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Dynamic mechanical behavior of flocked layer composite materials

机译:植绒层复合材料的动态力学行为

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A custom designed dynamic mechanical apparatus was constructed to measure the tan(delta) (loss tangent) properties of Flocked (layer) Energy Absorbing Materials (FEAM). Flocked Impact Energy Absorbing (IEA) materials derive their dynamic mechanical impact absorbing properties from the compressional deformation (bending, buckling) and inter-fiber friction of nominally upright flocked fibers in the flock fiber composite assembly. The reported work summarizes the dynamic mechanical, low strain, linear viscoelastic tan(delta) properties of FEAM composite layer structures at frequencies from 25 to 100 Hz and a temperature range of 0 degrees C-50 degrees C. The effect of tan(delta) at various flock densities (fibers/mm(2)) was also measured. These studies were carried out to gain information and insight into the role that a material's dynamic mechanical properties have on the overall IEA performance of sport (and military) apparel pad structures. Results show that the tan(delta) of FEAM materials increases as the measuring frequency and flocked layer's flock density increase. Tan(delta)'s behavior at various temperatures (0 degrees C-50 degrees C) did not follow an expected trend; the highest tan(delta) value was observed to occur at room temperature. Nevertheless, the obtained tan(delta) information on these various FEAM configurations should provide some guidance in designing optimized FEAM sport (and military) pad IEA composites.
机译:构建了定制设计的动态机械设备,以测量植绒(层)吸能材料(FEAM)的tanδ(损耗角正切)性能。植绒冲击能量吸收(IEA)材料从植绒纤维复合材料组件中名义上直立的植绒纤维的压缩变形(弯曲,屈曲)和纤维间摩擦中获得了动态机械冲击吸收性能。报告的工作总结了FEAM复合层结构在25至100 Hz的频率和0摄氏度至50摄氏度的温度范围内的动态力学,低应变,线性粘弹性tanδ特性。tanδ的影响还测量了各种绒毛密度(纤维/ mm(2))。进行这些研究是为了获得信息并了解材料的动态机械性能对运动(和军事)服装垫结构的整体IEA性能的作用。结果表明,FEAM材料的损耗角正切值随测量频率和植绒层植绒密度的增加而增加。 Tanδ在各种温度(0摄氏度至50摄氏度)下的行为均未遵循预期的趋势;在室温下观察到最高的tanδ值。但是,获得的有关这些各种FEAM配置的tan(δ)信息应为设计优化的FEAM运动(和军用)护垫IEA复合材料提供一些指导。

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