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Heat transfer characterization of the solidification process resulting from a spray forming process

机译:喷涂工艺形成的凝固过程的传热特性

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Spray forming is achieved by atomizing a liquid metal sheet with an inert gas to form molten droplets, which are then subsequently deposited onto a moving cold substrate. During spray deposition processes, the developing pre-form loses thermal energy through a combination of heat transfer processes. To investigate such issues, a heat transfer model was developed to simulate the pre-form growth. This investigation involves the simultaneous heat transfer in the growing solid and mushy/melt region. The deposition rate is assumed to be continuous rather than discrete. Thus, the heat transfer process describing the growth of the deposit layer is mathematically formulated employing a continuous flow assumption. The influence of the system's controllable parameters such as substrate temperature and velocity, mass deposition rate, the superheat of the impinging metal droplets and environment conditions in the spray chamber on the final deposit and solidification are presented. All the parameters are found to have significant impact on the deposit development.
机译:喷涂成形是通过用惰性气体雾化液态金属片以形成熔融液滴来实现的,然后将其沉积到移动的冷基体上。在喷涂过程中,显影的预成型坯会通过热传递过程的组合而损失热能。为了研究此类问题,开发了一种传热模型来模拟预成型坯的生长。该研究涉及在不断增长的固体和糊状/熔体区域中的同时传热。假定沉积速率是连续的而不是离散的。因此,描述沉积层生长的传热过程是采用连续流动假设在数学上制定的。提出了系统的可控制参数,例如基材温度和速度,质量沉积速率,撞击的金属液滴的过热以及喷雾室内的环境条件对最终沉积和固化的影响。发现所有参数都对矿床开发产生重大影响。

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