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Mechanical properties and features of erosion of cermets

机译:金属陶瓷的机械性能和腐蚀特征

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摘要

The erosive wear resistance of cermets with different composition, structure and properties has been investigated. It has been shown that cermets erosive wear resistance cannot be estimated only by hardness, characterised by resistance to penetration. The differences in wear resistance between cermet materials with equal hardness level can be attributed to differences in their resistance to fracture. The present paper discusses some features of the material removal process during the particle-wall collision. Solid particle erosion tests on eight materials have been performed using silicon carbide and silica abrasive particles within a range of erodent size of 0.1-0.3 mm, impact angles from 30 to 90° and particle velocity from 30 to 80 m s~(-1). In order to clarify the details of the impact, the process of interaction of solid particles with cermet targets was studied using a laser Doppler anemometer (LDA) measuring technique. Systematic studies of the influence of the impact variables on the collision process have been carried out.
机译:研究了不同组成,结构和性能的金属陶瓷的耐冲蚀磨损性。已经表明,不能仅通过硬度(以抗渗透性为特征)来估计金属陶瓷的抗侵蚀磨损性。具有相同硬度水平的金属陶瓷材料之间的耐磨性差异可以归因于其抗断裂性的差异。本文讨论了粒子-壁碰撞过程中材料去除过程的一些特征。使用碳化硅和二氧化硅磨料颗粒,在0.1-0.3 mm的侵蚀尺寸,30-90°的冲击角和30-80 m s〜(-1)的颗粒速度范围内,对八种材料进行了固体颗粒侵蚀测试。为了阐明影响的细节,使用激光多普勒风速计(LDA)测量技术研究了固体颗粒与金属陶瓷靶相互作用的过程。系统地研究了冲击变量对碰撞过程的影响。

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