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Mechanism and experimental research on ultra-precision grinding of ferrite

机译:铁氧体超精密磨削机理与实验研究

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Ultra-precision grinding of ferrite is conducted to investigate the removal mechanism. Effect of the accuracy of machine tool key components on grinding surface quality is analyzed. The surface generation model of ferrite ultra-precision grinding machining is established. In order to reveal the surface formation mechanism of ferrite in the process of ultra-precision grinding, furthermore, the scientific and accurate of the calculation model are taken into account to verify the grinding surface roughness, which is proposed. Orthogonal experiment is designed using the high precision aerostatic turntable and aerostatic spindle for ferrite which is a typical hard brittle materials. Based on the experimental results, the influence factors and laws of ultra-precision grinding surface of ferrite are discussed through the analysis of the surface roughness. The results show that the quality of ferrite grinding surface is the optimal parameters, when the wheel speed of 20000r/mm, feed rate of 1 Omm/min, grinding depth of 0.005mm, and turntable rotary speed of 5r/min, the surface roughness Ra can up to 75nm.
机译:对铁素体进行超精密磨削以研究其去除机理。分析了机床关键零件精度对磨削表面质量的影响。建立了铁氧体超精密磨削加工的表面生成模型。为了揭示超精密磨削过程中铁素体的表面形成机理,提出了科学,准确的计算模型来验证磨削表面的粗糙度,提出了解决方案。正交实验是使用高精度空气静力转台和空气静力主轴对铁氧体进行设计的,铁氧体是一种典型的硬质脆性材料。在实验结果的基础上,通过分析表面粗糙度,探讨了铁素体超精密磨削表面的影响因素和规律。结果表明,当砂轮转速为20000r / mm,进给速度为1 Omm / min,磨削深度为0.005mm,转盘转速为5r / min时,铁素体磨削表面的质量是最佳参数,表面粗糙度Ra可以达到75nm。

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