分析了裂纹愈合的动力和阻力,动力来源于毛细管力和化学势差异,而阻力是裂纹面运动到平衡间距要克服的能垒和裂纹尖端位错运动需要克服的塑性变形功;综述了陶瓷材料裂纹愈合研究方法:目前所涉及的多为Al2O3、Si3N4、SiC或其复合材料的热压烧结材料,主要用维氏硬度计法获得裂纹,影响愈合效果的主要因素有化学成分与气氛、温度及时间、预制裂纹尺寸及应力等,愈合机理主要是扩散愈合和氧化反应填充愈合,并可用相应的动力学方程描述;指出今后需要解决的问题是拓宽所研究的材料体系并完善实验手段、系统研究愈合条件的影响和愈合机理.
参考文献
[1] | 吕珺,郑治祥,丁厚福,金志浩.Al2O3基结构陶瓷材料裂纹自愈合研究进展[J].兵器材料科学与工程,2003(04):55-59. |
[2] | Suo Z .Motions of microscopic surfaces in materials[J].Advances in Applied Mechanics,1997,33:194. |
[3] | 周国辉,高克玮,万发荣,乔利杰,褚武扬.微裂纹愈合过程的分子动力学模拟[J].自然科学进展,2001(03):300-305. |
[4] | Gupta T K .Crack healing in Al2O3,MgO,and related materials[J].Advances in Ceramics,1984,10:750. |
[5] | Byung-Soo KIM;Kotoji ANDO;Min-Cheol CHU .Crack-Healing Behavior of Monolithic Alumina and Strength of Crack-Healed Member[J].材料,2003(6):667-673. |
[6] | Hvizdos P;Kasiarova M .Indentation crack healing in low glass-content mullite[J].Key Engineering Materials,2002,223:257. |
[7] | Ando K et al.(Crack-healing + proof test):A new methodology to guarantee the structural integrity of a ceramics component[J].Journal of the European Ceramic Society,2002,22(01):121. |
[8] | Gupta T K .Crack healing in thermally shocked MgO[J].Journal of the American Ceramic Society,1975,58(3-4):143. |
[9] | Gupta T K .Crack healing and strengthening of thermally shocked alumina[J].Journal of the American Ceramic Society,1976,59(5-6):259. |
[10] | Houjou K;Ando K;Liu S P et al.Crack-healing and oxidation behavior of silicon nitride ceramics[J].Journal of the European Ceramic Society,2004,24(08):2329. |
[11] | Huang PZ.;Sun J.;Li ZH. .Evolution of penny-shaped microcracks by interface migration[J].International Journal of Solids and Structures,2003(8):1959-1972. |
[12] | 赵中里;韩静涛;张永军 .[OL].http://www.paper.edu.cn |
[13] | Ando K;Chu M C;Tsuji K et al.Crack healing behaviour and high-temperature strength of mullite/SiC composite ceramics[J].Journal of the European Ceramic Society,2002,22(08):1313. |
[14] | Nakao W;Osada T;Yamane K et al.Crack-healing mechanism by alumina/SiC particles/SiC whiskers multi-composite[J].Journal of the Japan Institute of Metals,2005,69(08):663. |
[15] | Lee S K;Ishida W;Lee S Y et al.Crack-healing behavior and resultant strength properties of silicon carbide ceramic[J].Journal of the European Ceramic Society,2005,25(05):569. |
[16] | Chu M C;Cho S J;Park H M et al.Crack-healing in reaction-bonded silicon carbide[J].Materials Letters,2004,58(7-8):1313. |
[17] | Ando K;Furusawa K;Takahashi K et al.Crack-healing ability of structural ceramics and a new methodology to guarantee the structural integrity using the ability and prooftest[J].Journal of the European Ceramic Society,2005,25(05):549. |
[18] | S. -K. LEE;M. ONO;W. NAKAO .Crack-healing behaviour of mullite/SiC/Y_2O_3 composites and its application to the structural integrity of machined components[J].Journal of the European Ceramic Society,2005(15):3495-3502. |
