Journal of the Chinese Ceramic Society, Volume. 51, Issue 3, 721(2023)
Effect of PrAlO3 on Mechanical Properties of Zirconia Toughened Alumina Bioceramics After Hydrothermal Aging
[1] [1] PRASAD K, BAZAKA O, CHUA M, et al. Metallic biomaterials: Current challenges and opportunities[J]. Materials, 2017, 10(8): 884-916.
[2] [2] KUMAR P, OKA M, IKEUCHI K, et al. Low wear rate of UHMWPE against zirconia ceramic (Y-PSZ) in comparison to alumina ceramic and SUS 316L alloy[J]. J Biomed Mater Res, 1991, 25(7): 813-828.
[3] [3] MNCH H, JACOBSEN S, OLESEN J, et al. The association between metal allergy, total knee arthroplasty, and revision study based on the danish knee arthroplasty register[J]. Acta Orthopaed, 2015, 86: 1-6.
[4] [4] HORIE S, TAKAHASHI Y, SHISHIDO T, et al. The aging micromechanisms of alumina matrix composite (AMC) used in total hip arthroplasty[J]. J Orthopaed Sci, 2017, 22(3): 524-530.
[5] [5] HU C Y, YOON T R. Recent updates for biomaterials used in total hip arthroplasty[J]. Biomat Res, 2018, 22: 33-44.
[6] [6] KOBAYASHI K, KUWAJIMA H, MASAKI T. Phase change and mechanical properties of ZrO2-Y2O3 solid electrolyte after ageing[J]. Solid State Ionics, 1981(3/4): 489-493.
[7] [7] PECHARROMN C, BARTOLOM J F, REQUENA J, et al. Percolative mechanism of aging in zirconia-containing ceramics for medical applications[J]. Adv Mater, 2003, 15(6): 507-511.
[9] [9] YASUOKA M, HIRAO K, BRITO M E, et al. High-strength and high-fracture-toughness ceramics in the Al2O3/LaAl11O18 systems[J]. J Am Ceram Soc, 1995, 78(7): 1853-1856.
[10] [10] KERN F. Effect of in situ-formed cerium hexaaluminate precipitates on properties of alumina-24 vol% zirconia (1.4Y) composites[J]. J Ceram Sci Technol, 2013(4): 177-186.
[11] [11] IYI N, INOUE Z, TAKEKAWA S, et al. The crystal structure of lanthanum hexaaluminate[J]. J Solid State Chem, 1984, 54(1): 70-77.
[12] [12] SARATH C, MONALISA M, CHOWDARY C V A, et al. Microstructure and mechanical behaviour of SrO doped Al2O3 ceramics[J]. Mater Sci Eng: A, 2019, 739: 186-192.
[13] [13] PEREIRA R S F, MOURA C G, HENRIQUES B, et al. Improvement of 3Y-TZP aging behavior by means of zirconia-based protective layers[J]. J Eur Ceram Soc, 2020, 40(12): 4315-4322.
[14] [14] CHEVALIER J, TADDEI P, GREMILLARD L, et al. Reliability assessment in advanced nanocomposite materials for orthopaedic applications[J]. J Mech Behav Biomed Mater, 2011, 4(3): 303-314.
[15] [15] LI X W, FAN X H, NI N, et al. Continuous alumina fiber-reinforced yttria-stabilized zirconia composites with high density and toughness[J]. J Eur Ceram Soc, 2020, 40(4): 1539-1548.
[16] [16] JANA P, JAYAN P S, MANDAL S, et al. Sintering and microstructural modification of seeded and neodymium doped lanthanum hexaaluminate[J]. Mater Sci Forum, 2016, 835: 237-250.
[17] [17] LIU L, TAKASU Y, ONDA T, et al. Influence of in-situ formed Ba-β-Al2O3 on mechanical properties and thermal shock resistance of ZTA/Ba-β-Al2O3 composites[J]. Ceram Inter, 2020, 46(3): 3738-3743.
[18] [18] CHEN Z C, NUGROHO S, EZUMI M, et al. In situ synthesis of alumina-matrix oxide/oxide composites by reactive sintering[J]. Mater Sci Eng: A, 2012, 557: 59-68.
