Effects of mechanical properties and geometric conditions on stiffness of Hyperboloid Shallow Shell

The experiment models based on the hyperboloid shallow shells that represent automobile panel's surface features are established. The effects of material properties and geometric conditions condition on the stiffness of hyperboloid shallow shell are investigated experimentally. The influences o...

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Main Authors: Zhao Lihong, Yu Haiping, Xing Zhongwen, Lei Chengxi
Format: Article
Language:English
Published: EDP Sciences 2015-01-01
Series:MATEC Web of Conferences
Online Access:http://dx.doi.org/10.1051/matecconf/20152104003
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spelling doaj-32da62b34e774546bdef99a391849e622021-02-02T03:26:09ZengEDP SciencesMATEC Web of Conferences2261-236X2015-01-01210400310.1051/matecconf/20152104003matecconf-icnft2015_04003Effects of mechanical properties and geometric conditions on stiffness of Hyperboloid Shallow ShellZhao Lihong0Yu Haiping1Xing Zhongwen2Lei Chengxi3Engineering Training Center, Harbin Engineering UniversitySchool of Materials Science and Engineering, Harbin Institute of TechnologySchool of Mechatronics Engineering, Harbin Institute of TechnologySchool of Mechatronics Engineering, Harbin Institute of TechnologyThe experiment models based on the hyperboloid shallow shells that represent automobile panel's surface features are established. The effects of material properties and geometric conditions condition on the stiffness of hyperboloid shallow shell are investigated experimentally. The influences of panel thickness and geometric conditions on stiffness are very obvious. Stiffness increases with increasing of the panel thickness, and stiffness doubled as increasing in thickness with 0.1 mm. The effect of thickness on stiffness is far greater than that of blank holding force. The greater the arc height of punch, the greater the stiffness. And stiffness increases nearly by five times with arc height of punch is from 3mm to 9mm. The effect of arc height of punch on stiffness is far greater than that of materials mechanical properties. The stiffness is varied with different panel material properties by the same forming and stiffness test conditions. The decrease of yield strength is beneficial to the panel stiffness. The appropriate choice of materials and forming process condition is important in meeting necessary requirements for the energy-saving, lightweight and reducing wind resistance design in automotive industry.http://dx.doi.org/10.1051/matecconf/20152104003
collection DOAJ
language English
format Article
sources DOAJ
author Zhao Lihong
Yu Haiping
Xing Zhongwen
Lei Chengxi
spellingShingle Zhao Lihong
Yu Haiping
Xing Zhongwen
Lei Chengxi
Effects of mechanical properties and geometric conditions on stiffness of Hyperboloid Shallow Shell
MATEC Web of Conferences
author_facet Zhao Lihong
Yu Haiping
Xing Zhongwen
Lei Chengxi
author_sort Zhao Lihong
title Effects of mechanical properties and geometric conditions on stiffness of Hyperboloid Shallow Shell
title_short Effects of mechanical properties and geometric conditions on stiffness of Hyperboloid Shallow Shell
title_full Effects of mechanical properties and geometric conditions on stiffness of Hyperboloid Shallow Shell
title_fullStr Effects of mechanical properties and geometric conditions on stiffness of Hyperboloid Shallow Shell
title_full_unstemmed Effects of mechanical properties and geometric conditions on stiffness of Hyperboloid Shallow Shell
title_sort effects of mechanical properties and geometric conditions on stiffness of hyperboloid shallow shell
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2015-01-01
description The experiment models based on the hyperboloid shallow shells that represent automobile panel's surface features are established. The effects of material properties and geometric conditions condition on the stiffness of hyperboloid shallow shell are investigated experimentally. The influences of panel thickness and geometric conditions on stiffness are very obvious. Stiffness increases with increasing of the panel thickness, and stiffness doubled as increasing in thickness with 0.1 mm. The effect of thickness on stiffness is far greater than that of blank holding force. The greater the arc height of punch, the greater the stiffness. And stiffness increases nearly by five times with arc height of punch is from 3mm to 9mm. The effect of arc height of punch on stiffness is far greater than that of materials mechanical properties. The stiffness is varied with different panel material properties by the same forming and stiffness test conditions. The decrease of yield strength is beneficial to the panel stiffness. The appropriate choice of materials and forming process condition is important in meeting necessary requirements for the energy-saving, lightweight and reducing wind resistance design in automotive industry.
url http://dx.doi.org/10.1051/matecconf/20152104003
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AT xingzhongwen effectsofmechanicalpropertiesandgeometricconditionsonstiffnessofhyperboloidshallowshell
AT leichengxi effectsofmechanicalpropertiesandgeometricconditionsonstiffnessofhyperboloidshallowshell
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