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Numerical and experimental investigation on grinding-induced exit burr formation

机译:磨削诱导出口毛刺形成的数值和实验研究

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摘要

Exit burrs are easily generated on workpiece edges. In grinding process, particularly, exit burrs could deteriorate the highly required precision and even affect the functionality of components. Therefore, to understand the burr formation mechanism and control it in grinding process is of great significance. To this end, this paper investigates the features and mechanism of exit burr formation, as well as the influence of grinding conditions including grinding speed, grinding depth, wheel granularity, and grinding pass sequences on the exit burr formation of 12CrMoV stainless steel using the Al2O3 grinding wheels. A 3D finite element (FE) model of single-grit scratching process was developed for explaining the exit burr formation procedures. The effects of different grinding conditions on the exit burr sizes were analyzed, and the characteristics of the exit burr sizes and hardness were observed via experiments. It was found that the whole procedure of exit burr formation during grinding could be divided into six stages: steady-state grinding, pre-initiation, appearance of the fourth deformation zone, formation of plastic deformation band, burr development, and finish of burr formation. The burr sizes were strongly determined by the wheel granularity and grinding depth, rather than the grinding speed. For the same required grinding depths, using whether single pass or multiple passes of the grit has a very small impact on the exit burr sizes. The hardness of the burr root part is relatively stronger than that of the burr rollover part, while the burr hardness would increase when decreasing the grinding depth.
机译:在工件边缘上很容易产生退出毛刺。在磨削过程中,特别是,出口毛刺可能会使高度所需的精度恶化,甚至影响组件的功能。因此,了解毛刺形成机制并在研磨过程中控制它具有重要意义。为此,本文调查了出口毛刺形成的特征和机制,以及磨削条件的影响,包括磨削速度,磨削深度,轮子粒度和磨削通行序列在使用Al2O3的12crmov不锈钢的出口毛刺上形成砂轮。开发了一种用于解释出口毛刺形成程序的单砂砾刮擦过程的3D有限元模型。分析了不同研磨条件对出口毛刺尺寸的影响,通过实验观察出出口毛刺尺寸和硬度的特性。结果发现,研磨过程中的出口毛刺形成的整体过程可分为六个阶段:稳态研磨,预发起,第四变形区域的外观,形成塑性变形带,毛刺开发,以及毛刺形成的饰面。毛刺尺寸强烈地由轮粒度和研磨深度决定,而不是研磨速度。对于相同的所需研磨深度,使用砂砾的单通或多次通过对出口毛刺尺寸的影响非常小。毛刺根部的硬度比毛刺翻转部的硬度相对较强,而在降低研磨深度时毛刺硬度会增加。

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