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Piezoelectric Ring Bender for Characterization of Shear Waves in Compacted Sandy Soils

机译:压电环弯曲物用于压实砂土剪力波的特征

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摘要

Shear wave velocity and small-strain shear modulus are widely used as the mechanical properties of soil. The objective of this study is to develop a new shear wave monitoring system using a pair of piezoelectric ring benders (RBs) and to evaluate the suitability of RB in compacted soils compared with the bender element and ultrasonic transducer. The RB is a multilayered piezoelectric actuator, which can generate shear waves without disturbing soils. For five compacted soil specimens, the shear waves are monitored by using three different piezoelectric transducers. Results of time-domain response show that the output signals measured from the RB vary according to the water content of the specimen and the frequency of the input signal. Except at the water content of 9.3%, the difference in the resonant frequencies between the three transducers is not significant. The shear wave velocities for the RB are slightly greater than those for the other transducers. For the RB, the exponential relationship between the shear wave velocity and dry unit weight is better established compared with that of the other transducers. The newly proposed piezoelectric transducer RB may be useful for the evaluation of the shear wave velocity and small-strain shear modulus of compacted soils.
机译:剪切波速度和小应变剪切模量广泛用作土壤的机械性能。本研究的目的是开发一种新的剪切波监测系统,使用一对压电环弯曲机(RBS),并与弯曲元件和超声换能器相比,评估压实土中RB的适用性。 RB是多层压电致动器,其可以在不干扰土壤的情况下产生剪切波。对于五个压实的土壤样品,通过使用三种不同的压电传感器监测剪切波。时域响应的结果表明,根据标本的含水量和输入信号的频率,从RB测量的输出信号变化。除了含水量为9.3%,三个换能器之间的谐振频率差异不显着。 RB的剪切波速度略大于其他换能器的剪切波速度。对于RB,与其他换能器的相比,剪切波速度和干式单位重量之间的指数关系更好地建立。新提出的压电换能器RB可用于评估剪切波速度和压实土壤的小应变剪切模量。

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