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首页> 外文期刊>Journal of Materials Engineering and Performance >Application of Fracture Mechanics to Specify the Proof Load Factor for Clamp Band Systems of Launch Vehicles
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Application of Fracture Mechanics to Specify the Proof Load Factor for Clamp Band Systems of Launch Vehicles

机译:断裂力学在确定运载火箭夹箍系统验证载荷系数中的应用

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This article presents a methodology for evaluation of the proof load factor (PLF) for clamp band system (CBS) made of M250 Maraging steel following fracture mechanics principles.CBS is most widely used as a structural element and as a separation system. Using Taguchi's design of experiments and the response surface method (RSM) the compact tension specimens were tested to establish an empirical relation for the failure load (P_(max)) in terms of the ultimate strength, width, thickness, and initial crack length. The test results of P_(max) closely matched with the developed RSM empirical relation. Crack growth rates of the maraging steel in different environments were examined. Fracture strength (σ_f) of center surface cracks and through-crack tension specimens are evaluated utilizing the fracture toughness (K_(IC)). Stress induced in merman band at flight loading conditions is evaluated to estimate the higher load factor and PLF. Statistical safety factor and reliability assessments were made for the specified flaw sizes useful in the development of fracture control plan for CBS of launch vehicles.
机译:本文介绍了一种根据断裂力学原理评估由M250马氏体时效钢制成的夹紧带系统(CBS)的极限载荷因子(PLF)的方法.CBS被广泛用作结构元件和分离系统。使用Taguchi的实验设计和响应面方法(RSM),对紧凑的拉伸试样进行了测试,以建立关于极限载荷,最大强度,宽度,厚度和初始裂纹长度的破坏载荷(P_(max))的经验关系。 P_(max)的测试结果与已开发的RSM经验关系紧密匹配。研究了马氏体时效钢在不同环境下的裂纹扩展速率。利用断裂韧性(K_(IC))评估中心表面裂纹和贯穿裂纹的拉伸试样的断裂强度(σ_f)。评估在飞行载荷条件下人鱼带中引起的应力,以估计较高的载荷系数和PLF。针对指定缺陷尺寸进行了统计安全系数和可靠性评估,可用于制定运载火箭CBS的断裂控制计划。

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