[1] TAN L, YU X, WAN P, et al. Biodegradable materials for bone repairs:A review[J]. Journal of Materials Science & Technology, 2013, 29(6):503-513. [2] MA B, HAN J, ZHANG S, et al. Hydroxyapatite nanobelt/polylactic acid Janus membrane with osteoinduction/barrier dual functions for precise bone defect repair[J]. Acta Biomaterialia, 2018, 71:108-117. [3] YIN M, ZHU X, CHEN F. Release performance and sustained-release efficacy of emamectin benzoate-loaded polylactic acid microspheres[J]. Journal of Integrative Agriculture, 2018, 17(3):640-647. [4] DEWEY M J, JOHNSON E M, WEISGERBER D W, et al. Shape-fitting collagen-PLA composite promotes osteogenic differentiation of porcine adipose stem cells[J]. Journal of the Mechanical Behavior of Biomedical Materials, 2019, 95:21-33. [5] MARTIN V, RIBEIRO I A, ALVES M M, et al. Engineering a multifunctional 3D-printed PLA-collagenminocycline-nanoHydroxyapatite scaffold with combined antimicrobial and osteogenic effects for bone regeneration[J]. Materials Science and Engineering:C, 2019, 101:15-26. [6] HAN C, WANG Q, SONG B, et al. Microstructure and property evolutions of titanium/nano-hydroxyapatite composites in-situ prepared by selective laser melting[J]. Journal of the Mechanical Behavior of Biomedical Materials, 2017, 71:85-94. [7] 盖立婷,徐高祥,张鲁鲁,等. 聚乳酸/羟基磷灰石(PLLA/HA)复合物预成乳前牙根管桩的生物相容性研究[J]. 口腔医学研究, 2015, 31(11):1073-1077. GAI Liting, XU Gaoxiang, ZHANG Lulu, et al. Biocompatibility study of polylactic acid/hydroxyapatite (PLLA/HA) composite pre-formed anterior root canal[J]. Journal of Oral Science, 2015, 31(11):1073-1077. [8] LAM C X F, MO X M, TEOH S H, et al. Scaffold development using 3D printing with a starch-based polymer[J]. Materials Science and Engineering:C, 2002, 20(1-2):49-56. [9] KOSKI C, ONUIKE B, BANDYOPADHYAY A, et al. Starch-hydroxyapatite composite bone scaffold fabrication utilizing a slurry extrusion-based solid freeform fabricator[J]. Additive Manufacturing, 2018, 24:47-59. [10] BOSE S, KE D, SAHASRABUDHE H, et al. Additive manufacturing of biomaterials[J]. Progress in Materials Science, 2018, 93:45-111. [11] OH D, KIM N. High viscose ink jetting by using nScrypt Head and application[C]//IEEE, 2009. [12] WAGNER M, O CONNELL C D, HARMAN D G, et al. Synthesis and optimization of PEDOT:PSS based ink for printing nanoarrays using dip-pen nanolithography[J]. Synthetic Metals, 2013, 181:64-71. [13] LEWIS J A, SMAY J E, STUECKER J, et al. Direct ink writing of three-dimensional ceramic structures[J]. Journal of the American Ceramic Society, 2006, 89(12):3599-3609. [14] NOMMEOTS-NOMM A, LEE P D, JONES J R. Direct ink writing of highly bioactive glasses[J]. Journal of the European Ceramic Society, 2018, 38(3):837-844. [15] CHEN H, WANG X, XUE F, et al. 3D printing of SiC ceramic:Direct ink writing with a solution of preceramic polymers[J]. Journal of the European Ceramic Society, 2018, 38(16):5294-5300. [16] ELSAYED H, REBESAN P, GIACOMELLO G, et al. Direct ink writing of porous titanium (Ti6Al4V) lattice structures[J]. Materials Science and Engineering:C, 2019, 103:109794. [17] BRANDLEY A, HOLLFELDER R, NESAEI S, et al. Direct-ink-writing of degradable carboxymethylcellulose[J]. Procedia Manufacturing, 2018, 26:993-1002. [18] WU T, JIANG P, ZHANG X, et al. Additively manufacturing high-performance bismaleimide architectures with ultraviolet-assisted direct ink writing[J]. Materials & Design, 2019, 180:107947. [19] 周婧,段国林,卢林,等. 陶瓷浆料微流挤压成形关键问题研究[J]. 中国机械工程, 2015, 26(22):3097-3102. ZHOU Wei, DUAN Guolin, LU Lin, et al. Research on key problems of micro-flow extrusion forming of ceramic slurry[J]. China Mechanical Engineering, 2015, 26(22):3097-3102. [20] 高颖俊, 靳向煜. 海藻酸钙纤维基本性能的研究与表征[J]. 东华大学学报, 2014, 40(6):734-738. GAO Yingjun, JIN Xiangyu. Research and characterization of basic properties of calcium alginate fiber[J]. Journal of Donghua University, 2014, 40(6):734-738. [21] CHEN P, WU H, ZHU W, et al. Investigation into the processability, recyclability and crystalline structure of selective laser sintered Polyamide 6 in comparison with polyamide 12[J]. Polymer Testing, 2018, 69:366-374. [22] 郝妮媛,刘阳,邹俊. 聚乳酸β晶型的研究进展[J]. 江苏科技大学学报, 2015, 29(1):38-45. HAO Niyuan, LIU Yang, ZOU Jun. Research progress of β-crystal form of polylactic acid[J]. Journal of Jiangsu University of Science and Technology, 2015, 29(1):38-45. [23] TANG S, YANG L, LI G, et al. 3D printing of highlyloaded slurries via layered extrusion forming:Parameters optimization and control[J]. Additive Manufacturing, 2019, 28:546-553. [24] CHEN A, WU J, XIAO H, et al. Rapid and uniform insitu solidification of alumina suspension via a noncontamination DCC-HVCI method using MgO sintering additive as coagulating agent[J]. Ceramics International, 2017, 43(13):9926-9933. [25] 刘云,张川,张传杰,等. 氧化淀粉的氧化度对其交联Alg/明胶互穿网络膜性能的影响[J]. 高分子学报, 2015(4):374-381. LIU Yun, ZHANG Chuan, ZHANG Chuanjie, et al. Effect of oxidation degree of oxidized starch on the properties of crosslinked Alg/gelatin interpenetrating network membranes[J]. Acta Polymerica Sinica, 2015(4):374-381. [26] 张纯,何力,于杰,等. 温度对微孔发泡PP和HDPE材料冲击性能的影响[J]. 高分子材料科学与工程, 2008(11):103-106. ZHANG Chun,HE Li,YU Jie,et al. Effect of temperature on impact properties of microcellular foamed PP and HDPE materials[J]. Polymer Science and Engineering, 2008(11):103-106. |