J. Mater. Sci. Technol. ›› 2023, Vol. 138: 1-16.DOI: 10.1016/j.jmst.2022.06.039
Jinxing Suna,b, Daorong Yea,b, Ji Zouc, Xiaoteng Chena, Yue Wanga, Jinsi Yuana, Haowen Lianga, Hongqiao Qua, Jon Binnerb,*, Jiaming Baia,*
Received:
2022-05-17
Revised:
2022-06-13
Accepted:
2022-06-13
Published:
2023-03-01
Online:
2023-03-03
Contact:
* E-mail addresses: J.Binner@bham.ac.uk (J. Binner), baijm@sustech.edu.cn (J. Bai).
Jinxing Sun, Daorong Ye, Ji Zou, Xiaoteng Chen, Yue Wang, Jinsi Yuan, Haowen Liang, Hongqiao Qu, Jon Binner, Jiaming Bai. A review on additive manufacturing of ceramic matrix composites[J]. J. Mater. Sci. Technol., 2023, 138: 1-16.
[1] J. Binner, M. Porter, B. Baker, J. Zou, V. Venkatachalam, V.R. Diaz, A. D’Angio, P. Ramanujam, T.L. Zhang, T.S.R.C. Murthy, Int. Mater. Rev. 65 (2019) 389-4 4 4. [2] F. Bouville, E. Maire, S. Meille, B. Van De Moortèle, A.J. Stevenson, S. Deville, Nat. Mater. 13 (2014) 508-514. [3] E. Feilden, C. Ferraro, Q. Zhang, E. García-Tuñón, E. D’Elia, F. Giuliani, L. Van-deperre, E.Saiz, Sci. Rep. 7 (2017) 13759. [4] H.M. Bian, Y. Yang, Y. Wang, W. Tian, H.F. Jiang, Z.J. Hu, W.M. Yu, J. Mater. Sci.Technol. 29 (2013) 429-433. [5] A.R. Bunsell, A. Kelly, Composite Materials, Butterworth-Heinemann, Oxford, 1985. [6] R. Naslain, A. Guette, F. Rebillat, R. Pailler, F. Langlais, X. Bourrat, J. Solid State Chem. 177 (2004) 449-456. [7] S.F. Tang, C.L. Hu, J. Mater. Sci.Technol. 33 (2017) 117-130. [8] S.W. Fan, C. Yang, L.Y. He, Y. Du, W. Krenkel, P. Greil, N. Travitzky, Rev. Adv. Mater. Sci. 44 (2016) 313-325. [9] G.P. Zheng, X.W. Yin, J. Wang, M.L. Guo, X. Wang, J. Mater. Sci.Technol. 28 (2012) 745-750. [10] Sommers, Q. Wang, X. Han, C. T’Joen, Y. Park, A. Jacobi, Appl.Therm. Eng. 30 (2010) 1277-1291. [11] C.E. Smith, G.N. Morscher, Z.H. Xia, Scr. Mater. 59 (2008) 463-466. [12] E. Pietrzykowska, M. Małysa, A. Chodara, B. Romelczyk-Baishya, K. Szl ˛azak, W. ´Swi ˛eszkowski, Z. Pakieła, W. Lojkowski, Mater. Lett. 293 (2021) 129672. [13] T. Moritz, S. Maleksaeedi, Ox-ford, 2018. [14] N.H. Chen, C.L. He, S.P. Pang, J. Mater. Sci.Technol. 127 (2022) 29-47. [15] K.Q. Zhang, Q.Y. Meng, X.Q. Zhang, Z.L. Qu, R.J. He, J. Mater. Sci.Technol. 118 (2022) 144-157. [16] Y. Yang, X.J. Li, M. Chu, H.F. Sun, J. Jin, K.H. Yu, Q.M. Wang, Q.F. Zhou, Y. Chen, Sci. Adv. 5 (2019) eaau9490. [17] X.Q. Zhang, K.Q. Zhang, L. Zhang, W.Q. Wang, Y. Li, R.J. He, Mater. Des. 215 (2022) 110470. [18] X.B. Zhou, L. Jing, Y.D. Kwon, J.Y. Kim, Z.R. Huang, D.H. Yoon, J. Lee, Q. Huang, J. Adv. Ceram. 9 (2020) 462-470. [19] L.Y. Duan, L. Luo, L.P. Liu, Y.G. Wang, J. Adv. Ceram. 9 (2020) 393-402. [20] Y. Lakhdar, C. Tuck, J. Binner, A. Terry, R. Goodridge, Prog. Mater. Sci. 116 (2021) 100736. [21] M. Pelanconi, M. Barbato, S. Zavattoni, G.L. Vignoles, A. Ortona, Mater. Des. 163 (2019) 107539. [22] D. Mahmoud, M. Elbestawi, J. Manuf. Mater.Process. 