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Fundamental Study on the Precision Abrasive Machining Using a Cavitation in Reversing Suction Flow

机译:反向流动的空化精密磨料加工基础研究

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The purpose of this study is to make clear the machining effect of the precision abrasive machining using the cavitation in reversing suction flow, which can easily finish to a fine surface by a simple apparatus. The machining fluid including loose micro abrasive grains is sucked by a pump, and the cavitation occurs ahead of the nozzle fixed in the suction chamber because of the rapid decrease of pressure of machining fluid. We use the cavitation impact to make the abrasive grains to interfere with the workpiece surface. In this report, the possibility of application of the new abrasive machining to the precision manufacturing is investigated by analyzing the behavior of machining fluid, the stock removal and the surface finish in machining of glass. The cavitation impact is strongest under the nozzle clearance of 20mm and restriction nozzle diameter of 4mm. Glass surface is finished up to several nanometers in Ry with slight stock removal by the proposed abrasive machining.
机译:这项研究的目的是弄清楚利用空化作用在反向抽吸流中进行精密磨料加工的加工效果,通过简单的设备就可以轻松地将其精加工成细小的表面。包括疏松的微细磨粒的加工流体被泵抽吸,并且由于加工流体的压力的快速降低,气蚀发生在固定在吸入室中的喷嘴之前。我们利用空化冲击使磨粒干扰工件表面。在本报告中,通过分析玻璃加工过程中加工液的行为,切削量和表面光洁度,研究了将新型磨料加工应用于精密制造的可能性。在20mm的喷嘴间隙和4mm的限制喷嘴直径下,空化影响最大。通过拟议的磨削加工,玻璃表面的光洁度可达Ry数纳米,并且有少量切削。

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