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Microstructure of Non-Metallic Inclusions Identified in Cast Steel 42CrMo4 after Metal Melt Filtration by Novel Foam Filters

机译:新型泡沫过滤器熔解金属铸件后42CrMo4钢中非金属夹杂物的显微组织

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摘要

Non-metallic inclusions can affect significantly the mechanical properties of metallic materials. Mainly for safety relevant components, it is important to reduce size and number of non-metallic inclusions. Recent research work is focused on the development of new reactive, active, and functionalized filters for the reduction of non-metallic inclusions. A detailed knowledge on the genesis of inclusions is essential to improve the entrapment capability. The paper is focused on the microstructure of inclusions formed in cast steel 42CrMo4 after the application of two filter variants. Both, inclusions on the filter surface as well as inclusions in the as-cast steel are investigated using scanning electron microscopy. Their chemical composition and their crystal structure are identified by combined EBSD and EDS measurements. The three-dimensional morphology of the inclusions is analyzed by deep etching technique as well. Finally, the clusters and agglomerates exhibit a quite complex microstructure. Thus, the majority of inclusion clusters consists of alumina, spinel, mullite, MnS, and TiOx. This agrees well to the scenario of the evolution of inclusions described in the literature.
机译:非金属夹杂物会显着影响金属材料的机械性能。主要用于安全相关组件,减少非金属夹杂物的尺寸和数量很重要。最近的研究工作集中在开发用于减少非金属夹杂物的新型反应性,活性和功能化过滤器。对包裹体起源的详细了解对于提高诱捕能力至关重要。本文着眼于应用两种过滤器变型后在铸钢42CrMo4中形成的夹杂物的微观结构。使用扫描电子显微镜研究了过滤器表面的杂质以及铸态钢中的杂质。通过结合EBSD和EDS测量可以确定它们的化学成分和晶体结构。还通过深蚀刻技术分析了夹杂物的三维形态。最后,团簇和团聚体表现出非常复杂的微观结构。因此,大多数夹杂物簇由氧化铝,尖晶石,莫来石,MnS和TiOx组成。这与文献中描述的夹杂物演变的场景非常吻合。

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