[20] [20] SUN J B, WANG J S, HUANG W Z, et al. Influence of synthesis temperatures on the crystalline grain growth and morphology of lanthanum magnesium hexaaluminate[J]. J Rare Earths, 2017, 35(12): 1226-1232.
[21] [21] KUZMIN R, CHERKASOVA N, BATAEV A, et al. Strontium hexaaluminate formation in alumina and alumina-zirconia matrixes[J]. Ceram Inter, 2021, 47(5): 6854-6859.
[22] [22] CHERKASOVA N, VESELOV S, BATAEV A, et al. Structure and mechanical properties of ceramic materials based on alumina and zirconia with strontium hexaaluminate additives[J]. Mater Chem Phys, 2021, 259: 123938-123947.
[23] [23] ZHU R X, LIU Z G, OUYANG J H, et al. Preparation and characterization of LnMgAl11O19 (Ln=La, Nd, Gd) ceramic powders[J]. Ceram Inter, 2013, 39(8): 8841-8846.
[24] [24] ZHANG J F, ZHONG X H, CHENG Y L, et al. Thermal-shock resistance of LnMgAl11O19 (Ln=La, Nd, Sm, Gd) with magnetoplumbite structure[J]. J Alloys Compd, 2009, 482(1): 376-381.
[25] [25] JIANG B, FANG M H, HUANG Z H, et al. Mechanical and thermal properties of LaMgAl11O19[J]. Mater Res Bull, 2010, 45(10): 1506-1508.
[26] [26] SHARMA A, RANI A, SINGH A, et al. Synthesis of alumina powder by the urea-glycine-nitrate combustion process: a mixed fuel approach to nanoscale metal oxides[J]. Appl Nanosci, 2013, 4(3): 315-323.
[29] [29] HUANG M X, LV S C, ZHOU C R. Thermal decomposition kinetics of glycine in nitrogen atmosphere[J]. Thermochim Acta, 2013, 552: 60-64.
[30] [30] SUN J B, HUI Y, JIANG J N, et al. Crystallization mechanism of plasma-sprayed LaMgAl11O19 coating[J]. Appl Surface Sci, 2020, 504: 144509-144516.
[31] [31] CINIBULK M K. Hexaluminates as a cleavable fiber-matrix interphase: synthesis, texture development, and phase compatibility[J]. J Eur Ceram Soc, 2000, 20(5): 569-582.
[32] [32] GUO R, GUO D, CHEN Y, et al. In situ formation of LaAl11O18 rodlike particles in ZTA ceramics and effect on the mechanical properties[J]. Ceram Inter, 2002, 28(7): 699-704.
[34] [34] TORAYA H, YOSHIMURA M, SOMIYA S. Calibration curve for quantitative analysis of the monoclinic-tetragonal ZrO2 system by X-ray diffraction[J]. J Am Ceram Soc, 1984, 67(6): C-119-C-121.
[35] [35] LU H R, WANG C A, ZHANG C G, et al. Thermo-physical properties of rare-earth hexaaluminates LnMgAl11O19 (Ln: La, Pr, Nd, Sm, Eu and Gd) magnetoplumbite for advanced thermal barrier coatings[J]. J Eur Ceram Soc, 2015, 35(4): 1297-1306.
[36] [36] Bhushan L. Karihaloo. Contribution of t to m phase transformation to the toughening of ZTA[J]. J Am Ceram Soc, 1991, 74(7): 1703-1706.
[37] [37] Patrick M. Kelly, L.R. Francis Rose. The martensitic transformation in ceramics-its role in transformation toughening[J]. Prog Mater Sci, 2002, 47: 463-557.
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LI Weixin, BAI Mingmin, BAI Mingyu. Effect of PrAlO3 on Mechanical Properties of Zirconia Toughened Alumina Bioceramics After Hydrothermal Aging[J]. Journal of the Chinese Ceramic Society, 2023, 51(3): 721
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Received: Oct. 7, 2022
Accepted: --
Published Online: Apr. 10, 2023
The Author Email: Weixin LI (38058449@qq.com)
CSTR:32186.14.