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Multi-field coupling finite element analysis for determining the influence of temperature field on die service life during precision-forming process of steel synchronizer ring

机译:用于确定温度场对钢同步圈精密成形过程中的温度场影响的多场耦合有限元分析

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摘要

Failure analysis shows that increased die temperature caused by severe plastic deformation of material and heat conduction between hot billet and cavity significantly affects the distortion of gear cavity in steel synchronizer ring forging process. The forging process of steel synchronizer ring and die temperature distribution under different forging conditions are analyzed through finite element method. Simulation results show that severe plastic deformation occurs in the gear cavity. The improvement of lubrication condition results in decreased die temperature. When the initial billet temperature is high, the die temperature is also high. Increasing forging speed in a certain range facilitates the die temperature decrease. The distribution of die temperature in synthetic forming technology is more reasonable than that of one step forging. The synthetic forming technology is adopted in production to reduce the effects of severe plastic deformation caused by die temperature. The ejection mechanism and control system of the double disc friction press are improved to reduce the contact time between the hot billet and cavity. Experimental results show that synthetic forming technology is reasonable, and that the die service life is prolonged.
机译:故障分析表明,由于材料的严重塑性变形和热坯料和腔之间的热传导引起的增加的模具温度显着影响钢同步器环锻造过程中齿轮腔的变形。通过有限元法分析不同锻造条件下钢同步器环和模芯温度分布的锻造过程。仿真结果表明,齿轮腔中发生严重的塑性变形。润滑条件的提高导致模具温度降低。当初始方坯温度高时,管芯温度也很高。提高一定范围内的锻炼速度有助于模具温度降低。合成成形技术中的模具温度分布比一步锻造更合理。在生产中采用合成形成技术,以减少模芯温度引起的严重塑性变形的影响。改进双盘摩擦压力的喷射机构和控制系统以减小热坯料和腔之间的接触时间。实验结果表明,合成成型技术合理,模具使用寿命延长。

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