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首页> 外文期刊>International Journal of Fatigue >Effect of braid angle on fatigue performance of biaxial braided composites
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Effect of braid angle on fatigue performance of biaxial braided composites

机译:编织角对双轴编织复合材料疲劳性能的影响

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Biaxial braided fabric is gaining popularity in primary structural application in small business jets because of its natural ability to conform to complex shapes. This research addresses the effect of braid angle on in-plane mechanical properties and fatigue performance. The carbon epoxy braided composites were fabricated using low cost vacuum assisted resin transfer molding (VARTM) with different braid angles (25 deg, 30 deg and 45 deg). The static tests were performed to evaluate tensile strength, modulus, and Poisson's ratio. It is observed that as braid angle increases the tensile strength, modulus, and Poisson's ratio decreases significantly. The load controlled tension-tension fatigue tests (R = 0.1) were conducted at 10 Hz frequency with constant amplitude. The endurance limit was defined as the fatigue load that results in a fatigue life of one million cycles. The endurance limit for 25 deg and 30 deg braided composites was 40 percent of UTS whereas for 45 deg braided composites it was 50 percent of UTS. However, braid angle did not significantly affect the failure mechanism under fatigue loading. It was very crucial to control the braid angle within a test specimen, as tensile strength is significantly affected by braid angle variation. The special form of biaxial braided fabric termed slit sleeves assures the constant braid angle while handling and processing. It was observed that, a Sigmoidal function could be used effectively to represent the fatigue life behavior. Braided composites exhibited substantially different fatigue failure behavior as compared to conventional angle-ply laminated composites. The major difference being that the failure is sudden. There were hardly any noticeable matrix cracks or delaminations in the first 90 percent of the fatigue life at all fatigue load levels. There is rapid damage accumulation in the last 10 percent of the fatigue life.
机译:双轴编织织物由于其天然的适应复杂形状的能力而在小型公务机的主要结构应用中越来越受欢迎。这项研究解决了编织角对平面内机械性能和疲劳性能的影响。使用具有不同编织角(25度,30度和45度)的低成本真空辅助树脂传递模塑(VARTM)制造碳环氧编织复合材料。进行静态测试以评估抗张强度,模量和泊松比。观察到随着编织角的增加,抗张强度,模量和泊松比显着降低。负载控制的拉伸-拉伸疲劳试验(R = 0.1)在10 Hz频率下以恒定幅度进行。耐久性极限定义为导致一百万次循环疲劳寿命的疲劳载荷。 25度和30度编织复合材料的耐久性极限为UTS的40%,而45度编织复合材料的耐久性极限为UTS的50%。但是,编织角并没有显着影响疲劳载荷下的破坏机理。控制试样中的编织角非常关键,因为拉伸强度受编织角变化的影响很大。双轴编织织物的特殊形式称为狭缝套,可确保在处理和加工时保持恒定的编织角。观察到,可以以S形函数有效地表示疲劳寿命行为。编织复合材料与常规角铺层层压复合材料相比,表现出明显不同的疲劳破坏性能。主要区别在于故障是突然的。在所有疲劳载荷水平下,疲劳寿命的前90%几乎没有任何明显的基体裂纹或分层。在疲劳寿命的最后10%内会迅速积累损伤。

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