1 (2017) 13. [23] J. Raynaud, V. Pateloup, M. Bernard, D. Gourdonnaud, D. Passerieux, D. Cros, V. Madrangeas, T. Chartier, J. Eur. Ceram.Soc. 40 (2020) 759-767. [24] Z. Quan, A. Wu, M. Keefe, X. Qin, J. Yu, J. Suhr, J.H. Byun, B.S. Kim, T.W. Chou, Mater. Today 18 (2015) 503-512. [25] C. Paredes, F.J.Martínez-Vázquez, A.Pajares, P. Miranda, Ceram. Int. 47 (2021) 17726-17735. [26] Z.W. Chen, Z.Y. Li, J.J. Li, C.B. Liu, C.S. Lao, Y.L. Fu, C.Y. Liu, Y. Li, P. Wang, Y. He, J. Eur. Ceram.Soc. 39 (2019) 661-687. [27] G. Liu, X.F. Zhang, X.L. Chen, Y.H. He, L.Z. Cheng, M.K. Huo, J.N. Yin, F.Q. Hao, S.Y. Chen, P.Y. Wang, S.H. Yi, L. Wan, Z.Y. Mao, Z. Chen, X. Wang, Z.W.B.Cao, J. Lu, Mater. Sci. Eng. R-Rep. 145 (2021) 100596. [28] S. Zakeri, M. Vippola, E. Levänen, Addit. Manuf. 35 (2020) 101177. [29] A.N. Chen, J.M. Wu, K. Liu, J.Y. Chen, H. Xiao, P. Chen, C.H. Li, Y.S. Shi, Adv. Appl. Ceram. 117 (2018) 100-117. [30] B. Dermeik, N. Travitzky, Adv. Eng. Mater. 22 (2020) 20 0 0256. [31] X.Y. Lv, F. Ye, L.F. Cheng, S.W. Fan, Y.S. Liu, Ceram. Int. 45 (2019) 12609-12624. [32] B. Derby, Engineering 1 (2015) 113-123. [33] Y.B. Hu, W.L. Cong, Ceram. Int. 44 (2018) 20599-20612. [34] E. Peng, D.W. Zhang, J. Ding, Adv. Mater. 30 (2018) 1802404. [35] L. Chong, S. Ramakrishna, S. Singh, Int. J. Adv. Manuf. Technol. 95 (2017) 2281-2300. [36] J.X. Sun, J. Binner, J.M. Bai, J. Eur. Ceram.Soc. 40 (2018) 5837-5844. [37] X.Q. Zhang, K.Q. Zhang, B. Zhang, Y. Li, R.J. He, Virtual Phys. Prototyp. 17 (2022) 528-542. [38] J.G. Li, X.L. An, J.J. Liang, Y.Z. Zhou, X.F. Sun, J. Mater. Sci.Technol. 117 (2022) 79-98. [39] J.X. Sun, X.T. Chen, J. Wade-Zhu, J. Binner, J.M. Bai, Addit. Manuf. 43 (2021) 101994. [40] W. Wang, J.X. Sun, B.B. Guo, X.T. Chen, K.P. Ananth, J.M. Bai, J. Eur. Ceram.Soc. 40 (2020) 6 82-6 88. [41] X.W. Wen, B.Y. Zhang, W.P. Wang, F. Ye, S. Yue, H. Guo, G.H. Gao, Y.S. Zhao, Q.Y. Fang, C. Nguyen, X. Zhang, J.M. Bao, J.T. Robinson, P.M. Ajayan, J. Lou, Nat. Mater. 20 (2021) 1506-1511. [42] X.T. Chen, J.X. Sun, B.B. Guo, Y. Wang, S.X. Yu, W. Wang, J.M. Bai, Ceram. Int. 48 (2021) 1285-1292. [43] Q.F. Zeng, C.H. Yang, D.Y. Tang, J.Y. Li, Z.Q. Feng, J.T. Liu, K. Guan, J. Mater. Sci.Technol. 35 (2019) 2751-2755. [44] I. UIIah, L. Cao, W. Cui, Q. Xu, R. Yang, K.L. Tang, X. Zhang, J. Mater. Sci.Tech-nol. 88 (2021) 99-108. [45] A.M. Waetjen, D.A. Polsakiewicz, I. Kuhl, R. Telle, H. Fischer, J. Eur. Ceram. Soc. 29 (2009) 1-6. [46] K. Shahzad, J. Deckers, J.P. Kruth, J. Vleugels, J. Mater. Process.Technol. 213 (2013) 1484-1494. [47] C.J. Shuai, C.D. Gao, P. Feng, S.P. Peng, RSC Adv. 4 (2014) 12782-12788. [48] S.S. Liu, M. Li, J.M. Wu, A.N. Chen, Y.S. Shi, C.H. Li, Ceram. Int. 46 (2020) 4240-4247. [49] B.N. Chang, P. Parandoush, X.M. Li, S.L. Ruan, C.Y. Shen, R.A. Behnagh, Y. Liu, D. Lin, Polym. Compos. 41 (2020) 4706-4715. [50] C.A. Diaz-Moreno, C. Rodarte, S. Ambriz, D. Bermudez, D. Roberson, C. Ter-razas, D. Espalin, R. Ferguson, E. Shafirovich, Y. Lin, R.B. Wicker, Proceeding of the 29th Solid Freeform Fabrication Symposium, 2018 August. [51] S. Nachum, J. Vogt, F. Raether, C.F.I. Ceram, Forum Int 93 (2016) 27-33. [52] M. Ziaee, N.B. Crane, Addit. Manuf. 