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Effect of Silicon and Microstructure on Spheroidal Graphite Cast Iron Thermal Conductivity at Elevated Temperatures

机译:硅和微观结构对升高温度的球形石墨铸铁导热率的影响

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摘要

Spheroidal graphite cast irons are materials that exhibit many possible microstructures and compositions, which in turn create a multitude of possible property combinations. Chemical composition and microstructure are some of the biggest influences on these material properties. This paper concentrates on the effect of silicon alloying in the range of 1–4% and varying ferrite–pearlite microstructures on thermal conductivity of spheroidal graphite cast irons from room temperature up to 400?°C. Results show that increasing silicon alloying levels decreases thermal conductivity, while a decreasing trend is also seen with increasing pearlite fraction, as composition and morphology act as hindrance to thermal conduction. Temperature dependence shows as an initial increase in thermal conductivity and a peak near 200–300?°C for the studied alloys. Based on the results, a model estimating thermal conductivity with silicon alloying, pearlite fraction and temperature is made to aid in the estimation of material properties for design use.
机译:球形石墨铸铁是表现出许多可能的微观结构和组合物的材料,其又会产生多种可能的属性组合。化学成分和微观结构是对这些材料特性的一些最大影响。本文集中于硅合金化在1-4%范围内的效果和不同的铁素体 - 珠光体微观结构对球形石墨铸造铁的热导率,从室温铸造率高达400°C。结果表明,随着珠光体分数的增加,增加硅合金水平降低导热率降低,而珠光体分数随着组成和形态作为热传导的障碍,也可以看到降低趋势。温度依赖表明,对于所研究的合金,导热率和近200-300°C的峰值升高。基于该结果,使硅胶合金化,珠光体分数和温度的型号估计导热率,以帮助估计用于设计使用的材料性能。

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