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Investigation of fatigue crack growth rate in CARALL, ARALL and GLARE

机译:CARALL,ARALL和GLARE疲劳裂纹增长率的研究

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Fibre metal laminates (FMLs) are being used to manufacture many structural components in aerospace industry because of their very high strength to weight ratios, yet the exact model for estimating fatigue crack propagation in FMLs cannot be developed because of many variable parameters affecting it. In this research, tensile strength, fatigue life and fracture toughness values of 2/1 configuration carbon reinforced aluminium laminate (CARALL), aramid reinforced aluminium laminate and glass laminate aluminium reinforced epoxy specimens have been investigated. Mechanical, chemical and electrochemical surface treatments were applied to AA 1050 face sheets to improve the adhesive properties of the laminates. The specimens were prepared using vacuum assisted resin transfer moulding technique and were cut to desired shapes. Fatigue tests were conducted on centre notched specimens according to ASTM Standard E399. Real time material data and properties of adhesive were used in definition of numerical simulation model to obtain the values of stress intensity factor at different crack lengths. It was observed that CARALL shows very superior tensile and fatigue strength because of stress distribution during failure. Numerical simulation model developed in this research accurately predicts fracture toughness of aramid reinforced aluminium laminate, CARALL and glass laminate aluminium reinforced epoxy with less than 2% error. An empirical analytical model using experimental data obtained during research was developed which accurately predicts the trend of FMLs fatigue life.
机译:纤维金属层压板(FML)由于具有很高的强度重量比而被用于制造航空航天工业中的许多结构部件,但是由于存在许多影响它的可变参数,因此无法开发出精确的模型来估算FML中的疲劳裂纹扩展。在这项研究中,研究了2/1构型碳增强铝层压板(CARALL),芳族聚酰胺增强铝层压板和玻璃层压板铝增强环氧样品的拉伸强度,疲劳寿命和断裂韧性值。对AA 1050面板进行了机械,化学和电化学表面处理,以改善层压板的粘合性能。使用真空辅助树脂传递模塑技术制备样品,并切成所需形状。根据ASTM标准E399对中心有缺口的样品进行了疲劳测试。在数值模拟模型的定义中,使用了实时的材料数据和胶粘剂的性能来获得不同裂纹长度下的应力强度因子值。观察到,由于破坏过程中的应力分布,CARALL表现出非常优异的拉伸强度和疲劳强度。本研究开发的数值模拟模型可准确预测芳纶增强铝层压板,CARALL和玻璃层压铝增强环氧树脂的断裂韧性,误差小于2%。建立了使用研究期间获得的实验数据的经验分析模型,该模型可以准确地预测FML疲劳寿命的趋势。

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