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[1]孙旭,林莉,马志远,金士杰.Enhancement of time resolution in ultrasonic time-of-flight diffraction technique with frequency ...[J],IEEE Transactions On Ultrasonics, Ferroelectrics, and Frequency Control,2021,68(10):3204-3215
[2]金士杰,孙旭,罗忠兵,马天天,林莉.Quantitative detection of shallow subsurface cracks in pipeline with Time-of-Flight diffraction t...[J],NDT & E International,2021,118:102397-
[3]金士杰,刘晨飞,史思琪,林莉,罗忠兵.Profile reconstruction and quantitative detection of planar defects with composite-mode total foc...[J],NDT & E International,2021,123:102518-
[4]金士杰,张波,孙旭,林莉.Reduction of layered dead zone in time-of-flight diffraction (TOFD) for pipeline with spectrum an...[J],Journal of Nondestructive Evaluation,2021,40(2):48-
[5]史思琪,林莉,罗忠兵,孙旭,金士杰.Resolution Enhancement of Ultrasonic Imaging at Oblique Incidence by using WTFM based on FMC-AR[J],Measurement,2021,183:109798-
[6]金士杰,刘晨飞,史思琪,廖静瑜,林莉.基于全模式全聚焦方法的裂纹超声成像定量检测[J],仪器仪表学报,2021,42(1):183-190
[7]赵天伟,廖静瑜,金士杰,杨会敏,康达.带不锈钢堆焊层的主管道焊缝全聚焦超声检测[J],无损检测,2021,43(8):62-66
[8]林莉,史思琪,孙旭,马志远,张晓峰,刘丽丽,金士杰.基于自回归谱外推的全聚焦成像分辨力提升[J],机械工程学报,2021,56(22):8-13
[9]张鑫,林莉,金士杰.奥氏体不锈钢窄间隙焊缝侧壁未熔合相控阵超声检测[J],应用声学,2021,40(1):97-102
[10]金士杰,孙旭,马天天,丁宁,雷明凯,林莉.Quantitative Detection of Shallow Subsurface Defects by Using Mode-Converted Waves in Time-of-Fli...[J],Journal of Nondestructive Evaluation,2020,39(2):33-
[11]罗忠兵,林莉,朱效磊,邹龙江,金士杰.Grain-scale Ultrasonic Properties Measurement of Cast Austenitic Stainless Steel[J],Measurement,2020,151:107231-
[12]陈军,乔丹,金士杰.Nondestructive evaluation of microstructure degradation of pearlitic steel[A],2021
[13]赵天伟,张东辉,林莉,金士杰.基于仿真优化的核电站主管道焊缝相控阵超声检测技术[J],无损探伤,2021,44(5):24-28
[14]Jin, S. J.,He, X. C.,Chen, J.,Shi, S. Q.,Lin, L..Recurrence quantitative analysis for porosity characterization of CFRP with complex void morpho...[J],COMPOSITE STRUCTURES,2019,229
[15]罗忠兵,张嘉宁,金士杰,林莉.定向凝固镍基合金DZ444声学特性的各向异性[J],材料工程,2019,47(4):120-126
[16]马天天,林莉,张东辉,严宇,金士杰.基于TOFD周向扫查的厚壁管道倾斜裂纹精准定量[J],仪器仪表学报,2019,40(03):23-29
[17]陈尧,陈果,林莉,金士杰,甘勇,吴霞,卢超,冒秋琴,石文泽.基于相位相干性的厚壁焊缝TOFD成像检测研究[J],机械工程学报,2019,55(4):25-32
