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Polymeric Flexible Syntactic Foam Composite for Shock Mitigation

机译:用于减缓的聚合物柔性句法泡沫复合材料

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The compressive high strain rate behavior of the base and Pμb-filled polysulfide is measured using the SHPB apparatus at 4,100/s strain rate. The weight percent of microballoons were 0, 10, 20, and 30% of base polysulfide. The peak strain values remain unaffected irrespective of the amounts of P(ibs. Both peak stress and stress rise rate decrease and half-power bandwidth of the stress pulse increased as the weight fraction of the Pub increase thereby indicating that the incorporation of Pubs in polysulfide does attenuate the stress pulse which is important for shock mitigation of structures. The peak stress reduction range from 25% to 5% for breech impact pressures of 0.16 MPa. The higher the impact pressure, the lower will be the reduction in peak stress. The stress rise rate reduces with filler content and it does not alter much with the breech pressure. The reduction in stress rise rate is of the order of 50% for many cases tested. The half-power bandwidth of the stress pulse does not show any clear trend for these experimental analyses. The dynamic stress-strain response of both base and Pub-filled polysulfide exhibited initial linear elastic region, a middle nonlinear region followed by a densification region. Polysulfide with 20 and 30 wt.% of microballoon show a kink in the stress-strain curve near a strain of about 0.63 - 0.66. The SHPB experiments revealed that both base and Pub-filled polysulfide are sensitive to strain rates over the range of strain rates studied. In all Pub filled polysulfide, the adiabatic temperature rise in the specimen at 4100/s strain rate causes material softening.
机译:使用4,100 /℃应变率的SHPB装置测量碱和填充的多硫化物的压缩高应变率行为。微量球酮的重量百分比为0,10,20和30%的基础多硫化物。峰值应变值不受关心P(IBS。峰值应力和应力上升率降低,应力脉冲的半功率带宽随着酒吧的重量分数而增加,从而指示在多硫化物中掺入PUBs确实衰减了对结构的减缓很重要的应力脉冲。峰值应力降低的臀部撞击压力为0.16MPa的臀部撞击压力。抗冲压压越高,较低的峰值应力降低。该压力上升速率随填料含量减少,并且臀位压力不会改变大量。应力上升率的降低为50%,对于许多测试的情况下的50%。应力脉冲的半功率带宽不会显示任何清晰这些实验分析的趋势。基础和酒吧填充多硫化物的动态应力 - 应变响应表现出初始线性弹性区域,中间非线性区域,然后是密度的离子区域。具有20和30重量%的多硫化物。占MICROBALOON的百分比在应力 - 应变曲线附近的扭结约0.63-0.66。 SHPB实验表明,碱和PUB填充的多硫化物在所研究的应变率范围内对应变率敏感。在所有酒吧填充多硫化物中,在4100 /℃的试样中的绝热温度升高导致材料软化。

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