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首页> 外文期刊>Procedia CIRP >A mechanistic model to predict cutting force on orthogonal machining of Aluminum 7475-T7351 considering the edge radius
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A mechanistic model to predict cutting force on orthogonal machining of Aluminum 7475-T7351 considering the edge radius

机译:考虑边角半径的铝7475-T7351正交加工中切削力预测的力学模型

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The ploughing force related with action of edge radius is an important factor which influences flow stress, chip formation or surface integrity. Some fraction of the cutting forces are called parasitic (additional) forces and they do not contribute on chip formation process. These forces are usually assumed to be the cutting force (constant value) for zero feed. However, this effect is related with the edge radius. To improve force modelling prediction, a new mechanistic model to predict cutting force considering edge radius is presented. The model was developed for two cutting speeds and in a wide range of feeds for three edge radii. The model was validated with additional experimental tests, achieving relative errors lower than 3%.
机译:与边缘半径作用有关的犁力是影响流动应力,切屑形成或表面完整性的重要因素。切削力的一部分称为寄生力(附加力),它们对切屑形成过程没有影响。通常将这些力假定为零进给时的切削力(恒定值)。但是,这种效果与边缘半径有关。为了改善力模型的预测,提出了一种新的力学模型来预测考虑边缘半径的切削力。该模型是针对两种切削速度而开发的,并在多种进给范围内提供了三个边缘半径。该模型已通过其他实验测试验证,相对误差低于3%。

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