J Mater Sci Technol ›› 2004, Vol. 20 ›› Issue (05): 627-630.

• Research Articles • Previous Articles     Next Articles

Hydroxyapatite-Bioglass-Titanium Biomaterials Used as Dense Bulk in Double-layer Biomimetic Composite

Jianpeng ZOU, Jianming RUAN, Baiyun HUANG, Jianben LIU, Zhigang ZHAO   

  1. State Key Laboratory for Powder Metallurgy, Central South University, Changsha 410083, China...
  • Received:1900-01-01 Revised:1900-01-01 Online:2004-09-28 Published:2009-10-10
  • Contact: Jianpeng ZOU

Abstract: Sintering shrinkage, compressive strength, bending strength, chemical composition and their relationships with microstructure of HA-Ti and HA-BG-Ti biomaterials were studied. The results show that sintering shrinkage curve of HA-BG-Ti composite changes just like S shape (23.1%-16.2%-21.8%-17.1%) with increase of Ti content, and sintering shrinkage of HA-BG-Ti composite is always higher than that of HA-Ti composite. The approach also indicates that compressive strength and bending strength of HA-BG-Ti composite are always higher than that of HA-Ti composite. Basically, with its compressive strength and bending strength equaling to 211.5 MPa and 132.1 MPa respectively, HA-10 vol. pct BG-60 vol. pct Ti composite can meet the mechanical properties requirements of the outer dense bulk. Furthermore, microstructure analysis shows that interfacial integration of HA-BG-Ti composite is better than that of HA-Ti composite. From X-ray diffraction (XRD) and SEM-EDAX analysis, brittle new phases including calcium titanate and calcium carbonate are detected in HA-Ti composite. New phases in HA-Ti composite and complex strong binding force accompanied by elemental diffusion of Si, Ti in HA-BG-Ti composite can explain theoretically the great difference of mechanical properties of HA-Ti and HA-BG-Ti composites.

Key words: Hydroxyapatite-Titanium (HA-Ti), Hydroxyapatite-Bidoglass-Titanium (HA-BG-Ti)...