Management of technological heritage accuracy assembly of high-precision products

A. Yamnikov, E. Rodionova, I. Matveev
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Abstract

The article is devoted to solving the problems of the production of thin-walled cases, where it is important to improve the accuracy of manufacturing. Based on the foregoing, it was decided to conduct research work. The technology of processing a long body from a hot-rolled thick-walled pipe using drawing is considered, which guarantees the required shape accuracy and the least effect of the properties of the initial state of the workpiece in comparison with the technology of manufacturing bodies by stamping from sheet metal. As a result of the work, it was determined that the difference in the diameter of the housing bore when basing on the pulling operation is mirrored onto the accuracy of the inner surface of the housing, and the maximum beating of the housing stem obeys the Rayleigh distribution law and fits into the tolerance with a two-fold margin. Experimental studies have shown that an increase in the accuracy of manufacturing extended bodies can be guaranteed by reducing the technological tolerance for the inner base hole of the workpiece for pulling
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管理技术传承,装配高精度产品的精度
本文致力于解决薄壁壳体的生产问题,提高薄壁壳体的制造精度是非常重要的。根据上述情况,决定进行研究工作。研究了用拉深法加工热轧厚壁管长管件的工艺,与用钣金冲压制造管件的工艺相比,该工艺既保证了所要求的形状精度,又使工件的初始状态对其性能的影响最小。研究结果表明,基于拉拔操作的轴承座孔径的差异反映在轴承座内表面的精度上,轴承座杆的最大跳动符合瑞利分布规律,并以两倍余量拟合公差。实验研究表明,通过减小工件内基孔的拉拔工艺公差,可以保证延长体制造精度的提高
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Classification of ways of attachment of traction electric motors and search for new technical solutions Risk assessment and reliability of railway rolling stock elements Management of technological heritage accuracy assembly of high-precision products
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