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Identification and quantification of active manufacturing factors for graphite formation in centrifugally cast Nihard cast irons

机译:鉴定和量化离心铸造Nihard铸铁中形成石墨的有效制造因子

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摘要

The present research arises from the need to gain knowledge to control the precipitation of interdendritic dispersed graphite in mottled Nihard cast irons used in the outer ring layer of industrial duplex work rolls. Industry desires a volume fraction of 2.5-4% graphite, distributed homogeneously across the layer thickness, with a reasonably constant, high number of particles across the layer, with a predominantly short flake-graphite shape. The objective was to ascertain the role of metallurgical manufacturing parameters and their interaction with graphite precipitation in the layer, and in the outer and inner sections of the roll collar. These rolls, used in the finishing stands of hot strip steel mills, were processed by a double pour method using vertical centrifugal casting machines. Analysis was conducted using a fractional Design of Experiments (DOE) program consisting of 16 industrial trials based on the study of 7 manufacturing factors at 2 levels. The analyzed responses, obtained by quantitative metallographic techniques, were: the volume fraction, V{sub}v, number per unit area, N{sub}A, and the graphite morphology across the layer thickness. The results confirmed that an increase from 0.5 to 0.8 kg/T of SiCaMn added as a bath inoculant in the ladle increased the fraction of precipitated graphite without affecting N{sub}A. An outstanding result was that the addition of 1 kg/T of FeTi as a bath inoculant did not modify the amount of precipitated graphite but significantly affected the morphology, favouring the development of elongated graphite shapes.
机译:本研究源于需要获得知识来控制工业双工工作辊的外圈层使用的呈杂色的Nihard铸铁中的枝晶间分散石墨的析出的需求。工业上需要2.5-4%的石墨的体积分数,该石墨在整个层厚度上均匀地分布,在整个层上具有相当恒定,大量的颗粒,并且主要具有短的片状石墨形状。目的是确定冶金制造参数的作用及其与该层以及辊套外部和内部的石墨沉淀的相互作用。这些用于热轧带钢精轧机机架的轧辊是使用立式离心铸造机通过双浇铸法进行加工的。使用分数实验设计(DOE)程序进行分析,该程序由16个工业试验组成,基于对2个级别的7个制造因子的研究。通过定量金相技术获得的分析响应为:体积分数,V {sub} v,每单位面积的数量,N {sub} A和整个层厚度的石墨形态。结果证实,在钢水包中作为浴接种剂添加的SiCaMn从0.5kg / T增加到0.8kg / T增加了沉淀的石墨的分数,而不影响N {sub} A。出色的结果是,添加1 kg / T的FeTi作为浴接种剂不会改变沉淀的石墨量,但会显着影响其形态,有利于延长石墨形状的发展。

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