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首页> 外文期刊>International Journal of Thermal Sciences >Spray forming: A numerical investigation of the influence of the gas to melt ratio on the billet surface temperature
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Spray forming: A numerical investigation of the influence of the gas to melt ratio on the billet surface temperature

机译:喷射成型:气体熔体比对坯料表面温度影响的数值研究

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摘要

The relationship between the gas to melt ratio (GMR) and the surface temperature of an evolving billet surface in spray forming is investigated numerically. The basis for the analysis is an integrated approach for modelling the entire spray forming process. This model includes the droplet atomisation taking thermal coupling into consideration and the deposition of material at the surface of the billet taking geometrical aspects such as shading into account. The coupling between these two models is accomplished by ensuring that the total droplet size distribution of the spray is the summation of "local" droplet size distributions along the r-axis of the spray cone. The criterion for a successful process has been a predefined process window characterised by a desired fraction solid range at a certain distance from the atomizer. Inside this process window, the gas and melt flows have been varied and the influence of the gas and metal flow rates on the surface temperature of the billet has been analysed. Based on this, a relationship for the surface temperature as function of the GMR has been suggested for the spray forming of a 100Cr6 billet.
机译:数值研究了气体熔体比(GMR)与喷塑成形中坯坯表面温度之间的关系。分析的基础是对整个喷涂成型过程进行建模的集成方法。该模型包括考虑了热耦合的液滴雾化以及考虑到诸如阴影等几何方面的材料在坯料表面的沉积。通过确保喷雾的总液滴尺寸分布是沿着喷雾锥的r轴的“局部”液滴尺寸分布的总和,来实现这两个模型之间的耦合。成功过程的标准是一个预定义的过程窗口,该窗口的特征是在距雾化器一定距离处的所需固体分率范围。在此工艺窗口内,气体和熔体的流量已发生变化,并且已分析了气体和金属流量对坯料表面温度的影响。基于此,对于100Cr6坯料的喷射成形,已经提出了表面温度与GMR的关系。

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