中国有色金属学报
中國有色金屬學報
중국유색금속학보
THE CHINESE JOURNAL OF NONFERROUS METALS
2014年
2期
461-467
,共7页
罗军平%马骁%关锐峰%曹姗姗%柯常波%倪东惠%张新平
囉軍平%馬驍%關銳峰%曹姍姍%柯常波%倪東惠%張新平
라군평%마효%관예봉%조산산%가상파%예동혜%장신평
TiNi合金%负热膨胀%近零膨胀%复合材料%相变%力学性能
TiNi閤金%負熱膨脹%近零膨脹%複閤材料%相變%力學性能
TiNi합금%부열팽창%근령팽창%복합재료%상변%역학성능
TiNi alloy%negative thermal expansion%near-zero thermal expansion%composite%phase transformation%mechanical property
采用粉末冶金法制备多孔TiNi合金,并利用无压熔渗镁合金(AZ91D)工艺按设计要求制备具有近零膨胀特性且轻质高强的AZ91D/TiNi 复合材料。结果表明:AZ91D质量分数为8.20%~13.95%时,复合材料在一定的温度范围呈现近零膨胀行为,且热膨胀系数实验值与混合定则理论预测值相近;多孔TiNi合金的负热膨胀特性由相变引起的体积变化导致,而其复合材料呈现近零膨胀是由多孔TiNi基体产生的负热膨胀被渗入的镁合金相正热膨胀抵消所致;引入镁合金对复合材料基体合金的相组成和相变行为影响很小,但可显著提高其强度,复合材料仍具有稳定的线性超弹性。
採用粉末冶金法製備多孔TiNi閤金,併利用無壓鎔滲鎂閤金(AZ91D)工藝按設計要求製備具有近零膨脹特性且輕質高彊的AZ91D/TiNi 複閤材料。結果錶明:AZ91D質量分數為8.20%~13.95%時,複閤材料在一定的溫度範圍呈現近零膨脹行為,且熱膨脹繫數實驗值與混閤定則理論預測值相近;多孔TiNi閤金的負熱膨脹特性由相變引起的體積變化導緻,而其複閤材料呈現近零膨脹是由多孔TiNi基體產生的負熱膨脹被滲入的鎂閤金相正熱膨脹牴消所緻;引入鎂閤金對複閤材料基體閤金的相組成和相變行為影響很小,但可顯著提高其彊度,複閤材料仍具有穩定的線性超彈性。
채용분말야금법제비다공TiNi합금,병이용무압용삼미합금(AZ91D)공예안설계요구제비구유근령팽창특성차경질고강적AZ91D/TiNi 복합재료。결과표명:AZ91D질량분수위8.20%~13.95%시,복합재료재일정적온도범위정현근령팽창행위,차열팽창계수실험치여혼합정칙이론예측치상근;다공TiNi합금적부열팽창특성유상변인기적체적변화도치,이기복합재료정현근령팽창시유다공TiNi기체산생적부열팽창피삼입적미합금상정열팽창저소소치;인입미합금대복합재료기체합금적상조성화상변행위영향흔소,단가현저제고기강도,복합재료잉구유은정적선성초탄성。
TiNi alloy based composites tailored by Mg alloy (AZ91D) were fabricated by powder metallurgy process combining with pressureless infiltration technique, which possess low density, high strength and the near-zero thermal expansion performance. The results show that, the AZ91D/TiNi composites exhibit near-zero thermal expansion performance at a certain temperature range when the AZ91D alloy mass fraction is between 8.20% and 13.95%. The experimentally measured coefficients of thermal expansion (CTEs) of the composites are close to those theoretically ones predicted by the rule-of-mixture (ROM). It is proposed that the negative thermal expansion (NTE) phenomenon of the porous TiNi alloy originates from the volume change accompanying the phase transformations of the TiNi alloy matrix. The near-zero thermal expansion performance of AZ91D/TiNi composites is attributed to the combination of the NTE produced by the porous TiNi alloy matrix and the positive thermal expansion provided by the infiltrated AZ91D alloy phase. The introduction of AZ91D alloy has little influence on the phase constituents and transformation characteristics of the bulk matrix, while significantly increasing the strength of the composite. At the meantime, the steady linear superelasticity of the composites is maintained.