Dynamic Simulation of Cracked Spiral Bevel Gear Pair Considering Assembly Errors

Han, Hongzheng and Ma, Hui and Wang, Haixu and Zhu, Jiazan and Li, Zhanwei and Liu, Zimeng (2022) Dynamic Simulation of Cracked Spiral Bevel Gear Pair Considering Assembly Errors. Machines, 10 (10). p. 929. ISSN 2075-1702

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Abstract

The tooth root crack fault is a common fault type of the spiral bevel gear pair (SBGP). Affected by the strong bearing capacity, the early crack fault of the SBGP cannot be found in time. In this study, a finite element (FE) model of the SBGP is established and assembled through the tooth contact analysis. The maximum tooth root stress is analyzed considering the variation of assembly errors. Meanwhile, this study simulates the tooth root crack fault of the bevel pinion with different crack degrees. The initial position of the crack is located where the maximum tooth root stress appears. The time-varying mesh stiffness (TVMS) of the SBGP considering different degrees of the pinion tooth root crack fault is obtained. The TVMS and the non-load transmission error are brought into a hybrid FE dynamic model, and steady responses are solved. Based on this, the sensitivities of various statistical indicators for identifying the tooth root crack fault of SBGP under the influence of assembly errors are verified. This paper can provide the necessary theoretical basis for the analysis and diagnosis of tooth root crack faults in the SBGP transmission system

Item Type: Article
Uncontrolled Keywords: time-varying mesh stiffness; spiral bevel gear pair; tooth root crack fault; statistical indicator; assembly error
Subjects: STM Repository > Engineering
Depositing User: Managing Editor
Date Deposited: 29 Oct 2022 04:04
Last Modified: 27 Sep 2023 06:45
URI: http://classical.goforpromo.com/id/eprint/226

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