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首页> 外文期刊>CERAMICS INTERNATIONAL >Effect of minimum quantity lubrication on surface integrity in high-speed grinding of sintered alumina using single layer diamond grinding wheel
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Effect of minimum quantity lubrication on surface integrity in high-speed grinding of sintered alumina using single layer diamond grinding wheel

机译:用单层金刚石砂轮对烧结氧化铝高速研磨表面完整性的影响

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摘要

Exceptional properties of advanced ceramics attract various heavy engineering industries. But surface and subsurface defects generated during final stage abrasive machining processes make them vulnerable and limit their widespread use. This study aims to provide an understanding of the effectiveness of Minimum Quantity Lubrication (MQL) in reducing surface and sub-surface damages in high-speed grinding of brittle materials. In the present work, high-speed grinding of alumina was performed under MQL-neat oil, MQL-soluble oil (5% concentration in water) and conventional wet grinding environment with the single layer electroplated diamond grinding wheel. In-depth analysis of surface topology, surface morphology, residual stress and sub-surface damage was carried out using 3D surface profilometer, scanning electron microscope, X-ray diffractometer, and Xray micro-CT, respectively. Grinding under MQL-neat oil provided leptokurtic (peaky) surface profile due to increased plastic deformation, whereas conventional wet grinding generated platykurtic (plateaued) surface profile because of brittle fracture. A simple model has been proposed to understand the underlying mechanism of generation of peaky and plateaued type of surface in grinding due to ductile deformation and brittle fracture, respectively. Morphological observation of the sample ground under MQL-neat oil showed distinct microcutting and ploughing marks. MQL-neat oil condition also provided more compressive residual stress and less subsurface damage than other grinding environments. This is attributed to increased plastic deformation due to efficient lubrication under the MQL-neat oil grinding regime. The mechanism of increased plastic deformation and reduced sub-surface damage due to improved lubrication under MQL in high-speed grinding of brittle materials has been discussed.
机译:高级陶瓷的特殊性质吸引了各种重型工程行业。但是在最终阶段磨料加工过程中产生的表面和地下缺陷使得它们易受攻击并限制他们广泛的使用。本研究旨在了解最小量润滑(MQL)在降低脆性材料的高速研磨中的表面和子表面损伤方面的有效性。在本工作中,在MQL-纯油状物,MQL-可溶性油(水中5%浓度5%浓度)和具有单层电镀金刚石砂轮的传统湿式磨削环境下进行高速研磨。表面拓扑的深入分析,使用3D表面型材计,扫描电子显微镜,X射线衍射仪和X射线微型CT进行表面形态,表面形态,残余应力和子表面损坏。由于塑性变形的增加,在MQL-整齐的油下提供睑板(峰值)表面型材,而常规湿法研磨,因为脆性骨折而产生平铃粥(柔韧性)表面曲线。已经提出了一种简单的模型,以了解由于韧性变形和脆性骨折而在研磨中产生峰值和韧化型表面的潜在机制。在MQL-整齐的油下对样品接地的形态学观察显示了不同的微包和耕作标记。 MQL-整齐的油状况还提供比其他磨削环境更少的压缩残余应力和更少的地下损坏。这归因于由于MQL整洁的油磨制方案下有效润滑,因此增加了塑性变形。已经讨论了塑性变形增加的机制和由于MQL在脆性材料的高速研磨下的改善润滑导致的副表面损伤。

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