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Characterizing the Energy Absorption of Rigid Polymeric Foams under Compressive Direct Impact Loading

机译:在压缩直接冲击载荷下表征刚性聚合物泡沫的能量吸收

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The use of rigid polymeric foams has been well-established to result in a significant improvement in the energy absorption and safety of the vehicles, owing to the excellent energy absorption characteristics of these materials. As an optimum energy-absorbing material system, polymeric foams need to dissipate the kinetic energy of the impact, while maintaining the impact force transferred to the protected object at a low level. Therefore, it is crucial to accurately characterize the load bearing and energy dissipation performance of foams at high strain rate loading conditions. However, there are challenges render to accurately measure the deformation response of foams due to their low mechanical impedance properties. Recently a nonparametric method was proposed and successfully implemented to enable the accurate measurement of the compressive constitutive response of rigid polymeric foams subjected to impact loading conditions. The method is based on stereovision high speed photography in conjunction with 3D digital image correlation and allows for accurate evaluation of inertia stresses developed within the specimen during deformation time. The inertia stresses are then superimposed with the boundary measured impact force to facilitate the measurement of full-field stresses in the specimen. Full-field distributions of stress, strain and strain rate are then used to extract the local constitutive response of the material at any given location along the specimen length. Accordingly, the local energy absorption curves are extracted and then averaged to give the effective energy absorption response of the examined foam. Finally, results obtained from the proposed non-parametric analysis are compared with the data obtained from the conventional test procedures.
机译:由于这些材料的优异的能量吸收特性,已经很好地建立了刚性聚合物泡沫的使用,以显着改善车辆的能量吸收和安全性。作为最佳的能量吸收材料系统,聚合物泡沫需要消散撞击的动能,同时将冲击力保持在低水平的受保护物体中。因此,在高应变速率负载条件下精确地表征泡沫的承载和能量耗散性能至关重要。然而,由于其低机械阻抗性能,有挑战使得准确地测量泡沫的变形响应。最近,提出了一种非参数方法并成功实施,以便能够精确测量经受冲击负载条件的刚性聚合物泡沫的压缩组成响应。该方法基于立体高速摄影结合3D数字图像相关性,并且允许在变形时间内进行准确评估样品内的惯性应力。然后用边界测量的冲击力叠加惯性应力,以便于测量样本中的全场应力。然后使用压力,应变和应变速率的全场分布,以沿着样本长度在任何给定位置处提取材料的局部构成响应。因此,提取局部能量吸收曲线,然后平均以提供所检查泡沫的有效能量吸收响应。最后,将从所提出的非参数分析获得的结果与从传统测试程序中获得的数据进行比较。

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