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Surface Morphology Study in High Speed Milling of Soda Lime Glass

机译:高速研磨的表面形态学研究苏打石灰玻璃

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Soda lime glass has a wide range of applications in optical, bio-medical and semi-conductor industries. It is undeniably a challenging task to produce micro finish surface on an amorphous brittle solid like soda lime glass due to its low fracture toughness. In order to obtain such a finish surface, ductile machining has been exploited, as this usually cause's plastic flow which control crack propagation. At sub-micro scale cutting parameters, researchers achieved nano finish surface in micro milling operation using coated tool. However it is possible to enhance the rate of material removal (RMR) of soda lime glass at flexible cutting condition. High speed cutting at micro meter level, extend of thermal softening might be prominent than the strain gradient strengthening. The purpose of this study was to explore the effects of high cutting speed end milling parameters on the surface texture of soda lime glass using uncoated carbide tool. The spindle speed, depth of cut and feed rate were varied from 20,000 to 40,000 rpm, 10 to 30 mm/min and 30 to 50 μm respectively. Mathematical model of roughness has been developed using Response Surface Methodology (RSM). Experimental verification confirmed that surface roughness (R_a) 0.38μm is possible to achieve at increased RMR, 4.71 mm~3/min.
机译:Soda Lime玻璃具有广泛的光学,生物医疗和半导体行业应用。由于其低断裂韧性,因此无疑是在无定形脆性固体上产生微观磨削表面的具有挑战性的任务。为了获得这种饰面表面,延展性加工已经被利用,因为这通常会导致控制裂纹传播的塑性流。在次微小尺度切割参数下,研究人员使用涂层工具在微铣削操作中实现了纳米饰面表面。然而,在柔性切割条件下可以提高苏打石灰玻璃的材料去除率(RMR)。微型仪表水平的高速切割,热软化的延伸可能比应变梯度强化突出。本研究的目的是探讨高切削速度结束铣削参数对使用未涂物碳化物工具对苏打石灰玻璃表面纹理的影响。轴速度,切割深度和进料速率分别从20,000至40,000rpm,10至30mm / min和30〜50μm变化。使用响应表面方法(RSM)开发了粗糙度的数学模型。实验验证证实,表面粗糙度(R_A)0.38μm可以在增加的RMR增加,4.71mm〜3 / min。

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