[1]陈绍番.钢结构:钢结构基础[M].北京:中国建筑工业出版社,2014.CHEN Shaofan. Steel structure:Steel structure foundation[M]. Beijing: China Architecture & Building Press, 2014.
[2]徐滨士, 董丽红. 再制造质量控制中的金属磁记忆检测技术[M]. 北京:国防工业出版社, 2015.
XU Bingshi, DONG Lihong. Metal magnetic memory testing method in remanufacturing quality control[M]. Beijing: Nation Defense Industry Press, 2015.
[3]任吉林,邬冠华,宋凯,等.金属磁记忆检测机理的探讨[J].无损检测,2002(1):29-31.
REN Jilin, WU Guanhua, SONG Kai, et al. Study on the mechanism of metal magnetic memory testing[J]. Nondestructive Testing,2002(1):29-31.
[4]王丹,董世运,徐滨士,等.应力集中部位的金属磁记忆检测研究[J].失效分析与预防,2007(2):12-15.
WANG Dan,DONG Shiyun, XU Binshi, et al. Study on metal magnetic memory testing of stress concentrated part[J].Failure Analysis and Prevention,2007(2):12-15.
[5]DOUBOV A A. Express method of quality control of a spot resistance wdlding with usage of metal magnetic memory[J]. Welding in the World,2012,46:317-320.
[6]AGNIESZKA MachowskaMajchrzak The usefulness of accelerometric registration with assessment of tremor parameters and their symmetry in differential diagnosis of parkinsonian,essential and cerebellar tremor[J].Neurologiai Neurochirurgia Polska,2012,145-156.
[7]易术春,王威,苏三庆,等.利用磁记忆信号特征参数表征拉伸应力状态[J].震动.测试与诊断,2017,37(4):667-672.
YI Shuchun, WANG Wei, SU Sanqing, et al. Using the characteristic parameters of magnetic memory signal to evaluate the tensile stress state[J]. Journal of Vibration, Measurement & Diagnosis,2017,37(4):667-672.
[8]冷建成,田洪旭,郭亚光,等拉压不同应力对磁记忆信号的影响及机理[J].工程科学学报,2018,40(5):565-570.
LENG Jiancheng, TIAN Hongxu, GUO Yaguang, et al. Effect of tensile and compressive stresses on magnetic memory signal and its mechanism[J].Chinese Journal of Engineering,2018,40(5):565-570.
[9]苏三庆,孙灏江,王威,等. 弯曲荷载作用下焊接钢板件金属磁记忆效应试验研究[J].西安建筑科技大学学报(自然科学版),2017,49(6):771-776.
SU Sanqing, SUN Haojiang, WANG Wei, et al. Experimental research on metal magnetic memory effect of butt welded steel plate under bending load[J]. J. of Xi′an Univ. of Arch. & Tech. (Natural Sicence edition), 2017,49(6):771-776.
[10]邢海燕,徐敏强,陈鑫彧,等.焊缝两种典型缺陷的磁记忆特征对比[J].材料科学与工艺,2011,19(6):65-69.
XING Haiyan, XU Minqiang, CHEN Xinyu, et al. Two kinds of welded joint typical defeats comparison based on MMM characteristics[J]. Materials Science & Technology, 2011,19(6):65-69.
[11]邢海燕,陈鑫彧,黄保富,等. 拉压荷载下焊缝的磁记忆表征及热处理评价[J]. 大庆石油学院学报, 2011, 35(1): 100-104.
XING Haiyan, CHEN Xinyu, HUANG Baofu, et al. MMM characterization of welded joint and heat treating evaluation under tension and compression loading[J]. Journal of Daqing Petroleum Institute, 2011, 35(1): 100-104.
[12]董丽虹,徐滨士,董世运,等.金属磁记忆技术检测低碳钢静载拉伸破坏的实验研究[J]. 材料工程,2006(3):40-43.
DONG Lihong, XU Binshi, DONG Shiyun,et al. Study on metal magnetic memory signals of low carbon steel under static tension test condition[J]. Journal of Materials Engineering,2006(3):40-43.
[13]王威, 樊浩, 苏三庆,等. 钢结构对接焊缝隐性损伤的磁记忆检测试验研究[J]. 西安建筑科技大学学报(自然科学版), 2014, 46(4):497-501.
WANG Wei, FAN Hao, SU Sanqing,et al. Experimental detection on implicit damage of butt weld of steel structure by magnetic memory testing[J]. J. of Xi′an Univ. of Arch. & Tech. (Natural Science Edition), 2014, 46(4): 497-501.
[14]任吉林,陈曦,宋凯.金属构件磁记忆效应影响因素研究[J].无损检测,2006(6):292-295.
REN Jilin,CHEN Xi,SONG Kai.Study on the influencing factors of magnetic memory effect of metal components[J].Nondestructive Testing,2006(6):292-295.
[15]赵鹏, 潘清红, 邹宗树 Q235钢板表面裂纹形成原因分析[J]. 理化检验(物理分册), 2016, 52(3): 210-212,216.
ZHAO Peng, PAN Qinghong, ZOU Zongshu. Formation cause analysis of crack on the surface of Q235 steel plate[J]. Physical and Chemical Examination (Physical Volume), 2016, 52(3):210-212, 216.