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首页> 外文期刊>Procedia Computer Science >Experimental and Parametric Optimization of Micro Holes on ANSI 304 Using Micro Abrasive Jet Machining (MAJM)
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Experimental and Parametric Optimization of Micro Holes on ANSI 304 Using Micro Abrasive Jet Machining (MAJM)

机译:使用微磨料射流加工(MAJM)在ANSI 304上对微孔进行实验和参数优化

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Micro Abrasive jet machining (MAJM) is one of the most convenient micromachining technologies for hard and brittle materials. Now a day’s mostly ceramics and semiconductor materials are used for manufacturing electronic devices and micro fluidic channels. This process is having various distinct advantages, as compare to other micro-fabrication techniques this method is represented a very high erosion rate. In this paper attempt has been made to develop MAJM for difficult to machine materials such as stainless steel ANSI 304 plate. In order to raise the machining productivity of micromachining, the new design and fabrication of Laval nozzle has been first reported. Circular cross sectional nozzle is developed for high velocity, precise etching and patterning on difficult to machine material such as stainless steel ANSI 304 Plate. The present study focus the effect of different parameters like air pressure, abrasive material, abrasive mesh size, nozzle diameter, guiding pressure and Standoff distance on machining performance is investigated using Taguchi’s Design of Experiment methodology. Analysis of variance (ANOVA) is implementing to find out the significant influence of each factor.
机译:微型磨料喷射加工(MAJM)是用于硬质和脆性材料的最便捷的微加工技术之一。现在,一天中主要使用陶瓷和半导体材料制造电子设备和微流体通道。与其他微加工技术相比,该方法具有各种明显的优势,这种方法具有很高的腐蚀速率。在本文中,已经尝试开发用于难以加工的材料(例如,不锈钢ANSI 304板)的MAJM。为了提高微机械加工的生产率,首先报道了拉瓦尔喷嘴的新设计和制造。圆形横截面喷嘴专为在难以加工的材料(例如不锈钢ANSI 304板)上进行高速,精确蚀刻和图案化而开发。本研究使用田口的实验设计方法研究了气压,磨料,磨料尺寸,喷嘴直径,导向压力和支座距离等不同参数对加工性能的影响。正在执行方差分析(ANOVA),以找出每个因素的重大影响。

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