Understanding of residual stresses in chain-die-formed dual-phase (DP) metallic components: predictive modelling and experimental validation

Author:

Sun Yong,Luzin Vladimir,Khan Sabrina,Vajragupta Napat,Meehan Paul,Daniel Bill,Yanagimoto Jun,Xiong Ziliu,Ding Shichao

Funder

Baosteel Group Corporation

Australian Nuclear Science and Technology Organisation

Publisher

Springer Science and Business Media LLC

Subject

Industrial and Manufacturing Engineering,Computer Science Applications,Mechanical Engineering,Software,Control and Systems Engineering

Reference28 articles.

1. Volden L, Gundersen Ø, Rørvik G (1999) Development of residual stresses in high strength low alloy steel, ISOPE-I-99-364, in The Ninth International Offshore and Polar Engineering Conference, International Society of Offshore and Polar Engineers, 30 May–4 June, Brest, France

2. Xu W, Burdekin F (1998) Effects of residual stresses on constraint and fracture behaviour of wide plates, in Proceedings of the Royal Society of London A: Mathematical, Physical and Engineering Sciences, 1998, vol 454. The Royal Society, London, pp. 2505–2528

3. Ding S, Zhang Y, (2012) Chain-die Forming, is it a right forming method to make structural parts of motor vehicles with UHSS material, in Proceedings of International Conference on Advanced Vehicle Technologies and Integration (VTI 2012) pp.1–6

4. Sun Y, Li Y, Li D, Meehan PA, Daniel WJ, Shi L et al (2019) Predictive modelling of longitudinal bow in chain-die formed AHSS profiles and its experimental verification. J Manuf Process 39:208–225

5. Huang L, Chen X, Yu D, Chen Y, An K, (2018) Residual Stress Distribution in a Hydroformed Advanced High Strength Steel Component: Neutron Diffraction Measurements and Finite Element Simulations, SAE Technical pp 0148–7191

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