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含随机分布弧形微裂纹陶瓷复合材料的强度预报 被引量:3
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作者 倪新华 郑坚 +1 位作者 康敬欣 高克林 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2007年第A01期721-723,共3页
针对颗粒性陶瓷复合材料内存在大量界面弧形微裂纹现象,通过考虑夹杂与微裂纹的相互作用,利用二相胞元法推导出夹杂与微裂纹共同作用引起的扰动应变和本征应变。根据微裂纹的本征应变确定了复合材料自由能的变化,进而计算出弧形微裂纹... 针对颗粒性陶瓷复合材料内存在大量界面弧形微裂纹现象,通过考虑夹杂与微裂纹的相互作用,利用二相胞元法推导出夹杂与微裂纹共同作用引起的扰动应变和本征应变。根据微裂纹的本征应变确定了复合材料自由能的变化,进而计算出弧形微裂纹的能量释放率,由材料的破坏条件可获得不同外载条件下的强度。结果表明:复合材料的强度与第二相颗粒的尺寸和内界面脱粘区域有关,颗粒直径越小,强度越高;界面脱粘微裂纹角度越小,强度越高;而微裂纹的分布形态和体积分数对复合材料的强度影响很小。 展开更多
关键词 弧形微裂纹 颗粒性陶瓷复合材料 扰动应变 本征应变 强度
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Effect of baking processes on properties of TiB_2/C composite cathode material 被引量:1
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作者 吕晓军 李劼 +1 位作者 赖延清 方钊 《Journal of Central South University》 SCIE EI CAS 2009年第3期429-433,共5页
Pitch and TiB2/C green composite cathode material were respectively analyzed with simultaneous DSC-TGA, and effects of three baking processes of TiB2/C composite cathode material, i.e. K25, K5 and M5, on properties of... Pitch and TiB2/C green composite cathode material were respectively analyzed with simultaneous DSC-TGA, and effects of three baking processes of TiB2/C composite cathode material, i.e. K25, K5 and M5, on properties of TiB2/C composite cathode material were investigated. The results show that thermogravimetrie behavior of pitch and TiB2/C green composite cathode is similar, and appears the largest mass loss rate in the temperature range from 200 to 600 ℃. The bulk density variation of sample K5 before and after baking is the largest (11.9%), that of sample K25 is the second, and that of sample M5 is the smallest (6.7%). The crushing strength of sample M5 is the biggest (51.2 MPa), that of sample K2.5 is the next, and that of sample K5 is the smallest (32.8 MPa). But, the orders of the electrical resistivity and electrolysis expansion of samples are just opposite with the order of crushing strength. The heating rate has a great impact on the microstructure of sample. The faster the heating rate is, the bigger the pore size and porosity of sample are. Compared with the heating rate between 200 and 600℃ of samples K25 and K5, that of sample M5 is slower and suitable for baking process of TiB2/C composite cathode material. 展开更多
关键词 aluminum electrolysis TiB2/C composite cathode material baking process
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