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◆ Journal of the European Ceramic Society2025-10-10· Materials science

Effect of atmosphere on thermal debinding of DLP-printed ceramics

Přemysl Šťastný, Ondřej Man, Dominik Brouczek, Martin Schwentenwein, Martin Trunec

原始摘要(英文原文)· Original abstract
This study investigates the effect of the gas atmosphere on the size limit for defect-free thermal binder removal in 3D-printed alumina bodies fabricated using digital light processing (DLP). Binder removal from cylindrical specimens with diameters ranging from 5 mm to 15 mm was carried out in either nitrogen or air atmospheres under different heating schedules. In nitrogen, defect-free debinding was achieved for specimens up to 15 mm in diameter. In contrast, defect-free binder removal in air was limited to specimens as small as 5 mm. Thermogravimetric analysis and microstructural characterization were employed to elucidate the role of the atmosphere in binder removal and defect formation. Microstructural differences between debinding in air and nitrogen were identified. Based on these results, mechanisms of binder removal in ceramic DLP printed bodies with acrylate-based crosslinked binder systems are proposed, and critical steps for achieving defect-free processing are discussed.
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Effect of atmosphere on thermal debinding of DLP-printed ceramics — 科研速览 Science Skim