稀有金属材料与工程
稀有金屬材料與工程
희유금속재료여공정
RARE METAL MATERIALS AND ENGINEERNG
2009年
z2期
98-101
,共4页
赵忠民%张龙%宋亚林%潘传增%曲振生%杨权
趙忠民%張龍%宋亞林%潘傳增%麯振生%楊權
조충민%장룡%송아림%반전증%곡진생%양권
Al_2O_3/ZrO_2(4Y)%燃烧合成%超重力%晶体生长
Al_2O_3/ZrO_2(4Y)%燃燒閤成%超重力%晶體生長
Al_2O_3/ZrO_2(4Y)%연소합성%초중력%정체생장
Al_2O_3/ZrO_2(4Y)%combustion synthesis%high gravity%crystal growth
基于超重力下燃烧合成Al_2O_3/ZrO_2(4Y),通过改变ZrO_2(4Y)含量,研究材料成分、结构与性能之间的关系.结果表明:当ZrO_2(4Y)体积分数低于37%,复合陶瓷是以ZrO_2四方相纳微米纤维镶嵌其上且取向各异的棒状共晶团为基体;当ZrO_2(4Y)体积分数高于40%,则获得ZrO_2四方相微米类球晶为基的复合陶瓷.力学性能显示,Al_2O_3/33%ZrO_2(4Y)以低的凝固温度,达到了最高的相对密度与硬度值,且也因低的缺陷尺寸及裂纹偏转与桥接增韧所带来的高断裂韧性,具有最高的弯曲强度值.
基于超重力下燃燒閤成Al_2O_3/ZrO_2(4Y),通過改變ZrO_2(4Y)含量,研究材料成分、結構與性能之間的關繫.結果錶明:噹ZrO_2(4Y)體積分數低于37%,複閤陶瓷是以ZrO_2四方相納微米纖維鑲嵌其上且取嚮各異的棒狀共晶糰為基體;噹ZrO_2(4Y)體積分數高于40%,則穫得ZrO_2四方相微米類毬晶為基的複閤陶瓷.力學性能顯示,Al_2O_3/33%ZrO_2(4Y)以低的凝固溫度,達到瞭最高的相對密度與硬度值,且也因低的缺陷呎吋及裂紋偏轉與橋接增韌所帶來的高斷裂韌性,具有最高的彎麯彊度值.
기우초중력하연소합성Al_2O_3/ZrO_2(4Y),통과개변ZrO_2(4Y)함량,연구재료성분、결구여성능지간적관계.결과표명:당ZrO_2(4Y)체적분수저우37%,복합도자시이ZrO_2사방상납미미섬유양감기상차취향각이적봉상공정단위기체;당ZrO_2(4Y)체적분수고우40%,칙획득ZrO_2사방상미미류구정위기적복합도자.역학성능현시,Al_2O_3/33%ZrO_2(4Y)이저적응고온도,체도료최고적상대밀도여경도치,차야인저적결함척촌급렬문편전여교접증인소대래적고단렬인성,구유최고적만곡강도치.
Based on preparation of Al_2O_3/ZrO_2(4Y) by combustion synthesis under high gravity, the correlations of composition, microstructures and properties of the materials were investigated by adjusting the ZrO_2(4Y) content. The results indicated that as the volume fraction of ZrO_2(4Y) was below 37%, the composite ceramics were mainly composed of the rod-shaped and random-orientated colonies in which nano-micrometer tetragonal ZrO_2 fibers were embedded; as the volume fraction of ZrO_2(4Y) was above 40%, the composite ceramics in the matrix of micrometer sphere-like tetragonal ZrO_2 grains were obtained. The mechanical properties showed Al_2O_3/33%ZrO_2(4Y) had not only the maximum values of the relative density and hardness because of the low solidification temperature, but also the maximum flexural strength value due to the low flaw size and high fracture toughness supported by the crack deflection and crack bridging toughening mechanisms.