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Fractal Characterization and Simulation of Surface Microtopography Machined with Abrasive Jet Precision Finishing with Grinding Wheel as Restraint

机译:用砂轮磨削磨削射流精密磨削磨削射流精密磨削的分形表征及仿真

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Abrasive jet finishing process is a novel process whose objective is to remove surface defect layer and to diminish roughness and ripple after grinding. Experiments were performed with plane grinderM7120 and workpiece material 45# steel which was ground with the surface roughness values of Ra =0.2-0.6 μm. The machined surface morphology was studied using SEM and the microcosmic geometry parameters were measured with MICROMESVRE2 instrument. In this paper, with the fractal dimension, Ra, Rq and the supporting rate curve, the surfaces of grinding machining and abrasive jet finishing machining were researched. The result indicated that the machined surfaces changed from continuous parallel micro-groove and plough to randomly distributed discontinuous micro-pit could be observed with the increase of machining circles and surface roughness was obviously improved. Furthermore, the isotropy surface and uniformity veins both parallel and perpendicular machining direction were attained by abrasive jet precision finishing with grinding wheel as restraint. The supporting rate curve of the surface profile can be increased. This is favorable for the wearable capability of the workpiece.
机译:磨料喷射精加工过程是一种新的过程,其目的是去除表面缺陷层并在研磨后减小粗糙度和纹波。使用平面Grinderm7120和工件材料45#钢进行实验,该工件材料用Ra =0.2-0.6μm的表面粗糙度值研磨。使用SEM研究机加工表面形态,并用MicroMesVre2仪器测量微观几何参数。本文采用分形尺寸,RA,RQ和支撑速率曲线,研究了研磨加工和磨料喷射精加工加工的表面。结果表明,随着加工圆的增加,可以观察到从连续平行微槽和犁到随机分布的不连续微坑的加工表面,并且显着提高了表面粗糙度。此外,通过用砂轮的磨削喷射精度精加工来实现平行和垂直加工方向的各向同性表面和均匀性静脉。可以增加表面轮廓的支撑速率曲线。这有利于工件的可穿戴能力。

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