Optimal Design on Cutterhead Supporting Structure of Tunnel Boring Machine Based on Continuum Topology Optimization Method

Author(s):  
Zhen Li ◽  
Wei Sun ◽  
Junzhou Huo ◽  
Pengcheng Su ◽  
Liying Deng
2013 ◽  
Vol 2013.23 (0) ◽  
pp. _1114-1_-_1114-9_
Author(s):  
Kentaro YAJI ◽  
Takayuki YAMADA ◽  
Masato YOSHINO ◽  
Toshiro MATSUMOTO ◽  
Kazuhiro IZUI ◽  
...  

2011 ◽  
Vol 697-698 ◽  
pp. 623-626
Author(s):  
Jun Gang Yang ◽  
W.H. Zhang ◽  
Ji Hong Zhu

In this paper, the lightweight design of an aero-engine stator structure is studied as an application case. Different kinds of loading conditions are taken into account. Mathematical formulations of the optimization problem are presented. Two optimization strategies combining shape and topology optimization are tested to get optimal design results.


Coatings ◽  
2021 ◽  
Vol 11 (7) ◽  
pp. 774
Author(s):  
Haitao Luo ◽  
Rong Chen ◽  
Siwei Guo ◽  
Jia Fu

At present, hard coating structures are widely studied as a new passive damping method. Generally, the hard coating material is completely covered on the surface of the thin-walled structure, but the local coverage cannot only achieve better vibration reduction effect, but also save the material and processing costs. In this paper, a topology optimization method for hard coated composite plates is proposed to maximize the modal loss factors. The finite element dynamic model of hard coating composite plate is established. The topology optimization model is established with the energy ratio of hard coating layer to base layer as the objective function and the amount of damping material as the constraint condition. The sensitivity expression of the objective function to the design variables is derived, and the iteration of the design variables is realized by the Method of Moving Asymptote (MMA). Several numerical examples are provided to demonstrate that this method can obtain the optimal layout of damping materials for hard coating composite plates. The results show that the damping materials are mainly distributed in the area where the stored modal strain energy is large, which is consistent with the traditional design method. Finally, based on the numerical results, the experimental study of local hard coating composites plate is carried out. The results show that the topology optimization method can significantly reduce the frequency response amplitude while reducing the amount of damping materials, which shows the feasibility and effectiveness of the method.


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