首页> 中文期刊> 《矿物冶金与材料学报:英文版》 >Design and Synthesis of Ti-ZrO_2 Functionally Graded Materials

Design and Synthesis of Ti-ZrO_2 Functionally Graded Materials

         

摘要

Functionally graded materials (FGMs) based on titanium-zirconia system have been prepared by powder metallurgical method. The graded interlayer number and the compositional distribution have been designed by elastic finite element method. The inierfacial microstructure between layers, the combining state of phases between Ti and ZrO2 have been investigated by means of XRD (X-ray dif fraction), SEM (scanning electron microscope), EDS (energy dispersive spectrometer) and so on. The co-existing region of Ti and ZrO2 has been determined by thermodynamic calculation to control the sintering atmosphere. The experimental results show that the joint between Ti and ZrO2 phases is physical in this composite and ZrO2, mainly exists as tetragonal phase. The microstructure of Ti-ZrO2, system FGM exhibits a transition from a zirconia particle dispersion in a titanium matrix to an inverse dispersion of titanium in zirconia. The gradient structure of titanium and zirconia can relieve thermal stress.

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