Citation: | JIA Yu, LIU Yan, LIANG Xiaolu, ZHENG Teng. Dynamic Compression Properties of 30CrMnMoRE and 30CrMnSi[J]. Chinese Journal of High Pressure Physics, 2018, 32(4): 044102. doi: 10.11858/gywlxb.20170659 |
[1] |
陆利明, 壮云乾, 蒋国昌.高氮钢的研究和发展[J].特殊钢, 1996, 17(3):1-6. http://www.cnki.com.cn/Article/CJFDTOTAL-TSGA603.000.htm
LU L M, ZHUANG Y Q, JIANG G C.Research and development of high nitrogen steel[J].Special Steel, 1996, 17(3):1-6. http://www.cnki.com.cn/Article/CJFDTOTAL-TSGA603.000.htm
|
[2] |
王晓强, 朱锡.舰船用钢的抗弹道冲击性能研究进展[J].中国造船, 2010, 51(1):227-236. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=zgzc201001029
WANG X Q, ZHU X.Review on ballistic impact resistance of ship building steel[J].Shipbuilding of China, 2010, 51(1):227-236. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=zgzc201001029
|
[3] |
陈威, 李吉峰, 朱磊.聚能射流侵彻下船舰钢与均质钢的等效关系[J].装甲兵工程学院学报, 2010, 24(2):45-48. http://www.cqvip.com/QK/87527X/201002/1001204617.html
CHEN W, LI J F, ZHU L.Equivalent relation of ship steel and homogeneous steel under penetration of shaped charge jet[J].Journal of Academy of Armored Force Engineering, 2010, 24(2):45-48. http://www.cqvip.com/QK/87527X/201002/1001204617.html
|
[4] |
杨超, 田时雨.装甲钢动态性能与抗弹性能研究[J].兵器材料科学与工程, 2002, 25(1):3-7. http://mall.cnki.net/magazine/Article/BCKG200201000.htm
YANG C, TIAN S Y.Study of relation between dynamic characteristics and penetrating resistance of armour steel[J].Ordnance Material Science and Engineering, 2002, 25(1):3-7. http://mall.cnki.net/magazine/Article/BCKG200201000.htm
|
[5] |
王春奎, 黄晨光, 孙原龙, 等.升温率和应变率对30CrMnSi拉伸强度的影响[J].金属学报, 1995, 31(10):475-478. http://www.cnki.com.cn/Article/CJFDTOTAL-JSXB510.006.htm
WANG C K, HUANG C G, SUN Y L, et al.Influence of heating rate and strain rate of tensile strength of 30CrMnSi[J].Acta Metallurgica Sinica, 1995, 31(10):475-478. http://www.cnki.com.cn/Article/CJFDTOTAL-JSXB510.006.htm
|
[6] |
胡时胜.Hopkinson压杆实验技术的应用进展[J].实验力学, 2005, 12(4):589-594. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=sylx200504016
HU S S.The application development of experimental technique of Hopkinson pressure bar[J].Journal of Experimental Mechanics, 2005, 12(4):589-594. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=sylx200504016
|
[7] |
姜锡权, 胡时胜. 霍普金森杆试验技术发展综述[C]//Hopkinson杆试验技术研讨会会议论文集, 2007: 147-158.
|
[8] |
王礼立.应力波基础[M].北京:国防工业出版社, 2005:8.
WANG L L.Foundation of stress waves[M].Beijing:National Defense Industry Press, 2005:8.
|
[9] |
宋立, 胡时胜.SHPB数据处理中的二波法与三波法[J].爆炸与冲击, 2005, 25(4):368-373. doi: 10.11883/1001-1455(2005)04-0368-06
SONG L, HU S S.Two-wave and three-wave method in SHPB data processing[J].Explosion and Shock Waves, 2005, 25(4):368-373. doi: 10.11883/1001-1455(2005)04-0368-06
|
[10] |
DAVIES E D H, HUNTER S C.The dynamic compression testing of solids by the method of the split Hopkinson pressure bar[J].Journal of the Mechanics and Physics of Solids, 1963, 11(3):155-179. doi: 10.1016/0022-5096(63)90050-4
|
[11] |
SAMANTA S K.Dynamic deformation of aluminium and copper at elevated temperatures[J].Journal of the Mechanics and Physics of Solids, 1971, 19(3):117-122. doi: 10.1016/0022-5096(71)90023-8
|
[12] |
王璀轶, 王扬卫.Al2O3陶瓷分离式霍普金森压杆横应变率动态压缩试验研究[J].兵工学报, 2009, 30(10):1349-1351. http://image.sciencenet.cn/olddata/kexue.com.cn/bbs/upload/200833202436205.doc
WANG C Y, WANG Y W.SHPB dynamic compression test of Al2O3 ceramics under constant strain rates[J].Acta Armamentarii, 2009, 30(10):1349-1351. http://image.sciencenet.cn/olddata/kexue.com.cn/bbs/upload/200833202436205.doc
|
[13] |
JOHNSON G R, COOK W H. A constitutive model and data for metals subjected to large strain rates and high temperaturesr[C]//Proceedings of the Seventh International Symposium on Ballistics. Hague, Netherlands: ADPA, 1983: 541-547.
|