Effects post-processing surface roughness additively is a M.Tech project topic for Mechanical Engineering. It gives students a clear starting point for research, implementation planning, and documentation.
Effects post-processing surface roughness additively Project Details
| Abstract |
Additive manufacturing can produce metal lattice structures that are both lightweight and very strong, which is valuable for many engineering uses. A common issue with these lattices is their builtβin surface roughness, which reduces mechanical strength and shortens fatigue life. Conventional mechanical polishing canβt reach the interior of the lattice, so chemical or electrochemical polishing is required. This project plan explains how to assess the effectiveness of postβprocessing treatments on Ti5553 titaniumβalloy lattice structures. It uses Xβray computed microβtomography (XCT) as a nonβdestructive tool to measure and map surface roughness before and after polishing. The framework also evaluates how roughness varies across the part, how much material is removed, and
how dimensions change within the complex cubic lattice geometry. By linking polishing parameters to the surface metrics obtained from XCT, the method provides a clear research path for optimizing additiveβmanufacturing processes. It offers a complete guide for academic work, allowing systematic analysis of surfaceβtopography improvements without damaging the cellular structure, and supports the development of better postβprocessing protocols for advanced aerospace and biomedical components.
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| Reference Paper |
Effects of post-processing on surface roughness of additively manufactured TI5553 lattice structures using X-ray computed microtomography |
| Domain |
Mechanical Engineering |
| Sub-Domain |
Design & Manufacturing / Additive Manufacturing / Process Optimization |
| PDF Download |
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| Get Help |
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