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Investigation on Distortion Mechanism and Correcting Load Calculation Method for Aluminum Beam Structure by Bilateral Rolling Process

机译:双侧轧制铝梁结构变形机理及修正荷载计算方法研究

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In aviation industry, flexural deformation of aluminum beam structures after manufacturing process is inevitable. Since the distortion correcting process is generally dependent on workers’ experience, the distortion correcting quality cannot be guaranteed. This is one of the main issues that have baffled the further development of aerospace industry for a long time. To solve this problem, bilateral rolling process which can cause redistribution of the component stress was proposed to satisfy the requirement of distortion correction. In this paper, T-shaped structures were selected as the research object. The internal distortion mechanism was revealed by analyzing the influence of rolling parameters on the macroscopic distortion of the part using FEM (finite element modeling) simulation. Based on theoretical analysis, relationship between rolling parameters and specimen distortion was obtained. Furthermore, method to calculate the equivalent force due to rolling induced residual stress was proposed. This allows an accurate calculation of the correction load caused by rolling operation. A “machining distortion”-“rolling correction” model was established to verify the method. It was confirmed that the calculation of distortion correction load by the proposed method is accurate. This will provide both theoretical and technical support for addressing distortion issue of aerospace monolithic components.
机译:在航空工业中,铝梁结构在制造过程后不可避免地发生挠曲变形。由于失真校正过程通常取决于工人的经验,因此无法保证失真校正的质量。这是长期困扰航空工业进一步发展的主要问题之一。为了解决这个问题,提出了可以引起构件应力重新分布的双向轧制工艺,以满足变形校正的要求。本文以T形结构为研究对象。通过有限元模拟分析滚动参数对零件宏观变形的影响,揭示了内部变形机理。在理论分析的基础上,获得了轧制参数与试件变形之间的关系。此外,提出了一种计算由滚动引起的残余应力引起的等效力的方法。这允许精确计算由轧制操作引起的校正载荷。建立了“加工畸变”-“滚动校正”模型来验证该方法。证实了所提出的方法对畸变校正载荷的计算是准确的。这将为解决航空航天整体组件的变形问题提供理论和技术支持。

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