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Analysis of Industrial Safety Helmet Under Low-Velocity Impact

机译:低速冲击下工业安全头盔分析

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The study focuses on developing a computational model on low-velocity impact which includes the study of different composite materials, and the materials selected include thermosets such as carbon-epoxy, glass-epoxy and thermoplastic such as Twintex material. The above materials were selected because of their high impact resistance properties as well as energy absorption capacity. Furthermore, the damage tolerance of these materials is higher when compared to the polycarbonate material which is presently used. The analysis was carried out using ABAQUS-CAE software where the study was extended to two different types of impact, i.e., linear and oblique, with their damage evolution and analytical validation. The study further focuses on energy absorption capacity, depth of penetration and strain energy absorption by the material under linear and oblique impacts. The analysis revealed the fact that the material Twintex is superior to carbon-epoxy and glass-epoxy with regard to the stress developed. The analysis was carried out by incorporating the Hashin damage criteria also. It was observed that the Twintex material offered more resistance to the depth of penetration in both types of impact. The computational results were compared with analytical results, and they were found to be very close with a minimum deviation.
机译:该研究侧重于在低速局部开发计算模型,该计算模型包括不同复合材料的研究,并且所选择的材料包括诸如碳环,玻璃 - 环氧树脂和热塑性塑料的热固性能,例如Twintex材料。选择上述材料,因为它们的高抗冲击性能以及能量吸收能力。此外,与目前使用的聚碳酸酯材料相比,这些材料的损伤耐受性更高。通过ABAQUS-CAE软件进行分析,其中该研究扩展到两种不同类型的冲击,即线性和倾斜,具有损伤的演化和分析验证。该研究进一步侧重于能量吸收能力,渗透和应变能量吸收的线性和倾斜撞击下的材料。该分析显示,在发育的应力方面,Twintex的材料优于碳 - 环氧树脂和玻璃环氧树脂。通过纳入哈希林损伤标准,进行了分析。观察到,Twintex材料在两种类型的影响中提供了对渗透深度的抗性。将计算结果与分析结果进行比较,并且发现它们非常接近最小偏差。

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