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Dislocations gliding study by IR thermography in C-Mn steels with different solute atoms content in the gigacycle fatigue domain

机译:脱位在C-Mn钢中用不同溶质原子含量在缩放疲劳结构域中的C-Mn钢中的脱位滑动研究

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Tests were performed on two Carbon-Manganese steels (A42 and A48 steels, French standard) in the gigacycle fatigue domain thanks to a piezoelectric fatigue machine working at 20000Hz. During the tests, temperature recordings were achieved by an infrared camera for various stress amplitudes. The main difference between the two steels compositions was the aluminum content (0.045% for the A42 steel and 0.004% for the A48 steel), and the carbon content (0.140% for the A 42 steel and 0.198% for the A48 steel). In the A48 steel, the few aluminum content induces a higher free content of solute nitrogen in the lattice. Mechanical spectroscopy tests were performed and gave qualitative results on the solute contents repartition in the lattice. The temperature increase recorded during the fatigue tests for the two steels are different at the beginning of the tests. The differences can be explained by the different repartition of the solute atoms which induces a different dislocation gliding between the two materials. At the end of the tests, the thermal recordings are similar and attributed to the evolution of the solute atoms repartition and the dislocation structure.
机译:由于在20000Hz的压电疲劳机,在缩放疲劳域中对两个碳 - 锰钢(A42和A48钢,法国标准)进行了测试。在测试期间,通过用于各种应力幅度的红外相机实现温度记录。两种钢组合物之间的主要差异是铝含量(A42钢的0.045%,A48钢的0.004%),碳含量(42钢的0.140%,A48钢为0.198%)。在A48钢中,少数铝含量在晶格中诱导溶质氮的更高的自由含量。进行机械光谱检验并对晶格中的溶质内容重置进行定性结果。在两个钢的疲劳试验期间记录的温度增加在测试开始时是不同的。溶质原子的不同重置可以解释差异,该溶质原子诱导两种材料之间的不同位错滑动。在测试结束时,热录像类似且归因于溶质原子的进化和脱位结构。

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