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  •   Ιδρυματικό Αποθετήριο Πανεπιστημίου Θεσσαλίας
  • Επιστημονικές Δημοσιεύσεις Μελών ΠΘ (ΕΔΠΘ)
  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ.
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Ιδρυματικό Αποθετήριο Πανεπιστημίου Θεσσαλίας
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Friction Stir Welding Optimization of 3D-Printed Acrylonitrile Butadiene Styrene in Hybrid Additive Manufacturing

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Συγγραφέας
Vidakis N., Petousis M., Korlos A., Mountakis N., Kechagias J.D.
Ημερομηνία
2022
Γλώσσα
en
DOI
10.3390/polym14122474
Λέξη-κλειδί
Additives
Butadiene
Cost effectiveness
Extrusion
Friction
Friction stir welding
Joining
Quality control
Research laboratories
Scanning electron microscopy
Statistical methods
Stereo image processing
Styrene
Tensile strength
Tensile testing
3-D printing
3D-printing
Acrylonitrile butadiene styrene
Acrylonitrile-butadiene-styrene
Friction stir welding
Friction-stir-welding
Hybrid additive manufacturing
Material extrusion
Mechanical
Stir welding process
3D printers
MDPI
Εμφάνιση Μεταδεδομένων
Επιτομή
The feasibility of joining material extrusion (MEX) 3D-printed acrylonitrile butadiene styrene (ABS) plates with the friction stir welding (FSW) process was investigated herein as a promising topic of hybrid additive manufacturing (HAM). The influence of three process parameters on the mechanical strength of the joints was thoroughly examined and analyzed with a full factorial experimental design and statistical modeling. Hereto, the welding tool pin geometry, travel speed, and rotational speed were investigated. The joint’s efficiency and quality are evaluated through tensile tests and morphological characterization. More specifically, specimens’ areas of particular interest were investigated with stereoscopic, optical, and scanning electron microscopy. Throughout the FSW experimental course, the welding temperature was monitored to evaluate the state of the ABS material during the process. The majority of the welded specimens exhibited increased mechanical strength compared with the respective ones of non-welded 3D printed specimens of the same geometry. Statistical modeling proved that all processing parameters were significant. The feasibility of the FSW process in 3D printed ABS workpieces was confirmed, making the FSW a cost-effective process for joining 3D printing parts, further expanding the industrial merit of the approach. © 2022 by the authors. Licensee MDPI, Basel, Switzerland.
URI
http://hdl.handle.net/11615/80611
Collections
  • Δημοσιεύσεις σε περιοδικά, συνέδρια, κεφάλαια βιβλίων κλπ. [19735]

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