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451.
Recent Developments on Damage and Fracture of Thin-Walled Complex Components Produced by Spinning
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The spinning technique has been widely used in the manufacture of aerospace thin-walled axisymmetric components because of its excellent formability. Damage and fracture, as the important defects that often occur and must be avoided in the forming and service stages of components, have attracted much attention of researchers. In this paper, the fracture behavior and laws of spinning components such as conical parts, tubular parts, and components with inner ribs are summarized, the typical coupled and uncoupled ductile fracture models are introduced, and their applications in spinning are analyzed. Meanwhile, the recent developments on the modified ductile fracture model in analyzing damage and fracture mechanisms of spinning are emphatically introduced. The results could provide guidance for the selection and establishment of appropriate ductile fracture models in the finite element simulation for the accurate prediction and analysis of fracture moment, location, form, damage mechanism, and evolution law, and help the development of precision spinning techniques for high-performance thin-walled complex components. 相似文献
452.
基于RBF神经网络提出了一种H∞自适应控制方法。控制器由等效控制器和H∞控制器两部分组成。用RBF神经网络逼近非线性函数,并把逼近误差引入到网络权值的自适应律中用以改善系统的动态性能。H^∞控制器用于减弱外部及神经网络的逼近误差对跟踪的影响。所设计的控制器不仅保证了闭环系统的稳定性,而且使外部干扰及神经网络的逼近误差对跟踪的影响减小到给定的性能指标。最后给出的算例验证了该方法的有效性。 相似文献
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The shape approximation method has been proven to be rapid and practicable in resolving low-thrust trajectory; however, it still faces the challenges of large deviation from the optimal solution and inability to satisfy the specific flight time and fuel mass constraints. In this paper, a modified shape approximation low-thrust model is presented, and a novel constrained optimization algorithm is developed to solve this problem. The proposed method aims at settling the bi-objective optimization o... 相似文献
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