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New approach to the use of thermal analysis to predict microstructure and mechanical properties of as-cast ductile iron

机译:利用热分析预测铸态球墨铸铁的组织和力学性能的新方法

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摘要

This paper describes the work carried out in order to use thermal analysis, not only to forecast carbon and silicon compositions, but also to anticipate some significant structural features, such us graphite nodularity, perlite count and others, and make it available swiftly at the foundry floor. A procedure relating the influence of melting charge, melt processing and inoculation potential over thermal analysis inflexions, critical points and arrests is being developed with the aim to study the potential of thermal analysis techniques as a swift tool to microstructure prediction. It will be given some insight to the use of new software, which together with thermal analysis, enable to forecast with high precision carbon and silicon compositions, even for hypereutectic cast iron compositions. This paper will describe some of the achievements accomplish at this stage of the project. A special emphasis will be given to the influence of the cartridge geometry and will be referred the results on graphite surface density, nodularity, sphericity, and perlite count.
机译:本文介绍了为进行热分析而进行的工作,不仅可以预测碳和硅的成分,还可以预测一些重要的结构特征,例如石墨球度,珍珠岩数量等,并可以在铸造厂迅速使用。地板。目前正在开发一种程序,将熔融装料,熔体加工和接种电位对热分析拐点,临界点和阻滞的影响相联系,目的是研究热分析技术作为快速预测微观结构的工具的潜力。它将对新软件的使用提供一些见识,该软件与热分析一起,即使使用过共晶铸铁成分,也能够以高精度预测碳和硅的成分。本文将介绍该项目在此阶段取得的一些成就。将特别强调处理盒几何形状的影响,并将其作为石墨表面密度,球化度,球形度和珍珠岩数量的结果。

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