首页> 外文期刊>Journal of Mechanical Science and Technology >Effect of various surface preparation techniques on the delamination properties of vacuum infused Carbon fiber reinforced aluminum laminates (CARALL): Experimentation and numerical simulation
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Effect of various surface preparation techniques on the delamination properties of vacuum infused Carbon fiber reinforced aluminum laminates (CARALL): Experimentation and numerical simulation

机译:各种表面制备技术对真空注入碳纤维增强铝层压板(CARALL)分层性能的影响:实验与数值模拟

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摘要

Carbon fiber reinforced aluminum laminates (CARALL) are one of the aluminum based Fiber metal laminates (FMLs) which, due to their high strength to weight ratio and good impact resistance are greatly replacing aluminum alloys in aircraft structures. In this research work, interlaminate shear strength of Vacuum assisted resin transfer molding (VARTM) manufactured CARALL has been investigated. Numerical simulation model incorporated with real time material data has been developed to predict the delamination behavior of CARALL laminates. Standard CARALL specimens with different surface morphologies were prepared by electric discharge machining, mechanical, chemical and electrochemical surface treatments. T-peel tests were carried out according to standard ASTM D1876-08 to find out inter laminate shear strength. FMLs made out of mechanically, chemically and electrochemically cleaned metal sheets depicted high interlaminate shear strength. SEM micrographs of failed surfaces verify the high adhesive strength of epoxy. Developed numerical simulation model accurately predicts the delamination behavior of CARALL as observed during experimentation.
机译:碳纤维增强铝层压板(卡尔)是铝基纤维金属层压板(FML)之一,由于它们的高强度与重量比和良好的抗冲击性大大代替飞机结构中的铝合金。在本研究工作中,研究了真空辅助树脂转移成型(Vartm)制造的可卡的抗涂层剪切强度。已经开发出与实时材料数据的数值模拟模型,以预测卡尔层压板的分层行为。通过电气放电加工,机械,化学和电化学表面处理制备具有不同表面形态的标准卡尔样品。根据标准ASTM D1876-08进行T-剥离试验,以找出层压型剪切强度。用机械,化学和电化学清洁的金属板制成的FML,描绘了高抗间隙剪切强度。故障表面的SEM显微照片验证了环氧树脂的高粘合强度。开发的数值模拟模型准确地预测了在实验期间观察到的卡尔的分层行为。

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