首页> 外文期刊>International Journal of Metalcasting: Leading the Transfer of Research and Technology for the Global Metalcasting Industry >PREDICTION OF SHRINKAGE POROSITY IN TI-46AL-8NB TILT-CASTING USING THE NIYAMA CRITERION FUNCTION
【24h】

PREDICTION OF SHRINKAGE POROSITY IN TI-46AL-8NB TILT-CASTING USING THE NIYAMA CRITERION FUNCTION

机译:利用NIAMA判据函数预测TI-46AL-8NB倾斜铸造中的收缩孔隙

获取原文
获取原文并翻译 | 示例
       

摘要

Practical measurements, in conjunction with computer simulation modelling, were carried out to study the effects of cooling rate and temperature gradient on shrinkage porosity in a Ti-46Al-8Nb investment casting, by investigating the influence of casting geometry and preheat mould temperature on shrinkage porosity. A tilt-fill solidification model (ProCast) Ti-46Al-8Nb investment casting was developed and used to compute Niyama criterion function in different test bars with different taper angles, at 500C (932F) and 1000C (1832F) mould temperatures. Analyzing the model results and matching them with the experimentally measured area percentage of porosity revealed that enhancing directional solidification by increasing the taper coefficient significantly reduced the amount of porosity, due to the influence of improved temperature gradient on the formation of the shrinkage porosity. The Niyama criterion function was validated to predict shrinkage-related porosity in Ti-46Al-8Nb castings. Positions in a casting with Niyama values above 4 (℃.min)~(0.5)cm~(-1) could be considered completely sound, with the critical value of the Niyama function being 2 (℃.min)~(0.5)cm~(-1), below which the local area would be susceptible to macroshrinkage porosity.
机译:通过研究铸造几何形状和预热模具温度对缩孔率的影响,结合计算机仿真模型进行了实际测量,以研究冷却速率和温度梯度对Ti-46Al-8Nb熔模铸件中缩孔率的影响。 。开发了倾斜填充凝固模型(ProCast)Ti-46Al-8Nb精铸件,并使用该模型在500C(932F)和1000C(1832F)模具温度下计算具有不同锥角的不同测试棒中的Niyama准则函数。分析模型结果并将其与实验测得的孔隙率百分比相匹配后发现,由于改善的温度梯度对收缩孔隙率形成的影响,通过增加锥度系数来增强定向凝固可显着降低孔隙率。验证了Niyama标准函数可预测Ti-46Al-8Nb铸件中与收缩有关的孔隙率。 Niyama值大于4(℃.min)〜(0.5)cm〜(-1)的铸件中的位置可以认为是完全正确的,Niyama函数的临界值为2(℃.min)〜(0.5)cm 〜(-1),在该值以下,局部区域将容易受到宏观收缩孔隙的影响。

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