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The Effects of Carbon Profile and Quenching Condition on Dimensional Change of Carburized Steel Rings

机译:碳型材和淬火条件对渗碳钢环尺寸变化的影响

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Quenching distortion of carburizing steel has been investigated with ring specimens of AISI 5120 equivalent steel. Cylindrical ring specimens of the same outer diameter with different inner diameters have been carburized and hardened under various carburizing and quenching conditions. Ring diameter decreases as the total ease depth and the ratio to half wall-thickness increases. On the other hand, after the ratio comes to 1, the diameter increases as the core carbon concentration increases. Under the same carburizing condition, diameters of rings increase as the cooling intensity increases. In a carburized steel part, cross-sectional carbon profile determines the martensitic transformation (starting and finishing) temperature curves, while the quenching condition determines the actual temperature gradient across the section. Consequently, the transformational expansion and thermal shrinkage domains during phase trasnformation are determined. Until additional carbon diffuses to the core, increase in case depth extends thermal shrinkage area. On the other hand, further carburization results in slower carbon profile and strong cooling intensity increases slop of actual temperature distribution, hence they extend the transformational expansion area. This study well gives the conceptual idea which is easy to understand why and how carburizing steel can change in certain dimensions after quenching including shrinkage phenomenon.
机译:通过AISI 5120等效钢的环标本研究了渗碳钢的淬火变形。在各种渗碳和淬火条件下,具有不同内径的相同外径的圆柱环标本已经渗碳并硬化。随着总容易的深度和半壁厚度的比率增加,环直径会降低。另一方面,在比率到1之后,随着核心碳浓度的增加,直径增加。在相同的渗碳状态下,随着冷却强度的增加,环的直径增加。在渗碳钢部件中,横截面碳型材确定马氏体变换(起始和整理)温度曲线,而淬火条件确定整个部分的实际温度梯度。因此,确定了相位转换期间的变革膨胀和热收缩域。直到额外的碳扩散到核心,壳体深度的增加延伸了热收缩区域。另一方面,进一步的渗碳导致碳型材较慢,强化的冷却强度增加了实际温度分布的斜率,因此它们延长了变换膨胀区域。这项研究很好地赋予了易于理解的概念理念,为什么淬火在包括收缩现象的情况下,渗碳钢可以在某些尺寸变化。

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