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논문 기본 정보

자료유형
학술대회자료
저자정보
Xianfeng Chen (Shanghai Jiao Tong University) Zhongqin Lin (Shanghai Jiao Tong University) Zhongqi Yu (Shanghai Jiao Tong University) Xinping Chen (Shanghai Baoshan Iron & Steel Co.) Shuhui Li (Shanghai Jiao Tong 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
653 - 660 (8page)

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This study establishes the forming limit diagram (FLD) for QSTE340 seamed tube hydroforming by finite element method (FEM) simulation. FLD is commonly obtained from experiment, theoretical calculation and FEM simulation. But for tube hydroforming, both of the experimental and theoretical means are restricted in the application due to the equipment costs and the lack of authoritative theoretical knowledge. In this paper, a novel approach of predicting forming limit using thickness gradient criterion (TGC) is presented for seamed tube hydroforming. Firstly, tube bulge tests and uniaxial tensile tests are performed to obtain the stress-strain curve for tube three parts. Then one FE model for a classical tube free hydroforming and another FE model for a novel experimental apparatus by applying the lateral compression force and the internal pressure are constructed. After that, the forming limit strain is calculated based on TGC in the FEM simulation. Good agreement between the simulation and experimental results is indicated. By combining the TGC and FEM, an alternative way of predicting forming limit with enough accuracy and convenience is provided.

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Abstract
INTRODUCTION
EXPERIMENTS FOR STRESS-STRAIN CURVE OF SEAMED TUBE
TGC BASED FLD PREDICTION
RESULTS AND DISCUSSIONS
CONCLUSIONS
REFERENCES

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