28 (2019) 781-801. [53] W. Du, X. Ren, C. Ma, Z. Pei, in: Proceedings of the ASME International Me-chanical Engineering Congress and Exposition, Florida, USA, 2017 November 03-09. [54] B. Derby, Engineering 1 (2015) 113-123. [55] Z.W. Chen, N. Brandon, Ceram. Int. 42 (2016) 8316-8324. [56] J. Ebert, E. Özkol, A. Zeichner, K. Uibel, Ö. Weiss, U. Koops, R. Telle, H. Fischer, J. Dent. Res. 88 (2009) 673-676. [57] O. Noshchenko, D. Kuscer, O.C. Mocioiu, M. Zaharescu, M. Bele, B. Mali ˇc, J. Eur. Ceram.Soc. 34 (2014) 297-305. [58] M. Mott, J.R.G.Evans, J. Am. Ceram. Soc. 84 (2001) 307-313. [59] B. Cappi, E. Özkol, J. Ebert, R. Telle, J. Eur. Ceram.Soc. 28 (2008) 2625-2628. [60] P. Gingter, A.M. Wätjen, M. Kramer, R. Telle, J. Ceram. Sci.Technol. 6 (2015) 119-124. [61] B. Derby, J. Eur. Ceram.Soc. 31 (2011) 2453-2550. [62] E. Marin, M. Zanocco, F. Boschetto, M. Santini, W. Zhu, T. Adachi, E. Ohgitani, B.J.McEntire, B.S. Bal, G. Pezzotti, Mater. Des. 191 (2020) 108649. [63] F.Y. Niu, D.J. Wu, F. Lu, G. Liu, G.Y. Ma, Z.Y. Jia, Ceram. Int. 44 (2018) 14303-14310. [64] W. Li, M. Soshi, Mater. Lett. 251 (2019) 8-12. [65] H.F. Liu, H.J. Su, Z.L. Shen, D. Zhao, Y. Liu, Y.N. Guo, M. Guo, J. Zhang, L. Liu, H.Z. Fu, J. Mater. Sci.Technol. 85 (2021) 218-223. [66] W.D. Zhu, Q.B. Liu, M. Zheng, X.D. Wang, J. Biomed. Mater. Res. Part A 87A (2008) 429-433. [67] D. Gill, J. Smugeresky, C. Atwood, SANDIA Report (2006). [68] S.A. Bernard, V.K. Balla, S. Bose, A. Bandyopadhyay, Mater. Sci. Eng. B Solid State Mater.Adv. Technol. 172 (2010) 85-88. [69] G. Pierin, C. Grotta, P. Colombo, C. Mattevi, J. Eur. Ceram.Soc. 36 (2016) 1589-1594. [70] L. Rueschhoff, W. Costakis, M. Michie, J. Youngblood, R. Trice, Int. J. Appl. Ce-ram.Technol. 13 (2016) 821-830. [71] F.J.Martínez-Vázquez, F.H. Perera, P. Miranda, A. Pajares, F. Guiberteau, Acta Biomater. 6 (2010) 4361-4368. [72] L.J. Tan, W. Zhu, K. Zhou, Adv. Funct. Mater. 30 (2020) 2003062. [73] T. Russell, B. Heller, D.A. Jack, D.E. Smith, J. Compos. Sci. 2 (2018) 26. [74] B.P. Croom, A. Abbott, J.W. Kemp, L. Rueschhoff, L. Smieska, A. Woll, S. Stoupin, H. Koerner, Addit. Manuf. 37 (2021) 101701. [75] Z. Zhu, V.G. Dhokia, A. Nassehi, S.T. Newman, Int. J. Comput. Integr. Manuf. 26 (2013) 596-615. [76] A. Bandyopadhyay, B. Heer, Mater. Sci. Eng. R Rep. 129 (2018) 1-16. [77] X. Peng, X. Kuang, D.J. Roach, Y. Wang, C.M. Hamel, C. Lu, H.J. Qi, Addit. Manuf. 40 (2021) 101911. [78] R. Naslain, Adv. Compos. Mater. 8 (1999) 3-16. [79] L.M. Rueschhoff, C.M. Carney, Z.D. Apostolov, M.K. Cinibulk, Int. J. Ceram. Eng. Sci. 2 (2020) 22-37. [80] Q.S. Li, Y.J. Zhang, H.Y. Gong, H.B. Sun, W.J. Li, L. Ma, Y.S. Zhang, J. Mater. Sci.Technol. 32 (2016) 633-638. [81] M.C.C. de Sá e B. de Moraes, C.N. Elias, J. Duailibi Filho, L.G. de Oliveira, Mater. Res. 7 (2004) 643-649. [82] A.H. De Aza, J. Chevalier, G. Fantozzi, M. Schehl, R. Torrecillas, Biomaterials 23 (2002) 937-945. [83] T. Zheng, W. Wang, J.F. Sun, J.F. Liu, J.J. Bai, Ceram. Int. 46 (2020) 25424-25429. [84] H.D. Wu, W. Liu, R.X. He, Z.W. Wu, Q.G. Jiang, X. Song, Y. Chen, L.X. Cheng, S.H. Wu, Ceram. Int. 43 (2017) 968-972. [85] J.C. Zhang, D. Huang, S.F. Liu, X.M. Dong, Y.H. Li, H.W. Zhang, Z.J. Yang, Q.S. Su, W.H. Huang, W.X. Zheng, W.Y. Zhou, Mater. Sci. Eng. C 