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Damping properties of open cell microcellular pure Al foams

机译:开孔微孔纯铝泡沫的阻尼性能

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摘要

Damping behaviours of the open cell microcellular pure Al foams fabricated by sintering and dissolution process with the relative density of 0·31-0·42 and the pore size of 112-325 μm were investigated. The damping characterisation was conducted on a multifunction internal friction apparatus. The internal friction (IF) was measured at frequencies of 1·0, 3·0 and 6·0 Hz over the temperature range of 298-725 K. The measured IF shows that the open cell pure Al foam has a damping capacity that is enhanced in comparison with pure Al. At a lower temperature (∼400 K), the IF of the open cell pure Al foams increases with decreasing relative density, with decreasing pore size and with increasing frequency. The IF peak was found at the temperature range of 433-593 K in the IF curves. It is clear that the IF peak is relaxational type and the activation energy associated with the IF peak is about 1·60 ± 0·02 eV. Defect effects can be used to interpret the damping mechanisms.
机译:研究了通过烧结和溶解过程制备的开孔微孔纯Al泡沫的阻尼行为,其相对密度为0·31-0·42,孔径为112-325μm。阻尼特性是在多功能内摩擦装置上进行的。在298-725 K的温度范围内,以1·0、3·0和6·0 Hz的频率测量了内摩擦(IF)。测得的IF表明,开孔纯Al泡沫的阻尼能力为与纯铝相比增强。在较低的温度(约400 K)下,开孔纯Al泡沫的IF随相对密度的减小,孔径的减小和频率的增大而增大。在中频曲线中,在433-593 K的温度范围内发现了中频峰。显然,IF峰是弛豫型的,并且与IF峰相关的活化能约为1·60±0·02 eV。缺陷效应可用于解释阻尼机制。

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