Print Email Facebook Twitter Experimental Study of L-PBF Micro-channel Surface Roughness Title Experimental Study of L-PBF Micro-channel Surface Roughness: An Experimental Study on the Effects of Build Angle on Surface Roughness and Fluid Flow Performance in Laser-Powder Bed Fusion manufactured Micro-channels Author Thiam, Arthur (TU Delft Aerospace Engineering) Contributor Cervone, A. (mentor) Gradl, P.R. (mentor) Degree granting institution Delft University of Technology Programme Aerospace Engineering Date 2024-02-28 Abstract Progress in Laser powder bed fusion manufacturing has led to greater use of Additive Manufacturing in combustion chambers/nozzles. This allows for the creation of more intricate and efficient solutions, but generates the need for a better understanding of how surface roughness in micro-channels used for engine cooling relates to build angle and performance. The research presented in the framework of this thesis assesses the friction factors and internal surface roughness of 18 additively manufactured channels, through the means of flow testing and microscope inspection. Positive correlations between build angle and friction factors were found, and further investigation revealed relative roughness levels outside the applicability range of Moody charts. Comparison of open and closed contour channels confirmed roughness similarity, providing valuable input for the manufacturing of witness channels in cost/time sensitive applications. Finally, the relation between surface roughness parameters and sand-grain roughness were investigated, revealing their dependency on flow properties. Subject LPBFLaser Powder Bed FusionAdditive ManufacturingChannel flowsurface roughnessLiquid rocket enginesurface texturebuild angleCooling channels To reference this document use: http://resolver.tudelft.nl/uuid:23093bde-4438-46a0-ad48-3b12f7c6ea01 Part of collection Student theses Document type master thesis Rights © 2024 Arthur Thiam Files PDF LPBF_Surface_Roughness_Th ... _Rev.2.pdf 58.22 MB Close viewer /islandora/object/uuid:23093bde-4438-46a0-ad48-3b12f7c6ea01/datastream/OBJ/view