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硬质合金中WC/粘结剂界面的刻面/粗糙化:综述

Faceting/Roughening of WC/Binder Interfaces in Cemented Carbides: A Review.

作者信息

Straumal Boris B, Konyashin Igor

机构信息

Chernogolovka Scientific Center, Osipyan Institute of Solid State Physics, Russian Academy of Sciences, Ac. Osipyan Str. 2, 142432 Chernogolovka, Russia.

Element Six GmbH, Staedeweg 18-24, 36151 Burghaun, Germany.

出版信息

Materials (Basel). 2023 May 12;16(10):3696. doi: 10.3390/ma16103696.

Abstract

Hardmetals (or cemented carbides) were invented a hundred years ago and became one of the most important materials in engineering. The unique conjunction of fracture toughness, abrasion resistance and hardness makes WC-Co cemented carbides irreplaceable for numerous applications. As a rule, the WC crystallites in the sintered WC-Co hardmetals are perfectly faceted and possess a truncated trigonal prism shape. However, the so-called faceting-roughening phase transition can force the flat (faceted) surfaces or interfaces to become curved. In this review, we analyze how different factors can influence the (faceted) shape of WC crystallites in the cemented carbides. Among these factors are the modification of fabrication parameters of usual WC-Co cemented carbides; alloying of conventional cobalt binder using various metals; alloying of cobalt binder using nitrides, borides, carbides, silicides, oxides; and substitution of cobalt with other binders, including high entropy alloys (HEAs). The faceting-roughening phase transition of WC/binder interfaces and its influence on the properties of cemented carbides is also discussed. In particular, the increase in the hardness and fracture toughness of cemented carbides correlates with transition of WC crystallites from a faceted to a rounded shape.

摘要

硬质合金(或硬质合金)在一百年前被发明,并成为工程领域最重要的材料之一。断裂韧性、耐磨性和硬度的独特结合使得WC-Co硬质合金在众多应用中不可替代。通常,烧结WC-Co硬质合金中的WC微晶具有完美的晶面,呈截顶三棱柱形状。然而,所谓的晶面粗化相变会使平坦(晶面)表面或界面变得弯曲。在这篇综述中,我们分析了不同因素如何影响硬质合金中WC微晶的(晶面)形状。这些因素包括常规WC-Co硬质合金制造参数的改变;使用各种金属对传统钴粘结剂进行合金化;使用氮化物、硼化物、碳化物、硅化物、氧化物对钴粘结剂进行合金化;以及用其他粘结剂替代钴,包括高熵合金(HEA)。还讨论了WC/粘结剂界面的晶面粗化相变及其对硬质合金性能的影响。特别是,硬质合金硬度和断裂韧性的增加与WC微晶从晶面形状向圆形形状的转变相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0142/10222850/fcf808d04a7d/materials-16-03696-g001.jpg

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