Electrophoretic Deposition of Nanocrystalline Calcium Phosphate Coating for Augmenting Bioactivity of Additively Manufactured Ti-6Al-4V
被引:0
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作者:
Muthaiah, V. M. Suntharavel
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机构:
Indian Inst Sci, Dept Mat Engn, Bangalore 560012, IndiaIndian Inst Sci, Dept Mat Engn, Bangalore 560012, India
Muthaiah, V. M. Suntharavel
[1
]
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Rajput, Monika
[1
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Tripathi, Ananya
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机构:
Indian Inst Sci, Dept Mat Engn, Bangalore 560012, IndiaIndian Inst Sci, Dept Mat Engn, Bangalore 560012, India
Tripathi, Ananya
[1
]
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Suwas, Satyam
[1
]
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Chatterjee, Kaushik
[1
]
机构:
[1] Indian Inst Sci, Dept Mat Engn, Bangalore 560012, India
来源:
ACS MATERIALS AU
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2021年
/
2卷
/
02期
关键词:
Ti-6Al-4V;
hydroxyapatite;
surface modification;
orthopedic biomaterials;
3D printing;
D O I:
暂无
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
Additive manufacturing(AM) is being widely explored for engineeringbiomedical implants. The microstructure and surface finish of additivelymanufactured parts are typically different from wrought parts andexhibit limited bioactivity despite the other advantages of usingAM for fabrication. The aim of this study was to enhance the bioactivityof selective laser melted Ti-6Al-4V alloy by electrophoretic depositionof nanohydroxyapatite (nanoHAp) coatings. The deposition parameterswere systematically investigated after the coatings were depositedon the as-manufactured surface or after polishing the surface of theadditively-manufactured sample. The surfaces were coated with nanoHApsuspended in either ethanol or butanol using different voltages (10,30, or 50 V) for varied deposition times. The formation of the nanoHApcoating was confirmed by Fourier-transform infrared spectroscopy andX-ray diffraction. Microstructural analysis revealed that severalconditions of the coating led to crack formation. The coated sampleswere subsequently heat-treated to improve the integrity of the coating.Heat treatment led to crack formation in several conditions due tothermal shrinkages. Coatings prepared using butanol were more uniformand had minimal cracks compared with the use of ethanol. Nanoindentationconfirmed good stability and integrity of the nanoHAP coatings onthe as-manufactured and polished surfaces. The coating on the as-manufacturedsample exhibited higher hardness and lower elastic modulus as comparedwith the coating on the polished sample. In vitro study revealed that the nanoHAp coating markedly enhanced the attachment,proliferation, and differentiation of preosteoblasts on the alloy.These results provide a viable route to enhancing the bioactivitythrough deposition of nanoHAp with important implications for engineeringadditively manufactured orthopedic and dental implants suitable forbetter clinical performance.
机构:
NASA, Mat & Proc Lab, Marshall Space Flight Ctr, Bldg 4601,Martin Rd, Huntsville, AL 35812 USANASA, Mat & Proc Lab, Marshall Space Flight Ctr, Bldg 4601,Martin Rd, Huntsville, AL 35812 USA
Roberts, Christopher
McGill, Preston
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机构:
NASA, Mat & Proc Lab, Marshall Space Flight Ctr, Bldg 4601,Martin Rd, Huntsville, AL 35812 USANASA, Mat & Proc Lab, Marshall Space Flight Ctr, Bldg 4601,Martin Rd, Huntsville, AL 35812 USA
McGill, Preston
Foreman, Larry
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机构:
NASA, Mat & Proc Lab, Marshall Space Flight Ctr, Bldg 4601,Martin Rd, Huntsville, AL 35812 USANASA, Mat & Proc Lab, Marshall Space Flight Ctr, Bldg 4601,Martin Rd, Huntsville, AL 35812 USA
Foreman, Larry
Roberts, Matthew
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机构:
NASA, Jacobs Engn, Marshall Space Flight Ctr, Bldg 4628,Centaur St, Huntsville, AL 35812 USANASA, Mat & Proc Lab, Marshall Space Flight Ctr, Bldg 4601,Martin Rd, Huntsville, AL 35812 USA
Roberts, Matthew
Rabenberg, Ellen
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机构:
NASA, Mat & Proc Lab, Marshall Space Flight Ctr, Bldg 4601,Martin Rd, Huntsville, AL 35812 USANASA, Mat & Proc Lab, Marshall Space Flight Ctr, Bldg 4601,Martin Rd, Huntsville, AL 35812 USA
Rabenberg, Ellen
Brown, Arthur
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机构:
NASA, Human Explorat Dev Chief Engineers Off, Marshall Space Flight Ctr, Bldg 4755,Tiros St, Huntsville, AL 35812 USANASA, Mat & Proc Lab, Marshall Space Flight Ctr, Bldg 4601,Martin Rd, Huntsville, AL 35812 USA