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Hole Quality Measures in Rotary Ultrasonic Drilling of Silicon Dioxide (SiO2): Investigation and Modeling through Designed Experiments

机译:二氧化硅旋转超声钻孔的空穴质量措施(SiO2):通过设计实验的调查和建模

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The silicon dioxide (i.e. quartz) has been finely viewed as one of the exceedingly claimed contemporary ceramics which is getting broad engineering applications owing to its superior and excellent properties. Though, its effective and productive processing is still unanswered. This study has been intended to study the consequence of numerous input factors, i.e.; feed rate, tool rotation, ultrasonic power, and coolant pressure on the measures of hole quality (chipping thickness, and surface roughness) experimentally, in rotary type ultrasonic drilling of silicon dioxide. The experiments have been schemed out by employing response surface methodology. The evaluation and analysis of the microstructure of processed samples have also been attempted. This testing has revealed the existence of dominated brittle type of fracture along with the slighter plastic flow that takes away the material from the work. The fitness and consistency of the built-up mathematical model have also been developed with the trial runs. The optimization of measured multiple responses has been carried by using desirability based approach, and at optimized variable values, the superior test run values for chipping thickness, and surface roughness have been observed.
机译:二氧化硅(即石英)被精细地被视为超出的当代陶瓷之一,由于其优越且优异的性能而导致广泛的工程应用。虽然,其有效和生产性的加工仍未得到答复。这项研究旨在研究许多输入因素的后果,即;进料速率,工具旋转,超声波功率和冷却​​剂压力对孔质量(切削厚度和表面粗糙度)的测量,在旋转式超声钻硅二氧化碳中。通过采用响应面方法举例说明了实验。还尝试了处理样品微观结构的评价和分析。该测试揭示了所属脆性骨折的存在,以及从工作中取出材料的较小塑料流动。还通过试验运行开发了建立数学模型的健身和一致性。通过使用基于期望的方法和优化的可变值,已经观察到测量多响应的优化,并且在优化的可变值下,已经观察到用于切碎厚度和表面粗糙度的卓越的测试运行值。

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