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Updated: Sep 2, 2026

Fused Filament Fabrication (FFF) of Metal-Ceramic Components
Published on: January 11, 2019
Curving transparent ceramics via force-driven sintering
Xincheng Cai1,2, Xiaoqiang Li3, Tiecheng Lu2
1Institute of Chemical Materials, China Academy of Engineering Physics, Mianyang, 621900, China.
Abstract:
Transparent ceramics are critical for advanced optics and armor, but shaping them into highly curved geometries without degrading their optical and mechanical properties remains a formidable challenge. Here, we introduce a force-driven sintering strategy that harnesses force-induced creep to dynamically control microstructure and curvature through continuous stress release. A hallmark of this process is a dynamic curvature reversal phenomenon, governed by cyclic stress accumulation and release. Using force-driven sintering, we fabricated large-scale (0.5*2*22 cm3) curved MgAl2O4 ceramics exhibiting a high curvature (>5.36 m-1), and exceptional transmittance exceeding 85% (approaching the theoretical limit), while matching the best-reported mechanical properties. We also demonstrate the versatility of force-driven sintering by producing curved Al2O3 transparent ceramics. This method synchronizes external mechanical forces with intrinsic material creep and stress relaxation, enabling the single-step fabrication of complex-shaped, high-performance transparent components. force-driven sintering establishes a scalable and versatile manufacturing paradigm for transparent ceramics in demanding applications.
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