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Solidification Structures in Overlaying of Cobalt-Based Superalloy on Ferritic Spheroidal Graphite Cast Irons by Plasma Transferred Arc Process

机译:等离子转移弧工艺在铁素体球墨铸铁上覆覆钴基高温合金的凝固组织

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摘要

When spheroidal graphite (SG) cast iron is overlaid with Stellite 1 cobalt-based superalloy by a plasma transferred arc melting process, a carbide-containing interfacial layer can exist between the substrate and the overlayer. Meanwhile, ledeburite can occur in the partially melted zone of the substrate. These microstructures may cause damage during application and thus are undesirable. In the present investigation, Stellite 1 alloy was overlaid on seven ferritic SG cast irons of various silicon content (2.0 to 3.9 mass%) and carbon content (1.5 to 3.8 mass%) under the same overlaying condition (current: 60 A; voltage: 26 V). The purpose was to characterize the solidification structure with special emphasis on the interface region and the partially melted zone. The results indicate that the overlayer is hypereutectic. The carbide-containing interfacial layer can be eliminated by reducing the carbon content of the substrate. Both reducing the carbon content and increasing silicon content can reduce the amount of ledeburite formed in the partially melted zone. The formation of the ledeburite can be avoided if the silicon content is sufficiently large.
机译:当通过等离子转移电弧熔化工艺将球形石墨(SG)铸铁与Stellite 1钴基高温合金覆盖时,含碳化物的界面层可能存在于基材和覆盖层之间。同时,在基材的部分熔融区域中会发生莱氏体。这些微结构可能在施加期间引起损坏,因此是不希望的。在本研究中,Stellite 1合金在相同的覆盖条件(电流:60 A;电压:)下覆盖在七种不同硅含量(2.0至3.9质量%)和碳含量(1.5至3.8质量%)的铁素体SG铸铁上。 26 V)。目的是表征固化结构,特别强调界面区域和部分熔化的区域。结果表明该覆盖层是过共晶的。含碳化物的界面层可以通过减少基材的碳含量来消除。减少碳含量和增加硅含量都可以减少在部分熔化区域中形成的莱氏体的数量。如果硅含量足够大,则可以避免形成方晶石。

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