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Experimental Modal Analysis (EMA) untuk Mengetahui Modal Parameter pada Analisis Dinamik Balok Kayu yang Dijepit di Satu Ujung

机译:实验模态分析(EMA),用于确定钉书钉一端的动态分析中的模态参数

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摘要

Experimental modal analysis (EMA) is one among other methods to analyze dynamics characteristics of the structure. EMA is used widely in structural, automotive engineering, design and machining proccess for determination of modal parameters. EMA measures excitation force and frequency response function of the structure in time domain and then converts these data into frequency domain using Fast Fourier Transfrom (FFT). In this research EMA is applied to analyze the dynamics characteristics of wood structures that would be used as stiffener for boxed shaped work-piece or as a frame for traditional wood ship. The availability of the characteristics dynamics\u27 data for wood are limited, so EMA is very useful tool to determine modal parameters for specific wood structures.Experiments was conducted using modal hammer to excite the wood structure and an accelerometer to measurse the response of the structure as acceleration data. The data acquired by EMA are used to determine modal parameters of wood structure in the terms of natural frequency, mode shapes and damping ratio. The dimension of wood being analyze (length x width x height) is 860 mm x 50 mm x 50 mm. Simulation of modal analysis using finite element method was carried out as a comparison to the experimental data. Four points or locations along the wood\u27s length are excited using modal hammer to get data for determination ofmodal parameters of the wood structure. Several curves such as FRF, amplitude and phase angle are presented for modal parameters determination. Analysis based on those curves provide the modal parameter of the structure. The natural frequencies of the first three modes of wood structures are 56 Hz, 334 Hz and 854 Hz. Damping ratio for those natural frequencies are 0,0178; 0,0139 and 0,012. The natural frequencies of the first three modes of wood structures from modal analysis simulation are 55,37 Hz,339,71 Hz and 921,71Hz.Differences between experimental and simulation results in term of natural frequencies are 1,13%; 1,71% and 7,93%.It could be said that experimental data fit to those of the simulation. Mode shapes of the wood structure found both from experimental and simulation are also the same. Coherencies of the experimental data are between 0,80 and 0,99. Those mean that the influence of noises on the measured data are small.
机译:实验模态分析(EMA)是分析结构动力学特性的其他方法之一。 EMA被广泛用于确定模态参数的结构,汽车工程,设计和加工过程中。 EMA在时域中测量结构的激振力和频率响应函数,然后使用快速傅里叶变换(FFT)将这些数据转换为频域。在这项研究中,EMA用于分析木结构的动力学特性,这些木结构可用作盒形工件的加强件或用作传统木船的框架。木材特性动力学数据的可用性受到限制,因此EMA是确定特定木材结构模态参数的非常有用的工具。使用模态锤激发木材结构并使用加速度计测量结构的响应进行了实验作为加速度数据。 EMA获得的数据用于根据固有频率,振型和阻尼比确定木材结构的振型参数。被分析的木材的尺寸(长x宽x高)为860 mm x 50 mm x 50 mm。为了与实验数据进行比较,使用有限元方法对模态分析进行了仿真。使用模态锤激发沿木材长度的四个点或位置,以获得用于确定木材结构的模态参数的数据。给出了诸如FRF,幅度和相角之类的几条曲线,用于确定模态参数。基于这些曲线的分析提供了结构的模态参数。木结构的前三种模式的固有频率为56 Hz,334 Hz和854 Hz。这些固有频率的阻尼比为0.0178; 0,0139和0,012。模态分析模拟得出的木结构的前三种模态的固有频率分别为55,37 Hz,339,71 Hz和921,71Hz。实验结果与模拟结果之间的固有频率差异为1,13%。 1,71%和7,93%。可以说实验数据与模拟结果吻合。通过实验和模拟发现的木结构的众数形状也相同。实验数据的相干性在0.8至0.99之间。这意味着噪声对测量数据的影响很小。

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