JOHNSON

您所在的位置:网站首页 hypermesh材料各种mat详解 JOHNSON

JOHNSON

2023-09-24 15:46| 来源: 网络整理| 查看: 265

常见材料的JOHNSON-COOK模型参数 钢

[1] Ni C Y, Li Y C, Xin F X, et al. Ballistic resistance of hybrid-cored sandwich plates: Numerical and experimental assessment[J]. Composites Part A: Applied Science and Manufacturing, 2013, 46: 69-79. 304不锈钢

[2] Xue Q, Nesterenko V F, Meyers M A. Evaluation of the collapsing thick-walled cylinder technique for shear-band spacing[J]. International journal of impact engineering, 2003, 28(3): 257-280. 304不锈钢

[3] Li J C, Chen X W, Huang F L. FEM analysis on the deformation and failure of fiber reinforced metallic glass matrix composite[J]. Materials Science and Engineering: A, 2016, 652: 145-166. 304不锈钢

[4] Lee S, Barthelat F, Hutchinson J W, et al. Dynamic failure of metallic pyramidal truss core materials–experiments and modeling[J]. International Journal of Plasticity, 2006, 22(11): 2118-2145. 304不锈钢

[5] 陈刚, 陈忠富, 徐伟芳, 等. 45 钢的 JC 损伤失效参量研究[J]. 爆炸與衝擊, 2007, 27(2): 131-135. 45#钢

[6] 陈刚, 陈忠富, 陶俊林, 等. 45 钢动态塑性本构参量与验证[J]. 爆炸与冲击, 2005, 25(5): 451-456. 45#钢

[7] Kılıç N, Bedir S, Erdik A, et al. Ballistic behavior of high hardness perforated armor plates against 7.62 mm armor piercing projectile[J]. Materials & Design, 2014, 63: 427-438. Secure 500

[8] Li J C, Chen X W, Huang F L. FEM analysis on the deformation and failure of fiber reinforced metallic glass matrix composite[J]. Materials Science and Engineering: A, 2016, 652: 145-166. 30CrMnMo

[9] Johnson G R, Cook W H. Fracture characteristics of three metals subjected to various strains, strain rates, temperatures and pressures[J]. Engineering Fracture Mechanics, 1985, 21(1): 31-48.4340钢 & Armco iron

[10] Abaqus Technology Brief, Simulation of the ballistic perforation of aluminium plates with Abaqus/Explicit, Dassault Systemes, July, 2012. 4043钢(部分参数引自[9])

钨合金

[1] Lidén E, Mousavi S, Helte A, et al. Deformation and fracture of a long-rod projectile induced by an oblique moving plate: Numerical simulations[J]. International Journal of Impact Engineering, 2012, 40: 35-45.

[2] Li J C, Chen X W, Huang F L. FEM analysis on the deformation and failure of fiber reinforced metallic glass matrix composite[J]. Materials Science and Engineering: A, 2016, 652: 145-166.

铜合金

[1] Xue Q, Nesterenko V F, Meyers M A. Evaluation of the collapsing thick-walled cylinder technique for shear-band spacing[J]. International journal of impact engineering, 2003, 28(3): 257-280.

[2] Johnson G R, Cook W H. Fracture characteristics of three metals subjected to various strains, strain rates, temperatures and pressures[J]. Engineering Fracture Mechanics, 1985, 21(1): 31-48.OFHC

铝合金

[1] 米双山, 张锡恩, 陶贵明. 钨球侵彻 LY-12 铝合金靶板的有限元分析[J]. 爆炸與衝擊, 2005, 25(5): 477-480.

[2] Flores-Johnson E A, Shen L, Guiamatsia I, et al. Numerical investigation of the impact behaviour of bioinspired nacre-like aluminium composite plates[J]. Composites Science and Technology, 2014, 96: 13-22. 7075铝合金

[3] Huang W, Zhang W, Huang X, et al. Dynamic response of aluminum corrugated sandwich subjected to underwater impulsive loading: experiment and numerical modeling[J]. International Journal of Impact Engineering, 2017, 109: 78-91. 3003, 5A06铝合金

[4] Børvik T, Forrestal M J, Hopperstad O S, et al. Perforation of AA5083-H116 aluminium plates with conical-nose steel projectiles–calculations[J]. International Journal of Impact Engineering, 2009, 36(3): 426-437. 5083铝合金

[5] Zhang X, Wang R, Li Q M, et al. Modeling of Hypervelocity Impact of Sandwiched Open Cell Aluminum Foam[J]. Procedia Engineering, 2017: 262-269. 某型号铝合金

[6] Abaqus Technology Brief, Simulation of the ballistic perforation of aluminium plates with Abaqus/Explicit, Dassault Systemes, July, 2012. 6061铝合金

[7] Ijaz H , Zain-Ul-Abdein M , Saleem W , et al. Modified Johnson-Cook Plasticity Model with Damage Evolution: Application to Turning Simulation of 2XXX Aluminium Alloy[J]. Journal of Mechanics, 2017:1-12. 2024铝合金

[8] Abdullah A S , Kuntjoro W , Yamin A F M . Finite element modelling of aluminum alloy 2024-T3 under transverse impact loading[J]. 2017, 1901:050005 2024铝合金

[9] Zhang W, Xiao X K, Wei G. Constitutive relation and fracture model of 7A04 aluminum alloy[J]. Explosion & Shock Waves, 2011, 31(1):81-87. 7A04铝合金

[10] Wei Z , Gang W , Xin-Ke X . Constitutive Relation and Fracture Criterion of 2A12 Aluminum Alloy[J]. Acta Armamentarii, 2013, 34(3):276-282. 2A12铝合金

[11] Park C K, Queitzsch G, Carney K, et al. Ballistic Impact Simulations of an Aluminum 2024 Panel Using* MAT_224 in LS-DYNA® Considering Oblique Incidence and Attitude Angles of a Rectangular Projectile[J]. 2024铝合金(224号)

[12] 高玉龙,孙晓红.高速列车用6008铝合金动态变形本构与损伤模型参数研究[J].爆炸与冲击. 6008铝合金

[13] Rai R, Kumar G, Dagar S, et al. Numerical simulation of ballistic impact on aluminium 5083-H116 plate with Johnson cook plasticity model[J]. Materials Today: Proceedings, 2021. 5083-H16铝合金

综合性资料

[1] M. A. Meyers: Dynamic behavior of materials (John Wiley & Sons, New York, 1994) 丰富的金属材料,如AA,SS,Ag,Au,Pt等

[2] 辛春亮等: 有限元分析常用材料参数手册 (机械工业出版社, 2020) 材料参数很多,很大篇幅为各类金属材料的JC模型,并附有来源文献



【本文地址】


今日新闻


推荐新闻


    CopyRight 2018-2019 办公设备维修网 版权所有 豫ICP备15022753号-3