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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Effect of semi-solid processing on solidification microstructure and mechanical properties of gray cast iron
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Effect of semi-solid processing on solidification microstructure and mechanical properties of gray cast iron

机译:半固态处理对灰口铸铁凝固组织和力学性能的影响

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摘要

The processing of metals in the semi-solid state is becoming an innovative technology for the production of globular structure and high quality cast parts. This research is directed towards studying the effect of semi-solid processing (using cooling plate technique) on the microstructure and the strength of gray cast iron. The charge material used for all trials was hypoeutectic gray cast iron with 3.59% carbon equivalent. The results indicated that by increasing fraction of solid microstructure becomes finer and more globular. Increasing primary fraction of solid causes an increment of undercooling and changes graphite morphology. Tensile strength of semi-solid processed gray cast iron is relatively high compared with ordinary one. The values of both the tensile strength and the elongation depend on the fraction of solid. It is found that graphite morphology (size and type), primary solid agglomeration and cutting graphite network have a large influence on both the properties in semi-solid processing. The total fracture strength is observed to depend on the graphite morphology as well as the matrix contribution that mainly depends on fraction of solid. Increasing fraction of solid increases hardness values, which is attributed to the homogenous structure by semi-solid processing.
机译:半固态金属的加工正在成为生产球状结构和高质量铸件的创新技术。本研究旨在研究半固态加工(使用冷却板技术)对灰口铸铁的组织和强度的影响。用于所有试验的炉料是碳含量为3.59%的亚共晶灰口铸铁。结果表明,通过增加固体微结构的分数变得更细和更球状。固体初级分数的增加会导致过冷度的增加,并改变石墨的形态。半固态灰铸铁的抗拉强度比普通的高。拉伸强度和伸长率的值均取决于固体的分数。研究发现,石墨的形态(尺寸和类型),一次固体团聚和石墨网络切割对半固态加工的两种性能都有很大的影响。观察到总断裂强度取决于石墨形态以及主要取决于固体分数的基体贡献。固体含量的增加会增加硬度值,这归因于半固体加工的均质结构。

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