铸铁中致密石墨的连续生长步骤

J. Sertucha, J. Lacaze, A. Regordosa, U. Torre
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引用次数: 0

摘要

为铸造SGI而准备的熔体保持8小时会导致球化处理的褪色,从而导致致密石墨的生长,而不是球形石墨。这种熔体在热分析杯中浇铸,间隔25-30分钟,不接种。它首先在稳定系统中固化,然后在亚稳态系统中固化。因此,随着压实石墨凝固量的增加,再发光先增加,而随着亚稳体系中凝固量的增加,再发光逐渐减少。本研究的结果与以往类似系列的结果比较表明,在实验散射中,石墨细胞的压实数和石墨分数相同的情况下,峰值再发光更高。此外,由于两个系列中球化剂的用量相似,因此没有明确的原因导致这种再生差异,应进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Successive steps of growth of compacted graphite in cast irons
Holding during 8 hours a melt prepared for casting SGI leads to fading of the spheroidizing treatment and thus to growth of compacted graphite instead of spheroidal graphite. Such a melt was cast in thermal analysis cups at 25-30 minutes interval without inoculation. It solidified first in the stable system and more and more in the metastable system. Accordingly, recalescence first increased as more of compacted graphite solidified, but then decreased when more and more of the solidification occurred in the metastable system. Comparison of the results of the present study with those of a previous similar series showed a higher peak recalescence while the number of compacted graphite cells and the graphite fraction were the same within experimental scattering. Furthermore, as the amount of spheroidizers was similar in both series, there is no clear reason for this difference in recalescence, which should be investigated further.
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