重型柴油机缸套活塞撞击引起的空化建模与评价。

Dong Liu, Nannan Sun, G. Zhu, Hengchao Cao, Tie Wang, Guoxing Li, F. Gu
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引用次数: 0

摘要

汽缸套气蚀严重影响重型柴油机的运行可靠性和使用寿命。由于缸套振动与冷却液空化的对应关系不明确,限制了基于模型的空化风险评估的准确性。本报告拟通过振动空化试验、压力梯度计算和可视化观察相结合的方法,探讨缸套振动与冷却液压力的对应关系。基于非线性结构动力学模型,定量分析了活塞拍打作用下缸套的空化风险。结果表明,汽蚀的发生将导致缸套加速度与冷却液压力之间的非线性关系。各气缸空化风险的差异与曲轴箱的结构模态特性有关。此外,基于动力学模型,研究了活塞-衬套间隙和活塞销偏置对空化风险的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling and evaluating piston slap-induced cavitation of cylinder liners in heavy-duty diesel engines.
Cavitation erosion of cylinder liner seriously affects the operational reliability and service life of heavy-duty diesel engines. The accuracy of the modeling-based cavitation risk evaluation is limited by the unclear correspondence between cylinder liner vibration and coolant cavitation. This report is intended to investigate the correspondence between cylinder liner vibration and coolant pressure by combining vibration cavitation test, pressure gradient calculation, and visualization observation. The cavitation risk of the cylinder liner under piston slap is also quantitatively analyzed based on the nonlinear structural dynamics model. The results show that the occurrence of cavitation will cause a nonlinear relationship between the cylinder liner acceleration and the coolant pressure. The difference in cavitation risk for each cylinder is related to the structural modal characteristics of the crankcase. In addition, the effect of piston-liner clearance and piston pin offset on the cavitation risk is investigated based on the dynamics model.
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