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首页> 外文期刊>材料と環境 >Dynamics and Precursor of Delayed Fracture Studied by the Waveform Simulation of 7MHz Acoustic Emission Signals and by the Laser Excited Longitudinal Wave Velocity
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Dynamics and Precursor of Delayed Fracture Studied by the Waveform Simulation of 7MHz Acoustic Emission Signals and by the Laser Excited Longitudinal Wave Velocity

机译:通过7MHz声发射信号的波形模拟和激光激发纵向波速研究延迟断裂的动力学和前兆。

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摘要

With the aim of studying the precursor anddynamics of delayed fracture of high tension steel, wedeveloped two advanced elastic wave monitoring systems. Oneis a broad-band digital AE monitoring equipment consisting of amulti-resonant 7 MHz AE sensor, a 10 MHz pre-amplifier and a200 MHz A/D converter. The overall transfer function wasdetermined as a response to a pulse YAG laser break-down ofsilicon placed in slit (or crack). The break down was found tosimulate the Mode-I fracture with effective source rise time of0.035 #mu#s and successfully utilized to determine the overalltransfer function of the system. The waveform simulation of themonitored AE signals revealed the succession of fast and small(<10#mu#m) cleavage cracks with source rise time of 0.07i'5 to0.24 #mu#s in high hydrostatic stress field. In the 20 MHz laser-ultrasonic system developed, a velocity change of sphericallongitudinal (P-) wave was continuously monitored to detect theprecursor of delayed fracture. Here, the P-wave was excited bypulse YAG laser so that it propagates through the hydrostaticstress field. The velocity decreased by 100 m/s at 2.8 ks beforethe first AE signal. The velocity decrease appears to be due tohydrogen induced voids. The method has potential formonitoring the precursor of delayed fracture.
机译:为了研究高压钢延迟断裂的先兆和动力学,我们开发了两种先进的弹性波监测系统。 Oneis是一种宽带数字AE监视设备,包括多谐振7 MHz AE传感器,10 MHz前置放大器和200 MHz A / D转换器。将总传递函数确定为对放置在狭缝(或裂纹)中的脉冲YAG激光击穿硅的响应。发现该分解模拟了I型裂缝,有效震源上升时间为0.035#mu#s,并成功地用于确定系统的整体传递函数。监测到的声发射信号的波形模拟表明,在高静水应力场中,连续的快速和小(<10#mu#m)解理裂缝连续出现,震源上升时间为0.07i'5至0.24#mu#s。在研制的20 MHz激光超声系统中,连续监测球形纵波(P-)的速度变化,以检测延迟断裂的前兆。在这里,P波被脉冲YAG激光激发,从而通过静水压力场传播。在第一个AE信号之前,速度在2.8 ks处降低了100 m / s。速度下降似乎是由于氢引起的空隙。该方法具有监测延迟断裂的前兆的潜力。

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