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首页> 外文期刊>Journal of Sound and Vibration >Experimental validation of theoretical methods to estimate the energy radiated by elastic waves during an impact
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Experimental validation of theoretical methods to estimate the energy radiated by elastic waves during an impact

机译:估算撞击过程中弹性波辐射能量的理论方法的实验验证

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Estimating the energy lost in elastic waves during an impact is an important problem in seismology and in industry. We propose three complementary methods to estimate the elastic energy radiated by bead impacts on thin plates and thick blocks from the generated vibration. The first two methods are based on the direct wave front and are shown to be equivalent. The third method makes use of the diffuse regime. These methods are tested for laboratory experiments of impacts and are shown to give the same results, with error bars of 40 percent and 300 percent for impacts on a smooth plate and on a rough block, respectively. We show that these methods are relevant to establish the energy budget of an impact. On plates of glass and PMMA, the radiated elastic energy increases from 2 percent to almost 100 percent of the total energy lost as the bead diameter approaches the plate thickness. The rest of the lost energy is dissipated by viscoelasticity. For beads larger than the plate thickness, plastic deformation occurs and reduces the amount of energy radiated in the form of elastic waves. On a concrete block, the energy dissipation during the impact is principally inelastic because only 0.2-2 percent of the energy lost by the bead is transported by elastic waves. The radiated elastic energy estimated with the presented methods is quantitatively validated by Hertz's model of elastic impact. (C) 2015 Elsevier Ltd. All rights reserved.
机译:估计撞击期间弹性波中损失的能量是地震学和工业中的重要问题。我们提出了三种互补的方法,以根据所产生的振动来估计珠子撞击薄板和厚块时散发出的弹性能量。前两种方法基于直接波前,并显示为等效。第三种方法利用了扩散机制。对这些方法进行了实验室冲击试验,结果显示出相同的结果,在光滑板上和在粗糙块上的冲击误差分别为40%和300%。我们表明,这些方法与建立影响的能量预算有关。在玻璃和PMMA板上,随着磁珠直径接近板厚,辐射的弹性能从总能量损失的2%增加到几乎100%。其余的能量损失通过粘弹性消散。对于大于板厚度的珠子,会发生塑性变形并减少以弹性波形式辐射的能量。在一个混凝土砌块上,冲击过程中的能量耗散基本上是无弹性的,因为弹珠损失的能量只有0.2-2%是通过弹性波传输的。通过所提出的方法估算的辐射弹性能通过Hertz弹性冲击模型进行了定量验证。 (C)2015 Elsevier Ltd.保留所有权利。

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