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Influence of the brittle behavior of work materials on microgrooving

机译:工作原料脆性行为对微型轧探的影响

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An electroplated diamond wire tool is frequently used for the machining of hard and brittle materials such as silicon ingots, magnetic materials, ceramics, and sapphires. This study aims to examine the influence of brittle behavior of work materials on machinability (including tool wear); therefore, we conduct dynamic ultramicro hardness measurements and microgrooving experiments for three types of ceramics. The results indicate that the groove depth of a work material tends to increase with the processing time. Moreover, material properties of a work material, such as hardness and toughness, have a significant impact on the fluctuations in its groove depth. However, kerf width of a work material does not depend on the processing conditions and material properties. In addition, a faster relative velocity improves processing efficiency but also increases tool wear.
机译:电镀金刚石线材经常用于加工硬质和脆性材料,例如硅锭,磁性材料,陶瓷和蓝宝石。本研究旨在检验工作材料脆性行为对机械加工的影响(包括刀具磨损);因此,我们对三种类型的陶瓷进行动态超微硬度测量和微型血液脱模实验。结果表明,随着处理时间,工作材料的槽深度趋于增加。此外,工作材料的材料特性,例如硬度和韧性,对其凹槽深度的波动产生显着影响。然而,工作材料的Kerf宽度不依赖于处理条件和材料特性。此外,更快的相对速度提高了加工效率,但也增加了工具磨损。

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