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Energy Absorption Characteristics of Polyurethane Composite Foam- Filled Tubes Subjected to Quasi-Static Axial Loading

机译:对准静态轴向载荷进行聚氨酯复合泡沫填充管的能量吸收特性

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Foam-filled enclosures are very common in structural crashworthiness to increase energy absorption. However, very less research has been targeted on potential use of natural/recycled material reinforced foam-filled tubes. Therefore, an experimental investigation was performed to quantify energy absorption capacity of polyurethane (PU) composite foam-filled circular steel tubes under quasi-static axial loading. The thickness of the tubes was varied from 1.9, 2.9 and 3.6 mm. The tubes were filled with PU composite foam. The PU composite foam was processed with addition of kenaf plant fiber and recycled rubber particles that were refined at 80 mesh particulates into PU system. The density of PU resin was varied from 100, 200 and 300 kgm~(-3). The PU composite foam-filled tubes were crushed axially at constant speed in a universal testing machine and their energy absorption was characterized from the resulting load-deflection data. Results indicate that PU composite foam-filled tubes exhibited better energy absorption capacity than those PU foam-filled tubes and its respective empty tubes. Interaction effect between the tube and the foam and incorporation of filler into PU system led to an increase in mean crushing load compared to that of the unfilled PU foam or tube itself. Relatively, progressively collapse modes were observed for all tested tubes. Findings suggested that composite foam-filled tubes could be used as crashworthy member.
机译:泡沫填充的外壳在结构持续性方面非常常见,以增加能量吸收。然而,非常较少的研究是针对天然/再生材料加强泡沫填充管的潜在使用。因此,在准静态轴向载荷下进行实验研究以量化聚氨酯(PU)复合泡沫填充圆形钢管的能量吸收能力。管的厚度从1.9,2.9和3.6mm变化。用PU复合泡沫填充管。用加入keanaf植物纤维和再循环橡胶颗粒在80目颗粒中加工的PU复合泡沫加工,进入PU系统。 PU树脂的密度可从100,200和300kgm〜(-3)变化。在通用试验机中以恒定速度轴向挤压PU复合泡沫管,并且它们的能量吸收从所得的负载偏转数据中表征。结果表明,PU复合泡沫填充管的能量吸收容量比那些填充的管道和其各自的空管。与未填充的PU泡沫或管本身相比,管和泡沫之间的相互作用和填料掺入PU系统的掺入导致平均破碎载荷的增加。对所有测试管相比,观察到相对逐渐逐渐折叠模式。结果表明,复合泡沫填充的管可用作耐架构构件。

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