...
首页> 外文期刊>High temperature materials and processes >Application of Direct Resistance Heating in Hot Forging and Analysis of Processing Parameters based on Thermo-electro-mechanical Coupling FEM
【24h】

Application of Direct Resistance Heating in Hot Forging and Analysis of Processing Parameters based on Thermo-electro-mechanical Coupling FEM

机译:基于热电机械耦合有限元的直接电阻加热在热锻中的应用及工艺参数分析

获取原文
           

摘要

A series of experiments were designed in order to directly heat the billet of 42CrMo4 to the forming temperature in the dies prior to forming and continue to heat the billet during the forming process. Processing parameters during heating and forming were investigated by experimental method and thermo-electro-mechanical coupling FEM. The experimental results show that prior to forming the billet could be rapidly heated to forming temperature under relatively low initial contact pressure, and the heating temperature was proportional to the square of the current intensity. When the heating current remained constant, the heating temperature could not increase with heating time. During the forming process, the billet cooling rate slowed down and the forming time was extended due to the continuous resistance heating during forming. Finally, an incrementally coupled thermo-electro-mechanical model has been developed to analyze the hot-forging process by direct resistance heating. To obtain the transient temperature field prior to forming, a simple model of contact resistance was used in the thermal-electrical simulation, in which the electrical conductance of the contact resistance was proportional to the heating temperature. Contrasted the experimental results and the simulation results, it was found that they coincided well.
机译:为了在成型之前将42CrMo4的坯料直接加热到模具中的成型温度,并在成型过程中继续加热,设计了一系列实验。通过实验方法和热电机械耦合有限元方法研究了加热和成型过程中的加工参数。实验结果表明,在成形之前,可以在较低的初始接触压力下将坯料快速加热至成形温度,并且加热温度与电流强度的平方成正比。当加热电流保持恒定时,加热温度不会随着加热时间而升高。在成形过程中,由于在成形过程中连续的电阻加热,使坯料冷却速度减慢并且成形时间延长。最后,建立了一个增量耦合的热电-机械模型,以通过直接电阻加热来分析热锻过程。为了在成型之前获得瞬态温度场,在热电模拟中使用了简单的接触电阻模型,其中接触电阻的电导率与加热温度成正比。与实验结果和仿真结果对比,发现它们吻合得很好。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号