Directions for the development of a methodology for regulating the chemical composition and properties of cast iron in foundry production based on a probabilistic approach

К. Sirenko
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Abstract

From the standpoint of systemic and structural-functional approaches, the state and prospects of development of the methodology for regulating and predicting the chemical composition and mechanical properties of grey synthetic cast iron intended for casting production are analysed. Attention is focused on the key intersections of the technological process of manufacturing castings for critical applications. The features, disadvantages, and advantages of the known methods for calculating the charge and adjusting the percentage of chemical elements in the cast iron composition directly during its melting are considered. Ways to take into account the instability of the chemical composition of scrap metal, ferroalloys, and other materials when forming the charge to ensure the quality of pig iron in accordance with the requirements of finished product standards are shown. A promising way to solve this problem in foundry is to use a probabilistic approach and the Monte Carlo method. The article presents formulas for calculating the strength and hardness of cast iron castings with lamellar graphite depending on its carbon equivalent and degree of eutecticity. The peculiarity of the proposed formulas, which gives them enhanced reliability and validity, is that the carbon equivalent and the degree of eutecticity of cast iron in them are determined by the Monte Carlo method using a probabilistic approach with regard to the consideration of the ranges of variation of the content of chemical elements in the cast iron composition regulated in the standard for foundry products. It is noted that the widespread use of thermal derivative express analysis of liquid cast iron in industry is constrained by the lack of a database of reference cooling curves with certain property indicators (chemical composition, microstructure, mechanical and other properties) of cast irons at foundries. Keywords: foundry, cast iron, chemical composition, properties, control, regulation, methodology.
基于概率方法的铸造生产中铸铁化学成分和性能调节方法的发展方向
从系统和结构功能方法的角度,分析了调节和预测用于铸件生产的灰口合成铸铁的化学成分和机械性能的方法的现状和发展前景。重点关注关键应用铸件制造技术流程的关键交叉点。考虑了在铸铁熔化过程中直接计算炉料和调整铸铁成分中化学元素百分比的已知方法的特点、缺点和优点。说明了在形成炉料时如何考虑废金属、铁合金和其他材料化学成分的不稳定性,以确保生铁质量符合成品标准的要求。在铸造中解决这一问题的一个可行方法是使用概率方法和蒙特卡罗方法。文章根据片状石墨的碳当量和共晶度,提出了计算片状石墨铸铁强度和硬度的公式。所提公式的特殊性在于,公式中铸铁的碳当量和共晶度是通过蒙特卡洛法使用概率方法确定的,考虑了铸造产品标准中规定的铸铁成分中化学元素含量的变化范围,从而提高了公式的可靠性和有效性。需要指出的是,由于铸造厂缺乏具有特定性能指标(化学成分、微观结构、机械性能和其他性能)的铸铁参考冷却曲线数据库,液态铸铁热导数表达分析在工业中的广泛使用受到了限制。关键词:铸造、铸铁、化学成分、性能、控制、调节、方法。
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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