A mathematical model for the prediction of mechanical properties on ASTM A510/A853 cold-drawn hypoeutectoid steel wire after batch annealing

José Alfredo Sánchez de León
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Abstract

Annealed ASTM A510/A853 hypoeutectoid steel wire is a very useful and versatile material that finds its applications in the construction industry; this is mainly due to its mechanical properties, since this product can reach high ductility. In order to achieve the sought quality and homogeneity in this material, it is necessary to have a suitable control during operation. Important operational control parameters in batch annealing are: heating and cooling rates, holding temperature and cycle time. These parameters have a direct effect on the process, and it is essential to elucidate the way they impact in the final product. This work concerns the development of a mathematical model targeted at the prediction of mechanical properties in terms of the operational parameters, in the outer spirals of American Iron and Steel Institute/Society of Automotive Engineers (AISI/SAE) steel drawn wire coils after they have been subjected to batch annealing. The model addresses non-isothermically the involved phenomena that take place during the annealing process: recovery, recrystallization, and grain growth below and above Ac1. It predicts grain size, tensile strength, and yield strength values with very good accuracy.
用于预测批量退火后 ASTM A510/A853 次共晶冷拔钢丝机械性能的数学模型
退火后的 ASTM A510/A853 次共晶钢丝是一种非常有用且用途广泛的材料,可应用于建筑行业;这主要得益于其机械性能,因为这种产品可以达到很高的延展性。为了使这种材料达到所需的质量和均匀性,有必要在操作过程中进行适当的控制。批量退火的重要操作控制参数包括:加热和冷却速率、保温温度和周期时间。这些参数对工艺有直接影响,因此必须阐明它们对最终产品的影响。本研究针对美国钢铁协会/汽车工程师学会(AISI/SAE)的钢制拉拔线卷在批量退火后,根据操作参数对其外螺旋的机械性能进行预测,开发了一个数学模型。该模型以非等温方式处理退火过程中发生的相关现象:Ac1 以下和 Ac1 以上的恢复、再结晶和晶粒长大。它能非常准确地预测晶粒大小、抗拉强度和屈服强度值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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