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Effects of Micro-Alloying Elements on Microstructure, Element Distribution and Mechanical Properties in Gray Irons

机译:微合金元素对灰色铁杆菌微观结构,元素分布和机械性能的影响

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摘要

This paper elucidates the effects of micro-alloying (Cr, Mo, rare earth and Ag) on the microstructure, element distribution and mechanical properties including Brinell hardness and tensile strength in cast gray irons. Experimental results show that the morphology of main graphite transforms from type C to type A and is refined obviously in the modified gray iron after micro-alloying. The pearlite content is also reduced, and the pearlite interlamellar spacing is smaller in the modified gray iron. The distribution and segregation of micro-alloying elements have determined the change of microstructure. More Cr and Mo atoms are tended to dissolve in pearlite and are likely to replace Fe atoms to form M3P in final solidified phosphorus eutectic regions. Meanwhile, segregation of rare earth metals toward boundaries should be considered into roles in refining graphite and pearlite interlamellar spacing. No obvious enrichment of Ag is found in matrix or at grain boundaries from experimental EPMA results. Multiple micro-alloying in gray irons improves the hardness and tensile strength at room temperature and at 700 degrees C by modifying the microstructure as well. Finer graphite and smaller pearlite interlamellar spacing results in better hardness, tensile strength and elongation in modified gray irons.
机译:本文阐明了微合金化(Cr,Mo,稀土和Ag)对微观结构,元件分布和机械性能的影响,包括铸造灰色铁杆的Brinell硬度和拉伸强度。实验结果表明,微合金化后C型转化为A型和型型型型变换的形态。珠光体含量也降低,改性灰铁的珠光体层间距较小。微合金元素的分布和偏析已经确定了微观结构的变化。更多Cr和Mo原子倾向于溶解在珠光体中,并且可能取代Fe原子以在最终凝固的磷共晶区域中形成M3P。同时,朝边界稀土金属的分离,应考虑到炼油石墨和珠光体层间距的作用。银无明显富集基质或从实验结果EPMA晶界被发现。多个微合金化灰铸铁通过修改微结构以及提高在室温下,并在700摄氏度的硬度和拉伸强度。更细的石墨和较小的珠光体片层中较好的硬度,拉伸强度和伸长率在改性灰铸铁间距的结果。

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