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Parametric Investigations into Internal Surface Modification of Brass Tubes with Alternating Magnetic Field

机译:具有交流磁场的黄铜管内表面改性的参数研究

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The final finish operations have great significance in an overall manufacturing cycle of a product. The surface finishing and modification of surfaces have been the vital requirements of most of the products. The processes like shot peening, shot blasting, abrasive finishing and super finishing are being largely employed for such requirements. While final finishing of flat and outside surfaces are relatively easy and well established, the internal surfaces such as those of pipes is not so simple. In this paper, the application of low frequency alternative magnetic field has been explored for imparting surface modification including surface on the internal cylindrical surface. The cold drawn SUS304 stainless steel (SS) pins have been used as micro tools. The interaction of vibrating SS pins (due to AC magnetic field) with internal surface of rotating pipe has resulted in micro indentation of surface thereby improving surface characteristics. An experimental setup has been developed to investigate the effect of major process parameters on the percentage improvement in surface finish and surface hardness. Response Surface Methodology has been employed to design the experiment for demonstrating the effect of various process parameters on the surface finish and hardness of the processed surface. It is observed that SUS304 stainless steel pins are capable of improving the surface characteristics like surface finish and surface hardness in the internal surface of brass tube.
机译:最终的饰面操作在产品的整体制造周期中具有重要意义。表面的表面整理和改变是大多数产品的重要要求。喷丸,喷丸,磨料精加工和超级整理等过程主要用于此类要求。虽然扁平和外表面的最终整理相对容易且成立得很好,但诸如管道的内表面并不那么简单。本文已经探索了低频替代磁场的应用,用于赋予包括内圆柱表面上的表面的表面改性。冷却的SUS304不锈钢(SS)销已用作微工具。振动SS引脚(由于AC磁场)与旋转管内表面的相互作用导致表面的微压痕,从而改善了表面特性。已经开发了一种实验设置,以研究主要过程参数对表面光洁度和表面硬度百分比改善的影响。已经采用响应面方法来设计实验,以证明各种工艺参数对加工表面的表面光洁度和硬度的影响。观察到SUS304不锈钢销能够改善铜管管内表面的表面光洁度和表面硬度等表面特性。

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