Characterization and Processing Behavior of Heated Aluminum-Polycarbonate Composite Build Plates for the FDM Additive Manufacturing Process

Характеристика и технологические свойства нагреваемых композитных рабочих платформ из алюминия и поликарбоната для аддитивного производства методом FDM
Sherri L. Messimer, Albert E. Patterson, Nasiha Muna, Akshay P. Deshpande, Tais Rocha Pereira
2018-02-16

Additive manufacturingAluminum-polycarbonate compositeFused deposition modelingHeated build platesPrinting performance
One of the most essential components of the fused deposition modeling (FDM) additive manufacturing (AM) process is the build plate, the surface upon which the part is constructed. These are typically made from aluminum or glass, but there are clear disadvantages to both and restrictions on which materials can be processed on them successfully. This study examined the suitability of heated aluminum-polycarbonate (AL-PC) composite print beds for FDM, looking particularly at the mechanical properties, thermal behavior, deformation behavior, bonding strength with deposited material, printing quality, and range of material usability. Theoretical examination and physical experiments were performed for each of these areas; the results were compared to similar experiments done using heated aluminum and aluminum-glass print beds. Ten distinct materials (ABS, PLA, PET, HIPS, PC, TPU, PVA, nylon, metal PLA, and carbon-fiber PLA) were tested for printing performance. The use of a heated AL-PC print bed was found to be a practical option for most of the materials, particularly ABS and TPU, which are often challenging to process using traditional print bed types. Generally, the results were found to be equivalent to or superior to tempered glass and superior to standard aluminum build plates in terms of printing capability.
1
Experiments compared heated AL-PC beds with heated aluminum and aluminum-glass beds across ten materials, including ABS, PLA, PET, PC, TPU, nylon, and composite filaments.
2
Heated AL-PC beds were practical for most tested materials and were particularly effective for challenging materials such as ABS and TPU.
3
Heated aluminum-polycarbonate composite build plates were evaluated for mechanical, thermal, deformation, adhesion, print-quality, and material-compatibility behavior in FDM.
4
Overall printing capability with heated AL-PC beds was equivalent to or better than tempered glass and better than standard aluminum build plates.

heated aluminum-polycarbonate composite build plates (print beds) used in FDM additive manufacturing

their mechanical, thermal, deformation, bonding, printing-quality, and material-processing performance

Publication Details
Publication Date
2018-02-16
Journal
Publisher
ISSN
Access Type
Author Information
Authors
Sherri L. Messimer
Albert E. Patterson
Nasiha Muna
Akshay P. Deshpande
Tais Rocha Pereira
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%