[1] SEBASTIAN T, KOZIELSKI L, ERHART J. Co-sintered PZT ceramics for the piezoelectric transformers[J]. Ceramics International, 2015, 41(8): 9321-9327. [2] BOWEN C R, KIM H A, WEAVER P M, et al. Piezoelectric and ferroelectric materials and structures for energy harvesting applications[J]. Energy Environ Sci, 2014, 7(1): 25-44. [3] 刘祥建, 陈仁文. 压电振动能量收集装置研究现状及发展趋势[J]. 振动与冲击, 2012, 31(16): 169-176. LIU X J, CHEN R W. Current situation and developing trend of piezoelectric vibration energy harvesters[J]. Journal of Vibration and Shock, 2012, 31(16): 169-176 (in Chinese). [4] GAO J H, XUE D Z, LIU W F, et al. Recent progress on BaTiO3-based piezoele-ctric ceramics for actuator applications[J]. Actuators, 2017, 6(3): 24. [5] WEI X X, LIU Y H, ZHAO D J, et al. 3D printing of piezoelectric Barium titanate with high density from milled powders[J]. Journal of the European Ceramic Society, 2020, 40(15): 5423-5430. [6] 刘文凤, 周 超, 高景辉, 等. 无铅压电陶瓷的研究进展[J]. 中国材料进展, 2016, 35(6): 423-428. LIU W F, ZHOU C, GAO J H, et al. Progress in lead-free piezoelectric ceramics[J]. Materials China, 2016, 35(6): 423-428 (in Chinese). [7] LAKHDAR Y, TUCK C, BINNER J, et al. Additive manufacturing of advanced ceramic materials[J]. Progress in Materials Science, 2021, 116: 100736. [8] WANG T T, LU X F, WANG A. A review: 3D printing of microwave absorption ceramics[J]. International Journal of Applied Ceramic Technology, 2020, 17(6): 2477-2491. [9] CHEN Z W, LI Z Y, LI J J, et al. 3D printing of ceramics: a review[J]. Journal of the European Ceramic Society, 2019, 39(4): 661-687. [10] 韩卓群, 李 伶, 刘时浩, 等. 光固化ZrO2陶瓷料浆的流变性能研究[J]. 硅酸盐通报, 2021, 40(6): 1965-1971. HAN Z Q, LI L, LIU S H, et al. Research on rheological properties of stereolithography ZrO2 ceramic slurry[J]. Bulletin of the Chinese Ceramic Society, 2021, 40(6): 1965-1971 (in Chinese). [11] 王 飞, 李 伶, 宋 涛, 等. 基于熔融沉积技术的多孔氮化硅陶瓷制备与烧结研究[J].现代技术陶瓷, 2023, 44(增刊1): 461-472. WANG F, LI L, SONG T, et al. Preparation and sintering of porous silicon nitride ceramics based on melt deposition technology[J]. Advanced Ceramics, 2023, 44(supplement 1): 461-472 (in Chinese). [12] LI K H, ZHAO Z. The effect of the surfactants on the formulation of UV-curable SLA alumina suspension[J]. Ceramics International, 2017, 43(6): 4761-4767. [13] LI S, DUAN W Y, ZHAO T, et al. The fabrication of SiBCN ceramic components from preceramic polymers by digital light processing (DLP) 3D printing technology[J]. Journal of the European Ceramic Society, 2018, 38(14): 4597-4603. [14] CUI X M, OUYANG S X, YU Z Y, et al. A study on green tapes for LOM with water-based tape casting processing[J]. Materials Letters, 2003, 57(7): 1300-1304. [15] FINA F, GOYANES A, GAISFORD S, et al. Selective laser sintering (SLS) 3D printing of medicines[J]. International Journal of Pharmaceutics, 2017, 529(1/2): 285-293. [16] GOYANES A, BUANZ A B M, BASIT A W, et al. Fused-filament 3D printing (3DP) for fabrication of tablets[J]. International Journal of Pharmaceutics, 2014, 476(1/2): 88-92. [17] CHEN W C, WANG F F, YAN K, et al. Micro-stereolithography of KNN-based lead-free piezoceramics[J]. Ceramics International, 2019, 45(4): 4880-4885. [18] ZENG Y S, JIANG L M, SUN Y Z, et al. 3D-printing piezoelectric composite with honeycomb structure for ultrasonic devices[J]. Micromachines, 2020, 11(8): 713. [19] CHENG J, CHEN Y, WU J W, et al. 3D printing of BaTiO3 piezoelectric ceramics for a focused ultrasonic array[J]. Sensors, 2019, 19(19): 4078. [20] MORENO R. Better ceramics through colloid chemistry[J]. Journal of the European Ceramic Society, 2020, 40(3): 559-587. [21] ZOU R F, BI L N, HUANG Y, et al. A biocompatible silicon nitride dental implant material prepared by digital light processing technology[J]. Journal of the Mechanical Behavior of Biomedical Materials, 2023, 141: 105756. [22] WU X Q, XU C J, ZHANG Z M. Preparation and optimization of Si3N4 ceramic slurry for low-cost LCD mask stereolithography[J]. Ceramics International, 2021, 47(7): 9400-9408. [23] QIU P, CHEN J Q, SUN W F, et al. Improved DC dielectric performance of photon-initiated crosslinking polyethylene with TMPTMA auxiliary agent[J]. Materials, 2019, 12(21): 3540. [24] 王亚宁, 张玉琪, 宋索成, 等. 氧化锆陶瓷扫描光固化成形与脱脂烧结工艺研究[J]. 无机材料学报, 2022, 37(3): 303-309. WANG Y N, ZHANG Y Q, SONG S C, et al. Laser stereolithography for zirconia ceramic fabrication and its debinding and sintering process[J]. Journal of Inorganic Materials, 2022, 37(3): 303-309 (in Chinese). [25] 朱俊逸, 张 成, 罗忠强, 等. 脱脂工艺对光固化3D打印堇青石陶瓷性能的影响[J]. 无机材料学报, 2022, 37(3): 317-324. ZHU J Y, ZHANG C, LUO Z Q, et al. Influence of debinding process on the properties of photopolymerization 3D printed cordierite ceramics[J]. Journal of Inorganic Materials, 2022, 37(3): 317-324 (in Chinese). [26] MA N, ZHANG B P, YANG W G, et al. Phase structure and nano-domain in high performance of BaTiO3 piezoelectric ceramics[J]. Journal of the European Ceramic Society, 2012, 32(5): 1059-1066. [27] CHEN Z Y, SONG X, LEI L W, et al. 3D printing of piezoelectric element for energy focusing and ultrasonic sensing[J]. Nano Energy, 2016, 27: 78-86. [28] SONG X, CHEN Z Y, LEI L W, et al. Piezoelectric component fabrication using projection-based stereolithography of barium titanate ceramic suspensions[J] Rapid Prototyping Journal, 2017, 23(1): 44-53. |