Calculation and Selection of Fits for Joints of a Combined Elastic-Bushing Finger Coupling

IF 0.4 Q4 ENGINEERING, MECHANICAL
O. A. Leonov, N. Zh. Shkaruba, Yu. G. Vergazova, D. U. Khasyanova, D. A. Pupkova
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Abstract

This article discusses the features of using elastic bush–pin couplings. Calculation and selection of fits is presented for the case of using elastic bush–pin coupling halves of different designs with different diameters of landing holes. The connection between the shaft of an A280S8 electric motor and the shaft of the WVP’1-25 vacuum pump with an elastic sleeve-pin coupling was chosen as the object of research. It has been found that the electric motor shaft connection with a \(\emptyset \)80 mm coupling during assembly using the pressing-in method should be assigned an H8/t6 fit, and when heating the coupling, H8/t7. To connect the shaft of WVP’1-25 vacuum pump with a coupling of \(\emptyset \)65 mm, for any type of assembly, one can assign an H8/t6 fit, in which the maximum tension is four microns higher than the maximum established limit of technological tension, which can lead to destruction of the cast iron coupling. In this regard, it is recommended to the coupling manufacturer to increase the equipment accuracy in order to provide a fit for the connection of the vacuum pump WVP’1-25 shaft with a coupling of \(\emptyset \)65 mm in the form of H7/t6, which will meet the calculated accuracy requirements.

Abstract Image

弹性衬套组合式指形联轴器接头的计算和配合选择
本文讨论了使用弹性衬套销联轴器的特点。文章介绍了使用不同设计的弹性套销联轴器半轴和不同直径的着轴孔的计算和配合选择。选择 A280S8 电机轴和 WVP'1-25 真空泵轴之间的弹性套销联轴器连接作为研究对象。研究发现,在使用压入法装配时,与 80 mm 联轴器连接的电动机轴应分配为 H8/t6 配合,而在加热联轴器时,应分配为 H8/t7。用一个 65 mm 的联轴器连接 WVP'1-25 真空泵的轴,对于任何类型的装配,都可以分配一个 H8/t6 的配合,其中的最大张力比已确定的最大技术张力极限高出 4 微米,这会导致铸铁联轴器的损坏。在这方面,建议联轴器制造商提高设备精度,以便为真空泵WVP'1-25轴与H7/t6形式的联轴器(\emptyset \)65 mm的连接提供配合,这将满足计算精度要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.80
自引率
33.30%
发文量
61
期刊介绍: Journal of Machinery Manufacture and Reliability  is devoted to advances in machine design; CAD/CAM; experimental mechanics of machines, machine life expectancy, and reliability studies; machine dynamics and kinematics; vibration, acoustics, and stress/strain; wear resistance engineering; real-time machine operation diagnostics; robotic systems; new materials and manufacturing processes, and other topics.
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