DocumentCode :
2248760
Title :
Optimization design of molded honeycomb mold based on Pro/Mechanica
Author :
Su-chang, Ma ; Run-hua, Tan ; Xue-bin, Liu
Author_Institution :
Inst. of Design for Innovation, Hebei Univ. of Technol., Tianjin, China
Volume :
3
fYear :
2010
fDate :
6-7 March 2010
Firstpage :
40
Lastpage :
43
Abstract :
According to the Pro/Mechanica analysis platform, by the finite element analysis method, the actual mold honeycomb molded forces, boundary conditions and imposed load in the view of the molded honeycomb mold for the actual operating conditions leading to die due to stress concentration fatigue failure, the reliability of the problem of insufficient. Through the analysis to determine the maximum stress and strain of the mold and the largest deformation. Are determined use (Structure) analysis tools for mold sensitivity analysis parameters, select the key parameters to determine the maximum die stress, strain and maximum deformation. Subjecting to satisfactory optimal conditions the finite element technology and structure optimization design combined in order to deduce maximum stress of the die stress region, achieve the minimum of the target parameters - stress, optimize the die structure parameters, solute the die fatigue failures on the condition of the maximum working stress of the mold to meet the allowable stress, meet the actual working condition requirements of the molded mold honeycomb, improve the reliability of the molded mold honeycomb.
Keywords :
design engineering; failure (mechanical); fatigue; finite element analysis; honeycomb structures; paper pulp; reliability; sensitivity analysis; stress analysis; Pro/Mechanica analysis; die fatigue failures; fatigue failure; finite element analysis method; honeycomb paperboard; maximum deformation; mold sensitivity analysis; molded honeycomb mold; optimization design; reliability; stress concentration; structure analysis; structure parameters; Boundary conditions; Capacitive sensors; Design optimization; Employee welfare; Failure analysis; Fatigue; Finite element methods; Lead; Sensitivity analysis; Stress; Finite Element Analysis; Honeycomb mold; Pro/Mechanica; optimal design; sensitivity;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Informatics in Control, Automation and Robotics (CAR), 2010 2nd International Asia Conference on
Conference_Location :
Wuhan
ISSN :
1948-3414
Print_ISBN :
978-1-4244-5192-0
Electronic_ISBN :
1948-3414
Type :
conf
DOI :
10.1109/CAR.2010.5456720
Filename :
5456720
Link To Document :
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