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Effect of Pressure on Graphite Morphology and Mechanical Properties of Squeeze Cast Hyper-Eutectic Grey Cast Iron

机译:压力对挤压超共晶灰铸铁石墨形态和力学性能的影响

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摘要

Squeeze casting is a process in which a high external pressure is applied and maintained on the molten metal during the whole solidification process resulting in the lower porosity, higher solidification rate and improved mechanical properties. In this research, the effects of applied pressure on the morphology of graphite flakes in a squeeze cast hyper-eutectic grey cast iron were investigated. The molten grey cast irons were solidified under atmospheric pressure as well as 25, 50 and 75 MPa externally applied pressures. The results indicated that the pressure increase during solidification decreased the amount of free graphite flakes, reduced the size of pro-eutectic Kish graphite flakes and increased the density of the castings. D-type graphite enclosing austenite dendrites, resembling that expected in hypo-eutectic grey cast iron, was observed near the surfaces of the castings solidified under externally applied pressures. Moreover, some compacted and spheroidal graphite particles were observed in the castings solidified under 50 and 75 MPa pressures. Furthermore, by increasing the squeeze casting pressure from atmospheric pressure to 75 MPa, the hardness, ultimate tensile strength and elongation increased by about 13, 68 and 128%, respectively. The results have been discussed in terms of increased cooling rate, expected change in the phase diagram of the alloy, different atomic structure of the interfaces of graphite and austenite as well as some proposed theories for formation of eutectic cells and spheroidal graphite.
机译:挤压铸件是在整个凝固过程中施加高外部压力并保持在熔融金属上的过程,从而导致孔隙率较低,凝固率高,机械性能改善。在该研究中,研究了施加压力对挤压超凝血灰铸铁中石墨薄片形态的影响。熔融灰色铸铁在大气压下凝固,以及25,50和75MPa外部施加压力。结果表明,凝固过程中的压力增加降低了自由石墨薄片的量,降低了高共晶kish石墨薄片的尺寸并增加了铸件的密度。在外部施加压力下固化的铸件表面附近观察到封闭奥氏体树突的D型石墨,类似于预期的预期。此外,在50和75MPa压力下凝固的铸件中观察到一些压实的和球形石墨颗粒。此外,通过将来自大气压的挤压铸造压力增加到75MPa,硬度,最终拉伸强度和伸长率分别增加约13,68和128%。结果已经在提高的冷却速率下讨论,合金相的预期变化,石墨和奥氏体界面的不同原子结构以及形成共晶细胞和球形石墨的一些提出的理论。

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