Lee M G, Kim S J. Application of hot press forming process to manufacture an automotive part and its finite element analysis considering phase transformation plasticity[J]. International Journal of Mechanical Science,2009,51(11-12):888-898.
[2]
Bariani P F, Bruschi S, Ghiotti A. Advances in predicting damage evolution and fracture occurrence in metal forming operations[J]. Journal of Manufacturing Processes,2012,14(4):495-500.
[3]
Malcher L, Mamiya E N. An improved damage evolution law based on continuum damage mechanics and its dependence on both stress triaxiality and the third invariant[J]. International Journal of Plasticity,2014,56:232-261.
[4]
Kachanov L M. Time of the rupture process under creep conditions[J]. Izv Akad Nauk SSR Otd Tech Nauk,1958,8:26-31.
[5]
Lin J, Liu Y, Dean T A. A review on damage mechanisms, models and calibration methods under various deformation conditions[J].International Journal of Damage Mechanics,2005,14(4):299-319.
[6]
Watt D F, Coon L, Bibby M, et al. An algorithm for modelling microstructural development in weld heat-affected zones(part a)reaction kinetics[J]. Acta Metallurgica,1988,36(11):3029-3035.
[7]
马宁,胡平,郭威.热成形硼钢热、力及相变耦合关系[J]. 材料热处理学报,2010,31(11): 33-36,41. Ma Ning, Hu Ping, Guo Wei. Experiments and analysis of relations among heat, stress and transformation of boron steel for hot forming[J]. Transactions of Materials and Heat Treatment,2010,31(11):33-36,41.
[8]
Lin J, Hayhurst D, Dyson B. A new design of uniaxial testpiece with slit extensometer ridges for improved accuracy of strain measurement[J]. International Journal of Mechanical Sciences,1993,35(1):63-78.
[9]
Li N, Mohamed M S, Cai J, et al. Experimental and numerical studies on the formability of materials in hot stamping and cold die quenching process[C]∥The 14th International ESAFORM Conference on Material Forming AIP Conf Proc,2011:1555-1561.
[10]
Akerstrom P, Bergman G, Oldenburg M. Numerical implementation of a constitutive model for simulation of hot stamping[J].Modelling and Simulation in Materials Science and Engineering,2007,15:105-119.
[11]
Naderi M, Saeed-Akbari A, Bleck W. The effects of non-isothermal deformation on martensitic transformation in 22MnB5 steel[J]. Materials Science and Engineering A,2008,487(1-2):445-455.
[12]
Arthur Shapiro. Finite element modelling of hot Stamping[J]. Metal Forming,2011,80(9):658-664.
[13]
Naderi M, Ketabchi M, Abbasi M, et al. Analysis of microstructure and mechanical properties of different high strength carbon steels after hot stamping[J]. Journal of Materials Processing Technology,2011,211(6):1117-1125.
[14]
高云凯,高大威,余海燕,等.汽车用高强度钢热成型技术[J]. 汽车技术,2010(8):56-60. Gao Yun-kai, Gao Da-wei, Yu Hai-yan, et al. Analysis on high-strength steel hot forming technology for automobile[J]. Automobile Technology,2010(8):56-60.
[15]
周靖,王宝雨,徐伟力,等. 耦合损伤的22MnB5变形本构模型[J]. 北京科技大学学报,2013,35(11):1450-1457. Zhou Jing, Wang Bao-yu, Xu Wei-li, et al. Damage-coupled constitutive model of 22MnB5 steel in hot deformation[J]. Journal of University of Science and Technology Beijing,2013,35(11):1450-1457.
[16]
Bok H H, Lee M G. Comparative study of the prediction of microstructure and mechanical properties for a hot-stamped B-pillar reinforcing part[J]. International Journal of Mechanical Science,2011,53(9):744-752.