Gradient Structure Evolution During Sintering of WC-TiC-Co Cemented Carbides

IF 2.1 4区 材料科学 Q3 MATERIALS SCIENCE, MULTIDISCIPLINARY
JOM Pub Date : 2025-02-05 DOI:10.1007/s11837-025-07127-2
Stella Sten, Joakim Odqvist, Susanne Norgren, Peter Hedström
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Abstract

Functional gradient sintering of WC-TiC-Co cemented carbides was studied to reveal the effect of powder metallurgical processing conditions on compositional and microstructural, as well as hardness and toughness, gradients. The samples were created by local addition of TiC prior to sintering. Two different starting WC powders, one sub-micron and one medium-coarse, were used. Sintering at two different temperatures of 1410°C and 1475°C was compared. The local addition of TiC created a Ti/Co gradient that affected the structural evolution during sintering. The measured Ti/Co gradient after sintering at 1410°C and 1475°C differed, and the difference was especially apparent for the sample prepared using a sub-micron powder. After sintering at 1475°C, the sample prepared from the sub-micron powder exhibited a large WC grain size gradient and elongated or plate-like WC grains where the Ti concentration was high. In contrast, the sample prepared from the medium-coarse powder only showed a WC grain size gradient and no plate-like WC grain formation. It was also observed that the WC grain surfaces had growth ledges in both samples when the Ti content was enhanced, indicating the influence of Ti on the WC grain growth mechanism.

WC-TiC-Co硬质合金烧结过程中梯度结构的演变
研究了WC-TiC-Co硬质合金的功能梯度烧结,揭示了粉末冶金工艺条件对合金成分、组织、硬度和韧性梯度的影响。样品是在烧结前通过局部添加TiC制成的。采用两种不同的起始WC粉,一种为亚微米,一种为中粗。比较了1410℃和1475℃两种不同温度下的烧结效果。局部添加TiC会产生Ti/Co梯度,影响烧结过程中的结构演变。1410°C和1475°C烧结后的Ti/Co梯度测量值不同,亚微米粉末制备的样品差异尤其明显。在1475℃烧结后,亚微米粉末制备的WC晶粒尺寸梯度大,WC晶粒呈细长状或片状,其中Ti浓度较高。相比之下,中粗粉制备的样品只有WC晶粒尺寸梯度,没有片状WC晶粒形成。随着Ti含量的增加,两种样品的WC晶粒表面都出现了生长边缘,说明Ti对WC晶粒生长机制的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
JOM
JOM 工程技术-材料科学:综合
CiteScore
4.50
自引率
3.80%
发文量
540
审稿时长
2.8 months
期刊介绍: JOM is a technical journal devoted to exploring the many aspects of materials science and engineering. JOM reports scholarly work that explores the state-of-the-art processing, fabrication, design, and application of metals, ceramics, plastics, composites, and other materials. In pursuing this goal, JOM strives to balance the interests of the laboratory and the marketplace by reporting academic, industrial, and government-sponsored work from around the world.
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