›› 2011, Vol. 31 ›› Issue (3): 51-54.DOI: 10.3969/j.issn.1006-1355-2011.03.012
韩天,金玲[Author]) AND 1[Journal]) AND year[Order])" target="_blank">金玲,尹忠俊,张雷,金玲[Author]) AND 1[Journal]) AND year[Order])" target="_blank">金玲
<FONT face=Verdana><a href="https://nvc.sjtu.edu.cn/EN/article/advancedSearchResult.do?searchSQL=(((HAN Tian[Author]) AND 1[Journal]) AND year[Order])" target="_blank">HAN Tian</a>,<a href="https://nvc.sjtu.edu.cn/EN/article/advancedSearchResult.do?searchSQL=(((JIN Ling[Author]) AND 1[Journal]) AND year[Order])" target="_blank">JIN Ling</a>,<a href="https://nvc.sjtu.edu.cn/EN/article/advancedSearchResult.do?searchSQL=(((YIN Zhong-jun[Author]) AND 1[Journal]) AND year[Order])" target="_blank">YIN Zhong-jun</a>,<a href="https://nvc.sjtu.edu.cn/EN/article/advancedSearchResult.do?searchSQL=(((ZHANG Lei[Author]) AND 1[Journal]) AND year[Order])" target="_blank">ZHANG Lei</a></FONT>
摘要: 对怠速状态下振动过大的客车进行现场振动测试及锤击模态实验,得到整车的振动频率成分及固有特性。通过振动分析得出影响该客车振动的主要因素是发动机转动传到底盘大梁的振动,与怠速车速密切相关。并对其底盘进行结构仿真分析,经过与模态测试对比,最终确定客车振动是怠速的工作频率与车辆底盘固有频率的耦合问题,通过改变底盘局部结构合理消除共振耦合现象。
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