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A Modified approach for calculating dynamic shear modulus of stiff specimens by resonant column tests

机译:一种通过共振柱试验计算刚性试样动态剪切模量的改进方法

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摘要

An error analysis of the dynamic shear modulus of stiff specimens from tests performed by a new resonant column device developed by the Institute of Engineering Mechanics, China was conducted. A modified approach for calculating the dynamic shear modulus of the stiff specimens is presented. The error formula of the tests was deduced and parameters that impact the accuracy of the test were identified. Using six steel specimens with known standard stiffness as a base, a revised dynamic shear modulus calculation for stiff specimens was formulated by comparing three of the models. The maximum error between the test results and the calculated results shown by curves from both the free-vibration and the resonant-vibration tests is less than 6%. The free-vibration and resonant-vibration tests for three types of stiff samples with a known modulus indicate that the maximum deviation between the actual and the tested value using the modified approach were less than 10%. As a result, the modified approach presented here is shown to be reliable and the new device can be used for testing dynamic shear modulus of any stiff materials at low shear strain levels
机译:进行了由中国工程力学研究所开发的新型共振柱装置进行的试验,对刚性试样的动态剪切模量进行了误差分析。提出了一种改进的方法来计算刚性试样的动态剪切模量。推导了测试的误差公式,并确定了影响测试准确性的参数。使用六个具有已知标准刚度的钢样本作为基础,通过比较三个模型,制定了修正后的动态剪切模量。自由振动和共振振动测试的曲线显示的测试结果与计算结果之间的最大误差小于6%。使用已知模量的三种类型的刚性样品的自由振动和共振振动测试表明,使用改进方法后,实际值和测试值之间的最大偏差小于10%。结果,此处介绍的改进方法是可靠的,并且该新设备可用于测试低剪切应变水平下任何刚性材料的动态剪切模量

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