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Impact of Additive Manufacturing on Internal Cooling Channels With Varying Diameters and Build Directions

机译:添加剂制造对具有不同直径的内部冷却通道的影响和构建方向

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摘要

The use of additive manufacturing (AM) processes, such as direct metal laser sintering, provides the design freedom required to incorporate complex cooling schemes in gas turbine components. Additively manufactured turbine components have a range of cooling feature sizes and, because of the inherent three-dimensionality, a wide range of build angles. Previous studies have shown that AM built directions influence internal channel surface roughness that, in turn, augment heat transfer and pressure loss. This study investigates the impact of AM on channel feature size and builds direction relative to tolerance, surface roughness, pressure losses, and convective cooling. Multiple AM coupons were built from Inconel 718 consisting of channels with different diameters and a variety of build directions. An experimental rig was used to measure pressure drop to calculate friction factor and was used to impose a constant surface temperature boundary condition to collect Nusselt number over a range of Reynolds numbers. Significant variations in surface roughness and geometric deviations from the design intent were observed for distinct build directions and channel sizes. These differences led to notable impacts in friction factor and Nusselt number augmentations, which were a strong function of build angle.
机译:使用添加剂制造(AM)工艺(例如直接金属激光烧结)提供了在燃气轮机组件中加入复杂的冷却方案所需的设计自由度。由于固有的三维性,具有宽范围的构​​建角,涡轮机部件具有一系列冷却特征尺寸。以前的研究表明,AM建造方向会影响内部通道表面粗糙度,又增加传热和压力损失。本研究调查了AM对通道特征尺寸的影响,并相对于公差,表面粗糙度,压力损失和对流冷却构建方向。多AM优惠券由Inconel 718构建,由具有不同直径和各种构建方向的通道组成。使用实验管道测量压降以计算摩擦系数,并用于施加恒定的表面温度边界条件,以收集一系列雷诺数的泡沫数。对于不同的构建方向和通道尺寸,观察到与设计意图的表面粗糙度和几何偏差的显着变化。这些差异导致摩擦因子和露珠数量增强的显着影响,这是构建角度的强烈功能。

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