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Study on the Influence of Geometrical Parameters of Abrasive Grains in Abrasive Flow Machining

机译:磨粒几何参数对磨料流加工的影响研究

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摘要

In order to improve the accuracy of quantitative calculation of abrasive flow machining, the influence of geometrical parameters of abrasive grains on machining is analyzed by representing the geometrical shapes of abrasive grains with three parameters, namely height of abrasive grains, cone angle and wear height, establishing the calculation model of blunt conical abrasive grains for abrasive flow machining, deducing the force formulas of abrasive grains and calculating the maximum cutting depth in the event of smooth flow of abrasive grains in the boundary layer. It is shown by researches that the geometrical parameters of abrasive grains have significant influence on the maximum cutting depth as follows: The maximum cutting depth of abrasive grains increases linearly with the increase of height of abrasive grains, and varies in the form of hump with the changes of cone angle, the cutting depth has the maximum value when the cone angle reaches 60°; The maximum cutting depth of abrasive grains decreases rapidly with the increases of wear height, when the wear height increases to a critical value, the abrasive grains basically lose cutting ability.
机译:为了提高磨料流量加工定量计算的准确性,通过用三个参数表示磨料颗粒的几何形状,即磨料颗粒的高度,锥角和磨损高度,来分析磨料颗粒的几何参数对加工的影响,建立用于磨料流加工的钝圆锥磨料的计算模型,推导磨料的力公式并计算边界层中磨料顺利流动时的最大切削深度。研究表明,磨粒的几何参数对最大切削深度有显着影响,如下所示:磨粒的最大切削深度随磨粒高度的增加而线性增加,并随峰高的变化而呈驼峰状。改变锥角,当锥角达到60°时,切削深度达到最大值。磨粒的最大切削深度随磨损高度的增加而迅速减小,当磨损高度增加到临界值时,磨粒基本上失去切削能力。

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