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Numerical Simulation of Thermal History in A Novel Spray Forming Process

机译:新型喷射成形过程中热过程的数值模拟

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摘要

A novel spray forming process was developed to produce large billets, wide plates or thick tubes with excellent microstructures and high cooling rates. Its uniqueness lies in a combination of the wide-range reciprocating movement and the swing scan of a gas atomizer, and the externally forced cooling of substrate during this spray deposition procedure. Its basic concept is that both good sticking and rapid solidification can be achieved if droplets with high liquid fractions impact a cold substrate, spread fully and then deposit on the surface. In order to control and optimize this new process, the thermal histories of droplets and deposits for spray forming of aluminum alloy billets were simulated with a set of new numerical models. Through shortening spray distance and raising melt superheat properly, the liquid fraction of droplets before deposition will increase and their spread on the deposit surface can improve for good sticking. Simulation results show that the optimal liquid fraction of droplets for deposition is about 0.2 higher than that in the conventional Osprey process. Its optimum spray distance is about 0.25m, which is nearly half as that in the Osprey process. In addition, this new process increases the mushy layer area and the specific surface area of heat extraction during deposition. Together with the forced cooling of substrate, it results in higher cooling rates. A high-quality large billet can be obtained by controlling the atomizer movement, the droplet liquid fraction and the deposit surface temperature properly in this new process.
机译:开发了一种新颖的喷射成形工艺,以生产具有出色的微观结构和高冷却速率的大钢坯,宽板或厚管。它的独特之处在于结合了宽范围的往复运动和气体雾化器的摆动扫描,以及在此喷涂过程中基板的外部强制冷却。其基本概念是,如果具有高液体分数的液滴撞击冷的基材,充分散布然后沉积在表面上,则可以实现良好的粘合和快速固化。为了控制和优化此新工艺,使用一组新的数值模型模拟了用于铸造铝合金坯料的液滴和沉积物的热历史。通过缩短喷射距离并适当提高熔体过热度,液滴在沉积前的液体分数将增加,并且它们在沉积物表面的扩散可以得到改善,从而具有良好的附着力。仿真结果表明,用于沉积的液滴的最佳液体分数比传统的Osprey工艺高约0.2。它的最佳喷涂距离约为0.25m,几乎是鱼鹰工艺的一半。另外,这种新工艺增加了沉积过程中糊状层的面积和热量提取的比表面积。与基板的强制冷却一起,可以提高冷却速度。通过在此新过程中适当控制雾化器的移动,液滴的液体含量和沉积表面温度,可以获得高质量的大坯料。

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