105 (2019) 110054. [86] A.M. Stanciuc, C.M. Sprecher, J. Adrien, L.I. Roiban, M. Alini, L. Gremillard, M. Peroglio, J. Eur. Ceram.Soc. 38 (2018) 845-853. [87] Y.B. Hu, F.D. Ning, W.L. Cong, Y.C. Li, X.L. Wang, H. Wang, Ceram. Int. 44 (2018) 2752-2760. [88] H.D. Wu, Y.L. Cheng, W. Liu, R.X. He, M.P. Zhou, S.H. Wu, X. Song, Y. Chen, Ceram. Int. 42 (2016) 17290-17294. [89] M.S. Li, W.W. Liu, J.B. Nie, C.Y. Wang, W.L. Li, Z.W. Xing, J. Mater. Sci. 56 (2021) 2887-2899. [90] J.M. Pappas, A.R. Thakur, X. Dong, Mater. Des. 192 (2020) 108711. [91] J. Schlacher, A.K. Hofer, S. Geier, I. Kraleva, R. Papšík, M. Schwentenwein, R. Bermejo, Open Ceram 5 (2021) 10 0 082. [92] H.D. Wu, W. Liu, L.F. Lin, L. Li, Y.H. Li, Z. Tian, Z. Zhao, X.R. Ji, Z.P. Xie, S.H. Wu, J. Mater. Sci. 54 (2019) 7447-7459. [93] E. Schwarzer, S. Holtzhausen, U. Scheithauer, C. Ortmann, T. Oberbach, T. Moritz, A. Michaelis, J. Eur. Ceram.Soc. 39 (2019) 522-530. [94] M. Borlaf, N. Szubra, A. Serra-Capdevila, W.W. Kubiak, T. Graule, J. Eur. Ceram.Soc. 40 (2020) 1574-1581. [95] F. Verga, M. Borlaf, L. Conti, K. Florio, M. Vetterli, T. Graule, M. Schmid, K. We-gener, Addit.Manuf. 31 (2020) 100959. [96] R. Sindelar, P. Buhler, F. Niebling, A. Otto, P. Greil, in: Proceedings of the Solid Freeform Fabrication Symposium, 2002, pp. 133-141. US. [97] S.Y. Tang, L. Yang, X.W. Liu, G.J. Li, W.M. Jiang, Z.T. Fan, J. Eur. Ceram.Soc. 40 (2020) 5758-5766. [98] H.F. Shao, A. Liu, X.R. Ke, M. Sun, Y. He, X.Y. Yang, J.Z. Fu, L. Zhang, G.J. Yang, Y.M. Liu, S.Z. Xu, Z.R. Gou, J. Mater. Chem. B 5 (2017) 2941-2951. [99] A. Li, A.S. Thornton, B. Deuser, J.L. Watts, M.C. Leu, G.E. Hilmas, R.G. Landers, in: Proceedings of the 23rd Annual International Solid Freeform Fabrication Symposium-An Additive Manufacturing Conference, Austin, Texas, 2012. [100] H.Y. Xing, B. Zou, X.Y. Liu, X.F. Wang, Q.H. Chen, X.S. Fu, Y.S. Li, Powder Tech-nol. 359 (2020) 314-322. [101] B. Cappi, J. Ebert, R. Telle, J. Am. Ceram.Soc. 94 (2011) 218-223. [102] J.J. Xie, X.Y. Yang, H.F. Shao, J. Ye, Y. He, J.Z. Fu, C.Y. Gao, Z.R. Gou, J. Mech. Behav.Biomed. Mater. 54 (2016) 60-71. [103] H. Sahasrabudhe, A. Bandyopadhyay, JOM 68 (2016) 822-830. [104] X.D. Sun, H.G. Zhu, J.L. Li, J.W. Huang, Z.H. Xie, Mater. Chem. Phys. 220 (2018) 449-459. [105] A. Nevarez-Rascon, A.Aguilar-Elguezabal, E. Orrantia, M.H. Bocanegra-Bernal, Int. J. Refract. Met. Hard Mater. 29 (2011) 333-340. [106] V.A.Nebol’sin, A.A.Shchetinin, A.A. Dolgachev, V.V. Korneeva, Inorg. Mater. 41 (2005) 1256-1259. [107] Y. Mizuhara, M. Noguchi, T. Ishihara, Y. Takita, J. Am. Ceram.Soc. 78 (1995) 109-113. [108] M.K. Surappa, Sadhana 28 (2003) 319-334. [109] A.F. Gualtieri, Mineral Fibre-Based Building Materials and Their Health Haz-ards, Woodhead Publishing Limited, Cambridge, 2012. [110] S.A. Brinckmann, N. Patra, J. Yao, T.H. Ware, C.P. Frick, R.S. Fertig, Adv. Eng. Mater. 20 (2018) 1800593. [111] H.W. Xiong, L.Z. Zhao, H.H. Chen, X.F. Wang, K.C. Zhou, D. Zhang, J. Alloy. Compd. 