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Distortion Mechanisms During Carburizing and Quenching in a Transmission Shaft

机译:传动轴渗碳和淬火过程中的变形机制

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Distortion control during industrial carburizing and quenching operation of precision transmission components is of utmost importance due to their direct impact on performance, such as efficiency, noise and vibrations. The importance of controlling various heat treatment process parameters for mitigating distortion is well accepted, but their specific influence on mechanisms is less understood. In the present work, an integrated finite element-based model is used to simulate gas carburizing and quenching operation on a typical transmission shaft. Investigation is carried out on the effect of raw materials, carburizing and quenching process parameters to predict, analyze and minimize distortion. The effect of phase transformation and generation of thermal strain during heating and cooling stage of heat treatment is investigated, and the mechanisms of bending, diameter and length distortion of a shaft are analyzed. The displacive nature of transformation of bainite at higher temperature with its inherent large shear component of deformation was identified to be responsible for bending distortion in a shaft. Bainitic transformation, martensitic transformation and thermal strains developed during quenching cause volume expansion which leads to diameter expansion and lesser length shrinkage. Finally, bending distortion of a shaft and bore distortion of a gear are contrasted, both in terms of mechanisms and distortion control strategies.
机译:由于它们对性能的直接影响,例如对效率,噪声和振动等直接影响,因此精密传输组件的工业渗碳和淬火操作期间的失真控制至关重要,例如效率,噪音和振动。控制各种热处理工艺参数的重要性是很好地接受,但它们对机制的特定影响较小。在本作工作中,基于集成的有限元基模型用于在典型的传动轴上模拟气体渗碳和淬火操作。对原材料,渗碳和淬火工艺参数的影响进行调查,以预测,分析和最小化畸变。研究了热处理加热和冷却阶段期间的相变和产生热应变的影响,分析了轴的弯曲,直径和长度变形的机制。鉴定具有其固有的变形的固有的大剪切分量较高温度在较高温度下贝氏体转化的位移性质负责弯曲轴中的变形。在淬火期间产生的贝氏体转化,马氏体转化和热菌株引起体积膨胀,导致直径膨胀和较小的长度收缩。最后,在机构和失真控制策略方面,轴的轴和齿轮的弯曲变形和齿轮的弯曲变形。

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