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PERFORMANCE TESTING OF L-PBF PRODUCED HONEYCOMBS OUT OF IN625

机译:L-PBF的性能测试在625年产生蜂窝

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Laser Powder Bed Fusion (L-PBF) enables the production of complex metallic parts. Processes using pulsed wave (PW) laser radiation have been proven to be well suited to build thin-walled honeycomb structures. However, the behavior of these structures under load conditions remains mostly unexplored. The objective of this paper is to characterize L-PBF produced honeycombs by investigating their rub and leakage performance. A pulse modulated process based on previous studies is optimized for productivity and used to build L-PBF test samples out of Inconel 625 (IN625). The honeycomb cell geometry is adjusted for improved printability of the overhanging walls. Repeatable L-PBF production of honeycombs with a wall thickness of about 100 p.m is confirmed. Conventionally manufactured honeycomb samples out of sheet metal are tested as reference. The rub experiments cover radial incursion rates of up to 0.5 mm/s and relative velocities of up to 165 ms~(-1) at incursion depths (ID) between 0.5 and 2.0mm. Lower incursion forces are observed for the L-PBF components, with a higher degree of abrasion. The leakage tests examine the mass flow rate for pressure ratios between 1.05 and 2.0 at constant gap size and constant back pressure. The L-PBF honeycomb seals show a higher mass flow rate, with the slightly larger cell size and higher surface roughness appearing to be the main influencing /actors. Overall, improved rubbing behavior and 10% higher leakage than the conventional probes demonstrate the applicability of L-PBF for honeycomb sealing systems. Future performance improvements through dedicated L-PBF designs can be expected.
机译:激光粉床融合(L-PBF)可以生产复杂的金属部件。已经证明使用使用脉冲波(PW)激光辐射的方法非常适合构建薄壁蜂窝结构。然而,在负载条件下这些结构的行为仍然是未探究的。本文的目的是通过研究其摩擦和泄漏性能来表征L-PBF产生的蜂窝。基于先前研究的脉冲调制过程被优化以用于生产率,并用于在Inconel 625(In625)外产生L-PBF测试样品。调节蜂窝电池几何形状,以改善悬垂壁的可印刷性。确认具有约100点约100点的蜂窝状的可重复的L-PBF产生。常规制造的蜂窝样品在金属板上进行测试作为参考。 RUB实验在入侵深度(ID)之间覆盖高达0.5mm / s的径向侵袭率,高达0.5mm / s的且相对速度,高达165ms〜(-1)在0.5和2.0mm之间。对于L-PBF组分观察到较低的侵入力,具有较高程度的磨损。泄漏试验在恒定间隙尺寸和恒定的背压下检查1.05和2.0之间的压力比的质量流量。 L-PBF蜂窝密封件显示出较高的质量流量,具有稍大的电池尺寸和较高的表面粗糙度,出现是主要的影响/演员。总体而言,摩擦行为的改善和泄漏量高于传统探针的10%,证明了L-PBF用于蜂窝密封系统的适用性。可以预期通过专用L-PBF设计的未来性能改进。

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