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Characterizing Microstructural Evolution of TP304 Stainless Steel Using a Pulse-Echo Nonlinear Method

机译:用脉冲回波非线性方法表征TP304不锈钢的组织演变

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摘要

Tube/Pipe (TP) 304 stainless steel has been widely used in industry, but a change in its microstructures may endanger its service safety, and it is essential to evaluate its microstructural evolution. In this work, a pulse-echo nonlinear method is proposed to characterize the microstructural evolution of the TP304 stainless steel. The detailed pulse-echo nonlinear experimental process is presented, and it is shown that the absolute nonlinear parameter can be determined when the effect of attenuation is taken into account. The microstructural evolution of TP304 stainless steel is artificially controlled by annealing treatments before it is evaluated by using nonlinear ultrasonic method and metallographic method. The results show that the grain sizes increase as the annealing time increases, which leads to the performance degradation of the TP304 steel and an increase in the nonlinear parameters, with the reason discussed considering the variation in the microstructure. The present pulse-echo nonlinear method is easier to conduct than the traditional transmission-through method and the absolute nonlinear parameter can be determined for quantitative characterization. The variation in determined nonlinear parameters provides a reference to evaluate the microstructural evolution of TP304 stainless steel.
机译:管/管(TP)304不锈钢已在工业中得到广泛使用,但是其微观结构的改变可能会危害其使用安全性,因此评估其微观结构的演变至关重要。在这项工作中,提出了一种脉冲回波非线性方法来表征TP304不锈钢的组织演变。给出了详细的脉冲回波非线性实验过程,结果表明,考虑到衰减效应,可以确定绝对非线性参数。 TP304不锈钢的微观组织演变是通过退火处理进行人为控制的,然后使用非线性超声方法和金相方法对其进行评估。结果表明,晶粒尺寸随着退火时间的增加而增加,这导致TP304钢的性能下降和非线性参数的增加,其原因是考虑了微观结构的变化。目前的脉冲回波非线性方法比传统的直通方法更易于实施,并且可以确定绝对非线性参数以进行定量表征。确定的非线性参数的变化为评估TP304不锈钢的组织演变提供了参考。

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