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Time domain characterization of the dynamic properties of viscoelastic materials

机译:粘弹性材料动力学特性的时域表征

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Abstract: By means of the split Hopkinson pressure bar (SHPB) technique, the time domain dynamic mechanical properties of a polyisoprene elastomer were characterized over a range of temperatures. These properties include the dynamic stress- strain and compressional relaxation modulus characteristics of the elastomer. In the SHPB technique employed in the measurements, two identical long steel bars, which are known as the incident and transmitter pressure bars, were used as wave guides. Solid disc specimens of 10 mm diameter by 3 mm and 6 mm thickness of the polyisoprene rubber were sandwiched, in turn, between the bars. Strain pulses were generated in the incident pressure bar by the collinear impact of a hardened steel spherical ball, which was fired from a mechanical launcher, with the plane free end of the incident pressure bar via a small cylindrical anvil which was attached to the impacted end of the incident pressure bar. The strain pulses generated and propagated down the pressure bar were incident on, reflected from and transmitted through the polyisoprene specimen. These pulses were monitored by PZT sensors of dimensions 5 mm by 3 mm, which were bonded to the middle locations of the pressure bars, and were used to derive the dynamic properties of the specimens. It is shown that the stress and compressional relaxation modulus characteristics of this elastomer undergo larger variations and attain higher values at low temperatures than at high temperatures. !10
机译:摘要:利用霍普金森(Hopkinson)分离式压力棒(SHPB)技术,在一定温度范围内表征了聚异戊二烯弹性体的时域动态力学性能。这些特性包括弹性体的动态应力应变和压缩松弛模量特性。在测量中使用的SHPB技术中,两个相同的长钢筋被称为波导和发射器压力棒,被用作波导。依次将直径为10毫米,3毫米,厚度为6毫米的聚异戊二烯橡胶的实心圆盘样品夹在棒之间。硬化钢球的共线冲击是从机械发射器发射的,在入射压力棒中产生了应变脉冲,入射球的自由端是通过一个小的圆柱形砧座固定在受冲击端上的,该球形球形发射头由机械发射器发射的入射压力产生并沿压力棒向下传播的应变脉冲入射到聚异戊二烯样本上,从聚异戊二烯样本反射并通过聚异戊二烯样本传输。这些脉冲由尺寸为5 mm x 3 mm的PZT传感器监控,这些传感器结合到压力棒的中间位置,并用于得出样品的动态特性。结果表明,与高温相比,该弹性体的应力和压缩松弛模量特性发生较大变化,并且在低温下获得更高的值。 !10

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