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首页> 外文期刊>International Journal Cast Metals Research >Assessment of microstructure effects on tensile behaviour in silicon strengthened ductile irons produced through different cooling rates
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Assessment of microstructure effects on tensile behaviour in silicon strengthened ductile irons produced through different cooling rates

机译:通过不同冷却速率产生的硅强化延性铁杆菌抗拉伸行为的评估

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摘要

A two diagram procedure was used to assess the microstructure effects on tensile strain hardening in different silicon strengthened ductile irons produced through different cooling rates. In the Matrix Assessment Diagram, the data from different ductile irons were identified through lines. While with Si 2.5 wt-% the intercept of the best fitting line was positive in agreement with the physical meaning of strain hardening, the intercept decreased with increasing silicon content and decreasing cooling rate, becoming unexpectedly negative with Si 4.5 wt-% and slow cooling rates. The negative intercepts were found to be related to graphite degeneracy. In the Integrity Assessment Diagram the effect of microstructure on ductility was investigated, reporting that ductility was reduced significantly by graphite degeneracy. So the two diagram procedure that was first proposed to classify ductile irons with different chemical compositions and production routes, can also indicate the presence of graphite degeneracy in ductile irons.
机译:使用两个图程序来评估通过不同冷却速率产生的不同硅强化延性铁杆中的拉伸应变硬化的微观结构效应。在矩阵评估图中,通过线识别来自不同延性铁磁杆的数据。虽然具有Si 2.5 WT-%的截止线的截距与应变硬化的物理意义一致,但随着硅含量的增加和冷却速率降低,截距减少,速度呈现出意外阴性,并减慢冷却费率。发现阴性截距与石墨退化相关。在完整性评估图中,研究了微观结构对延性的影响,并通过石墨简并进行了显着降低了延展性。因此,首先提出具有不同化学成分和生产路线的延性铁杆的两个图程序也可以表明在延性铁杆中存在石墨退化。

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