Congratulations to Yaxiang Sun for his paper Densification and property optimization of BaTiO3 piezoelectric ceramics fabricated by digital light processing with sintering aids has been published by Journal of Ceramics International
Publishing Time:2026-09-15



Ceramics International

Keywords: BaTiO3 ,DLP 3D printing ,Sintering aids ,Wide-temperature-range sintering ,Performance optimization


BaTiO3 ceramics fabricated by conventional methods have been the primary focus of previous investigations. In contrast, the effects of different sintering aids on DLP-fabricated BaTiO3 ceramics were systematically investigated over a wide sintering-temperature range. A DLP fabrication route incorporating sintering aids was employed to overcome the limitations of conventional fabrication in producing complex-structured lead-free piezoelectric ceramics with tailored properties. BaTiO3 ceramics were fabricated using a high-solid-loading photosensitive slurry (85 wt%). Four independent compositions were prepared, each containing a single sintering aid (CuO, SiO2, TEOS, or Li2CO3). The printed samples were subsequently sintered at temperatures ranging from 1375 to 1475 C to establish clear processing–structure–property relationships. The results show that all sintering aids significantly influence densification behavior, microstructural evolution, and functional properties. Among them, TEOS-containing ceramics exhibit the most balanced overall performance, with optimal properties achieved within 1425–1450 C. The sample sintered at 1425 C shows the highest relative density (0.941) and dielectric constant (1904), while the maximum piezoelectric coefficient (d33 = 234 pC/N) is obtained at 1450 C. CuO addition leads to the highest piezoelectric response (d33 = 258.7 pC/N), but is accompanied by abnormal grain growth and reduced microstructural stability. In contrast, SiO2- and Li2CO3-containing samples exhibit comparatively lower overall performance due to less effective densification and microstructural development. Overall, a systematic comparative framework was established for evaluating the effects of different sintering aids on DLP-fabricated BaTiO3 ceramics. The combination of sintering-aid engineering and additive manufacturing offers an effective route for optimizing the microstructure and multifunctional performance of lead-free piezoelectric ceramics for energy harvesting and sensing applications.


Yaxiang Sun ,Peipei Wang ,Weikai Shi ,Xin Lan ,Yanju Liu ,Jinsong Leng



Densification and property optimization of BaTiO3 piezoelectric ceramics fabricated by digital light processing with sintering aids.pdf