809 (2019) 151824. [112] X.Y. Lv, F. Ye, L.F. Cheng, S.W. Fan, Y.S. Liu, J. Eur. Ceram.Soc. 39 (2019) 3380-3386. [113] J.H. Yang, R. Yu, X.P. Li, Y. He, L. Wang, W. Huang, J. Jiao, Ceram. Int. 47 (2021) 18314-18322. [114] S. Li, Y.B. Zhang, T. Zhao, W.J. Han, W.Y. Duan, L. Wang, R. Dou, G. Wang, RSC Adv. 10 (2020) 56 81-56 89. [115] H.W. Xiong, H.H. Chen, L.Z. Zhao, Y.J. Huang, K.C. Zhou, D. Zhang, J. Eur.Ce-ram. Soc. 39 (2019) 2648-2657. [116] Q. Zhu, X. Dong, J.B. Hu, J.S. Yang, X.Y. Zhang, Y.S. Ding, S.M. Dong, Ceram. Int. 46 (2020) 6978-6983. [117] P. Feng, P.P. Wei, P.J. Li, C.D. Gao, C.J. Shuai, S.P. Peng, Mater. Charact. 97 (2014) 47-56. [118] C.J. Shuai, Y.Y. Cao, C.D. Gao, P. Feng, T. Xiao, S.P. Peng, Biomed. Res. Int. 2015 (2015) 379294. [119] C.J. Shuai, J.J. Deng, C.D. Gao, P. Feng, S.P. Peng, T. Xiao, Y.W. Deng, J. Alloy. Compd. 636 (2015) 341-347. [120] Q.G. Fu, P. Zhang, L. Zhuang, L. Zhou, J.P. Zhang, J. Wang, X.H. Hou, R. Riedel, H.J. Li, J. Mater. Sci.Technol. 96 (2021) 31-68. [121] M. Meyyappan, D. Srivastava, in: W.A. Goddard, D.W. Brenner, S.E. Lyshevski, G.J. Iafrate, Handbook of Nanoscience, Engineering, and Technology, CRC Press, Boca Raton, 2002. [122] I.A. Kinloch, J. Suhr, J. Lou, R.J. Young, P.M. Ajayan, Science 362 (2018) 547-553. [123] G.D. Zhan, J.D. Kuntz, A.K. Mukherjee, P. Zhu, K. Koumoto, Scr. Mater. 54 (2006) 77-82. [124] S. Dul, B.J.A.Gutierrez, A. Pegoretti, J.Alvarez-Quintana, L. Fambri, J. Mater. Sci. Technol. 121 (2022) 52-66. [125] H.S. Ma, C. Feng, J. Chang, C.T. Wu, Acta Biomater. 79 (2018) 37-59. [126] L. Gao, L.Q. Jiang, J. Sun, J. Electroceram. 17 (2006) 51-55. [127] J. Xiao, D.Q. Liu, H.F. Cheng, Y. Jia, S. Zhou, M. Zu, Ceram. Int. 46 (2020) 19393-19400. [128] C. Liu, J.J. Ding, Procedia Manuf. 48 (2020) 763-769. [129] C.J. Shuai, T.T. Liu, C.D. Gao, P. Feng, S.P. Peng, Int. J. Mol. Sci. 15 (2014) 19319-19329. [130] J.L. Liu, C.D. Gao, P. Feng, T. Xiao, C. J.Shuai, S.P. Peng, J. Ceram. Soc.Jpn. 123 (2015) 4 85-4 91. [131] L.L. Lin, Y.Y. Shen, J.F. Zhang, M.L. Fang, J. Shanghai Univ. 13 (2009) 349-351. [132] F.W. Qi, N. Chen, Q. Wang, Mater. Des. 143 (2018) 72-80. [133] B. Román-Manso, F.M. Figueiredo, B. Achiaga, R. Barea, D. Pérez-Coll, A. Morelos-Gómez, M. Terrones, M.I. Osendi, M. Belmonte, P. Miranzo, Carbon 100 (2016) 318-328 N Y. [134] J. Zhong, G.X. Zhou, P.G. He, Z.H. Yang, D.C. Jia, Carbon 117 (2017) 421-426 N Y. [135] S. Eqtesadi, A. Motealleh, R. Wendelbo, A.L. Ortiz, P. Miranda, J. Eur. Ceram.Soc. 37 (2017) 3695-3704. [136] A. Motealleh, S. Eqtesadi, F.H. Perera, A.L. Ortiz, P. Miranda, A. Pajares, R. Wen-delbo, J.Mech. Behav. Biomed. Mater. 97 (2019) 108-116. [137] Q.L. Sun, J.L. Liu, H. Cheng, Y. Mou, J.X. Liu, Y. Peng, M.X. Chen, Ceram. Int. 45 (2019) 18972-18979. [138] A. Azhari, E. Toyserkani, C. Villain, Int. J. Appl. Ceram. Technol. 12 (2015) 8-17. [139] Y.P. Jin, N. Chen, Y.J. Li, Q. Wang, RSC Adv. 10 (2020) 20405-20413. [140] X. You, J.S. Yang, K. Huang, M.M. Wang, X.Y. Zhang, S.M. Dong, Carbon 155 (2019) 215-222 N Y. [141] C.J. Shuai, P. Feng, P. Wu, Y. Liu, X.Y. Liu, D. Lai, C.D. Gao, S.P. Peng, Chem. Eng. J. 313 (2017) 4 87-4 97. [142] Y. Li, Z.Y. Feng, L.J. Huang, K. Essa, E. Bilotti, H. Zhang, T. Peijs, L. Hao, Compos. Part A Appl. Sci. Manuf. 