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Lamb波与瞬时相位技术在损伤识别中的应用 被引量:12
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作者 胥保春 袁慎芳 邱雷 《振动.测试与诊断》 EI CSCD 北大核心 2010年第3期240-244,共5页
采用主动Lamb监测技术与瞬时相位相结合的方法对复合材料板进行健康监测。首先通过仿真试验,模拟损伤信号在正常信号中的叠加,结果表明其会引起瞬时相位曲线相应的变化;然后再利用Lamb波主动监测技术,在复合材料板上进行试验采集信号,... 采用主动Lamb监测技术与瞬时相位相结合的方法对复合材料板进行健康监测。首先通过仿真试验,模拟损伤信号在正常信号中的叠加,结果表明其会引起瞬时相位曲线相应的变化;然后再利用Lamb波主动监测技术,在复合材料板上进行试验采集信号,其瞬时相位能够发现板结构中的损伤,说明瞬时相位可应用于结构的损伤识别。 展开更多
关键词 瞬时相位 损伤散射 LAMB波 复合材料
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分谱处理算法在基于超声导波损伤识别中的应用 被引量:1
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作者 苗晓婷 李富才 孟光 《振动与冲击》 EI CSCD 北大核心 2012年第1期5-10,34,共7页
利用分谱处理(SSP)算法,通过比较基准波信号和检测波信号的瞬时幅值变化度(IAVD)来评估损伤散射的基础阶对称(S0)模式的飞行时间(ToF),最终实现基于超声导波的损伤识别。首先在理想的工作环境中(无噪声),对无缺陷的铝板进行检测,并把所... 利用分谱处理(SSP)算法,通过比较基准波信号和检测波信号的瞬时幅值变化度(IAVD)来评估损伤散射的基础阶对称(S0)模式的飞行时间(ToF),最终实现基于超声导波的损伤识别。首先在理想的工作环境中(无噪声),对无缺陷的铝板进行检测,并把所采集的波信号作为基准信号。然后在不同的工作环境中(无噪声和有噪声)检测带有切缝缺陷的铝板,并把所采集的波信号作为检测信号。实验结果表明,当检测波信号的信噪比较低时,噪声能量严重干扰了检测波信号的能量分布。然而,SSP算法所提取的检测波信号的IAVD几乎不受噪声的干扰,因此利用SSP算法能够有效地抵抗强噪声的干扰,精确地评估损伤散射的S0模式的ToF,并进一步结合三角定位算法成功地定位出铝板中的切缝缺陷。 展开更多
关键词 分谱处理 瞬时幅值变化度 损伤散射的基础阶对称模式 飞行时间(ToF) 三角定位 超声导波
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基于WDM-PON架构的5G前传网络中SRS效应分析
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作者 许岩 许亮 +3 位作者 李振 刘鑫 张文静 王帅 《光通信技术》 北大核心 2025年第5期99-105,共7页
为探究基于波分复用无源光网络(WDM-PON)架构的第五代移动通信(5G)前传网络中受激喇曼散射(SRS)非线性效应对系统性能的影响,通过仿真研究了C波段和O波段2种波长分配方案下SRS引起的功率变化及灵敏度损失。在C波段配置中,当5G前传上下... 为探究基于波分复用无源光网络(WDM-PON)架构的第五代移动通信(5G)前传网络中受激喇曼散射(SRS)非线性效应对系统性能的影响,通过仿真研究了C波段和O波段2种波长分配方案下SRS引起的功率变化及灵敏度损失。在C波段配置中,当5G前传上下行波长独立传输时,SRS导致的功率损耗为1.3 dB,灵敏度劣化0.6 dB;而在多系统共传场景下,上行高频信道功率损耗增至10.1 dB,系统误码率(BER)性能严重退化。相比之下,O波段配置下的最大功率损耗与灵敏度劣化分别被控制在1.5 dB和0.5 dB以内。研究表明,O波段由于其较低的喇曼增益效率和宽波长间隔特性,在缓解SRS效应方面表现更优。 展开更多
关键词 第五代移动通信前传 波分复用无源光网络 受激喇曼散射非线性损伤 功率变化 灵敏度损失
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Magnetic field properties caused by stress concentration 被引量:14
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作者 黄松岭 李路明 +1 位作者 施克仁 王晓凤 《Journal of Central South University of Technology》 2004年第1期23-26,共4页
Measurements of the effects of tensile stress on magnetic field properties, infrared thermography and (acoustic) emission of a cuboid sample with an elliptical hole in its center were presented. The tensile stress was... Measurements of the effects of tensile stress on magnetic field properties, infrared thermography and (acoustic) emission of a cuboid sample with an elliptical hole in its center were presented. The tensile stress was applied perpendicularly to the sample by electro-tension machine according to a step-loading curve. The changes of the sample temperature was recorded by an infrared thermography system and the noise of domain reversal was inspected by two acoustic probes, which were placed on each end of the sample near the collets of the electro-tension machine, when the sample was in loading process. The magnetic fields on the surface of the sample were inspected with 8 mm lift-off when the loads were held. Valuable information about the changes of domains was obtained from analysis of acoustic emission signals in loading process. Infrared images of the sample provided complementary information about the state of the sample. The results show that stress concentration in ferromagnetic material affects the direction and structure of domain and generates net magnetic moment on its surface. The distribution and magnitude of the net magnetic moment are correlative with those of stress. 展开更多
关键词 magnetic field testing stress concentration THERMOGRAPHY acoustic emission DOMAIN
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Bearing characteristics and fatigue damage mechanism of multi-pillar system subjected to different cyclic loads 被引量:5
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作者 ZHOU Zi-long WANG Hai-quan +3 位作者 CAI Xin ZANG Hai-zhi CHEN Lu LIU Fu 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第2期542-553,共12页
Aiming to investigate the fatigue damage mechanism and bearing characteristics of multi-pillar system under cyclic loading,a series of axial cyclic loading tests with different cyclic amplitudes were carried out on tr... Aiming to investigate the fatigue damage mechanism and bearing characteristics of multi-pillar system under cyclic loading,a series of axial cyclic loading tests with different cyclic amplitudes were carried out on triple-pillar marble specimens.The acoustic emission(AE)and digital image correlation(DIC)were jointly applied to monitoring and recording damage evolution and failure behavior of each pillar,which reproduced the cataclysmic instability process of underground pillar groups.Experimental results indicated that the cyclic amplitude exceeding the threshold of damage initiation weakened the resistance to deformation,resulting in obvious release of dissipated energy and the reduction of bearing capacity.Conversely,after low-amplitude cyclic loading,both the pre-peak bearing capacity and the post-peak ductility of the pillar system increased due to the compaction of initial defects,indicating that the peak bearing capacity was closely related to the extent of pre-peak fatigue damage.The axial strain of each pillar was measured by DIC virtual extensometer to present the damage extent during cyclic loading phase.Meanwhile,fracture evolution of typical load drop points was also characterized by transverse strain fields(εxx),and observations showed that the damage extent of key pillar undergoing high-amplitude cyclic loads was more serious and violent,accompanied by the ejection of rock debris and loud noises. 展开更多
关键词 multi-pillar system cyclic loading fatigue damage bearing characteristics acoustic emission(AE) digital image correlation(DIC)
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