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Theoretical Analysis and Experimental Verification of Validity Finished by Abrasive Jet with Grinding Wheel as Restraint

机译:磨削轮磨削磨削磨削磨削的理论分析与实验验证磨削射流作为克制

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The integration manufacturing technology is a kind of compound precision finishing process that combined grinding with abrasive jet finishing, in which inject slurry of abrasive and liquid solvent into grinding zone between grinding wheel and work surface under no radial feed condition when workpiece grinding were accomplished. The abrasive particles are driven and energized by the rotating grinding wheel and liquid hydrodynamic pressure and increased slurry speed between grinding wheel and work surface to achieve micro removal finishing. In the paper, the machining process validity was verified by experimental investigation. Experiments were performed with plane grinder M7120 and workpiece material 40Cr steel which was ground with the surface roughness mean values of Ra=0.6μm. The machined surface morphology was studied using Scanning Electron Microscope (SEM) and metallography microscope and microcosmic geometry parameters were measured with TALYSURF5 instrument respectively. The experimental results show the novelty process method, not only can obviously diminish longitudinal geometry parameter values of ground surface, but also can attain isotropy surface and uniformity veins at parallel and perpendicular machining direction. Furthermore, the finished surface has little comparability compared to grinding machining surface and the process validity was verified.
机译:整合制造技术是一种复合精密精加工方法,其组合磨削喷射精加工,其中在完成工件研磨时在没有径向进料条件下,在磨轮和工作表面之间将磨料和液体溶剂的浆料注入研磨区域中。磨料颗粒被驱动和通电通过旋转砂轮和液体动压力和磨削轮​​和工件表面,以实现微除去精加工之间增加浆料的速度。本文通过实验调查验证了加工过程有效性。用平面研磨机M7120和工件材料40CR钢进行实验,该工件材料与表面粗糙度的平均值接地Ra =0.6μm。使用扫描电子显微镜(SEM)研究了加工表面形态,并分别用Talysurf5仪器测量了金相显微镜和微观几何参数。实验结果表明了新颖的工艺方法,不仅可以明显减少地面的纵向几何学参数值,而且还可以在平行和垂直加工方向上获得各向同性的表面和均匀性静脉。此外,与研磨加工表面相比,成品表面具有很小的可比性,并且验证了工艺有效性。

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