中国有色金属学报
中國有色金屬學報
중국유색금속학보
THE CHINESE JOURNAL OF NONFERROUS METALS
2015年
4期
997-1004
,共8页
陈金学%尹洪峰%帅航%田养利%袁蝴蝶
陳金學%尹洪峰%帥航%田養利%袁蝴蝶
진금학%윤홍봉%수항%전양리%원호접
Ti3SiC2-Al2O3%复合材料%相组成%力学性能%抗氧化性能
Ti3SiC2-Al2O3%複閤材料%相組成%力學性能%抗氧化性能
Ti3SiC2-Al2O3%복합재료%상조성%역학성능%항양화성능
Ti3SiC2-Al2O3%composite%phase composition%mechanical property%oxidation resistance property
采用反应热压烧结法制备Ti3SiC2-Al2O3复合材料,研究热压温度和Al2O3含量对Ti3SiC2-Al2O3复合材料相组成、力学性能及抗氧化性能的影响。结果表明:采用反应热压烧结,可以在1450℃烧结得到致密度高、性能良好的Ti3SiC2-Al2O3复合材料。添加Al2O3可以起到第二相增强的作用,从而提高材料的强度。随着添加量的增加,复合材料的力学性能先提高后降低,当Al2O3添加量为20%(质量分数)时断裂韧性达最大值(7.10 MPa?m1/2),当Al2O3添加量为30%时抗弯强度达最大值(512 MPa)。Al2O3在高温下与TiO2反应生成具有耐高温和高抗热震性能的Al2TiO5,可以有效提高Ti3SiC2基复合材料高温抗氧化性能。
採用反應熱壓燒結法製備Ti3SiC2-Al2O3複閤材料,研究熱壓溫度和Al2O3含量對Ti3SiC2-Al2O3複閤材料相組成、力學性能及抗氧化性能的影響。結果錶明:採用反應熱壓燒結,可以在1450℃燒結得到緻密度高、性能良好的Ti3SiC2-Al2O3複閤材料。添加Al2O3可以起到第二相增彊的作用,從而提高材料的彊度。隨著添加量的增加,複閤材料的力學性能先提高後降低,噹Al2O3添加量為20%(質量分數)時斷裂韌性達最大值(7.10 MPa?m1/2),噹Al2O3添加量為30%時抗彎彊度達最大值(512 MPa)。Al2O3在高溫下與TiO2反應生成具有耐高溫和高抗熱震性能的Al2TiO5,可以有效提高Ti3SiC2基複閤材料高溫抗氧化性能。
채용반응열압소결법제비Ti3SiC2-Al2O3복합재료,연구열압온도화Al2O3함량대Ti3SiC2-Al2O3복합재료상조성、역학성능급항양화성능적영향。결과표명:채용반응열압소결,가이재1450℃소결득도치밀도고、성능량호적Ti3SiC2-Al2O3복합재료。첨가Al2O3가이기도제이상증강적작용,종이제고재료적강도。수착첨가량적증가,복합재료적역학성능선제고후강저,당Al2O3첨가량위20%(질량분수)시단렬인성체최대치(7.10 MPa?m1/2),당Al2O3첨가량위30%시항만강도체최대치(512 MPa)。Al2O3재고온하여TiO2반응생성구유내고온화고항열진성능적Al2TiO5,가이유효제고Ti3SiC2기복합재료고온항양화성능。
Ti3SiC2-Al2O3 composites were prepared by reactive hot-pressed sintering. The effects of the Al2O3 content and hot pressing temperature on the phase constituent,mechanical properties and oxidation resistance property of Ti3SiC2-Al2O3 composites were investigated. The results show that the Ti3SiC2-Al2O3 composites with high density and good properties can be prepared by reactive hot-pressed sintering at 1450 ℃. The Al2O3 addition has the effect of the second phase strengthening which can improve the strength of the material. The mechanical properties of Ti3SiC2-Al2O3 composites increase firstly and then decrease with increasing Al2O3 content, the fracture toughness reaches the maximum value (7.10 MPa?m1/2) when the mass fraction of Al2O3 is 20%, and the bending strength reaches the maximum value (512 MPa) when the mass fraction of Al2O3 is 30%. Al2O3 reactes with TiO2 under high temperature, generating Al2TiO5 with high temperature resistance and high thermal shock resistance, which can effectively improve the oxidation resistance of Ti3SiC2 composites.