首页 | 本学科首页   官方微博 | 高级检索  
     

陶瓷叠层结构增韧设计的数值模拟及实验研究
引用本文:郭香华,胡宁,蔡乾煌,郑泉水,昝青峰,汪长安,黄勇.陶瓷叠层结构增韧设计的数值模拟及实验研究[J].硅酸盐学报,2000,28(3):234-239.
作者姓名:郭香华  胡宁  蔡乾煌  郑泉水  昝青峰  汪长安  黄勇
作者单位:1. 清华大学工程力学系,100084
2. 清华大学材料科学与工程系,北京,100084
基金项目:中国科学院资助项目,59632090,
摘    要:本研究尝度将微机作为辅助手段引入仿生陶瓷复合材料的增韧设计。基于多层梁模型,采用有限元数值模拟方法模拟了仿生陶瓷叠层结构的断裂行为和裂纹逐次从硬层基片向弱界面层基片向弱界面层的拐折和扩展。后处理程序显示了三点弯曲试件的裂纹扩展路径,相应的载荷-位移曲线和增韧效应(断裂功大幅度提高),还进一步分析了叠层陶瓷的韧性和强度受试件几何参数(硬软层层厚比,层数)和材料性能参数(断裂应变,Young氏模量比等

关 键 词:陶瓷  叠层结构  数值模拟  断裂  韧性  增韧设计
修稿时间:1999-09-28

A NUMERICAL SIMULATION AND EXPERIMENTAL STUDY ON TOUGHENING DESIGN OF MULTILAYER CERAMIC
Guo Xianghua,Hu Ning,Cai Qianhuang,Zheng Quanshui,Zan Qingfeng,Wang Changan,Huang Yong.A NUMERICAL SIMULATION AND EXPERIMENTAL STUDY ON TOUGHENING DESIGN OF MULTILAYER CERAMIC[J].Journal of The Chinese Ceramic Society,2000,28(3):234-239.
Authors:Guo Xianghua  Hu Ning  Cai Qianhuang  Zheng Quanshui  Zan Qingfeng  Wang Changan  Huang Yong
Abstract:Computer analysis was introduced as an auxiliary means for toughening design of biotechnological laminated ceramic composites. Based on a multilayer beam model, a finite element method has been used to simulate fracture behaviour, crack kinking and growing from basal sheet of hard layer to weak interface layer in laminated ceramic structure. The post_processing approach offers crack growing path, correlative load_displacement curve for three_point bending and shows toughen_ing effect (the fracture work is significantly increased). The changes in the toughness and strength of laminated ceramic with the specimen's geometric parameters (thickness ratio, layer number) and material properties parameters (fracture strain, Young's moduli, etc ) are analyzed by FEA numerical simulation. The optimum_values of above parameters in toughening design are then determined. The effectiveness of this numerical simulation method is demonstrated by comparing results of the numerical evaluation with experimental measurement of fracture work for Si 3N 4/BN multilayer specimen in the three_point bending test. It is also affirmed the rationality of the multilayer layer beam model. The primary mechanism of absorbing energy and toughening of the laminated ceramic composites is explained by the weak interface layers, which are capable of deflecting main cracks.
Keywords:laminated ceramic  finite element approach numerical simulation  fracture toughness and fracture work  toughening design
本文献已被 CNKI 维普 万方数据 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号