Ductile crack initiation and growth on a plasticized Polyvinylchloride during air bag deployment

L. Laiarinandrasana, Clément Bertaux, N. Amouroux, Cristian Ovalle Rodas
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引用次数: 2

Abstract

With the goal of ensuring the security of passengers for automotive industry, the present work addresses the ductile fracture process of plasticized PVC. Dedicated clamped single edge notch bending (SENB) specimens were used to characterize the mechanisms of crack initiation and propagation for the studied material. The exploitation of the experimental database associated with finite element simulation of the crack propagation allowed, on the one hand, the calibration factor η p of this specific SENB specimen to be established, as a function of the crack depth ratio. On the other hand, the fracture toughness of the studied plasticized PVC was estimated to be 10.8 kJ/m 2 , value which was close to that reported in the literature for modified PVC. By using this fracture toughness value, a methodology aiming at the prediction of ductile crack initiation of the PVC skin integrated into a real dashboard (full scale test) was proposed.
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在安全气囊展开过程中塑化聚氯乙烯的韧性裂纹萌生和扩展
为了保证汽车工业乘客的安全,本文研究了塑化PVC的韧性断裂过程。采用专用夹紧单边缺口弯曲(SENB)试样表征了所研究材料的裂纹萌生和扩展机制。利用与裂纹扩展有限元模拟相关的实验数据库,一方面可以建立该特定SENB试样的校准因子η p,作为裂纹深度比的函数。另一方面,所研究的塑化PVC的断裂韧性估计为10.8 kJ/ m2,与文献中报道的改性PVC的断裂韧性接近。利用该断裂韧性值,提出了一种结合实际仪表板(全尺寸试验)的PVC蒙皮塑性裂纹起裂预测方法。
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