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Analysis of variable strain amplitude response caused by impact loading of carbon nanotube reinforced magnesium alloy AZ3 IB

机译:碳纳米管增强镁合金AZ3 IB冲击载荷引起的可变应变幅度响应分析

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This paper presents the effects of carbon nanotubes (CNT) in the AZ31B magnesium alloy when loaded by impact tests associated to transient-based variable amplitude (VA) loadings. The failure behaviors of this alloy, as well as the effects of varying percentages of added carbon nanotubes (CNTs) on the absorption energy of the alloys under transient variable amplitude load impact signal were investigated thoroughly via both experiment and simulation. The CNT composition of 0.1, 0.2, and 0.5 by percentage weight of CNT in AZ31B were chosen as the specimen preparation. The Charpy testing was then used to record the impact behavior of the specimens. In addition, a strain gauges was attached on each specimen during the test in order to record the affected variable amplitude strain signals for both specimen and also the Charpy striker. Using the signal processing analysis for VA strain loading, the power spectrum density approach was used for determining the energy-based distribution. To obtain this type of energy, the VA strain signals were converted from the time domain to a frequency domain using the Fast Fourier Transform method. Significantly, the signal analysis showed that the AZ31B magnesium alloy with 0.2% CNT absorbed the highest amount of energy among the tested specimens. Therefore, addition of an optimal amount of CNTs improves the strength of alloys.
机译:本文在由基于瞬态的可变幅度(VA)负载相关的冲击试验时,呈碳纳米管(CNT)在AZ31B镁合金中的影响。通过实验和模拟彻底地研究了该合金的失效行为,以及不同碳纳米管(CNT)对瞬态可变幅度负载冲击冲击信号下的合金吸收能量的影响。选择0.1,0.2和0.5的CNT组合物在AZ31B中的CNT百分比作为样品制备。然后使用夏比测试来记录标本的影响行为。此外,在测试期间将应变仪连接在每个样本上,以便记录每个标本和夏比前锋的受影响的可变幅度应变信号。利用VA应变负载的信号处理分析,使用功率谱密度方法来确定基于能量的分布。为了获得这种能量,使用快速傅里叶变换方法从时域从时域转换为VA应变信号。值得注意的是,信号分析表明,AZ31B镁合金为0.2%CNT在测试的样品中吸收了最高量的能量。因此,添加了最佳的CNT,提高了合金的强度。

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