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首页> 外文期刊>Latin American Journal of Solids and Structures >Method of control of machining accuracy of low-rigidity elastic-deformable shafts
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Method of control of machining accuracy of low-rigidity elastic-deformable shafts

机译:控制低刚性弹性变形轴的加工精度的方法

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摘要

The paper presents an analysis of the possibility of increasing the accuracy and stability of machining of low-rigidity shafts while ensuring high efficiency and economy of their machining. An effective way of improving the accuracy of machining of shafts is increasing their rigidity as a result of oriented change of the elastic-deformable state through the application of a tensile force which, combined with the machining force, forms longitudinal-lateral strains. The paper also presents mathematical models describing the changes of the elastic-deformable state resulting from the application of the tensile force. It presents the results of experimental studies on the deformation of elastic low-rigidity shafts, performed on a special test stand developed on the basis of a lathe. An estimation was made of the effectiveness of the method of control of the elastic-deformable state with the use, as the regulating effects, the tensile force and eccentricity. It was demonstrated that controlling the two parameters: tensile force and eccentricity, one can improve the accuracy of machining, and thus achieve a theoretically assumed level of accuracy.
机译:本文对提高低刚性轴加工精度和稳定性同时确保其加工效率和经济性的可能性进行了分析。一种有效的提高轴的加工精度的方法是,通过施加与加工力结合形成纵向-横向应变的拉力,使可弹性变形的状态发生定向变化,从而提高轴的刚度。本文还提供了数学模型,描述了由于施加拉力而导致的弹性变形状态的变化。它介绍了在基于车床的特殊试验台上进行的弹性低刚度轴变形实验研究的结果。利用拉力和偏心率作为调节效果,对控制弹性变形状态的方法的有效性进行了估算。事实证明,控制两个参数:拉力和偏心率,可以提高加工精度,从而达到理论上假定的精度水平。

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