建立了描述一种新型BTG塑料合金的温度-频率-振幅的动态阻尼性能数学模型。通过动态热分析仪DMA242,获取了BTG塑料合金的频率扫描、温度扫描和幅值扫描的动态阻尼损耗因子实验数据。通过分析实验数据,将温度扫描的阻尼损耗因子量分离为仅与频率相关以及与频率、温度均相关的两个分量,并分别用Kelvin分数导数的阻尼损耗因子模型和高斯函数模型来表达这两个分量,再以此为基准,考虑振幅对阻尼损耗的影响,由此建立了综合考虑温度-频率-振幅的阻尼损耗数学模型。结果表明,所建立的综合考虑温度-频率-振幅的阻尼损耗数学模型能准确描述实验数据。
A mathematical model is constructed to describe the dynamic damping performance for a new type of BTG plastic alloy about the temperature-frequency-amplitude.The experimental data of dynamic damping loss factor of BTG plastic alloy were obtained through test of frequency sweep,temperature sweep and amplitude sweep in the dynamic thermal analyzer DMA242.Through the analysis of the experimental data,the amount of damping loss factor is separated 2 components,namely,the amount related only to the frequency and the amount related to both the frequency and temperature.The amount related only to the frequency is described by Kelvin model of fractional derivative and the amount related to both the frequency and temperature is described by Gaussian function.A comprehensive model considering of the temperature-frequency-amplitude is established reference to the above model plus the amplitude factor.The results show that the comprehensive model can accurately describe the experimental data.
参考文献
[1] | 卢子兴,张慧.聚碳酸脂微孔塑料的动态力学热分析[J].北京航空航天大学学报,2006,32(9):1109-1112. |
[2] | 王嵩,卢子兴.复合泡沫塑料的动态力学热分析[C]//杜善义.第十五届全国复合材料学术会议论文集(下册).北京:国防工业出版社,2008:864-867. |
[3] | 龚元明,孙志杰,贺成红,等.不同预载/动载下纤维增强环氧树脂复合材料动态粘弹特性[J].复合材料学报,2006,23(1):26-30. |
[4] | 刘其霞,姜生,晏雄.受阻酚/羧基丁睛橡胶复合材料的结构及动态力学性能[J].复合材料学报,2009,26(4):8-14. |
[5] | 孙志勇,马卫东,张鲲,等.氯化丁基橡胶阻尼材料动态力学性能的影响因素研究[J].世界橡胶工业,2009,36(1):18-20. |
[6] | 郭文静,王正.LLDPE/PS塑料合金及其与木纤维形成复合材料的研究[J].林业科学,2006,42(3):59-67. |
[7] | 林松,高庆,李映辉,等.一种考虑宽温宽频宽动态位移的粘弹性本构模型[J].航空动力学报,2007,22(3):431-438. |
[8] | 彭晋民.水润滑塑料合金轴承润滑机理及设计研究[D],重庆:重庆大学,2003:39-41. |
[9] | 何曼君,陈维孝,董西陕.高分子物理[M].上海:复旦大学出版社,1997:258-260. |
[10] | 周光泉,刘孝敏.粘弹性理论[M].合肥:中国科学技术大学出版社,1996:79-84. |
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