[18]Ma, Zhiyuan,Lin, Li,Jin, Shijie,Lei, Mingkai.Identification of the velocity, thickness, and interfacial roughness of coating using full time-d...[J],Journal of Nondestructive Evaluation, Diagnostics and Prognostics of Engineering Systems,2019,2(1)
[19]王阳,金士杰,林莉,张东辉,杨会敏,张晓峰,雷明凯.考虑余高的焊缝内部缺陷全聚焦超声成像检测[J],材料保护,2019,52(9):61-66
[20]马天天,金士杰,林莉,张东辉,刘丽丽,严宇,雷明凯.基于模式转换波的轴偏离缺陷超声衍射时差法定量检测[J],材料保护,2019,52(9):56-60,66
[21]罗忠兵,王新禹,孟亦圆,金士杰,陈军,林莉,雷明凯.纯铁低周疲劳表面/亚表面损伤临界折射纵波评价[J],材料保护,2019,52(9):67-71
[22]丁宁,雷明凯,林莉,金士杰,彭良明.Al0.26CoCrFeNiMn高熵合金再结晶组织演变超声表征[J],材料工程,2019,47(12):71-77
[23]孙旭,金士杰,张东辉,刘丽丽,杨会敏,林莉.基于自回归谱外推方法的TOFD检测盲区抑制[J],机械工程学报,2018,54(22):15-20
[24]Luo, Zhong-Bing,Li, Fei-Long,Cao, Huan-Qing,Jin, Shi-Jie,Lin, Li.Focal Law Optimization and Acoustic Field Simulation of PAUT on CFRP Radii[A],2018,122-126
[25]何晓晨,金士杰,林莉.超声背散射信号递归定量分析无损表征CFRP孔隙分布仿真[J],复合材料学报,2018,35(10):2753-2759
[26]丁珊珊,金士杰,何晓晨,罗忠兵,林莉.基于仿真方法的CFRP复合材料孔隙率与超声衰减系数的关系[J],复合材料学报,2018,35(1):89-94
[27]金士杰,何晓晨,林莉.CFRP孔隙率与超声背散射信号递归度相关关系仿真研究[J],无损检测,2018,40(增刊):189-193
[28]Jin, Shijie,Wang, Chu,Liu, Shuailin,Lin, Li.Simulation on qualitative detection of defects with multi-mode total focusing method[A],2018,127-131
[29]孙旭,金士杰,张东辉,刘丽丽,张树潇,杨会敏,张晓峰,廖静瑜,林莉.基于自回归谱外推的小尺寸裂纹TOFD定量检测[J],无损检测,2017,39(10):8-11
[30]孙旭,金士杰,张东辉,刘丽丽,张树潇,杨会敏,张晓峰,廖静瑜,林莉.基于自回归谱外推的小尺寸裂纹TOFD定量检测研究[A],2017,5
[31]丁宁,金士杰,张东辉,康达,张树潇,雷明凯,刘丽丽,林莉.基于波型转换的TOFD近表面盲区抑制研究[J],机械工程学报,2017,53(16):120-124
[32]金士杰,林莉.基于超声检测数据的CFRP孔隙率表征研究[A],2017
[33]金士杰,罗忠兵.Research on TFM imaging of Main pipe weld of Compound steel based on FMC/SMC[A],2017
[34]林莉,金士杰,雷明凯.TOFD检测近表面盲区抑制方法概述[A],2017
[35]金士杰,罗忠兵,陈军,林莉.Researches on the ultrasonic scattering attenuation of CFRP with 2D real morphology void model[J],Acoustical Physics,2017,63(4):490-495
[36]陈柳,金士杰,康达.超声波检测斜Y形焊缝打底层裂纹对比性试验[J],无损探伤,2016,06:33-35
[37]张侃,金士杰,刘帅林,林莉.斜入射超声合成孔径聚焦检测技术仿真研究[A],2016,9-12
[38]康达,陈尧,金士杰,张东辉,郭彦辉,林莉.基于相位相干成像的 TOFD 检测缺陷图像增强处理研究[J],压力容器,2016,33(6):59-66
[39]陈尧,罗忠兵,金士杰,张东辉,郭彦辉,房云龙,杨会敏,林莉.厚壁粗晶铸造奥氏体不锈钢相位相干成像模拟[J],无损探伤,2016,03:14-17
[40]康达,房云龙,张树潇,金士杰,刘丽丽,张侃,张东辉,罗忠兵,杨会敏,林莉.基于几何方法的焊缝倾斜裂纹TOFD定量检测[J],无损检测,2016,38(4):1-5,48