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Regression Analysis of Thermal Conductivity Based on Measurements of Compacted Graphite Irons

机译:基于压实石墨铁的热导率回归分析

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摘要

A model describing the thermal conductivity of compacted graphite iron (CGI) was created based on the microstructure analysis and thermal conductivity measurements of 76 compacted graphite samples. The thermal conductivity was measured using a laser flash apparatus for seven temperatures ranging between 35 °C and 600 °C. The model was created by solving a linear regression model taking into account the influence of carbon and silicon additions, nodularity, and fractions of ferrite and carbide constituents. Observations and the results from the model indicated a positive influence of the fraction of ferrite in the metal matrix on the thermal conductivity. Increasing the amount of carbon addition while keeping the CE value constant, i.e., at the same time reducing the silicon addition, had a positive effect on the thermal conductivity value. Nodularity is known to reduce the thermal conductivity and this was also confirmed. The fraction of carbides was low in the samples, making their influence slight. A comparison of the thermal conductivity values calculated from the model with measured values showed a good agreement, even on materials not used to solve the linear regression model.
机译:基于76个压实石墨样品的微观结构分析和热导率测量,创建了描述压实石墨铁(CGI)导热率的模型。使用激光闪光设备在35°C和600°C之间的七个温度下测量热导率。该模型是通过求解线性回归模型而创建的,该模型考虑了碳和硅的添加,球化度以及铁素体和碳化物成分的分数的影响。模型的观察和结果表明,金属基体中铁素体的比例对导热性有积极影响。在保持CE值恒定的同时增加碳的添加量,即,同时减少硅的添加,对热导率值具有积极的影响。球状结会降低热导率,这也得到了证实。样品中碳化物的比例很低,因此影响很小。从该模型计算出的热导率值与测量值的比较显示出很好的一致性,即使在不用于求解线性回归模型的材料上也是如此。

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  • 来源
    《Metallurgical and Materials Transactions A》 |2009年第13期|3235-3244|共10页
  • 作者

    Martin Selin; Mathias König;

  • 作者单位

    Department of Mechanical Engineering Materials and Manufacturing—Casting Jönköping University Jönköping SE - 551 11 Sweden;

    Department of Mechanical Engineering Materials and Manufacturing—Casting Jönköping University Jönköping SE - 551 11 Sweden;

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  • 正文语种 eng
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