打印参数对粘结剂喷射烧结WC-Co组分的影响

M. Mariani, D. Mariani, G. P. De Gaudenzi, N. Lecis
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引用次数: 2

摘要

硬质合金是用来生产切削和成形工具以及耐磨零件的材料。标准粉末冶金在制造面向应用的设计所需的形状方面受到限制。因此,人们对增材制造的实施很感兴趣,特别是粘结剂喷射等低温技术,因为它们可以保留微观结构和特殊性能。在我们的工作中,粉末是12wt的碳化钨。%钴(WC-Co)。通过粘结剂喷射成型,然后进行固化处理,促进粘结剂聚合,真空烧结和烧结- hip达到接近全密度。粉末的大小和形状进行了分析,以确定其适合该程序。分析了不同打印参数、层厚(50 ~ 100 μm)和粘结剂饱和度(60/75/90%)组合对绿体密度的影响。最后,测量了烧结组分的相对密度,并通过SEM成像研究了孔隙的形状和大小,以评估沉积过程可能产生的后果。测量了沿试样截面的维氏硬度,并将其与所采用的印刷条件相关联。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of printing parameters on sintered WC-Co components by binder jetting
Abstract Hardmetals are materials employed to produce cutting and forming tools as well as wear resistant parts. Standard powder metallurgy suffers limitations in the manufacturing of shapes required by application-oriented design. Therefore, there is interest for the implementation of additive manufacturing, in particular low temperature techniques as binder jetting because they allow to preserve microstructures and peculiar properties. In our work, the powder was tungsten carbide with 12 wt.% cobalt (WC-Co). Shaping by binder jetting was followed by curing treatment to promote the binder polymerization, vacuum sintering and sinter-HIP to achieve near-full density. The powder was analysed in terms of size and shape, to determine its suitability for the procedure. Then, the effects of different combinations of printing parameters, layer thickness (50–100 μm) and binder saturation (60/75/90%), on the density of the green bodies were analysed. Finally, the relative density of the sintered components was measured and the pores shape and size were studied by SEM imaging, to assess possible consequences of the deposition procedure. Vickers hardness along the samples cross-section was measured and correlated to the printing conditions employed.
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