124 (2019) 105483. [143] A. Nieto, A.Bisht, D. Lahiri, C. Zhang, A. Agarwal, Int. Mater. Rev. 62 (2017) 241-302. [144] X.H. Zhang, B.H. Du, P. Hu, Y. Cheng, J.C. Han, J. Mater. Sci.Technol. 102 (2022) 137-158. [145] H. Porwal, S. Grasso, M.J. Reece, Adv. Appl. Ceram. 112 (2013) 443-454. [146] I. Ahmad, B. Yazdani, Y.Q. Zhu, Nanomaterials 5 (2014) 90-114. [147] B. Román-Manso, Y. Chevillotte, M.I. Osendi, M. Belmonte, P. Miranzo, J. Eur. Ceram.Soc. 36 (2016) 3987-3993. [148] H.Y. Xia, X. Zhang, Z.Q. Shi, C.J. Zhao, Y.F. Li, J.P. Wang, G.J. Qiao, Mater. Sci. Eng. A 639 (2015) 29-36. [149] B. Román-Manso, J.J. Moyano, D. Pérez-Coll, M. Belmonte, P. Miranzo, M.I.Os-endi, J.Eur. Ceram. Soc. 38 (2018) 2265-2271. [150] C.R. Tubío, A. Rama, M. Gómez, F. del Río, F.Guitián, A. Gil, Ceram. Int. 44 (2018) 5760-5767. [151] W.W. Xiao, N. Ni, X.H. Fan, X.F. Zhao, Y.Z. Liu, P. Xiao, J. Mater. Sci.Technol. 60 (2021) 70-76. [152] C.D. Gao, P. Feng, S.P. Peng, C.J. Shuai, Acta Biomater. 61 (2017) 1-20. [153] J. Pusch, B. Wohlmann, Inorganic and Composite Fibers Production, Proper-ties, and Applications B. Mahltig, Y. Kyosev, Woodhead Publishing, Cambridge, 2018. [154] W. Zheng, J.M. Wu, S. Chen, K.B. Yu, J. Zhang, Y.S. Shi, J. Mater. Sci.Technol. 116 (2022) 161-168. [155] L. Pienti, D. Sciti, L. Silvestroni, S. Guicciardi, Materials 6 (2013) 1980-1993 (Basel). [156] S. Nekahi, F. Sadegh Moghanlou, M. Vajdi, Z. Ahmadi, A. Motallebzadeh, M. Shahedi Asl, Int. J. Refract. Met. Hard Mater. 82 (2019) 129-135. [157] J.H. Li, Y. Durandet, X.D. Huang, G.Y. Sun, D. Ruan, J. Mater. Sci.Technol. 119 (2022) 219-244. [158] L. Silvestroni, D. Sciti, C. Melandri, S. Guicciardi, J. Eur. Ceram.Soc. 30 (2010) 2155-2164. [159] F.Y. Yang, X.H. Zhang, J.C. Han, S.Y. Du, Mater. Lett. 62 (2008) 17-18. [160] H. Suemasu, A. Kondo, K. Itatani, A. Nozue, Compos. Sci. Technol. 61 (2001) 281-288. [161] Q. Yang, F. Wang, D.C. Li, Materials 13 (2020) 5398 (Basel). [162] Z.L. Lu, F. Lu, J.W. Cao, D.C. Li, Mater. Manuf. Process. 29 (2014) 201-209. [163] H. Zhang, Y. Yang, K.H. Hu, B. Liu, M. Liu, Z.R. Huang, Addit. Manuf. 34 (2020) 101199. [164] D.E. Yunus, R. He, W.T. Shi, O. Kaya, Y.L. Liu, Ceram. Int. 43 (2017) 11766-11772. [165] W.Q. Wang, X.J. Bai, L. Zhang, S.K. Jing, C.J. Shen, R.J. He, Ceram. Int. 48 (2021) 3895-3903. [166] Z. Lu, Y.L. Xia, K. Miao, S. Li, L.P. Zhu, H. Nan, J.W. Cao, D.C. Li, Ceram. Int. 45 (2019) 17262-17267. [167] Y.L. Xia, Z.L. Lu, J.W. Cao, K. Miao, J. Li, D.C. Li, Scr. Mater. 165 (2019) 84-88. [168] H. Zhang, Y. Yang, B. Liu, Z.R. Huang, Ceram. Int. 45 (2019) 10800-10804. [169] G. Franchin, L. Wahl, P. Colombo, J. Am. Ceram.Soc. 100 (2017) 4397-4401. [170] M.S.McClain, I.E. Gunduz, S.F. Son, Proc. Combust. Inst. 37 (2019) 3135-3142. [171] G. Franchin, H.S. Maden, L. Wahl, A. Baliello, M. Pasetto, P. Colombo, Materials 11 (2018) 1-14 (Basel). [172] J. Lu, D.W. Ni, C.J. Liao, H.J. Zhou, Y.L. Jiang, B.W. Chen, X.G. Zou, F.Y. Cai, Y.S. Ding, S.M. Dong, J. Adv. Ceram. 