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Wear-resistant metallic and elastomeric materials in the mining and mineral processing industries ― an overview

机译:采矿和矿物加工行业中的耐磨金属和弹性材料-概述

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Development of optimum wear-resistant materials relies on design of the total tribosystem based on the mechanical, chemical and thermal demands of the triboenvironment. Further material refinement is based on knowledge of the wear and degradation mechanisms, with material parameters such as composition and microstructure becoming vitally important. Wear-resistant metallic and elastomeric materials developed or adapted for use in the mining and mineral processing industries are reviewed. Tailoring composition and morphology of white cast irons and elastomers such as natural and synthetic rubbers and polyurethanes is described. Performance of metals and elastomers in corrosive-wear environments is compared. Translation from product specification data sheets (hardness, tensile strength, DIN or ASTM abrasion resistance) to field wear performance is discussed. The effect of tribosystem design on wear rate is emphasized.
机译:最佳耐磨材料的开发取决于整个摩擦系统的设计,该系统基于摩擦环境的机械,化学和热学要求。进一步的材料改进是基于对磨损和降解机理的了解,材料参数(例如组成和微观结构)变得至关重要。对开发或适用于采矿和矿物加工行业的耐磨金属和弹性材料进行了回顾。描述了白色铸铁和弹性体(例如天然和合成橡胶和聚氨酯)的定制组成和形态。比较了金属和弹性体在腐蚀磨损环境下的性能。讨论了从产品规格数据表(硬度,抗张强度,DIN或ASTM耐磨性)到现场磨损性能的转换。强调了摩擦系统设计对磨损率的影响。

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