Home|News|Literature|Journal|Instruction|Forum|Member|Introduction

Chinese  Old version

By    In    Search 

  HomeContents of Chinese Journal of Mechanical Engineering 2006 No.8TWO OPTIMIZATION DESIGNS RESEARCH OF WEDGED-RING JOINT STRUCTURE BASED ON FEM

TWO OPTIMIZATION DESIGNS RESEARCH OF WEDGED-RING JOINT STRUCTURE BASED ON FEM

 

HUANG Peng  YIN Yihui  MO Jun

(System Engineering Institute, China Academy of Engineering Physics, Mianyang 621900)

 

Abstract: The parametric finite element model(FEM) of wedged-ring joint structure is established using ANSYS parametric design language(APDL). For enhancing the joint structure strength, the wedged-ring dimensions are taken as design variables, and the maximal stress ratio is taken as a objective function to establish the first optimization model. Then, for obtaining the equal strength joint structure, the second optimization model is established using the quadratic sum of stress ratio subtracters as another objective function. Two optimization problems are solved using first order method based on conjugate gradient method. The first optimization result shows that the maximal Mises stress of the optimum structure is 21.1% less than that of the initial structure, and that safety coefficient of structure raises to 1.37 from 1.08 under tensile loading. In addition, the second optimization result shows that the objective function decreases to 0.067 from 0.600, and stress ratio of structure components approaches each other. Thus, the first order method combined with nonlinear FEM can be used to design the joint structure and obtain the satisfactory optimization result.

Key words: Wedged-ring joint structure  Finite element model(FEM)  Optimization design  Conjugate gradient method

CLC No: TB115  O344.3

中国工程物理研究院预研基金资助项目(2005-421010304).Received 20050403 ,received in revised form 20051020

 
Open or Download Full Text of this Paper (PDF File)
 
  About us-Contact us-Site map-Advertisement service-Cooperation-Legal statement  

Address: 22 Baiwanzhuang Dajie, Beijing 100037 China    Tel: 8610-88379907    Fax: 8610-68994557

E-mail: cjme@mail.machineinfo.gov.cn  http: //www.cjmenet.com
©2006 Editorial Office of CJME. All Right Reserved