首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part E. Journal of Process Mechanical Engineering >Study on warm forming effects of the axial-pushed incremental rolling process of spline shaft with 42CrMo steel
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Study on warm forming effects of the axial-pushed incremental rolling process of spline shaft with 42CrMo steel

机译:用42crmo钢的花键轴轴向推动增量轧制过程的热成形效果研究

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摘要

The effects of the warm forming temperature on the axial-pushed incremental rolling process were investigated through finite element analysis and experimental studies. Firstly, the principle of warm axial-pushed incremental rolling process of spline shaft was introduced. Next, the material properties of 42CrMo steel at different forming temperatures were studied to discuss the effects of the warm forming temperature. Through finite element analysis, the simulations of the axial-pushed incremental rolling process were carried out to investigate the effects of the warm forming temperature on rolling forces. The results indicated that the axial and radial forces on the rolling dies were both reduced at the warm forming temperature. Finally, the experiment studies were carried out on a warm axial-pushed incremental rolling equipment. The dimensional precision, microstructure, and hardness of the formed spline shafts at warm temperature were compared with those of the formed spline shafts at room temperature. The results indicated that the spline shafts, which were formed at the warm temperature, possesses of a good dimensional precision and excellent performance. The results in this paper demonstrated that the warm forming temperature has the positive effects on the performance improvement of the axial-pushed incremental rolling process of spline shaft.
机译:通过有限元分析和实验研究研究了热成形温度对轴向推动的增量轧制过程的影响。首先,引入了花键轴的温暖轴向推动的增量轧制过程的原理。接下来,研究了42crmo钢在不同形成温度下的材料特性,讨论了暖成温度的影响。通过有限元分析,进行了轴向推动的增量轧制过程的模拟,以研究热成形温度对轧制力的影响。结果表明,滚动管芯上的轴向和径向力在热成形温度下均降低。最后,在温暖的轴向推动的增量滚动设备上进行实验研究。将形成的花键轴在温温温度下的尺寸精度,微观结构和硬度与在室温下形成的花键轴的尺寸。结果表明,在温暖温度下形成的花键轴具有良好的尺寸精度和优异的性能。本文的结果表明,热成形温度对花键轴的轴向推动的增量轧制过程的性能提高具有积极影响。

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