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Shock propagation behaviour and determination of Gruneisen state of equation for pultruded polyester/glass fibre-reinforced composites

机译:拉挤聚酯/玻璃纤维增强复合材料的抗冲击性行为与格文朗明态的测定

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Polyester fibres reinforced with glass fibres hybridised polyester resin composite (PFR/GFHC) is a unconventional complex high-molecular weight crosslinked network polymer composite. This novel composite can be used in the manufacture of structural body parts for lightweight vehicles, armour vest for body protection as well as armours for vehicles. For body armour applications, it is important to determine the dynamic behaviour of PFR/GFHC during high velocity impact. In this work, we propose a method of calculating Gurneisen parameter from the measured Hugoniot in shock velocity - particle velocity of polyester based composites product by high velocity actuated nail gun impact. Several high-velocity impacts were conducted on pultruded plates using a power actuated nail gun with different cartridges and varying nail sizes. The experimentally measured Hugoniot in shock velocity - particle velocity space was determined as Us = 2.872 + 1.22Up ((rho)0 = 1.25 g/cc) and low gradient observed for Gruneisen parameter as calculated from measured Hugoniot against V-0/V shows higher shock absorption of PFR/GFHC for impact velocity.
机译:用玻璃纤维杂交的聚酯纤维杂交的聚酯树脂复合物(PFR / GFHC)是一种非常规的复合高分子量交联网络聚合物复合材料。该新型复合材料可用于制造用于轻量级车辆的结构体零件,用于车身保护的护甲背心以及用于车辆的铠装。对于身体铠装应用,重要的是在高速冲击期间确定PFR / GFHC的动态行为。在这项工作中,我们提出了一种通过高速致动钉枪冲击计算从测量的Hugoniot从测量的Hugoniot中计算Gurneisen参数的方法。使用具有不同筒的动力致动的钉枪和不同的指甲尺寸的动力致动的钉枪在拉挤板上进行了几种高速冲击。在休克速度 - 粒子速度空间中实验测量的Hugoniot被确定为US = 2.872 + 1.22倍((rhO)0 = 1.25g / cc),并且对于Gruneisen参数观察到的低梯度,从测量的Hugoniot反对V-0 / V节目计算PFR / GFHC的较高减震因冲击速度。

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