Influence of Build Height on Quality of Additively Manufactured Thermoplastic Polyurethane Parts

Author:

Gangwar Sudhanshu1ORCID,Saxena Prateek1ORCID,Biermann Tobias23,Steinnagel Carl2,Lachmayer Roland2

Affiliation:

1. School of Mechanical and Materials Engineering Indian Institute of Technology Mandi Himachal Pradesh 175005 India

2. Institute of Product Development (IPeG) Gottfried Wilhelm Leibniz Universität Hannover An der Universität 1 30823 Garbsen Lower Saxony Germany

3. Cluster of Excellence PhoenixD (Photonics, Optics, and Engineering – Innovation Across Disciplines), Gottfried Wilhelm Leibniz Universität Hannover Welfengarten 1A 30167 Hannover Lower Saxony Germany

Abstract

Due to geometrical degrees of freedom, low cost, and ease of realizing complex structures, polymer additive manufacturing (AM) has emerged exceptionally well. Even with rapid evolutionary growth, AM lacks sound quality mainly including inherent porosity and surface roughness compared to their counterparts (conventional manufacturing processes) due to the involvement of several printing parameters in AM processes. This quality‐based comparative assessment presents the influence of build/layer height on the porosity (using micro‐X‐ray computed tomography) and surface roughness (in build direction) of additively manufactured thermoplastic polyurethane (due to its versatile properties in applications like wearable electronics and biomedical) using three different polymer AM processes namely selective laser sintering, fused deposition modeling, and stereolithography. Along with porosity, an in‐depth pore characterization is also performed to understand the geometrical feature and severity of pores present in each sample of the AM process. Results are compared finally to make concluding remarks.

Funder

Deutsche Forschungsgemeinschaft

Publisher

Wiley

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