武汉科技大学学报(自然科学版)
武漢科技大學學報(自然科學版)
무한과기대학학보(자연과학판)
JOURNAL OF WUHAN UNIVERSITY OF SCIENCE AND TECHNOLOGY(NATURAL SCIENCE EDITION)
2014年
2期
130-134
,共5页
伊竟广%朱伯铨%李享成%马铮%魏莹
伊竟廣%硃伯銓%李享成%馬錚%魏瑩
이경엄%주백전%리향성%마쟁%위형
镁碳砖%原位生成非氧化物相%显微结构%优势区相图%高温抗折强度
鎂碳磚%原位生成非氧化物相%顯微結構%優勢區相圖%高溫抗摺彊度
미탄전%원위생성비양화물상%현미결구%우세구상도%고온항절강도
magnesia carbon brick%non-oxide of in-situ reaction%microstructure%predominant phase diagram%hot modulus of rupture
以电熔镁砂、天然鳞片石墨、煤沥青、Al粉及Si粉为主要原料,以热固性酚醛树脂为结合剂,混匀后压制成M g O-C材料试样。将试样在氮气气氛下分别经1000℃×3 h、1200℃×3 h、1400℃×3 h热处理,研究热处理温度对材料物相组成、显微结构及力学性能的影响。结果表明,1000℃热处理后,试样中A l消失,反应生成了柱状AlN和八面体状MgAl2 O4,此温度下Si尚未参与反应;1200℃热处理后,Si开始反应生成六边形板状的SiC ,镶嵌在镁砂基体中,提高了试样的高温抗折强度和热震后残余抗折强度;1400℃热处理后,试样中除有柱状AlN和八面体状MgAl2 O4生成外,还有较多晶须状SiC和针状β-Si3 N4生成,形成了良好的非氧化物结合,使得材料具有优良的高温力学性能和抗热震性能。
以電鎔鎂砂、天然鱗片石墨、煤瀝青、Al粉及Si粉為主要原料,以熱固性酚醛樹脂為結閤劑,混勻後壓製成M g O-C材料試樣。將試樣在氮氣氣氛下分彆經1000℃×3 h、1200℃×3 h、1400℃×3 h熱處理,研究熱處理溫度對材料物相組成、顯微結構及力學性能的影響。結果錶明,1000℃熱處理後,試樣中A l消失,反應生成瞭柱狀AlN和八麵體狀MgAl2 O4,此溫度下Si尚未參與反應;1200℃熱處理後,Si開始反應生成六邊形闆狀的SiC ,鑲嵌在鎂砂基體中,提高瞭試樣的高溫抗摺彊度和熱震後殘餘抗摺彊度;1400℃熱處理後,試樣中除有柱狀AlN和八麵體狀MgAl2 O4生成外,還有較多晶鬚狀SiC和針狀β-Si3 N4生成,形成瞭良好的非氧化物結閤,使得材料具有優良的高溫力學性能和抗熱震性能。
이전용미사、천연린편석묵、매력청、Al분급Si분위주요원료,이열고성분철수지위결합제,혼균후압제성M g O-C재료시양。장시양재담기기분하분별경1000℃×3 h、1200℃×3 h、1400℃×3 h열처리,연구열처리온도대재료물상조성、현미결구급역학성능적영향。결과표명,1000℃열처리후,시양중A l소실,반응생성료주상AlN화팔면체상MgAl2 O4,차온도하Si상미삼여반응;1200℃열처리후,Si개시반응생성륙변형판상적SiC ,양감재미사기체중,제고료시양적고온항절강도화열진후잔여항절강도;1400℃열처리후,시양중제유주상AlN화팔면체상MgAl2 O4생성외,환유교다정수상SiC화침상β-Si3 N4생성,형성료량호적비양화물결합,사득재료구유우량적고온역학성능화항열진성능。
With fused magnesia ,flake graphite and coal tar pitch as main raw materials ,metallic Al and Si powders as additives ,and phenolic resin as binder ,MgO-C refractory specimens were prepared and then heat-treated at 1000 ℃ ,1200 ℃ ,1400 ℃ × 3h respectively under nitrogen atmosphere to study the characteristics of the specimens in phase composition , microstructure and mechanical strength .The results show that after 1000 ℃ heating treatment ,the metallic Al has reacted with C (CO) or N2 ,resulting in the formation of strip-like AlN and octahedral MgAl2 O4 .It is also found that the metallic Si has not taken part in any reaction at this stage .After 1200 ℃ heating treatment , the reaction between Si and C or CO leads to the formation of platelike SiC which is then interlocked into magnesia matrix ,raising the specimen’s modulus of rupture and residual strength after thermal shock test .After 1400 ℃ heating treatment ,besides strip-like AlN and octahedral MgAl2 O4 ,a large amount of SiC whiskers and needlelike β-Si3 N4 are formed within the skeleton structure ,giving the specimen excellent hot modulus of rupture and thermal shock resistance .