振动与冲击
振動與遲擊
진동여충격
JOURNAL OF VIBRATION AND SHOCK
2014年
10期
177-182
,共6页
混凝土%声发射%快速傅里叶变换%小波包变换%破损先兆
混凝土%聲髮射%快速傅裏葉變換%小波包變換%破損先兆
혼응토%성발사%쾌속부리협변환%소파포변환%파손선조
concrete%acoustic emission%FFT%wavelet packet transformation%failure precursor
为寻找更有效的混凝土工程破坏前兆判据,开展混凝土单轴加载破坏全过程声发射试验。通过SAEU2S型数字声发射采集系统直接采集破坏全过程声发射信号波形,分别用FFT变换及小波包变换对不同破坏阶段声发射信号分析处理,发现不同破坏阶段声发射信号频率分布、频带能量变化规律,并从声发射信号频率变迁与裂纹扩展关系角度阐释混凝土破坏机理。采用小波包变换频带能量计算方法在Matlab中计算并绘制不同破坏阶段声发射信号频带能量分布直方图,重点分析0~26 kHz低频带能量占比及随加载时间变化规律,提出低频能量占比达某门限值即为破坏临界点的重要判据指标。此规律可作为混凝土工程稳定性监测预警前兆判据,对评估混凝土内部损伤具有理论指导意义。
為尋找更有效的混凝土工程破壞前兆判據,開展混凝土單軸加載破壞全過程聲髮射試驗。通過SAEU2S型數字聲髮射採集繫統直接採集破壞全過程聲髮射信號波形,分彆用FFT變換及小波包變換對不同破壞階段聲髮射信號分析處理,髮現不同破壞階段聲髮射信號頻率分佈、頻帶能量變化規律,併從聲髮射信號頻率變遷與裂紋擴展關繫角度闡釋混凝土破壞機理。採用小波包變換頻帶能量計算方法在Matlab中計算併繪製不同破壞階段聲髮射信號頻帶能量分佈直方圖,重點分析0~26 kHz低頻帶能量佔比及隨加載時間變化規律,提齣低頻能量佔比達某門限值即為破壞臨界點的重要判據指標。此規律可作為混凝土工程穩定性鑑測預警前兆判據,對評估混凝土內部損傷具有理論指導意義。
위심조경유효적혼응토공정파배전조판거,개전혼응토단축가재파배전과정성발사시험。통과SAEU2S형수자성발사채집계통직접채집파배전과정성발사신호파형,분별용FFT변환급소파포변환대불동파배계단성발사신호분석처리,발현불동파배계단성발사신호빈솔분포、빈대능량변화규률,병종성발사신호빈솔변천여렬문확전관계각도천석혼응토파배궤리。채용소파포변환빈대능량계산방법재Matlab중계산병회제불동파배계단성발사신호빈대능량분포직방도,중점분석0~26 kHz저빈대능량점비급수가재시간변화규률,제출저빈능량점비체모문한치즉위파배림계점적중요판거지표。차규률가작위혼응토공정은정성감측예경전조판거,대평고혼응토내부손상구유이론지도의의。
Acoustic emission (AE)tests of a concrete specimen's damage process under uniaxial compression were conducted in order to find more effective concrete failure precursor criteria.The AE signal waveform data in damage process were acquired directly with a SAEU2S digital AE acquisition system.Then these signals at the different damage stages were processed by using FFT and wavelet packet transformation respectively,to find out the frequency distribution rule and the frequency band energy varying rule of the AE signals at the different damage stages.The concrete failure mechanism was explained from the perspective of the relationship between AE signal frequency change and crack propagation.The frequency band energy distribution histograms of the acoustic emission signal at different damage stages were computed and drawn by using the energy calculation method of wavelet packet transformation with Matlab,the energy percentage of the low-frequency band in the range of 0~26 kHz and it versus time change rule were analyzed especially. Accordingly,an important criterion indicator that the low-frequency energy percentage above a certain threshold is the damage critical point was proposed.This index could be used as the failure precursor criterion for stability monitoring and early warning of concretes,and it provided a theoretical guidance for evaluating internal damage of concretes.