基于Python的机器学习诊断钢的磨料磨损

Procedia Structural Integrity Pub Date : 2024-01-01 Epub Date: 2024-12-04 DOI:10.1016/j.prostr.2024.11.037
M.A. Skotnikova, A.Y. Ryabikin, A.D. Shestakov, L.D. Tuptei, A.D. Novokshenov
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引用次数: 0

摘要

对马氏体级等硬耐磨钢Hardox 450、Quard 450与铁素体-珠光体钢09G2S进行了摩擦技术对比试验。09G2S钢 → Hardox 450 → Quard 450的耐磨性ε分别以1.0 → 7.9 → 18.1的方向增大。结果表明,对最大耐磨性的Quard 450钢试样进行磨粒磨损试验后,在摩擦部位发现了马氏体转变的痕迹。利用Python中的机器学习,构建了所研究钢的摩擦力矩随时间的波动图,并通过Hannah方法对其进行平滑(平均)。对摩擦力矩进行傅里叶变换,计算摩擦力矩的幅频特性,并构造频率谱图。结果表明,09G2S钢 → Hardox 450 → Quard 450的一次(主)谐波正弦波幅值分别沿3.40 → 2.15 → 1.40方向减小。与09G2S和Hardox 450钢不同,在具有最大耐磨性的Quard 450钢中,二次谐波被分成两个振幅为0.85和0.70。磨料磨损和结构-相(马氏体)相变两种激励力的谱,增强了接触区表面的强度,提高了其耐磨性。
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Diagnosis of abrasive wear of steels by machine learning in Python
Comparative tribotechnical tests of wear-resistant equal-hard steels of the martensitic class Hardox 450, Quard 450 in comparison with ferrite-pearlite steel 09G2S were carried out. The wear resistance “ε” increased in the direction of 1.0 → 7.9 → 18.1 in steels 09G2S → Hardox 450 → Quard 450, respectively. As it turned out, after testing for abrasive wear of samples made of Quard 450 steel with maximum wear resistance, traces of martensitic transformation were found on the friction sites. Using machine learning in Python, graphs of fluctuations of friction moments in time of the studied steels were constructed, their smoothing (averaging) by the Hannah method was carried out. The Fourier transform was performed, the amplitude-frequency characteristics of the friction moments were calculated and frequency spectrograms were constructed. It is shown that a decrease in the amplitude of the sinusoids of the first (main) harmonic occurred in the direction of 3.40 → 2.15 → 1.40 in steels 09G2S → Hardox 450 → Quard 450, respectively. Unlike the 09G2S and Hardox 450 steels, in the Quard 450 steel with maximum wear resistance, the second harmonic was split into two with amplitudes of 0.85 and 0.70. The spectra of two exciting forces (abrasive wear and structural-phase (martensitic) transformation) were found in it, strengthening the surface in the contact zone and increasing its wear resistance.
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