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Experimental Characterization and Computational Analysis of Mode Ⅰ Fracture Toughness of a Nano-Cellulose Z-Pin Reinforced Carbon Fiber Laminate

机译:纳米纤维素Z-Pin增强碳纤维层压板Ⅰ型断裂韧度的实验表征和计算分析

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This study investigates the functionality of Cellulose Nanofiber (CNF) in aiding the Mode I delamination resistance of carbon fiber composite laminates. Z-Pinning as well as Wet Flocking techniques are utilized to study the through thickness reinforcement Experimental Analysis is done on unreinforced and reinforced (Z-Pin, Wet Flocking etc.) Double Cantilevered Beam (DCB) specimens in accordance with the standard ASTM DS528 - 13. Numerical simulations will be conducted using a 2D finite element code with plane strain finite elements. A traction-separation based bilinear cohesive model will be utilized in studying the effect of through thickness reinforcement The parameters for the cohesive zones are obtained through a parametric study and the results are then corroborated with obtained experimental data. The initiation and propagation of delamination in the model will be captured effectively with the help of Force vs Crosshead Deflection plots. The use of a bilinear cohesive law dictating the z-pin pullout behavior will also be validated.
机译:这项研究调查了纤维素纳米纤维(CNF)在辅助碳纤维复合材料层压板的I型抗分层性方面的功能。采用Z钉和湿法植绒技术来研究贯穿厚度的增强。根据标准ASTM DS528,对未加固和加固(Z钉,湿法植绒等)双悬臂梁(DCB)样品进行了实验分析- 13.将使用带有平面应变有限元的2D有限元代码进行数值模拟。基于牵引分离的双线性内聚模型将用于研究贯通厚度加固的效果。内聚区域的参数是通过参数研究获得的,然后将所得结果与获得的实验数据进行验证。借助力与十字头挠度图,可以有效地捕获模型中分层的起始和传播。指示z引脚拔出行为的双线性内聚定律的使用也将得到验证。

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