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논문 기본 정보

자료유형
학술대회자료
저자정보
Abhishek V. Nulkar (EASi Engineering) Randy Gu (Oakland University) Pilaka Murty (West Texas A&M University)
저널정보
한국소성·가공학회 기타자료 The 8th International Conference and Workshop on numerical simulation of 3D seet metal forming processes (NUMISHEET 2011)
발행연도
2011.8
수록면
661 - 668 (8page)

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초록· 키워드

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Tube hydroforming has been studied intensively using commercial finite element programs. A great deal of the investigations dealt with models with symmetric cross-sections. It is known that additional constraints due to symmetry may be imposed on the model so that it is properly supported. For a non-symmetric model, these constraints become invalid and the model does not have sufficient support resulting in a singular finite element system. Majority of commercial codes have a limited capability in solving models with insufficient supports. Recently, new algorithms using penalty variable and air-like contact element (ALCE) have been developed to solve positive semi-definite finite element systems such as those in contact mechanics. In this study the ALCE algorithm is first validated by comparing its result against a commercial code using a symmetric model in which a circular tube is formed to polygonal dies with symmetric shapes. Then, the study investigates the accuracy and efficiency of using ALCE in analyzing hydroforming of tubes with various cross-sections in non-symmetrical dies in 2-D finite element settings.

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Abstract
INTRODUCTION
PROBLEM STATEMENT
MATERIAL MODEL FOR AIR-LIKE CONTACT ELEMENT
FINITE ELEMENT FORMULATION FOR ALCE
NUMERICAL SIMULATIONS
CONCLUSIONS
REFERENCES

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