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Effect of Carbide Size Distribution on the Impact Toughness of Tempered Martensitic Steels with Two Different Prior Austenite Grain Sizes Evaluated by Instrumented Charpy Test

机译:仪器夏比试验评估两种先验奥氏体尺寸的回火马氏体钢的碳化物尺寸分布对冲击韧性的影响

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The effect of tempering temperature on the impact toughness of 0.3 mass% carbon martensitic steels with prior austenite grain (PAG) size of about 6 and 60 um was investigated. Instrumented Charpy impact test (ICIT) was used to evaluate the impact toughness. The tempering temperature of 723 K gives the largest difference in the Charpy impact energy at room temperature between the specimens with two different PAG sizes, where the finer PAG specimen shows higher impact energy at room temperature (RT). The other tempering temperatures do not show a significant difference as compared with that shown among the 723 K tempered specimens. Investigation of the test temperature dependence of Charpy impact energy in the 723 K tempered steels shows a steep transition at around 200 K for the 6 μm PAG specimen, while it shows a continuous slow transition in a wide range of temperatures for the 60 μm PAG specimen. ICIT waveform analysis of these steels shows that the fracture propagation energy mainly controls the temperature dependence of the impact energy, while the fracture initiation energy stays nearly constant against the variation of the test temperature. The carbide size distribution in these two specimens was investigated by secondary electron microscope (SEM) and transmission electron microscope (TEM). The 60 μm PAG specimen shows distribution of coarser carbide than does the 6 μm PAG specimen, which seems to give rise to the observed difference between them in the Charpy impact energy and the other properties of impact fracture.
机译:研究了回火温度对奥氏体晶粒度(PAG)为约6和60 um的0.3质量%碳马氏体钢的冲击韧性的影响。仪器用夏比冲击试验(ICIT)用于评估冲击韧性。 723 K的回火温度使具有两种不同PAG尺寸的样品在室温下的夏比冲击能具有最大的差异,其中更细的PAG样品在室温(RT)下显示出更高的冲击能。与723 K回火试样相比,其他回火温度没有显着差异。对723 K回火钢中夏比冲击能的测试温度依赖性的研究表明,对于6μmPAG试样,在200 K附近有一个陡峭的转变,而对于60μmPAG试样,它在很宽的温度范围内表现出连续缓慢的转变。这些钢的ICIT波形分析表明,断裂扩展能量主要控制冲击能量的温度依赖性,而断裂起始能量则随着测试温度的变化而几乎保持恒定。通过二次电子显微镜(SEM)和透射电子显微镜(TEM)研究了这两个样品中的碳化物尺寸分布。与6μmPAG试样相比,60μmPAG试样显示出更粗糙的碳化物分布,这似乎在夏比冲击能和冲击断裂的其他性能之间引起了观察到的差异。

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