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Numerical analysis and design of pinion with inner helical gear by FEM

机译:内斜齿轮小齿轮的有限元数值分析与设计

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In the design of the cold forging process one of the most important tasks is the determination of the required number of processes. Preforming in incremental steps is aimed at achieving high accuracy of the forged part, high quality of the surfaces and also decreasing the die damage during the forging process. Cold forging of pinion gear with shape of outer spur gear and inner helical gear have been investigated in this study. A numerical analysis for preform design substituting a cutting process in the gear forging was developed by means of upsetting process. By using the finite element (FE) program DEFORM-3D, the analysis is carried out. Using this simulation, the preform of the pinion and helical gear forging process was designed. The suggested valuable information regarding the forging process shows a successful attempt. The suggested process is verified by experiment. Compared to the traditional computer numerical control (CNC) processing, the upsetting process can form a preform without cutting, which leads to shorter forming time and reduced material usage.
机译:在冷锻工艺的设计中,最重要的任务之一是确定所需的工艺数量。逐步进行预成型的目的是实现锻件的高精度,表面的高质量以及减少锻造过程中的模具损坏。本研究对小齿轮形状的外正齿轮和内斜齿轮进行了冷锻。通过up锻工艺,对齿轮锻造中的切削加工代替切削加工进行了数值分析。通过使用有限元(FE)程序DEFORM-3D,进行分析。使用此模拟,设计了小齿轮和斜齿轮锻造工艺的预成型坯。建议的有关锻造过程的有价值信息显示了成功的尝试。建议的过程已通过实验验证。与传统的计算机数控(CNC)处理相比,up粗工艺无需切割即可形成预成型坯,从而缩短了成型时间并减少了材料使用量。

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