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Effect of Slope Plate Variable and Reheating on the Semi-Solid Structure of Ductile Cast Iron

机译:斜盘变量和再加热u200bu200b对球墨铸铁半固态组织的影响

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摘要

Semi-solid metal casting and forming is a promising production method for a wide range of metal alloys. In spite of many applications for semi-solid processed light alloys, few works have reported on the semi-solid processing of iron and steel. In this research, an inclined plate was used to change the dendritic structure of iron to globular. The effects of the length and slope of the plate on the casting structure were examined. The results show that the process effectively changes the dendritic structure to globular. A sloped plate angle of 7.5° and length of 560 mm with a cooling rate of 67 K·s-1 gave the optimum graphite nodu-larity and solid particle globularity. The results also show that the sloped plate more easily prevents inocu-lant fading since the total time processing is rather short. In addition the semi-solid ductile cast iron prepared using the inclined plate method was reheated to examine the effect of reheating conditions on the micro-structure and coarsening kinetics of the alloy. The solid fractions at different reheating temperatures and holding times were used to find the optimum reheating temperature range.
机译:半固态金属的铸造和成形是一种用于各种金属合金的有前途的生产方法。尽管在半固态加工的轻合金中有许多应用,但几乎没有关于钢铁半固态加工的报道。在这项研究中,使用倾斜板将铁的树枝状结构改变为球状。研究了板的长度和斜率对铸造结构的影响。结果表明,该过程有效地将树枝状结构改变为球状。倾斜板角为7.5°,长度为560 mm,冷却速度为67 K·s-1,可提供最佳的石墨球度和固体颗粒球度。结果还表明,由于总时间很短,因此倾斜板更容易防止接种倾斜褪色。另外,对利用斜板法制备的半固态球墨铸铁进行了再加热,以研究再加热条件对合金的组织和粗化动力学的影响。在不同的加热温度和保温时间下,固体馏分被用于找到最佳的加热温度范围。

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