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作 者:魏要强[1] 李斌[1] 毛新勇[1] 毛宽民[1]
机构地区:[1]华中科技大学机械科学与工程学院,湖北武汉430074
出 处:《华中科技大学学报(自然科学版)》2011年第6期79-82,共4页Journal of Huazhong University of Science and Technology(Natural Science Edition)
基 金:国家自然科学基金资助项目(50875098);国家科技重大专项资助项目(2009ZX04014-024)
摘 要:针对影响加工效率和加工表面质量的数控机床结构动态特性问题,提出一种新的实验模态分析方法.该方法以数控机床自身运动产生的振动为激励源,通过控制运动部件以特定方式空运行,激励起结构的有效振动响应,并结合基于响应信号的模态参数识别方法获得结构的动态特性参数.针对参数识别中的伪模态问题,综合运用识别结果预处理方法和模态稳定性原理,有效去除了识别结果中的伪模态,最终得到影响机床加工的3阶低频模态频率和阻尼比.所得结果与传统实验模态分析结果有较好的一致性.该方法可用于大型重型难激励数控机床的结构动态特性研究.Dynamic performance of numerical control (NC) machine tools affect machining efficiency and finished surface quality. A new experimental modal analysis was proposed to acquire the dynamic parameters of machine tools. In the modal analysis, the machine tool's movement was vibration excit ing source. By controlling the movement of movable parts, effective structural vibration response was excited. And, combining response-only modal parameter identification, the structural dynamic per formance parameters of machine tool were achieved. For pseudo-mode existing in parameter identifica tion, the integration of preprocessing method and modal stability principle was applied, and pseudomode was effectively eliminated from identification results. Then, 3-order modal frequency and damping ratio in low-frequency, which mainly affect machining, were obtained. The results of the experimental modal analysis and those of traditional are in good agreement. The presented method can be used to research structural dynamic performance of large or heavy-duty machine tools, which are diffi- cult to be excited.
关 键 词:数控机床 运行激励 结构振动 惯性 伪模态辨识 模态分析
分 类 号:TH113.1[机械工程—机械设计及理论]
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