摘要
金属基复合材料在外载作用下会使界面脱开成为裂纹源并开始扩展,应用细观力学方法研究了弧形界面裂纹扩展的应变能释放率,当弧形界面裂纹的所需应变能释放率等于相应基体临界能量释放率时,复合材料将会断裂。在基体和增强颗粒完全脱粘的情况下,根据基体的断裂条件,计算出复合材料的极限应力。
Interfaces between metal matrix and particles form main sites of crack initiation and propagation in Particle reinforced metallic matrix composite. As the interface-crack propagates around the sphere ceramic particles, the strain energy release rate is examined by using mieromechanical method. When the strain energy release rate reaches the critical value of the matrix, composite will fracture. Then the ultimate stress can be determined on 'based of matrix fracture condition.
出处
《煤矿机械》
北大核心
2010年第9期59-60,共2页
Coal Mine Machinery
基金
国家自然科学基金资助项目(10872216
50672131)
关键词
颗粒增强金属基复合材料
局部脱粘裂纹
应变能释放率
极限应力
particle reinforced metallic matrix composite
partial debonding crack
strain energy release rate
ultimate stress