Abstract

This paper presents an analytical procedure for simulating torsional vibration in a power circulating-type internal gear testing machine. The differential equations for the rotation in the system were derived, and the root stress of the internal gear and the torsional vibration of the gear shaft were calculated. Then, the calculated results were compared with the experimental data. The relationship between dynamic tooth load and torsional vibration in a power circulating-type internal gear testing machine was discussed.

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