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金属陶瓷的耐磨性和耐腐蚀性:综述

Abrasion and Erosion Resistance of Cermets: A Review.

作者信息

Kübarsepp Jakob, Juhani Kristjan, Tarraste Marek

机构信息

Department of Mechanical and Industrial Engineering, Tallinn University of Technology, Ehitajate tee 5, 19086 Tallinn, Estonia.

出版信息

Materials (Basel). 2021 Dec 22;15(1):69. doi: 10.3390/ma15010069.

Abstract

WC-based hardmetals are employed widely as wear-resistant ceramic-metal composites for tools and wear parts. Raw materials supply, environmental concerns and some limitations of hardmetals have directed efforts toward development of alternative wear-resistant composites-cermets. We present a current state of knowledge in the field of ceramic-rich (≥50 vol%) cermets behavior in abrasion and erosion conditions, which are the dominant types of wear in many industrial applications. Distinction is made between two-body and three-body abrasion, solid-particle erosion, and slurry erosion. Cermets, in particular TiC-, Ti(C,N)- and CrC-based composites and hardmetals, are compared for their abrasive and erosive wear performance and mechanism. The review enabled formulation of tribological conditions in which cermets may be comparable or have potential to outperform WC-Co hardmetals. Hardmetals, in general, outperform cermets in abrasion and solid-particle erosion at room and moderate temperatures. However, cermets demonstrate their potential mainly in severe conditions-at elevated temperatures and corrosive (oxidation, electrochemical corrosion) environments.

摘要

WC基金属陶瓷广泛用作工具和耐磨部件的耐磨陶瓷-金属复合材料。原材料供应、环境问题以及硬质合金的一些局限性促使人们致力于开发替代耐磨复合材料——金属陶瓷。我们介绍了富含陶瓷(≥50体积%)的金属陶瓷在磨损和冲蚀条件下的行为的当前知识状态,这些是许多工业应用中主要的磨损类型。区分了两体和三体磨损、固体颗粒冲蚀和浆液冲蚀。比较了金属陶瓷,特别是TiC基、Ti(C,N)基和CrC基复合材料以及硬质合金的磨料磨损和冲蚀磨损性能及机制。该综述有助于确定金属陶瓷可比或有可能优于WC-Co硬质合金的摩擦学条件。一般来说,硬质合金在室温和中等温度下的磨损和固体颗粒冲蚀方面优于金属陶瓷。然而,金属陶瓷主要在恶劣条件下——高温和腐蚀性(氧化、电化学腐蚀)环境中显示出其潜力。

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