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Study on Properties of Grinding Fluid Jet and Nozzle Position for Super-high Speed Point Grinding

机译:超高速点磨削研磨流体射流和喷嘴位置的性能研究

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Super-high speed point grinding is a new high-speed grinding technology with some excellent machining performances. In such a grinding process, there is a high-speed airflow rotating around the edge of grinding wheel which hinders the grinding fluid from injecting into the contact area and makes the fluid atomization and splash during grinding process, so as to decrease the ratio of effective grinding fluid into contact area and affect the surface integrity of workpiece. In this paper, the structure and properties of grinding fluid jet is analyzed, the velocity distribution field of the round turbulent jet is discussed theoretically and simulated. Based on the pressure balance principle, a mathematical model is established for the jet velocity at the fluid nozzle, which enables the grinding fluid to pass through the high speed airflow and enter into the contact area. According to the analysis of the grinding fluid velocity in the jet core, an engineering formula is given to calculate the position limit of nozzle during grinding process, as well as a practical design example for the high speed grinding machine is presented.
机译:超高速磨削是一种新的高速磨削技术,具有一些优异的加工性能。在这种研磨过程中,在研磨轮的边缘周围旋转的高速气流,其阻碍磨削流体注入接触面积并使流体雾化在研磨过程中,以降低有效的比率将液体研磨成接触面积并影响工件的表面完整性。本文分析了研磨流体射流的结构和性质,从理论上和模拟讨论了圆形湍流射流的速度分布场。基于压力平衡原理,建立了流体喷嘴的喷射速度的数学模型,这使得研磨流体能够穿过高速气流并进入接触面积。根据喷射芯的研磨流体速度的分析,给出了在研磨过程中计算出喷嘴的位置限制,并且提出了高速磨床的实用设计示例。

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