科学技术与工程
科學技術與工程
과학기술여공정
SCIENCE TECHNOLOGY AND ENGINEERING
2008年
11期
2870-2873
,共4页
高岭土%原位还原%复相陶瓷
高嶺土%原位還原%複相陶瓷
고령토%원위환원%복상도자
kaolin in-situ reduction ceramic composites
详细介绍了利用高岭土通过原位反应及热压烧结制备Al2O3/SiC复相陶瓷材料.探索了以天然矿物高岭土,碳作为原材料,低成本合成制备高性能Al2O3/SiC复相陶瓷的新方法.首先,在原位碳热还原反应中,高岭土和碳在流动氩气氛中合成制备Al2O3/SiC复相陶瓷粉,对合成反应的热力学过程进行理论分析和实验研究,对合成的Al2O3/SiC复相陶瓷粉进行了DTA和XRD分析,分析表明陶瓷粉的合成过程分两步,第一步是高岭土自身的脱水,第二步是SiO2被还原的过程及制备出Al2O3/SiC复相陶瓷粉.研究表明,最佳的粉末合成温度为1550℃;其次,Al2O3/SiC复相陶瓷粉通过热压烧结合成制备Al2O3/SiC复相陶瓷,烧结助剂的添加有助于降低烧结温度.复相陶瓷抗弯强度达到420 MPa,相对密度达到98%,硬度HRA89.
詳細介紹瞭利用高嶺土通過原位反應及熱壓燒結製備Al2O3/SiC複相陶瓷材料.探索瞭以天然礦物高嶺土,碳作為原材料,低成本閤成製備高性能Al2O3/SiC複相陶瓷的新方法.首先,在原位碳熱還原反應中,高嶺土和碳在流動氬氣氛中閤成製備Al2O3/SiC複相陶瓷粉,對閤成反應的熱力學過程進行理論分析和實驗研究,對閤成的Al2O3/SiC複相陶瓷粉進行瞭DTA和XRD分析,分析錶明陶瓷粉的閤成過程分兩步,第一步是高嶺土自身的脫水,第二步是SiO2被還原的過程及製備齣Al2O3/SiC複相陶瓷粉.研究錶明,最佳的粉末閤成溫度為1550℃;其次,Al2O3/SiC複相陶瓷粉通過熱壓燒結閤成製備Al2O3/SiC複相陶瓷,燒結助劑的添加有助于降低燒結溫度.複相陶瓷抗彎彊度達到420 MPa,相對密度達到98%,硬度HRA89.
상세개소료이용고령토통과원위반응급열압소결제비Al2O3/SiC복상도자재료.탐색료이천연광물고령토,탄작위원재료,저성본합성제비고성능Al2O3/SiC복상도자적신방법.수선,재원위탄열환원반응중,고령토화탄재류동아기분중합성제비Al2O3/SiC복상도자분,대합성반응적열역학과정진행이론분석화실험연구,대합성적Al2O3/SiC복상도자분진행료DTA화XRD분석,분석표명도자분적합성과정분량보,제일보시고령토자신적탈수,제이보시SiO2피환원적과정급제비출Al2O3/SiC복상도자분.연구표명,최가적분말합성온도위1550℃;기차,Al2O3/SiC복상도자분통과열압소결합성제비Al2O3/SiC복상도자,소결조제적첨가유조우강저소결온도.복상도자항만강도체도420 MPa,상대밀도체도98%,경도HRA89.
Fabricated Al2O3/SiC composites with the natural mineral of kaolin by in-situ carbothermal reduction and hot-press sintering is set out to elaborate. Kaolin is a natural mineral, and carbon is used as a main raw material. The main purpose is to explore a new synthesis method for the high-performance Al2O3/SiC composites at the relatively low cost. At the beginning, by in-situ carbothermal reduction, Al2O3/SiC composite powder was synthesized with kaolin and carbon in the atmosphere with flowing argon. The whole thermodynamic processes have been analyzed and investigated not only with theory but also with experimental measures. The synthesizing process of Al2O3/SiC composite powder was analyzed with DTA, XRD and SEM. It shows that the synthesizing process is involved in two stages. The first stage is the dehydration decomposition of kaolin itself. The second stage is SiO2 reduced by carbon. Thereupon, the Al2O3/SiC composite powder is produced. The study shows that the optimal synthesizing temperature for Al2O3/SiC composite powder is at 1550℃. Then the Al2O3/SiC composites were fabricated by hot-press technology from the synthesized Al2O3/SiC powder. The sintering additive was used to lower the sintering temperature. The whole processes were conducted in argon atmosphere. The results show that the bending strength of Al2O3/SiC composites attains 420 Mpa, and the relative density and hardness reach 98% and HRA89 respectively.