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STUDY OF MOULD TEMPERATURE EFFECT ON THE INCIDENCE OF POROSITY IN A CAST CYLINDER HEAD

机译:模具温度效应对铸缸磁头孔隙率发病率的研究

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Software simulation allows detecting casting zones with susceptibility to foundry defects. Some defects are only detected after castings are manufactured at high production rates. The changes needed to eliminate the problem imply economic losses and time waste. The present work analyzed the possibility of detecting low incidence defect zones by simulation. Simulation was calibrated with experimental data obtained from cooling curves, measured during the filling and solidification processes at the zones were potential defects appeared. The effect of changing the mould temperature was considered. Variations of mould temperature were made by delaying the time between castings. Cooling of the mould, before pouring a subsequent casting, was allowed both with and without the previous casting inside of the mould. The information obtained from simulations was compared with experimental results. It was found that after delaying the molding process, the number and extension of zones with porosity defects were increased.
机译:软件仿真允许检测铸造区域对铸造缺陷的敏感性。在铸件以高生产率制造后仅检测到一些缺陷。消除问题所需的变化意味着经济损失和时间浪费。本作者分析了通过模拟检测低发缺陷区的可能性。用从冷却曲线获得的实验数据校准模拟,在填充过程中测量,区域处的凝固过程出现了潜在的缺陷。考虑改变模具温度的效果。通过延迟铸件之间的时间来制造模具温度的变化。在浇注后浇注之前,允许在浇注之前的铸造,并且没有先前的铸件。将模拟获得的信息与实验结果进行了比较。发现在延迟模塑过程之后,增加了孔隙缺陷的区域的数量和延伸。

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