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Characterization and Optimization of Ni-WC Composite Weld Matrix Deposited by Plasma-Transferred Arc Process

机译:等离子转移弧法制备Ni-WC复合焊接基体的表征与优化

摘要

This work is dedicated to optimization of carbide particle system in a weld bead deposited by PTAW technique over D2 tool steel with high chromium content. The paper reports partial melting of the original carbide grains of the Ni-based filling powder, and growing of the secondary carbide phase (Cr, Ni)(Formula presented.)W(Formula presented.)C in the form of dendrites with wide branches that enhanced mechanical properties of the weld. The optimization of bead parameters was made with design of experiment methodology complemented by a complex sample characterization including SEM, EDXS, XRD, and nanoindentation measurements. It was shown that the preheat of the substrate to a moderate temperature 523 K (250 (Formula presented.)C) establishes linear pattern of metal flow in the weld pool, resulting in the most homogeneous distribution of the primary carbides in the microstructure of weld bead.
机译:这项工作致力于优化PTAW技术在高铬含量D2工具钢上沉积的焊缝中的碳化物颗粒体系。本文报道了镍基填充粉末的原始碳化物颗粒的部分熔化,以及次级碳化物相(Cr,Ni)(以分子式表示)W(以分子式表示)C的生长,其枝晶形式为宽枝状。增强了焊缝的机械性能。珠参数的优化是通过设计实验方法并辅以包括SEM,EDXS,XRD和纳米压痕测量在内的复杂样品表征来进行的。结果表明,将基材预热至523 K(250(Formula present。)C)适中的温度可建立焊缝池中金属流动的线性模式,从而使一次碳化物在焊缝微观结构中分布最均匀珠子。

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