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Finite Element Simulation of Hot Forging Process for KVBM Gear

机译:KVBM齿轮热锻工艺的有限元模拟

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In this study, the forging operations of gear has been modeled. This gear is a part which is manufactured with the help of hot forging industry for reduce the cost. The authors propose to reduce the initial billet volume of AISI 4340 steel for the forged through process optimization using the Finite Element (FE)method. The object of this research was to predict the effect of several parameters, such as effective stress, effective plastic strain, temperature and die contact, on the forming of the gear, utilizing computer simulation and experimental results. For this purpose, Solidworks CAD and Simufact Forming FE software were used for the modeling and analysis of the forging process. The billet volume and the preform design were predefined in order to reduce scrap by using preform type C. The experimental results showed that the initial billet volume was reduced at 32%, which compared favorably with the simulation result of a 40% reduction. The maximum preforming force of simulation result was diferent with the experiment result at 18 along with the maximum finishing force of simulation result was different with the experiment result at 11%. It was also found that the effective stress decreased with increasing the temperature, and the press force decreased when the initial billet volume was decreased, which resulted in a decrease of effective plastic strain as well.
机译:在这项研究中,对齿轮的锻造操作进行了建模。该齿轮是借助热锻工业制造的零件,以降低成本。作者建议使用有限元(FE)方法通过工艺优化来减少AISI 4340钢的初始坯料体积。这项研究的目的是利用计算机模拟和实验结果来预测几个参数(例如有效应力,有效塑性应变,温度和模具接触)对齿轮成形的影响。为此,使用Solidworks CAD和Simufact Forming FE软件对锻造过程进行建模和分析。预定义了坯料的体积和预成型坯的设计,以减少使用C型坯的废料。实验结果表明,坯料的初始体积减少了32%,与模拟结果相比减少了40%有利。模拟结果的最大预成型力与实验结果在18%不同,模拟结果的最大精加工力在11%时有所不同。还发现,当温度升高时,有效应力减小,而当初始坯料体积减小时,压紧力减小,这也导致有效塑性应变减小。

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