Abstract
The problem of processing efficiency of synthetic superhard materials (SSM), which are used in various sectors of the national economy, remains very relevant. Diamond grinding as a traditional SSM processing process is very costly, has a low performance, and is characterized by unstable quality of processing products. In addition, the tool used in this process is characterized by the high cost of precious diamond grains during operation. Existing brands of metal ligaments used in diamond circles differ significantly in their strength properties. In order to increase the workability of diamond circles, the task was to identify the optimal combination of grades, grain sizes, diamond powders concentrations with the type of metal bond, which ensure a minimum defect of sintered grinding wheels (in terms of determining the conditions for maximum preservation of the integrity of the grains). In the given work, the method of grains dynamic strength determination and the optimal combination of components of the diamond-bearing layer of grinding wheels is given in order to choose the optimal composition of the bond and increasing of diamond grinding efficiency.
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Sushko, O., Kiurchev, S., Kolodii, O., Bakardzhyiev, R. (2019). Grains Dynamic Strength Determination and the Optimal Combination of Components of a Diamondiferous Layer of Grinding Wheels. In: Nadykto, V. (eds) Modern Development Paths of Agricultural Production. Springer, Cham. https://doi.org/10.1007/978-3-030-14918-5_27
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DOI: https://doi.org/10.1007/978-3-030-14918-5_27
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