Journal Article

·2024 OPEN ACCESS

Measurement of wear on additive manufactured surfaces via precision metrology and image processing techniques

Hikmet Ayberk Ayberk Güngör YTU , Binnur Sağbaş YTU

Surface Topography Metrology and Properties

Abstract

Abstract Additive manufacturing (AM) is rapidly developing technology which provide opportunity to generate 3D complex geometries without using any conventional tools. However, it was initially used frequently for rapid prototyping, it has now begun to be used for manufacturing functional machine parts. Wear is a critical phenomenon encountered in functional engineering systems and must be well understood for developing predictive and preventive approach. In this study, it was aimed to determine measurement procedure for additive manufactured AlSi10Mg metal part by using both standard and new technology wear measurement methods such as gravimetric, 2D and 3D optical profilometry, x-ray computed tomography (X-CT) and image processing. Minimum wear volume was measured by gravimetric method as 0,9268 mm 3 while maximum was recorded as 1,6403 mm 3 by 2D mechanical profilometer. X-CT and image processing methods wear volumes were close to each other and lie between gravimetric and 2D profilometric methods. This study aimed to provide basic understanding about the differences between the wear measurement methods on AM parts and serve further studies on measuring, predicting and preventing wear with more technological methods.

Keywords

Gravimetric analysis Profilometer Rapid prototyping Metrology Image processing Materials science Computer science Engineering drawing Mechanical engineering Artificial intelligence Optics Image (mathematics) Engineering Composite material Physics

Subject Areas

Additive Manufacturing Materials and Processes ·Mechanical Engineering ·Physical Sciences
Additive Manufacturing and 3D Printing Technologies ·Automotive Engineering ·Physical Sciences
Adhesion, Friction, and Surface Interactions ·Mechanics of Materials ·Physical Sciences

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