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Effects of Inoculation on the Pearlitic Gray Cast Iron with High Thermal Conductivity and Tensile Strength

机译:接种对高导热率和高拉伸强度珠光体灰铸铁的影响

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摘要

With the aim of improving the thermal conductivity and tensile strength of pearlitic gray cast iron, the influence of inoculation on structure and properties was experimentally investigated. Three group of irons with similar compositions were inoculated by Zr-FeSi, Sr-FeSi, and SiC inoculants, respectively. The metallographic analysis was used to measure the maximum graphite length, primary dendrites amount and eutectic colonies counts. For a certain carbon equivalent, it was confirmed that the thermal conductivity of pearlitic gray cast iron has a direct correlation with the maximum graphite length while the tensile strength was influenced mainly by the primary dendrites amount. The optimal structure and highest thermal conductivity and tensile strength were obtained by Sr-FeSi inoculant. MnS particles act a pivotal part in modifying the structure of gray cast iron. It was found that providing nucleation sites both for graphite and primary austenite is important to promote the thermal conductivity and strength. However, excessive nuclei (MnS particles) results in shorter graphite flakes and thus the depressive growth of primary dendrites.
机译:为了提高珠光体灰口铸铁的导热性和拉伸强度,实验研究了接种对组织和性能的影响。 Zr-FeSi,Sr-FeSi和SiC孕育剂分别接种了三组具有相似成分的铁。金相分析用于测量最大石墨长度,一次枝晶数量和共晶菌落数。对于一定的碳当量,可以确定的是,珠光体灰口铸铁的导热系数与最大石墨长度有直接关系,而抗拉强度主要受一次枝晶含量的影响。用Sr-FeSi孕育剂获得了最佳的结构,最高的导热率和拉伸强度。 MnS颗粒在改变灰口铸铁的结构中起关键作用。发现为石墨和初级奥氏体提供成核位置对于提高导热性和强度很重要。但是,过多的核(MnS颗粒)会导致石墨片变短,从而导致初级树枝状晶体的抑制性生长。

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