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Microstructure-based behavior law for globular pearlitic steels

机译:球状珠光体钢的基于微观结构的行为定律

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Pearlitic steels are widely used in the industry for their good balance between strength, ductility and machinability. Sometimes, the classical lamellar structure can degenerate in a so-called globular structure which may significantly affect the behavior of the steel. To our knowledge, no size sensitive model is available in the literature to predict their mechanical behaviors and work-hardenings. Inspired by their analogy with ferrite–martensite dual-phase microstructures, we propose a new microstructure-based law for globular pearlite. It describes the evolution of the dislocation density into ferritic grains which is enhanced by the presence of hard particles. The model is as a consequence sensitive to ferritic grain but also to coarse carbide sizes after globularization. The model has been calibrated on a conventional steel grade and appears to be a practical tool for microstructure design.
机译:珠光体钢因其在强度,延展性和可切削性之间的良好平衡而被广泛用于工业中。有时,经典的层状结构可能会退化为所谓的球状结构,这可能会严重影响钢的性能。据我们所知,文献中没有尺寸敏感模型可用来预测其机械性能和加工硬化。受它们与铁素体-马氏体双相微结构的类比的启发,我们提出了一种新的基于微结构的球状珠光体定律。它描述了位错密度向铁素体晶粒的演变,这通过存在硬颗粒而得到增强。因此,该模型不仅对铁素体晶粒敏感,而且对球化后的粗大碳化物尺寸也很敏感。该模型已在常规钢种上进行了校准,似乎是用于微结构设计的实用工具。

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