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ELID Fine Grinding of Sapphire Rollers with Emphasis on Roughness and Material Removal Rate

机译:着重于粗糙度和材料去除率的蓝宝石辊的ELID精磨

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The demand for sapphire (α-Al 2 O 3 ) has significantly increased due to its reliable properties. Sapphire is known for its high hardness and high brittleness. Sapphire has excellent properties such as optic, mechanical and physical properties, which can be maintained even if machined in high temperatures. Due to these properties, sapphire has been used in many different applications such as aerospace, optics, and electronics as well as other industries. Machining of Sapphire is challenging due to its high hardness and brittleness. Fine grinding can be preferable over conventional grinding when machining ceramics because of the ability to provide a flat surface. However, the manufacturing cost for such materials is very high because of high tool wear and longtime machining. In addition, most of the grinding process is followed by a lapping process. Elimination of lapping process can be accomplished using many techniques, one of which is the use of electrolytic in process dressing (ELID). Therefore, the use of fine ELID grinding will reduce the machining time which in turn reduces the manufacturing cost. Part of the solution also investigates the influence of different variables on the workpiece surface finish. This paper presents the influence of four parameters with three level each: different pressures, different eccentricities, different spindle speeds, and different wheel speed ratios. A full factorial design, for both roughness (Ra) and material removal rate (MRR) conducted to present mathematical models which predict future results. The kinematics of the process will be investigated based on the effect of different eccentricity. The mesh size of the diamond grinding wheel used in this experiment is #400.
机译:由于其可靠的性能,对蓝宝石(α-Al2 O 3)的需求已大大增加。蓝宝石以其高硬度和高脆性而闻名。蓝宝石具有出色的光学,机械和物理性能,即使在高温下加工也可以保持。由于这些特性,蓝宝石已被用于许多不同的应用中,例如航空航天,光学和电子以及其他行业。蓝宝石的加工由于其高硬度和脆性而具有挑战性。在加工陶瓷时,由于能够提供平坦的表面,因此与常规研磨相比,精细研磨可能会更好。然而,由于高的工具磨损和长时间的加工,这种材料的制造成本非常高。另外,大多数研磨过程之后是研磨过程。可以使用多种技术来消除研磨工艺,其中一种是在工艺修整中使用电解技术(ELID)。因此,使用精细的ELID研磨将减少加工时间,进而降低制造成本。该解决方案的一部分还研究了不同变量对工件表面光洁度的影响。本文介绍了四个参数(每个参数三个级别)的影响:不同的压力,不同的偏心率,不同的主轴转速和不同的轮速比。进行了针对粗糙度(Ra)和材料去除率(MRR)的全因子设计,以提供可预测未来结果的数学模型。该过程的运动学将基于不同的离心率的影响进行研究。本实验中使用的金刚石砂轮的网眼尺寸为#400。

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