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Characterizing Non-Metallic Inclusions in Steel by Ultrasonic Spectrum

机译:通过超声波谱表征钢中的非金属夹杂物

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摘要

Ultrasonic characterization of non-metallic inclusions in steel can be largely categorized into two aspects, i.e., time-domain and frequency-domain characterizations. In general, characterization parameters in time domain are insensitive to the type, location, and size of non-metallicinclusions; meanwhile, traditional frequency-domain characterization parameters cannot represent the features of inclusions generally and accurately due to that they are calculated by several key points on spectrum curve. Therefore, critical spectrum parameters calculated by all points onspectrum curve are put forward to characterize the depth and size of non-metallic inclusion, including spectrum energy, waveform factor and kurtosis coefficient. Simulations and experiments of Al2O3 inclusions in galvanized sheet were carried out by 50 MHz immersion spotfocusing ultrasonic transducer in pulse-echo mode to testify the validity of the proposed parameters. The depths of inclusions were 0.45–0.95 mm in simulation, while the sizes were 0.03–0.20 mm. Results of both methods indicate that the three new parameters all have specific relationshipswith the depth and size of non-metallic inclusions, and they are more sensitive to the change of the size. Furthermore, the qualitative characterization of the depth and size of non-metallic inclusion can be achieved by the new parameters. Especially, the quantitative characterization of inclusiondepth is tentatively in reach.
机译:钢中的非金属夹杂物的超声鉴定可以大大分为两个方面,即时域和频域表征。通常,时域中的表征参数对非金属化的类型,位置和大小不敏感;同时,传统的频域表征参数不能表示夹杂物的特征通常,并且由于它们是通过频谱曲线上的几个关键点计算的。因此,提出了由所有点曲线计算的关键频谱参数,以表征非金属夹杂物的深度和尺寸,包括频谱能量,波形因子和峰度系数。镀锌板中Al2O3夹杂物的模拟和实验在脉冲回波模式下进行了50 MHz浸入式超声波超声换能器,以证明所提出的参数的有效性。夹杂物的深度为0.45–模拟中0.95mm,尺寸为0.03– 0.20 mm。这两种方法的结果表明,三个新参数都具有特定的关系,无金属夹杂物的深度和大小,它们对尺寸的变化更敏感。此外,通过新参数可以实现非金属夹杂物的深度和大小的定性表征。特别是,逮捕的定量表征暂时达到。

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