期刊论文详细信息
JOURNAL OF ALLOYS AND COMPOUNDS 卷:824
Microwave sintering of porous Ti-Nb-HA composite with high strength and enhanced bioactivity for implant applications
Article
Prakash, Chander1  Singh, Sunpreet2  Ramakrishna, Seeram3  Krolczyk, Grzegorz4  Le, Chi H.5 
[1] Lovely Profess Univ, Sch Mech Engn, Phagwara, Punjab, India
[2] Guru Nanak Dev Engn Coll, Prod Engn, Ludhiana, Punjab, India
[3] Natl Univ Singapore, Mech Engn, Singapore, Singapore
[4] Opole Univ, Fac Mech Engn, Dept Mfg Engn & Prod Automat, Opole, Poland
[5] Univ Greenwich, Fac Engn & Sci, London, England
关键词: Porous implant;    Titanium composite;    Hydroxyapatite;    Rapid microwave sintering;    Elastic modulus;    Compressive strength;   
DOI  :  10.1016/j.jallcom.2020.153774
来源: Elsevier
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【 摘 要 】

In the present study, high order porous Ti-Nb(50-x)-HA(x) (x = 0,10,20 wt %) composites have been fabricated for orthopedic application by using powder metallurgical route consisting temporary space alloying and rapid microwave sintering process. Structural porosity, elastic modulus, compressive strength, corrosion resistance, and in-vitro bioactivity of as-sintered Ti-Nb-HA composites were studied. Results showed that the reinforcement of the HA assists in the formation of structural porosity, which reduced the elastic modulus. Porous Ti-Nb (with HA 10-20% content) composite possessed 40-60% structural porosity with a pore size of 150-260 mu m and exhibited elastic modulus in the range of 12.5 - 29 GPa (near to human bone 8-20 GPa), which overcome the problem of stress shielding. The assintered composite not only possessed low elastic modulus but also exhibit high compressive strength (205-395 MPa). The alloying of HA improved the corrosion resistance and the protective efficiency of Ti - 40Nb-10HA and Ti-30Nb-20HA composites was measured 40% and 72%, respectively higher than the Ti - Nb composite. In-vitro biological evaluation tests confirmed that the developed composites are noncytotoxic and porous structure provides a vehicle for cell adhesion and growth. Moreover, various biocompatible phases such as Ca-3(PO4)(2) (known as TCP), Ti5P3 and CaO were developed, which helped in cell proliferation and differentiation. High biological activities were found on the Ti-30Nb-20HA composite have when compared with the Ti-Nb and Ti-40Nb-10HA composite and could be used as a potential biomaterial for the various possible orthopedic applications. (C) 2020 Elsevier B.V. All rights reserved.

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