10 (2021) 1371-1380. [173] H. Fu, W. Zhu, Z.F. Xu, P. Chen, C.Z. Yan, K. Zhou, Y.S. Shi, J. Alloy. Compd. 792 (2019) 1045-1053. [174] Y. Zou, C.H. Li, Y. Tang, L. Hu, J.A. Liu, J.M. Wu, Y.S. Shi, J. Eur. Ceram.Soc. 40 (2020) 5186-5195. [175] W. Zhu, H. Fu, Z.F. Xu, R.Z. Liu, P. Jiang, X.Y. Shao, Y.S. Shi, C.Z. Yan, J. Eur. Ceram.Soc. 38 (2018) 4604-4613. [176] Y. Zou, C.H. Li, L. Hu, J.A. Liu, J.M. Wu, Y.S. Shi, Ceram. Int. 46 (2020) 12102-12110. [177] J.W. Kemp, A.A. Diaz, E.C. Malek, B.P. Croom, Z.D. Apostolov, S.R. Kalidindi, B.G. Compton, L.M. Rueschhoff, Addit. Manuf. 44 (2021) 102049. [178] I. Polozov, N. Razumov, D. Masaylo, A. Silin, Y. Lebedeva, A. Popovich, Materi-als 13 (2020) 2630 (Basel). [179] S. Guo, J. Eur. Ceram.Soc. 37 (2017) 5099-5104. [180] B. Baker, V. Rubio, P. Ramanujam, J. Binner, A. Hussain, T. Ackerman, P. Brown, I. Dautremont, J. Eur. Ceram.Soc. 39 (2019) 3927-3937. [181] S.F. Tang, J.Y. Deng, W.C. Liu, K. Yang, Carbon 44 (2006) 2877-2882 N Y. [182] D.A. Klosterman, R.P. Chartoff, N.R. Osborne, G.A. Graves, S. Rodrigues, D.A. Klosterman, R.P. Chartoff, N.R. Osborne, G.A. Graves, A. Lightman, G. Han, A. Bezeredi, S. Rodrigues, Rapid Prototyp. J. 5 (1999) 61-71. [183] H. Mei, Y.K. Yan, L.P. Feng, K.G. Dassios, H. Zhang, L.F. Cheng, J. Am. Ceram.Soc. 102 (2019) 3244-3255. [184] Z. Zhao, G.X. Zhou, Z.H. Yang, X.Q. Cao, D.C. Jia, Y. Zhou, J. Adv. Ceram. 9 (2020) 403-412. [185] U.G.K.Wegst, H. Bai, E.Saiz, A.P. Tomsia, R.O. Ritchie, Nat. Mater. 14 (2015) 23-26. [186] H.W. Zhao, L. Guo, Adv. Mater. 29 (2017) 1702903. [187] M. Grossman, F. Bouville, F. Erni, K. Masania, R. Libanori, A.R. Studart, Adv. Mater. 29 (2017) 1605039. [188] S.M. Sajadi, L. Vásárhelyi, R. Mousavi, A.H. Rahmati, Z. Kónya, Á. Kukovecz, T. Arif, T. Filleter, R. Vajtai, P. Boul, Z. Pang, T. Li, C.S. Tiwary, M.M. Rahman, P.M. Ajayan, Sci. Adv. 7 (2021) eabc5028. [189] G.Q. Tan, J. Zhang, L. Zheng, D. Jiao, Z.D. Liu, Z.F. Zhang, R.O. Ritchie, Adv. Mater. 31 (2019) 1904603. |
[1] | Seungkyun Yim, Kenta Aoyagi, Keiji Yanagihara, Huakang Bian, Akihiko Chiba. Effect of mechanical ball milling on the electrical and powder bed properties of gas-atomized Ti-48Al-2Cr-2Nb and elucidation of the smoke mechanism in the powder bed fusion electron beam melting process [J]. J. Mater. Sci. Technol., 2023, 137(0): 36-55. |
[2] | Yixiao Yang, Enwei Sun, Zhimin Xu, Huashan Zheng, Bin Yang, Rui Zhang, Wenwu Cao. Sm and Mn co-doped PMN-PT piezoelectric ceramics: Defect engineering strategy to achieve large d33 and high Qm [J]. J. Mater. Sci. Technol., 2023, 137(0): 143-151. |
[3] | Guangqi He, Yi Zhang, Pei Yao, Xingchao Li, Ke Ma, Jun Zuo, Meishuan Li, Changsheng Liu, Jingjun Xu. A novel medium-entropy (TiVNb)2AlC MAX phase: Fabrication, microstructure, and properties [J]. J. Mater. Sci. Technol., 2023, 137(0): 91-99. |
[4] | Yu Pan, Jinshan Zhang, Jianzhuo Sun, Yanjun Liu, Ce Zhang, Rui Li, Fan Kuang, Xinxin Wu, Xin Lu. Enhanced strength and ductility in a powder metallurgy Ti material by the oxygen scavenger of CaB6 [J]. J. Mater. Sci. Technol., 2023, 137(0): 132-142. |
