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Non-Contact Stress Measurement during Tensile Testing Using an Emat for SH<sub>0</sub>-Plate Wave and Lamb Wave 被引量:4
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作者 Riichi Murayama 《Journal of Sensor Technology》 2011年第3期65-70,共6页
The stress on a test specimen during tensile testing is generally measured by a strain gauge. This method has some problems in that it would influence the measurement conditions of the tensile test and can evaluate on... The stress on a test specimen during tensile testing is generally measured by a strain gauge. This method has some problems in that it would influence the measurement conditions of the tensile test and can evaluate only the position at which the strain gauge is attached. The acoustoelastic method is proposed as a method replacing the strain gauge method. However, an ultrasonic sensor with a piezoelectric oscillator requires a coupling medium to inject an ultrasonic wave into a solid material. This condition, due to the error factor of the stress measurement, makes it difficult for the ultrasonic sensor to move on the specimen. We then tried to develop a non-contact stress measurement system during tensile testing using an electromagnetic acoustic transducer (EMAT) with an SH0-plate wave and S0-Lamb wave. The EMAT can measure the propagation time in which the ultrasonic wave travels between a receiver and a transmitter without a coupling medium during the tensile testing and can move easily. The interval between the transmitter and the receiver is 10mm and can be moved along the parallel direction or the vertical direction of the tensile load. The transit time was measured by a cross-correlation method and converted into the stress on the test specimen using the acoustoelastic method. We confirmed that the stress measurement using an SH0-plate wave was superior to that with an S0-Lamb wave. 展开更多
关键词 Nondestructive Inspection Ultrasonic Sensor Stress ACOUSTOELASTICITY sh0-plate WAVE S0-Lamb WAVE Tensile Test Electromagnetic Acoustic Transducer
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基于全向性SH0模态磁致伸缩贴片型传感器阵列的铝板缺陷成像研究 被引量:10
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作者 刘增华 钟栩文 +2 位作者 李欣 何存富 吴斌 《机械工程学报》 EI CAS CSCD 北大核心 2018年第14期8-15,共8页
板材在生产、运输或使用过程中易产生缺陷,影响板材的使用并造成安全隐患。采用传感器阵列成像技术能够直观、清晰地显示出缺陷的相关信息。SH0模态在铝板中传播时无频散现象,波速恒定,在对信号进行处理时,不需要考虑频散特性带来的影响... 板材在生产、运输或使用过程中易产生缺陷,影响板材的使用并造成安全隐患。采用传感器阵列成像技术能够直观、清晰地显示出缺陷的相关信息。SH0模态在铝板中传播时无频散现象,波速恒定,在对信号进行处理时,不需要考虑频散特性带来的影响,有利于缺陷定位和成像。基于磁致伸缩换能机理,研制出一种能在板中激励接收SH波最低阶模态即SH0模态的磁致伸缩贴片型传感器,并测试其全向性。以工程中应用广泛的铝板作为研究对象,运用研制的全向性SH0模态磁致伸缩贴片型传感器布置成分布式传感器阵列。利用椭圆成像算法,实现了铝板中不同直径的模拟缺陷成像检测,探究了全向性SH0模态磁致伸缩贴片型传感器阵列的检测能力,并基于ROC曲线设定成像通用阈值,提高了缺陷成像质量。 展开更多
关键词 铝板 磁致伸缩贴片型传感器 sh0模态 缺陷成像 阈值
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