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首页> 外文期刊>ISIJ international >Thermal Conductivity of Thin Walled Compacted Graphite Iron Castings
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Thermal Conductivity of Thin Walled Compacted Graphite Iron Castings

机译:薄壁压实石墨铸铁的导热系数

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This study addresses the effect of the cooling rate and of titanium additions on the exhibited microstructure and thermophysical parameters of thin-walled compacted graphite iron (TWCI) castings as determined by changing the moulding materials (silica sand and insulating sand LDASC), and Ferro Titanium. The research was conducted for thin-walled iron castings with a 3-mm wall thickness. The tested material represents the occurrence of graphite in the shape of nodules, flakes (C and D types, according to ISO Standard) and compacted graphite with a different shape factor and percent of nodularity. Thermal conductivity has been evaluated by the laser flash technique in a temperature range of 22–600°C. The results show that the cooling rates together with the titanium content largely influence the microstructure, graphite morphology and finally thermal conductivity of thin walled castings. Finally mechanism for thermal conductivity profile as a function of temperature for thin wall castings with different graphite morphology is provided.
机译:这项研究解决了冷却速度和钛添加量对通过改变成型材料(硅砂和绝缘砂LDASC)以及钛铁合金确定的薄壁压实石墨铁(TWCI)铸件的组织和热物理参数的影响。 。该研究是针对壁厚为3毫米的薄壁铸铁进行的。所测试的材料表示以小瘤,薄片(根据ISO标准为C和D型)和具有不同形状因数和球化百分数的压实石墨形式出现的石墨。通过激光闪光技术在22–600°C的温度范围内评估了热导率。结果表明,冷却速度与钛含量一起极大地影响了薄壁铸件的组织,石墨形态以及热导率。最后,提供了具有不同石墨形态的薄壁铸件的导热系数随温度变化的机理。

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