摘要
As a critical auxiliary machinery in naval vessels, the V-type marine high-pressure air compressor exhibits significant dependence of its overall operational stability on the mechanical performance of the crank-connecting rod system. This study investigates the crank-connecting rod system of a V-type marine high-pressure air compressor, simulating the motion of pistons and connecting rods at all stages and deriving their inertial forces and moments. Using ADAMS software, a comparative simulation analysis was conducted on the crank-connecting rod system, incorporating flexible components, frictional kinematic pairs, and joint clearances. The results demonstrate that the flexible crankshaft absorbs a portion of the piston gas forces. Friction significantly influences the X-direction bearing load of the crankshaft in the low-frequency range, while the system exhibits enhanced dynamic stability in the mid-to-high frequency range. The clearance magnitude and different connecting-rod clearance configurations significantly affect the excitation forces on the crankshaft bearing in the load direction. Notably, smaller clearances induce larger excitation forces in the low-frequency range. This study provides a theoretical foundation and design reference for the crank-connecting rod system of differential-type marine high-pressure air compressors.
| 源语言 | 英语 |
|---|---|
| 主期刊名 | The 10th International Conference on Advances in Construction Machinery and Vehicle Engineering - ICACMVE 2025 |
| 编辑 | Saman Halgamuge, Lifeng Ma, Weiguo Liang, Yongming Bian |
| 出版商 | Springer Science and Business Media Deutschland GmbH |
| 页 | 87-114 |
| 页数 | 28 |
| ISBN(印刷版) | 9789819569106 |
| DOI | |
| 出版状态 | 已出版 - 2026 |
| 活动 | 10th International Conference on Advances in Construction Machinery and Vehicle Engineering, ICACMVE 2025 - Taiyuan, 中国 期限: 22 8月 2025 → 25 8月 2025 |
出版系列
| 姓名 | Lecture Notes in Mechanical Engineering |
|---|---|
| ISSN(印刷版) | 2195-4356 |
| ISSN(电子版) | 2195-4364 |
会议
| 会议 | 10th International Conference on Advances in Construction Machinery and Vehicle Engineering, ICACMVE 2025 |
|---|---|
| 国家/地区 | 中国 |
| 市 | Taiyuan |
| 时期 | 22/08/25 → 25/08/25 |
联合国可持续发展目标
此成果有助于实现下列可持续发展目标:
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可持续发展目标 14 水下生物
指纹
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