Research status and prospect of shot peening for carburized gear roots

被引:0
|
作者
Zhu P.-F. [1 ,2 ]
Yan H.-Z. [1 ]
Chen Z. [1 ]
Wu S.-X. [1 ]
Zhang H. [1 ]
机构
[1] Central South University, Changsha
[2] Kaifeng University, Kaifeng
来源
Surface Technology | 2021年 / 50卷 / 01期
基金
中国国家自然科学基金;
关键词
Bending fatigue; Crack; Gear root; Shot peening; Surface integrity;
D O I
10.16490/j.cnki.issn.1001-3660.2021.01.002
中图分类号
学科分类号
摘要
Bending fatigue is the main failure form of gear transmission, which seriously affects the service performance of gears. Shot peening strengthening technology is a common surface strengthening method for gears that can effectively improve the bending fatigue resistance for gear roots. Two typical shot peening strengthening methods (air-blast peening and centrifugal peening) were introduced, which were compared from the aspects of application range, machining efficiency, spraying principle, surface integrity, etc., respectively. To reveal the mechanism of shot peening strengthening, numerical simulation and parameter optimization methods of shot peening were summarized, influence mechanism of shot peening on the surface integrity of gear roots was analyzed, and correlation of surface integrity parameters was expounded. Meanwhile, the fatigue fracture mechanism (including crack initiation and propagation) of shot-peened gears were revealed. On this basis, influence factors of bending fatigue for shot-peened gears were emphatically discussed, and measures to improve the fatigue strength of gears were put forward. In addition, the gain in fatigue strength of shot-peened gear was discussed briefly, and bending fatigue modeling methods for shot-peened gears were generalized. Finally, shot-peening strengthening process of gear roots was summarized and its development trend was prospected. © 2021, Chongqing Wujiu Periodicals Press. All rights reserved.
引用
收藏
页码:10 / 27
页数:17
相关论文
共 109 条
  • [61] Matsumoto T., Suzuki Y., Okada Y., The Relation between Shot Peening Conditions and Fatigue Strength of Carburized Gears[C], (1990)
  • [62] Inoue K., Maehara T., Yamanaka M., Et al., The effect of shot peening on the bending strength of carburized gear teeth[J], JSME International Journal, 32, 3, pp. 448-454, (1989)
  • [63] Archer F., Shot peening of carburized gears. Influence of main shot peening parameters[J], The Shot Peener, 8, 4, pp. 28-39, (1995)
  • [64] Lyu S., Inoue K., Deng K., Et al., Effect of surface treatments on the strength of carburized gears[J], KSME International Journal, 12, 2, pp. 206-214, (1998)
  • [65] Xi L., Investigation of the region of fatigue crack initiation in a transmission gear[J], Materials Science and Engineering: A, 527, 6, pp. 1377-1382, (2010)
  • [66] Sakurada T., Kobayashi M., Effects of Shot Peening and Grinding on Gear Strength[R], (1994)
  • [67] Hatano A., Namiki K., Application of Hard Shot Peening to Automotive Transmission Gears[R], (1992)
  • [68] Tan Y., Ma B., Ren L., Shot peening of the gear surface with ground cracks[C], Proceedings of the Third International Conference on Shot Peening, (1987)
  • [69] Lyu S., Inoue K., Kato M., Et al., Effects of surface treatment on the bending fatigue strength of carburized spur gears[J], JSME International Journal, 39, 1, pp. 108-114, (1996)
  • [70] Hashimoto M., Shiratori M., Nagashima S., The Effects of Shot-Peening on Residual Stresses and Fatigue Strength of Carburized Gear Steels[C], (1990)