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Suppression of Elevated Temperature Brittleness in Spheroidal Graphite Cast Iron by Increasing Phosphorus Content

机译:磷含量抑制球形石墨铸铁中升高的温度脆性

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Elevated temperature brittleness (ETB) of spheroidal graphite (s-g) cast iron has been referred to as reduced ductility within an elevated temperature range and has been related to grain boundary brittleness. The phenomenonof ETB has not been yet clearly understood. In this study, the factor affecting on ETB was studied in terms of strain rate and chemical composition. A study was carried out on the influence of phosphorus on ETB by using laboratory-made heats containing different phosphorus contents. ETB indicated the marked decrease in ductility at around 673K. S-g cast iron containing low phosphorus content manifested ETB at temperatures between 650K and 700K. There was a consistent correlation between the fractional increases in intergranular fracture appearance and the decrease in elongation. The increase of phosphorus suppressed ETB and s-g cast irons containing phosphorus exceeding 0.030 % were found to be immune to ETB. It was found that ETB could be suppressed by reducing the ratio of magnesium and phosphorus to less than 1.5.
机译:升高的温度脆性(ETB)的球形石墨(S-G)铸铁已被称为升高温度范围内的延展性,并且与晶界脆性有关。 ETB的现象尚未清楚地理解。在这项研究中,在应变率和化学成分方面研究了影响ETB的因素。通过使用含有不同磷含量的实验室制成的热量对磷磷对ETB的影响进行了研究。 ETB表示延展性的显着降低约为673K。含有低磷含量的S-G铸铁表现为650K和700K之间的温度的ETB。骨间骨折外观的分数增加与伸长率降低之间存在一致的相关性。发现含磷的含量抑制的ETB和含有超过0.030%的磷的S-G铸铁的增加是免疫的。结果发现,通过将镁和磷的比例降低至小于1.5,可以抑制EtB。

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