首页> 外文OA文献 >Investigation of die wear by modelling the extrusion of Inconel 718
【2h】

Investigation of die wear by modelling the extrusion of Inconel 718

机译:通过模拟Inconel 718挤出模具来研究模具磨损

摘要

Die wear is always an important issue in hot forming processes, such as in forging and extrusion. Die life affects the economics of process to product and in order to optimise die life, the mechanism of wear should be approached scientifically. The aim of this work is to provide a systematic method for predicting and quantifying wear occurring in the extrusion of INCONEL 718 (IN718), nickel superalloy.ududTo characterise wear, the process prediction which contributes to it must be identified and quantified. First, material characterisation was carried out using the Gleeble physical materials simulator. Then a set of unified viscoplastic constitutive equations was developed suitable for modelling microstructural evolution of IN718, i.e. evolution of average grain size, dislocation density and recrystallisation under hot forming conditions, which enabled resulting flow stress to be calculated and the microstructure of formed parts to be predicted.ududSecond, heat transfer and friction during the forming process were investigated, by upsetting cylinders and performing ring tests on IN718. The heat transfer experimental work centres rounded the development of a reliable method for the measurement of the sub-surface temperatures in the bottom die during upsetting. The experimental values of sub-surface temperatures under various lubrication and forging conditions were analysed. A theoretical approach was proposed for the determination of the values of effective heat transfer coefficient and effective friction factor, and comparisons of experimental results and those from FE simulations were made and satisfactory matchings were obtained.ududFinally, integration of the material model and derived boundary conditions using subroutines for FEA are presented. Qualitative studies of abrasive die wear carrying out in a FE package, DEFORM, on the effect of various hot forming cases are shown. The numerical results are compared with the observations from mechanical measurements and metallurgical examinations for the studied die. Good correlations are found for most cases, which prove the presented methods can be used effectively in the prediction of die wear. Also, further work is suggested to enhance the modelling capabilities.ud
机译:模具磨损一直是热成型过程中的重要问题,例如锻造和挤压。模具寿命影响产品生产过程的经济性,为了优化模具寿命,应该科学地研究磨损机理。这项工作的目的是提供一种预测和量化在INCONEL 718(IN718)镍超合金挤压过程中发生的磨损的系统方法。 ud ud要表征磨损,必须对造成磨损的过程预测进行识别和量化。首先,使用Gleeble物理材料模拟器对材料进行表征。然后建立了一套统一的粘塑性本构方程,适用于模拟IN718的组织演变,即在热成型条件下平均晶粒大小,位错密度和再结晶的演变,从而可以计算出产生的流动应力,并可以计算出成形零件的微观结构。第二,通过对气缸进行粗加工并在IN718上进行环测试,研究了成型过程中的传热和摩擦。传热实验工作中心全面发展了一种可靠的方法,用于在up锻过程中测量下模中的次表面温度。分析了在各种润滑和锻造条件下的地下温度实验值。提出了确定有效传热系数和有效摩擦系数值的理论方法,并对实验结果与有限元模拟结果进行了比较,得出了满意的匹配结果。 ud ud提出了使用FEA子例程导出的边界条件。显示了在FE封装DEFORM中对各种热成型情况的影响进行的磨具模头磨损的定性研究。将数值结果与所研究模具的机械测量结果和冶金检查结果进行比较。在大多数情况下都发现了良好的相关性,这证明了所提出的方法可以有效地用于模具磨损的预测。此外,建议进一步工作以增强建模功能。 ud

著录项

  • 作者

    Lin Yu-Pei;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
  • 中图分类

相似文献

  • 外文文献
  • 中文文献
  • 专利

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