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Study of the Precision Forging of an Impeller by Numerical Simulation and Test Forming

机译:叶轮精密锻造的数值模拟与试验成形研究

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In the present paper, the precision forging of an impeller was studied by means of numerical simulation and test forming. Based on the structure and dimension of the impeller, the combination structure was used in the forging die to obtain the extrusion deformation. The forming processes were simulated with DEFORM-3D for different billet dimensions and processing parameters. The parameters, which could ensure the forming quality of the impeller, were determined by the calculations and analysis. The die structure and the billet dimensions were determined according to the simulation results, and the forging die was designed and manufactured. The billet with semi-solid microstructure was produced by means of the direct heating-isothermal treatment. The forming was conduced in an YX-315F hydraulic press, and the precision forgings of the impeller were produced successfully. Both of the simulation and the forming test show that the impeller forging can be formed with the combination structure die and the extruding forming stale satisfactorily. The ideal parameters to produce the precision forgings of the impeller are: billet temperature at 625°C, die temperature at 450°C and punch speed at 20mm/s. Under these conditions, forgings of the impeller can be produced with plump blades, smooth outer surface, and good flow line. This can match the requirements of the precision forging of impellers.
机译:本文通过数值模拟和试验成型的方法研究了叶轮的精密锻造。根据叶轮的结构和尺寸,在锻模中使用组合结构以获得挤压变形。使用DEFORM-3D模拟了不同坯料尺寸和加工参数的成形过程。通过计算和分析确定了可以确保叶轮成形质量的参数。根据仿真结果确定了模具结构和坯料尺寸,并设计制造了锻模。通过直接加热-等温处理生产具有半固态组织的钢坯。在YX-315F液压机中进行了成形,并成功生产了叶轮的精密锻件。仿真和成形试验均表明,利用组合结构模具和挤压成形陈旧性可以令人满意地形成叶轮锻件。生产叶轮精密锻件的理想参数是:坯料温度为625°C,模头温度为450°C,冲头速度为20mm / s。在这些条件下,叶轮的锻件可以制成具有饱满的叶片,光滑的外表面和良好的流线。这可以满足叶轮精密锻造的要求。

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