首页> 外文期刊>Transactions of the Indian Institute of Metals >Thermomechanical analysis of direct chill casting using finite element method
【24h】

Thermomechanical analysis of direct chill casting using finite element method

机译:直接冷硬铸造的热力学有限元分析

获取原文
获取原文并翻译 | 示例
           

摘要

The transient nature of the start-up phase is the most critical phase in the direct chill (DC) casting during which the quality of the ingot is questioned. The hot crack and cold crack are the two major problems in the DC casting which originate during and after the solidification. In this work, the thermal, metallurgical, and the mechanical fields of DC casting are modeled. The attention is focused on the mushy state of alloy where the chances are high for the hot tearing. The heat conduction and metallurgical phase-change phenomenon are modeled together in a strongly coupled manner. An isothermal staggered approach is followed to couple the thermal and mechanical parts within a time step. Finite element method is used to discretize the thermal and mechanical field equations. A temperature-based fixed grid method is followed to incorporate the latent heat. The mushy state of alloy is characterized through the Norton-Hoff viscoplastic law and the solid phase is modeled through the Garafalo law. An axisymmetric round billet is simulated. The casting material is considered as AA1201 aluminum alloy. It is found that all the components of stress and viscoplastic strain are maximum at the billet center. Further, the start-up phase stresses and strains are always higher than the steady state phase. Therefore, the chances of hot crack formation are higher during the start-up phase and specifically at the billet center. It is proved that through the ramping procedure, the vulnerability of start-up phase can be lowered.
机译:在直接冷却(DC)铸造中,开始阶段的过渡特性是最关键的阶段,在此阶段中,对铸锭的质量提出了质疑。热裂纹和冷裂纹是DC铸件中的两个主要问题,它们是在凝固期间和凝固之后产生的。在这项工作中,对直流铸造的热场,冶金场和机械场进行了建模。注意力集中在合金的糊状状态,其中热撕裂的可能性很高。导热和冶金相变现象以强耦合的方式一起建模。遵循等温交错方法,以在一个时间步中耦合热部件和机械部件。使用有限元方法离散化热场和机械场方程。遵循基于温度的固定网格方法以合并潜热。合金的糊状状态通过Norton-Hoff粘塑性定律表征,固相通过Garafalo定律建模。模拟了轴对称的圆坯。铸造材料被视为AA1201铝合金。发现在坯料中心应力和粘塑性应变的所有分量都是最大的。此外,启动阶段的应力和应变总是高于稳态阶段。因此,在启动阶段,特别是在坯料中心,形成热裂纹的机会更高。实践证明,通过缓升程序可以降低启动阶段的脆弱性。

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