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Characteristic Analysis of Carburized Quenching Processes for Bevel Gear of Auto-mobile Driving Part

机译:汽车传动零件锥齿轮渗碳淬火工艺特性分析

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摘要

The mechanical properties of automobile bevel gears manufactured by carburized guenching process are evaluated by using a finite elements method. The gear teeth of super, helical, and warm gears typically have constant cross sections and the same module, which results in the same frictional wear and stress. Bevel gears, however, are of a cone shape and thus the cross section of gear tooth change in the axial direction. As a result, the hardness after heat treatment depends on the axial location of the gear tooth. Hardness distribution due to the non-constant cross section causes gear abrasion or damage. It is difficult, however, to measure the hardness in three-dimensional way through experiments. Hence, this study attempts to simulate the carburized quenching process through a numerical analysis in order to interpret the three-dimensional heat-treatment effects. The analytical results include variations of each structure, hardness, temperature over various sections depending on the cooling rate. To verify this approach, the gear used in the experiment was designed based on the same condition of the analytical model. The Carburized Quenching was carried out and the characteristics of carbon penetration, micro-structure and surface hardness were investigated by means of SEM and EPS. The theoretical results were compared with experimental results to verify the analytical method for Carburized Quenching.
机译:采用有限元法对渗碳淬火工艺生产的汽车锥齿轮的力学性能进行了评价。超级齿轮,斜齿轮和热齿轮的齿轮齿通常具有恒定的横截面和相同的模数,从而导致相同的摩擦磨损和应力。然而,锥齿轮是圆锥形的,因此齿轮齿的横截面在轴向方向上变化。结果,热处理后的硬度取决于齿轮齿的轴向位置。由于横截面不恒定而导致的硬度分布会导致齿轮磨损或损坏。但是,很难通过实验以三维方式测量硬度。因此,本研究试图通过数值分析来模拟渗碳淬火过程,以解释三维热处理效果。分析结果包括取决于冷却速率的每个部分的结构,硬度,温度变化。为了验证这种方法,实验中使用的齿轮是根据分析模型的相同条件设计的。进行了渗碳淬火,并通过SEM和EPS研究了碳的渗透,显微组织和表面硬度的特性。将理论结果与实验结果进行比较,验证了渗碳淬火的分析方法。

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