首页> 外文会议>International Fatigue Congress >Fatigue Crack Propagation in Nine Steels, Type SAE 43XX, from 0.20 to 1.00 C, for the Simulation of the Fatigue Behavior in a Carburized Layer of the SAE 4320
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Fatigue Crack Propagation in Nine Steels, Type SAE 43XX, from 0.20 to 1.00 C, for the Simulation of the Fatigue Behavior in a Carburized Layer of the SAE 4320

机译:疲劳裂纹在九钢中繁殖,SAE 43xx,从0.20到1.00%C,用于模拟SAE 4320的渗碳层中的疲劳行为

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The objective of this paper is to evaluate the crack propagation rate of the SAE 4320 steel carburized layer. For the simulation of a carburized layer, samples made of SAE 43XX were employed, varying the content of carbon from 0.20 to 1.00 %. Specimens were copper layer electroplated, and then, they were heat treated in a cycle of carburizing, quenching, and tempering in five different temperatures to expose them to the thermal effects without diffusion of carbon. The results of the microhardness for the steels and for the analyzed conditions are presented in this work. The curve of microhardness has the same profile of a carburized layer for the SAE 4320 heat treated in the same conditions. The crack growth rates as a function of delta K for three tempering temperatures are plotted and the curves are shown. These results show that when the hardness is high (at 200 °C tempering temperature), there is a scattering of the curves and for the case of lower hardness (at 600 °C tempering temperature), the curves are closer. With increasing of tempering temperature there is a decreasing of the hardness and a significant effect of the metallurgical condition of the resistance of fatigue crack growth. Furthermore, with decreasing of the carbon content there is a very significant increase on the resistance of the fatigue crack growth. As a result of that, in the case of a carburized layer there is a raise of the fatigue crack growth resistance when the crack grows into the steel, from the surface (higher hardness) to the core (lower hardness).
机译:本文的目的是评估SAE 4320钢渗碳层的裂纹传播速率。对于渗碳层的模拟,采用SAE 43XX制成的样品,改变0.20至1.00%的碳含量。试样是电镀铜层,然后,它们在五种不同温度下渗碳,淬火和回火的循环中进行热处理,以使它们暴露于无需碳的扩散的热效应。在这项工作中提出了钢的微硬度和分析条件的结果。微硬度曲线具有与在相同条件下处理的SAE 4320热量的渗碳层相同的渗碳层。绘制了作为三次回火温度的ΔK函数的裂纹生长速率,并显示曲线。这些结果表明,当硬度高(在200°C回火温度下)时,曲线散射和硬度下降的情况(在600℃的回火温度下),曲线更近。随着回火温度的增加,疲劳裂纹裂纹生长抗性抗性的硬度降低和冶金条件的显着效果。此外,随着碳含量的降低,对疲劳裂纹裂纹的抗性具有非常显着的增加。结果,在渗碳层的情况下,当裂缝向钢中的表面(更高硬度)到芯(较低硬度)时,在疲劳裂纹裂纹生长阻力的情况下存在疲劳裂纹生长阻力。

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