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Role of welding process energy on the microstructural variations in a cobalt base superalloy hardfacing

机译:焊接工艺能量对钴基高温合金堆焊中显微组织变化的作用

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摘要

Cobalt base superalloy hardfacings have been deposited by manual arc welding. Such deposits of total thickness 15 to 17 turn are realised in four successive layers on a steel substrate. The aim of this study is to analyse the role of the welding energy on hardfacings microstructural. variations. Microstructure of these hardfacings is formed of a mixture of eutectic precipitates between primary dendrites of a cobalt-ricb fee phase. The high resulting dilution with the substrate induced by such manual arc welding process generates a chemical gradient in the deposit thickness able to involve various carbides volume fraction: the eutectic precipitates volume fraction varies in the reverse order of dilution with no significant difference versus welding energy. On the other hand, the fact of producing hardfacing in successive layers causes a secondary precipitation. In other terms, this kind of deposit involving high temperatures for a sufficient long time makes the dendritic Cr and Co-rich zones precipitate. Thus, fine cuboids particles of Cr23C6 carbides are formed in the dendrites. In accordance with higher welding energy used, the higher temperatures reached generate the Cr23C6 carbides size increasing. (c) 2007 Elsevier B.V. All rights reserved.
机译:钴基高温合金堆焊层已通过手工电弧焊沉积。这种总厚度为15至17匝的沉积物是在钢基材上的四个连续层中实现的。这项研究的目的是分析焊接能量在堆焊层微观结构中的作用。变化。这些表面堆焊层的微观结构是由钴-ricb电荷相的主要枝晶之间的共晶沉淀物的混合物形成的。通过这种手工电弧焊工艺引起的对基材的高最终稀释会在沉积厚度中产生化学梯度,从而能够涉及各种碳化物的体积分数:低共熔沉淀物的体积分数以稀释的相反顺序变化,与焊接能量之间无显着差异。另一方面,在连续的层中产生表面硬化的事实导致二次沉淀。换句话说,这种涉及高温足够长时间的沉积物会使树突状Cr和Co富集区析出。因此,在树枝状晶体中形成了Cr23C6碳化物的细长方体颗粒。根据使用的更高焊接能量,达到更高温度会导致Cr23C6碳化物尺寸增加。 (c)2007 Elsevier B.V.保留所有权利。

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