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Ultrasonic Characterization of Residual Stress and Texture in Cast Steel Railroad Wheels

机译:铸钢车轮残余应力和织构的超声表征

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摘要

An ultrasonic technique has been used to characterize the state of residual stress and texture in the rims of cast steel railroad wheels. Orthogonally polarized shear-horizontal (SH) waves are propagated through the thickness of the rim in pulse-echo mode. The (normalized) difference of arrival times of these waves (acoustic birefringence) depends upon both texture and stress. The birefringence, B, was measured with two transducers: an electromagnetic-acoustic transducer (EMAT) and a piezoelectric transducer made of PZT.Two wheels were tested. The first wheel had a sawcut, which locally relieved the residual (hoop) stress. Measurement of the birefringence at the sawcut allowed us to estimate the contribution of texture, which we subtracted from values of B at stressed locations. Values of hoop stress obtained with the EMAT and PZT transducer agreed to within 10 MPa, for transducers placed on the center of the back face of the rim.The second (uncut) wheel had been heat treated and air quenched, giving a different microstructure. Measurements of B were made with both transducers at different radial and circumferential locations. We estimate that the values of hoop stress obtained with the two transducers will differ by less than 25 MPa for this wheel. Furthermore, the EMAT required less surface preparation of the rim than the PZT transducer, indicating the potential for use of EMATs for residual stress measurements in the field.
机译:超声波技术已被用来表征铸钢车轮边缘的残余应力和织构状态。正交极化的水平剪切波(SH)以脉冲回波模式传播通过轮辋的厚度。这些波的到达时间(归一化)差异(声学双折射)取决于纹理和应力。双折射B通过两个传感器测量:电磁声传感器(EMAT)和由PZT制成的压电传感器。测试了两个轮子。第一个砂轮有一个锯齿,可以局部减轻残余(箍)应力。锯切处双折射的测量使我们能够估计纹理的贡献,我们从受应力位置的B值中减去了纹理的贡献。对于放置在轮辋背面中心的换能器,使用EMAT和PZT换能器获得的环向应力值在10 MPa内一致。第二个(未切割)砂轮经过热处理和空气淬火,具有不同的微观结构。使用两个换能器在不同的径向和圆周位置进行B的测量。我们估计,对于该车轮,使用两个传感器获得的环向应力值相差不到25 MPa。此外,与PZT换能器相比,EMAT所需的轮辋表面处理更少,这表明在野外使用EMAT进行残余应力测量的潜力。

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