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Heat Transfer Modelling And Stability Analysis Of Selective Laser Melting

机译:选择性激光熔化的传热建模和稳定性分析

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The process of direct manufacturing by selective laser melting basically consists of laser beam scanning over a thin powder layer deposited on a dense substrate. Complete remelting of the powder in the scanned zone and its good adhesion to the substrate ensure obtaining functional parts with improved mechanical properties. Experiments with single-line scanning indicate, that an interval of scanning velocities exists where the remelted tracks are uniform. The tracks become broken if the scanning velocity is outside this interval. This is extremely undesirable and referred to as the "balling" effect. A numerical model of coupled radiation and heat transfer is proposed to analyse the observed instability. The "balling" effect at high scanning velocities (above ~20 cm/s for the present conditions) can be explained by the Plateau-Rayleigh capillary instability of the melt pool. Two factors stabilize the process with decreasing the scanning velocity: reducing the length-to-width ratio of the melt pool and increasing the width of its contact with the substrate.
机译:通过选择性激光熔化直接制造的过程基本上包括对沉积在致密衬底上的薄粉末层进行激光束扫描。粉末在扫描区域中的完全重熔及其对基材的良好附着力确保获得具有改进机械性能的功能部件。单行扫描的实验表明,在重熔轨迹均匀的地方存在一定的扫描速度间隔。如果扫描速度超出此间隔,则磁道会断裂。这是非常不希望的,被称为“滚珠效应”。提出了耦合辐射和热传递的数值模型来分析观察到的不稳定性。高速扫描速度(在当前条件下约为20 cm / s以上)下的“起球”效应可以用熔池的高原-瑞利毛细管不稳定性来解释。有两个因素可以通过降低扫描速度来稳定过程:减小熔池的长宽比和增加熔池与基材的接触宽度。

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