文章摘要
王启利,王 军,卢立新,孙中振.获取界面响应不可测数据的频响探针关键技术研究[J].包装工程,2016,37(1):6-10.
WANG Qi-li,WANG Jun,LU Li-xin,SUN Zhong-zhen.Research on Key Technology for Obtaining Unmeasured Data of the Interface Response[J].Packaging Engineering,2016,37(1):6-10.
获取界面响应不可测数据的频响探针关键技术研究
Research on Key Technology for Obtaining Unmeasured Data of the Interface Response
  
DOI:
中文关键词: 逆子结构  频响函数  频响探针  界面响应
英文关键词: inverse substructuring  frequency response function  frequency response probe  interface response
基金项目:国家自然科学基金(51205167);中央高校基本科研业务费重点项目(JUSRP51403A);教育部博士点基金(20120093120014)江苏省青蓝工程(2014)
作者单位
王启利 江南大学,无锡214122 
王 军 1.江南大学,无锡2141222.江苏省食品先进制造装备技术重点实验室,无锡214122 
卢立新 1.江南大学,无锡2141222.江苏省食品先进制造装备技术重点实验室,无锡214122 
孙中振 江南大学无锡 214122 
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中文摘要:
      目的 针对传统逆子结构理论在求解过程中界面响应难以实测的问题,提出一种利用频响探针技术来获取该界面响应的关键技术。方法 首先基于该频响探针的动力学微分方程,从理论上推导了该频响探针技术的理论公式。对一个含有凹槽的结构进行了有限元仿真,设该凹槽界面处由于物理空间限制难以实测其原点频响函数,利用该频响探针技术获取该界面处难测原点频响函数,并将预测值与有限元计算值进行对比验证。结果 预测值与有限元计算值高度吻合,验证了该理论的准确性。结论 该频响探针关键技术在获取界面响应不可测数据方面,有很好的应用价值。
英文摘要:
      The inverse sub-structuring method by using the easily measured system-level FRFs to predict the substructure-level FRFs and the dynamic stiffness of coupling interface. In most engineering application practices, the system-level FRFs from coupling degree of freedoms may not be measured accurately because of there might be some fragile structure in the coupling interface and the difficulties of vibration excitation and response measurement for the coupled interface between components within the limited accessible space. In this paper, the aim is to develop a new FRF-based indirect inverse sub-structuring method for the analysis of the dynamic characteristics of a three-component coupled mechanical system without measuring system-level FRFs at the coupling degree of freedoms. Using a frequency response probe to predict the unmeasured interface auto FRF, the theoretical derivation of the theoretical formula of the frequency response probes is given firstly, then the technology is verified by a finite element simulation, showing exact agreement. The new method shows its great application prospect for obtaining unmeasured data from the coupling interface.
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