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Blocked Force Determination on Thin Plate Structures Including Applications

机译:薄板结构的阻塞力确定包括应用

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Transfer path analysis is commonly used to determine input forces indirectly utilizing measured responses and transfer functions. Though it is recommended that the source should be detached from the vibrating structure when measuring transfer functions, engineers and technicians frequently have a difficult time in doing so in practice. Recently, a substitute for inverse force determination via transfer path analysis has been suggested. The indirectly determined forces are termed blocked forces and are usable so long as the source and machine are not detached from one another. Blocked forces have the added advantage of being valid even if the machine structure is modified. In this research, a typical automotive engine cover is considered as a receiver structure and is bolted to a plastic source plate excited by an electromagnetic shaker. Blocked forces are determined at different locations, and the correctness of the calculated blocked forces is assessed by comparing the predicted and simulated responses at selected receiver points which were not used for determining the blocked forces.
机译:传输路径分析通常用于确定间接利用测量的响应和传递函数的输入力。虽然建议在测量转移功能时应从振动结构脱离来源,工程师和技术人员经常在实践中遇到艰难的时机。最近,已经提出了通过转移路径分析的逆力测定的替代。间接确定的力被称为阻塞力,并且只要源和机器没有彼此分离。即使修改了机器结构,阻塞力也具有有效的额外优点。在该研究中,典型的汽车发动机盖被认为是接收器结构,并用电磁振动器螺栓固定到塑料源板。在不同位置确定阻塞力,通过比较未使用的选定接收点处的预测和模拟响应来评估计算的阻塞力的正确性,该响应不用于确定阻塞力。

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