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Experimental investigation of machining characteristics in rotary ultrasonic machining of quartz ceramic

机译:石英陶瓷旋转超声加工中加工特性的实验研究

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Quartz ceramic has been well observed as one of the highly demanded advanced ceramics which is receiving enlarging industrial approbation owing to its excellent and superior properties. However, its fruitful processing with traditional and non-traditional machining methods is still a challenge. The current article has aimed to experimentally investigate the influence of several process variables, namely, spindle speed, feed rate, coolant pressure, and ultrasonic power on machining characteristics of interest, i.e. chipping size, and material removal rate in rotary ultrasonic machining of quartz ceramic. Response surface methodology has been employed to design the experiments and the variance analysis test has also been performed with a view to observe the significance of considered parameters. Microstructure of machined samples has also been evaluated and analyzed using scanning electron microscope. This analysis has revealed and confirmed the presence of dominating brittle fracture that caused removal of material along with the slighter plastic deformation in rotary ultrasonic machining of quartz ceramic. The soundness and competence of the developed mathematical model have been established with test results. The multi-response optimization of machining responses has also been done by utilizing desirability approach, and at optimized parametric setting, the obtained experimental values for material removal rate and chipping size are, 0.6437 mm(3)/s and 1.3326 mm, respectively, with the combined desirability index value of 0.949.
机译:石英陶瓷已被公认为是对高要求的高级陶瓷之一,由于其优异的性能而受到越来越多的工业认可。然而,用传统和非传统的加工方法进行有效的加工仍然是一个挑战。本文旨在通过实验研究几种工艺变量(主轴转速,进给速度,冷却液压力和超声功率)对感兴趣的加工特性(即切屑尺寸和石英陶瓷的旋转超声加工中的材料去除率)的影响。 。响应面方法已用于设计实验,并且还进行了方差分析测试,以观察所考虑参数的重要性。还使用扫描电子显微镜对加工样品的微观结构进行了评估和分析。该分析揭示并确认了主要脆性断裂的存在,该脆性断裂导致材料的去除以及石英陶瓷的旋转超声加工中的轻微塑性变形。已建立的数学模型的健全性和能力与测试结果已经建立。加工响应的多响应优化也已经通过使用期望方法来完成,并且在优化的参数设置下,获得的材料去除率和切屑尺寸的实验值分别为0.6437 mm(3)/ s和1.3326 mm,综合合意指数值为0.949。

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