminary experiment and then on the factorial experiment, the establishing of the degree of connection between the technological parameters of the process, as well as the technological parameter with the greatest influence on the process.
球墨铸铁件石墨化过程的数学建模
球墨铸铁的机械性能主要取决于其结构,由铁素体金属团块、铁素体-珠光体团块或珠光体和石墨团块(石墨结核)组成。球墨铸铁主要用于汽车制造中作为钢的替代品,或在冶金工业中主要用于制造轧机气缸。通过适当的热处理,可以在技术和经济效率高的条件下,通过采用最优的热处理方式,使结构朝着期望的使用性能方向进行修改,其中工艺参数温度-时间具有决定性的影响。本文总结了一些研究成果,旨在确定退火温度和维护时间对石墨退火热处理的影响,以确定最佳的退火热处理方案。通过统计方法对复杂工艺过程进行建模,可以在初步实验的基础上,再在析因实验的基础上,确定工艺参数之间的联系程度,以及对工艺影响最大的工艺参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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