中国有色金属学报
中國有色金屬學報
중국유색금속학보
THE CHINESE JOURNAL OF NONFERROUS METALS
2013年
8期
2200-2205
,共6页
黄平军%张玉勤%蒋业华%周荣
黃平軍%張玉勤%蔣業華%週榮
황평군%장옥근%장업화%주영
Ti-Zr-Sn-Mo-Nb合金%放电等离子烧结%烧结温度%微观组织%力学性能
Ti-Zr-Sn-Mo-Nb閤金%放電等離子燒結%燒結溫度%微觀組織%力學性能
Ti-Zr-Sn-Mo-Nb합금%방전등리자소결%소결온도%미관조직%역학성능
Ti-Zr-Sn-Mo-Nb alloy%spark plasma sintering%sintering temperature%microstructure%mechanical property
利用放电等离子烧结技术(SPS)制备Ti-3Zr-2Sn-3Mo-15Nb合金,研究烧结温度对合金致密度、微观组织与力学性能的影响。结果表明:在1000~1150℃烧结温度范围内,合金具有较高致密度和抗压强度,合金主要由β-Ti相与Ti-Nb-Zr-Mo固溶体形成的混合基体组织及少量α-Ti相和未熔化的Nb金属颗粒组成;随着烧结温度的升高,合金的致密度和抗压强度呈增大趋势,合金中Ti-Nb-Zr-Mo固溶体含量越来越低,其尺寸越来越小,残留的α-Ti相出现了向β-Ti相的转变;合金的压缩弹性模量值在45~54 GPa之间,显示出良好的力学相容性,而烧结温度的升高使得压缩弹性模量值出现缓慢增大现象。
利用放電等離子燒結技術(SPS)製備Ti-3Zr-2Sn-3Mo-15Nb閤金,研究燒結溫度對閤金緻密度、微觀組織與力學性能的影響。結果錶明:在1000~1150℃燒結溫度範圍內,閤金具有較高緻密度和抗壓彊度,閤金主要由β-Ti相與Ti-Nb-Zr-Mo固溶體形成的混閤基體組織及少量α-Ti相和未鎔化的Nb金屬顆粒組成;隨著燒結溫度的升高,閤金的緻密度和抗壓彊度呈增大趨勢,閤金中Ti-Nb-Zr-Mo固溶體含量越來越低,其呎吋越來越小,殘留的α-Ti相齣現瞭嚮β-Ti相的轉變;閤金的壓縮彈性模量值在45~54 GPa之間,顯示齣良好的力學相容性,而燒結溫度的升高使得壓縮彈性模量值齣現緩慢增大現象。
이용방전등리자소결기술(SPS)제비Ti-3Zr-2Sn-3Mo-15Nb합금,연구소결온도대합금치밀도、미관조직여역학성능적영향。결과표명:재1000~1150℃소결온도범위내,합금구유교고치밀도화항압강도,합금주요유β-Ti상여Ti-Nb-Zr-Mo고용체형성적혼합기체조직급소량α-Ti상화미용화적Nb금속과립조성;수착소결온도적승고,합금적치밀도화항압강도정증대추세,합금중Ti-Nb-Zr-Mo고용체함량월래월저,기척촌월래월소,잔류적α-Ti상출현료향β-Ti상적전변;합금적압축탄성모량치재45~54 GPa지간,현시출량호적역학상용성,이소결온도적승고사득압축탄성모량치출현완만증대현상。
Ti-3Zr-2Sn-3Mo-15Nb alloys were prepared by spark plasma sintering (SPS) technology. The effects of the different sintering temperatures on the relative density, microstructure and mechanical properties of the alloys were investigated. The results show that, in the sintering temperature range from 1 000 to 1 150℃, the alloys present high densification and compressive strength. The alloys mainly contain the mixed matrix consisting β-Ti phase and the Ti-Nb-Zr-Mo solid solution and some α-Ti phase and unmelted Nb metal particles. With the increase of the sintering temperature, the relative density and the compressive strength of the alloys increase. The size and the amount of the Ti-Nb-Zr-Mo solid solution decrease, and the alloys appear in the transformation process fromα-Ti toβ-Ti phase. The alloys exhibit low compressive elastic modulus in 45?54 GPa, which reveals the better mechanical compatibility. With the increase of the sintering temperature, the compressive elastic modulus of the alloys increases slowly.