首页> 外文期刊>Materials science >Test of elaboration protocols for obtaining highly Co- or Ni -alloyedspheroidal cast irons from an industrial SGcast iron. Part C: Secondprotocol for 25M75Fe cast irons. Subpart 1:Obtainedmicrostructuresand roomtemperature hardness
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Test of elaboration protocols for obtaining highly Co- or Ni -alloyedspheroidal cast irons from an industrial SGcast iron. Part C: Secondprotocol for 25M75Fe cast irons. Subpart 1:Obtainedmicrostructuresand roomtemperature hardness

机译:从工业SGcast铁获得高Co或Ni合金球墨铸铁的精加工方案测试。 C部分:25M75Fe铸铁的第二协议。第一部分:获得的显微组织和室温硬度

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Spheroidal Graphite cast irons highly alloyed with nickel or with cobalt were produced by foundry from parts of an industrial SG cast iron, by following a protocol which recently proved its efficiency, despite that no additional spheroidisation and inoculation treatments of the liquid metal was done. The same protocol was applied to obtain a control sample containing only iron. For the obtained 25wt.%Ni- and 25wt.%Co-containing cast irons the graphite issued from this protocol is very close to the spheroidal geometry. Obtaining highly alloyed SG cast iron following this original elaboration route was thus successful. The matrix of the obtained 25wt.%Ni- and 25wt.%Co-containing cast alloys was influenced by the presence of these new elements in so high quantities: absence of the hypoeutectic character of the control sample, respectively metallic matrix or ferrite-pearlitic matrix instead the ledeburite of the control sample. Graphitizing properties were found again for nickel and revealed for cobalt. The differences of Vickers hardness between the three cast irons were easily explained and hypothesis were formulated, from the response of the microstructures to the Nital etching, about the corrosion resistance of these two highly alloyed SG cast irons.
机译:铸造用镍或钴高度合金化的球墨铸铁,是由铸造厂从工业SG铸铁的零件中,按照最近证明其效率的方案生产的,尽管没有对液态金属进行额外的球化和接种处理。应用相同的方案以获得仅含铁的对照样品。对于所获得的含25wt。%的Ni和25wt。%的Co的铸铁,由该方案产生的石墨非常接近球体的几何形状。因此,按照原始的加工路线成功获得了高度合金化的SG铸铁。如此大量存在的这些新元素会影响所得的25wt。%Ni和25wt。%Co的铸造合金的基体:缺乏对照样品的亚共晶特征,分别是金属基体或铁素体-珠光体基质代替对照样品的莱氏体。再次发现镍具有石墨化性能,而钴具有石墨化性能。三种铸铁之间的维氏硬度差异很容易解释,并且根据微观结构对Nital蚀刻的响应,提出了关于这两种高度合金化的SG铸铁耐腐蚀性的假设。

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