耐火材料
耐火材料
내화재료
Refractories
2015年
5期
339-343
,共5页
王合洋%魏恒勇%王鹏%魏颖娜%李慧%卜景龙%林健%杨金萍%杨旸%王忠奎
王閤洋%魏恆勇%王鵬%魏穎娜%李慧%蔔景龍%林健%楊金萍%楊旸%王忠奎
왕합양%위항용%왕붕%위영나%리혜%복경룡%림건%양금평%양양%왕충규
静电纺丝%纺丝参数%镁铝尖晶石纤维
靜電紡絲%紡絲參數%鎂鋁尖晶石纖維
정전방사%방사삼수%미려첨정석섬유
electrospinning%spinning parameters%magnesium aluminate spinel fibers
为了制备直径为纳米级的镁铝尖晶石连续纤维,以无水氯化铝、无水氯化镁、无水乙醇和二氯甲烷为原料采用非水解溶胶-凝胶法制备镁铝尖晶石前驱体干凝胶,再加入无水乙醇、聚乙烯吡咯烷酮(PVP)和 N,N -二甲基甲酰胺(DMF)制成静电纺丝液,然后采用静电纺丝法制备镁铝尖晶石前驱体纤维,最后经900℃煅烧制成镁铝尖晶石纤维,主要研究了静电纺丝电压(12、15、18 kV)、进料流速(0.8、1.1、1.4 mL·h -1)及纺丝针头直径(0.6、0.8、1.2 mm)对镁铝尖晶石纤维相组成和形貌的影响。结果表明:1)纺丝电压和进料流速对镁铝尖晶石纤维相组成影响不大,但对纤维形貌影响较大;纺丝针头直径对镁铝尖晶石纤维直径及形貌影响不大,但当纺丝针头直径增大至1.2 mm 时,纤维中含有少量方镁石。较优的纺丝参数为:纺丝电压15 kV,进料流速0.8 mL·h -1,针头直径为0.8 mm;以较优纺丝参数制得的镁铝尖晶石纤维的平均直径为121 nm,直径分布在50~250 nm。
為瞭製備直徑為納米級的鎂鋁尖晶石連續纖維,以無水氯化鋁、無水氯化鎂、無水乙醇和二氯甲烷為原料採用非水解溶膠-凝膠法製備鎂鋁尖晶石前驅體榦凝膠,再加入無水乙醇、聚乙烯吡咯烷酮(PVP)和 N,N -二甲基甲酰胺(DMF)製成靜電紡絲液,然後採用靜電紡絲法製備鎂鋁尖晶石前驅體纖維,最後經900℃煅燒製成鎂鋁尖晶石纖維,主要研究瞭靜電紡絲電壓(12、15、18 kV)、進料流速(0.8、1.1、1.4 mL·h -1)及紡絲針頭直徑(0.6、0.8、1.2 mm)對鎂鋁尖晶石纖維相組成和形貌的影響。結果錶明:1)紡絲電壓和進料流速對鎂鋁尖晶石纖維相組成影響不大,但對纖維形貌影響較大;紡絲針頭直徑對鎂鋁尖晶石纖維直徑及形貌影響不大,但噹紡絲針頭直徑增大至1.2 mm 時,纖維中含有少量方鎂石。較優的紡絲參數為:紡絲電壓15 kV,進料流速0.8 mL·h -1,針頭直徑為0.8 mm;以較優紡絲參數製得的鎂鋁尖晶石纖維的平均直徑為121 nm,直徑分佈在50~250 nm。
위료제비직경위납미급적미려첨정석련속섬유,이무수록화려、무수록화미、무수을순화이록갑완위원료채용비수해용효-응효법제비미려첨정석전구체간응효,재가입무수을순、취을희필각완동(PVP)화 N,N -이갑기갑선알(DMF)제성정전방사액,연후채용정전방사법제비미려첨정석전구체섬유,최후경900℃단소제성미려첨정석섬유,주요연구료정전방사전압(12、15、18 kV)、진료류속(0.8、1.1、1.4 mL·h -1)급방사침두직경(0.6、0.8、1.2 mm)대미려첨정석섬유상조성화형모적영향。결과표명:1)방사전압화진료류속대미려첨정석섬유상조성영향불대,단대섬유형모영향교대;방사침두직경대미려첨정석섬유직경급형모영향불대,단당방사침두직경증대지1.2 mm 시,섬유중함유소량방미석。교우적방사삼수위:방사전압15 kV,진료류속0.8 mL·h -1,침두직경위0.8 mm;이교우방사삼수제득적미려첨정석섬유적평균직경위121 nm,직경분포재50~250 nm。
This work aims at obtaining continuous nano-diameter magnesium aluminate spinel fibers.Firstly, magnesium aluminate spinel precursor dry gel was synthesized by the non-hydrolytic sol-gel method using non-aqueous magnesium chloride,non-aqueous aluminum chloride,absolute alcohol and methylene chlo-ride as starting materials.Then electrospinning precursor solution was prepared by adding absolute alco-hol,polyvinyl pyrrolidone (PVP)as spinning aid,ethanol and N,N -dimethyl formamide (DMF)as solvent into the precursor dry gel.Finally precursor fibers were prepared via electrospinning technology and then calcined at 900 ℃.The influences of the spinning voltage (12,15,and 18 kV),spinning flow rate (0.8,1.1, and 1.4 mL·h -1 )and the needle diameter (0.6,0.8,and 1.2 mm)on preparation of magnesium alumi-nate spinel fibers were studied.The results show that the electrospinning voltage and flow rate have great influence on the morphology of magnesia alumina spinel fibers but mild influence on the fibers phase com-position;the needle diameter influences the diameter and morphology slightly;but when the needle aver-age diameter is 1.2 mm or above,a little periclase exists.The optimized spinning parameters are the elec-trospinning voltage of 15 kV,the electrospinning flow rate of 0.8 mL·h -1 ,and the needle diameter of 0.8 mm;and the obtained fibers have diameter of 50 -250 nm and the average of 121 nm.