[1] 李鹤林,吉玲康,谢丽华.中国石油钢管的发展现状分析[J].河北科技大学学报,2006,27(1):1-5. [2] Bao S,Jin W L,Huang M F,et al.Piezomagnetic hysteresis as a non-destructive measure of the metal fa-tigue process[J].Ndt & E International,2010,43(8):706-712. [3] Wang Z D,Gu Y,Wang Y S.A review of three magnetic NDT technologies[J].Journal of Magnetism & Magnetic Materials,2012,324(4):382-388. [4] Dubov A A.A study of metal properties using the methodof magnetic memory[J].Metal Science and Heat Treatment,2007,39(9):401-405. [5] 伍颖. 断裂与疲劳[M].武汉:中国地质大学出版社,2009. [6] Miner M A.Cumulative damage in fatigue[J].Journal of Applied Mechanics,1945,12(3):159-164. [7] Paris P,Erdogan F.A critical analysis of crack propagation laws[J].Journal of Basic Engineering,1963,85(4):528-533. [8] Cummings H N,Stulen F B,Schulte W C.Tentative fatigue strength reduction factors for silicate-typeinclusions in high-strength steels[C]//Proc. ASTM 58,1958. [9] Lord W,Hwang J H.Defect characterization from magnetic leakage fields[J].British Journal of NDT,1977(1):14-15. [10] Yan M,Udpa S,Mandayam S,et al.Solution of inverse problems in electromagnetic NDE using finite element methods[J].IEEE Transactions on Magnetics,1998,34(5):2924-2927. [11] Shi P P,Jin K,Zheng X J.A magnetomechanical model for the magnetic memory method[J].International Journal of Mechanical Sciences,2017(124):229-241. [12] Ariffin A,Ahmad I M,Bdullah,et al. Detec tion of cracked position due to cyclic loading for ferromagnetic materials based on magnetic memory method[J].Jurnal Teknologi,2015,75(7):67-70. [13] Shen G,Hu B,Gao G,et al.Investigation on metal magnetic memory signal during loading[J].International Journal of Applied Electromagnetics & Mechanics,2010,33(3):1329-1334. [14] Dong L H,Xu B S,Dong S Y,et al.Variation of stress-induced magnetic signals during tensile testing of ferro-magnetic steels[J].Ndt & E International,2008,41(3):184-189. [15] Bao S,Lin L,Zhang D,et al.Characterization of stress-induced residual magnetic field in ferromagnetic steels[C]//ASME 2015 34th International Conference on Ocean,Offshore and Arctic Engineering,2015. [16] Dong L H,Xu B S,Dong S Y,et al.Stress dependence of the spontaneous stray field signals of ferromag netic steel[J].Ndt & E International,2009,42(4):323-327. [17] Huang H,Yang C,Qian Z C,et al.Magneticmemory signals variation induced by applied magnetic field and static tensile stress in ferromagnetic steel[J].Journal of Magnetism and Magnetic Materials,2016 (416):213-219. [18] 宋志平,李红梅.金属磁记忆检测技术的原理、应用、现状及发展调查[J].现代制造技术与装备,2011(1):40-41,56. [19] 刘书俊,李著信,王黎,等.金属磁记忆检测技术研究进展综述[J].化工机械,2011,38(6):663-666. [20] 杜波夫. 金属磁记忆方法和已知磁无损检测方法的原则性区别[C]//鞍山:2004全国电磁(涡流)检测技术研讨会,2004. [21] 董丽虹,徐滨士,董世运,等.拉伸载荷作用下中碳钢磁记忆信号的机理[J].材料研究学报,2006,20(4): 440-444. [22] 李济民,张亦良,沈功田.拉伸变形过程中磁记忆效应及微观表征的试验研究[J].压力容器,2009,26(8):15-20. [23] Guo P G,Chen X D,Guan W H,et al.Effect of ten sile stress on the variation of magnetic field of lowal loy steel[J].Journal of Magnetism & Magnetic Materials,2011,323(20):2474-2477. [24] Shi C L,Dong S Y,Xu B S,et al.Metal magnetic memory effect caused by static tension load in a casehardened steel[J].Journal of Magnetism & Magnet ic Materials,2010,322(4):413-416. [25] 任尚坤,周莉,付任珍.铁磁试件应力磁化过程中的磁化反转效应[J].钢铁研究学报,2010,22(12):48-52. [26] 王坤. 铁磁性材料拉伸疲劳的磁记忆信号研究[D]. 哈尔滨:哈尔滨工业大学,2009. [27] 邢海燕. 基于磁记忆技术的疲劳损伤评估及寿命预测[D].哈尔滨:哈尔滨工业大学,2007. [28] Huang H H,Jiang S L,Liu R,et al.Investigation of magnetic memory signals induced by dynamic bendingload in fatigue crack propagation process of structural steel[J].J Nondestruct Eval,2014(33):407-412. [29] Huang H H,Qian Z C,Yang C,et al.Magnetic memory signals of ferromagnetic weldment induced by dynamic bending load[J].Nondestructive Testing & Ev aluation,2017(32):166-184. [30] 任吉林,陈晨,刘昌奎,等.磁记忆检测力—磁效应微观机理的试验研究[J].航空材料学报,2008,28(5):41-44. [31] Wang H P,Dong L H,Dong S Y,et al.Fatigue damage evaluation by metal magnetic memory testing[J]. Journal of Central South University,2014,21(1):65-70. [32] Li C,Dong L,Wang H,et al.Metal magnetic memory technique used to predict the fatigue crack prop agation behavior of 0.45%C steel[J].Journal of Magne tism & Magnetic Materials,2016,405(5):150-157. [33] Li J W,Zhong S,Lv G P,et al.The variation of surface magnetic field induced by fatigue stress[J].Journal of Nondestructive Evaluation,2013,32(3):238-241. [34] Li J W,Xu M Q,Leng J C,et al.Metal magnetic memory effect caused by circle tensile-compressive stress[J].Insight:Nondestructive Testing and Condition Monitoring,2011,53(3):142-145. [35] Wang Z D,Deng B,Yao K.Physical model of plastic deformation on magnetization in ferromagnetic materials[J].Journal of Applied Physics,2011,109(8):083928. [36] Zerbst U,Madia M,Vormwald M,et al.Fatigue strength and fracture mechanics:A general perspective[J].Engineering Fracture Mechanics,2017(51):745-752. [37] Atapek Ş H,Pantelakis S G,Polat Ş,et al.Fractographical analysis of fatigue failed Cu-2.55Ni-0.55Si alloy[J].Theoretical and Applied Fracture Mechanics,2016(831):60-66. |