通过控制技术连接提高复杂旋转表面的成型效率

N. Rasulov, Elgun Shabiyev, G. Damirova, M. Alakbarov, Yusif Huseynov
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引用次数: 0

摘要

该作品通过控制磨削和塑性变形形成成型表面过程中的技术连接,解决了提高加工精度和生产率的问题;介绍了由开发技术提供的工作表面齿形质量的主要指标,在采用仿形磨削齿形表面时,实际切削深度的最大值减少了 1.5 倍以上;确定了工件位置对采用径向进给方式轧制高精度螺纹的螺距和半角精度的影响,其目的是提高加工精度和生产率。确定了工件位置对径向进给轧制高精度螺纹的螺距和轮廓半角精度的影响,其目的是移动和测量;确定了切向进给在低刚度工件上轧制螺纹的轧辊的设计特征,其螺纹参数,包括螺旋角与轧制螺纹尺寸的功能和结构关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Increasing the Efficiency of Forming Complex Rotating Surfaces with the Controlling of Technological Connections
The work addresses the issues of increasing processing accuracy and productivity by controlling technological connections that act during the formation of shaped surfaces by grinding and plastic deformation, presents the main indicators of the quality of teeth on the working surface, provided by the developed technology, with a decrease in the maximum value of the actual cutting depth by more than 1.5 times when grinding toothed surfaces by copying, determined influence of the position of the workpiece on the accuracy of the pitch and half-angles of the profile for rolling threads of high precision by radial feed, the purpose of which is movement and measurement, design features determined of rollers for thread rolling on workpieces with low rigidity with tangential feed, the parameters of their threads, including the functional and structural relationship of the helix angles with the dimensions of the rolled thread.
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