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Measurement of Fracture Toughness in AISI 1018 Borided Steels by Vickers Indentation

机译:用维氏压痕法测量AISI 1018多孔钢的断裂韧性

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摘要

This study evaluates the fracture toughness of Fe_2B boride layers formed by the paste boriding thermochemical process on an AISI 1018 steel surface. The samples were placed in acrylic molds for the impregnation of boron carbide paste with thickness of 4mm over the sample surfaces to produce the diffusion into the steel. The aforementioned treatment considered one temperature, T= 1273 K, and three exposure times t=5, 6 and 8 h. Later, the borided samples were prepared metallographically to determine the mean values of the layer thicknesses and to produce Vickers microindentations at 45 μm from the surface, applying four loads (1.9, 2.9, 4.9 and 9.8 N). The microcracks generated at the corners of the Vickers microindentation were considered as experimental parameters, which are introduced into two Palmqvist cracks models to determine their corresponding fracture toughness K_C. As a result, the experimental parameters, such as exposure time and applied load are compared with the resulting fracture toughness of the borided phase.
机译:这项研究评估了通过AISI 1018钢表面的糊化热化学工艺形成的Fe_2B硼化物层的断裂韧性。将样品放在丙烯酸模具中,以在样品表面上浸渍厚度为4mm的碳化硼糊料,以使其扩散到钢中。前述处理考虑了一个温度,T = 1273K,和三个暴露时间t = 5、6和8h。后来,用金相方法制备了硼化的样品,以确定层厚度的平均值,并在施加四个载荷(1.9、2.9、4.9和9.8 N)的情况下,在距表面45μm处产生维氏显微压痕。维氏显微压痕角处产生的微裂纹被视为实验参数,将其引入两个Palmqvist裂纹模型中以确定其相应的断裂韧性K_C。结果,将诸如暴露时间和施加载荷的实验参数与硼化相的所得断裂韧性进行了比较。

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