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Thermal expansion of cobalt-based, nickel-based and iron-based cast alloys reinforced by chromium carbides

机译:碳化铬增强钴基,镍基和铁基铸造合金的热膨胀

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Six 30wt.%Cr-containing alloys reinforced by chromiumcarbides, two ones based on cobalt, two ones based on nickel and two other ones based on iron, were elaborated by foundry way and studied in thermal expansion between 100°C and 1200°C, for two microstructure orientations favoured by special cutting. The heating parts, isothermal parts and cooling parts were quantitatively analysed. The main global differences of thermal expansion were obtained between the alloys based on Co or Ni (high expansion) and the ferritic Fe-based alloys (low expansion). A higher amount of carbon or carbides generally led to slower dilatations and to enhance attenuation of expansion due to crystallographic changes of matrix. This also leads to a compressive deformation of matrix at the highest temperatures, due to the differential expansion between the two phases from room temperature and these high temperatures. Negative permanent deformations were thus obtained for the alloys.
机译:用铸造方法制作了六种碳铬强化的含30wt。%Cr的合金,两种基于钴的合金,两种基于镍的合金和另外两种基于铁的合金,并研究了在100°C至1200°C之间的热膨胀,特殊切割有利于两种微观结构取向。定量分析了加热部分,等温部分和冷却部分。在基于Co或Ni的合金(高膨胀率)和铁素体铁基合金(低膨胀率)之间获得了主要的整体热膨胀差异。由于基质的晶体学变化,较高数量的碳或碳化物通常导致较慢的膨胀并增强膨胀的衰减。由于从室温到高温的两相之间的膨胀差异,这也导致在最高温度下基体的压缩变形。因此,合金获得了负的永久变形。

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