원문정보
Effects of phase changes on mechanical properties of Ti-Nb alloys
초록
영어
The use of titanium alloys as biomaterials is increasing due to their superior biocompatibility and
enhanced corrosion resistance compared to conventional stainless steels and cobalt-based alloys.
Ti-6Al-4V (α + β type) alloy instead of pure titanium ( type) is being widely used as biomaterials
has some characteristics such as high fatigue strength, tensile strength and corrosion resistance. But it has been reported recently that the vanadium element expresses cytotoxicity and the aluminium element is related with dementia of Alzheimer type and neurotoxicity. In order to overcome their detrimental effects, β-phase stabilizer Nb was chosen in the present study. This paper was described the influence of phase changes of Ti-Nb alloys on mechanical properties.
Ti-3wt.%Nb( α type),Ti-20wt.%Nb( α+ β type) and Ti-40wt.%Nb( β type) alloys were melted by
vacuum arc furnace. The specimens were homogenized at 1050℃ for 24hr and were then hot rolled to 50% reduction. Each alloys were solution heat treated at β zone and α+ β zone after
homogenization and then were aged. The mechanical properties of Ti alloys were analysed by
hardness test, tensile test, elongation test and SEM test.
The results can be summarized as follows:
1) The higher hardness value of α+ β type alloy was obtained compared to the α, β type alloys.
2) The aged treated showed better hardness compared to the solution heat treated, homogenized.
3) In the case of solution and aging treatment at β region, the α+ β type alloy showed the most
highest tensile strength and β type alloy showed the best elongation.
목차
Ⅰ. 서론
Ⅱ. 실험 방법
1. 실험 재료
2. 합금 제조
3. 열처리 조건
4. 기계적 성질 조사
Ⅲ. 실험 결과 및 고찰
1. 경도
2. 인장강도와 연성
3. 용체화 및 시효처리 시편의 인장강도, 연신율 및 파단면
Ⅳ. 결론
참고문헌
