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Microscale wear of vitrified abrasive materials

机译:陶瓷磨料的微观磨损

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摘要

The study of bonding hard materials such as aluminium oxide and cubic boron nitride (cBN) and the nature of interfacial cohesion between these materials and glass is very important from the perspective of high precision grinding. Vitrified grinding wheels are typically used to remove large volumes of metal and to produce components with very high tolerances. It is expected that the same grinding wheel be used for both rough and finish machining operations. Therefore, the grinding wheel, and in particular its bonding system, is expected to react differently to a variety of machining operations. In order to maintain the integrity of the grinding wheel, the bonding system that is used to hold abrasive grains in place will react differently to forces that are placed on individual bonding bridges. This paper examines the role of vitrification heat treatment on the development of strength between abrasive grains and bonding bridges, and the nature of fracture and wear in vitrified grinding wheels that are used for precision grinding applications. (C) 2004 Kluwer Academic Publishers. [References: 14]
机译:从高精度研磨的角度出发,研究粘结氧化铝和立方氮化硼(cBN)等硬质材料以及这些材料与玻璃之间的界面粘结性质非常重要。陶瓷砂轮通常用于去除大量金属并生产具有很高公差的部件。可以预期将同一砂轮用于粗加工和精加工。因此,期望砂轮,特别是其粘结系统对各种机加工操作有不同的反应。为了保持砂轮的完整性,用于将磨粒固定在适当位置的粘结系统将对施加在各个粘结桥上的力产生不同的反应。本文研究了玻璃化热处理对磨粒和粘结桥之间强度发展的作用,以及用于精密磨削的玻璃化砂轮的断裂和磨损性质。 (C)2004 Kluwer学术出版社。 [参考:14]

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