[5] | F. Wang, L.M. Lei, X. Fu, L. Shi, X.M. Luo, Z.M. Song, G.P. Zhang. Toward developing Ti alloys with high fatigue crack growth resistance by additive manufacturing [J]. J. Mater. Sci. Technol., 2023, 132(0): 166-178. |
[6] | D.D. Zhang, J. Kuang, H. Xue, J.Y. Zhang, G. Liu, J. Sun. A strong and ductile NiCoCr-based medium-entropy alloy strengthened by coherent nanoparticles with superb thermal-stability [J]. J. Mater. Sci. Technol., 2023, 132(0): 201-212. |
[7] | Zhang-Zhi Shi, Xiang-Min Li, Sheng-Lian Yao, Yun-Zhi Tang, Xiao-Jing Ji, Qiang Wang, Xi-Xian Gao, Lu-Ning Wang. 300 MPa grade biodegradable high-strength ductile low-alloy (BHSDLA) Zn-Mn-Mg alloys: An in vitro study [J]. J. Mater. Sci. Technol., 2023, 138(0): 233-244. |
[8] | Jing Peng, Jia Li, Bin Liu, Jian Wang, Haotian Chen, Hui Feng, Xin Zeng, Heng Duan, Yuankui Cao, Junyang He, Peter K. Liaw, Qihong Fang. Formation process and mechanical properties in selective laser melted multi-principal-element alloys [J]. J. Mater. Sci. Technol., 2023, 133(0): 12-22. |
[9] | Changshu He, Jingxun Wei, Ying Li, Zhiqiang Zhang, Ni Tian, Gaowu Qin, Liang Zuo. Improvement of microstructure and fatigue performance of wire-arc additive manufactured 4043 aluminum alloy assisted by interlayer friction stir processing [J]. J. Mater. Sci. Technol., 2023, 133(0): 183-194. |
[10] | Huan Liu, Hai Wang, Ling Ren, Dong Qiu, Ke Yang. Antibacterial copper-bearing titanium alloy prepared by laser powder bed fusion for superior mechanical performance [J]. J. Mater. Sci. Technol., 2023, 132(0): 100-109. |
[11] | Chaoyue Chen, Yingchun Xie, Shuo Yin, Wenya Li, Xiaotao Luo, Xinliang Xie, Ruixin Zhao, Chunming Deng, Jiang Wang, Hanlin Liao, Min Liu, Zhongming Ren. Ductile and high strength Cu fabricated by solid-state cold spray additive manufacturing [J]. J. Mater. Sci. Technol., 2023, 134(0): 234-243. |
[12] | Qiaolei Li, Tianci Chen, Jingjing Liang, Chaowei Zhang, Jinguo Li, Yizhou Zhou, Xiaofeng Sun. Manufacturing of ceramic cores: From hot injection to 3D printing [J]. J. Mater. Sci. Technol., 2023, 134(0): 95-105. |
[13] | Chun Liu, Ting Dai, Xiaoyu Wu, Jiayi Ma, Jun Liu, Siyu Wu, Lei Yang, Hongbin Zhao. 3D bioprinting of cell-laden nano-attapulgite/gelatin methacrylate composite hydrogel scaffolds for bone tissue repair [J]. J. Mater. Sci. Technol., 2023, 135(0): 111-125. |
[14] | Zhuang Li, Pengcheng Zhao, Tiwen Lu, Kai Feng, Yonggang Tong, Binhan Sun, Ning Yao, Yu Xie, Bolun Han, Xiancheng Zhang, Shantung Tu. Effects of post annealing on the microstructure, precipitation behavior, and mechanical property of a (CoCrNi)94Al3Ti3 medium-entropy alloy fabricated by laser powder bed fusion [J]. J. Mater. Sci. Technol., 2023, 135(0): 142-155. |
[15] | Bo Chen, Zhengjie Lin, Qimanguli Saiding, Yongcan Huang, Yi Sun, Xinyun Zhai, Ziyu Ning, Hai Liang, Wei Qiao, Binsheng Yu, Kelvin W.K. Yeung, Jie Shen. Enhancement of critical-sized bone defect regeneration by magnesium oxide-reinforced 3D scaffold with improved osteogenic and angiogenic properties [J]. J. Mater. Sci. Technol., 2023, 135(0): 186-198. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||