[19] | Kotoji ANDO;Kiichi TSUJI;Masahiko NAKATANI .Effects of Y_2O_3 on Crack Healing Ability and High Temperature Strength of Structural Mullite[J].材料,2002(4):458-464. |
[20] | Lee S K et al.Effect of heat treatments on the crack-healing and static fatigue behavior of silicon carbide sintered with Sc2O3 and AIN[J].Journal of the American Ceramic Society,2005,88(12):3478. |
[21] | Takahashi K;Kim B S;Chu M C et al.Crack-heating behavior and static fatigue strength of Si3N4/SiC ceramics held under stress at temperature (800℃,900℃,1000℃)[J].Journal of the European Ceramic Society,2003,23(11):1971. |
[22] | Ando K et al.Crack-healing behavior of structural ceramics under constant and cyclic stress at elevated temperature[J].Journal of the Ceramic Society of Japan,2002,110:741. |
[23] | Nam KW;Kim MK;Park SW;Ahn SH;Kim JS .Crack-healing behavior and bending strength of Si3N4/SiC composite ceramics by SiO2 colloidal[J].Materials Science & Engineering, A. Structural Materials: Properties, Misrostructure and Processing,2007(1-2):102-105. |
[24] | Choi;Sung R .Crack healing of alumina with a residual glassy phase:Strength,fracture toughness and fatigue[J].Materials Science and Engineering A:Structural Materials Properties Microstructure and Processing,1993,A171(1-2):77. |
[25] | Nakao W;Osada T;Yamane K et al.Effect of SiC shape on the crack-healing mechanism of alumina/SiC composite[J].Materials Research Society Symposium Proceedings,2006,888:61. |
[26] | Chou Irene A;Chan Helen M;Harmer Martin P .Effect of annealing environment on the crack healing and mechanical behavior of silicon carbide-reinforced alumina nanocomposires[J].Journal of the American Ceramic Society,1998,81(05):1203. |
[27] | Chiu Chinchen .Influence of surface oxidation on thermal shock resistance and flexural strength of SiC/Al2O3 composites[J].Journal of Materials Science,1994,29(08):2078. |
[28] | Nakao W;Ono M;Lee S K et al.Critical crack-healing condition for SiC whisker reinforced alumina under stress[J].Journal of the European Ceramic Society,2005,25(15):3649. |
[29] | Wataru Nakao;Koji Takahashi;Kotoji Ando .Threshold stress during crack-healing treatment of structural ceramics having the crack-healing ability[J].Materials Letters,2007(13):2711-2713. |
[30] | Wilson B A;Lee K Y;Case E 13 .Diffusive crack-healing behavior in polycrystalline alumina:a comparison between mi-crowave annealing and conventional annealing[J].Materials Research Bulletin,1997,32(12):1607. |
[31] | Luthra K L;Park H D .Oxidation of silicon carbide-reinforced oxide-matrix composites at 1375℃ to 1575℃[J].Journal of the American Ceramic Society,1990,73(04):1014. |
[32] | Opsommer A.;Castro F.;Gomez E. .Influence of TiC additions on the oxidation behaviour of Si3N4-based ceramics[J].Journal of Materials Science,1998(10):2583-2588. |
[33] | 吕珺,郑治祥,吴玉程,金志浩.增韧Al2O3结构陶瓷氧化反应裂纹愈合动力学研究(Ⅰ)理论模型[J].无机材料学报,2006(01):187-192. |
[34] | 吕珺,郑治祥,吴玉程,金志浩.结构陶瓷氧化反应裂纹愈合动力学研究(Ⅱ)模型验证:Al2O3-TiCp结构陶瓷裂纹愈合动力学研究[J].无机材料学报,2006(02):508-512. |
[35] | 吕珺,郑治祥,吴玉程,金志浩.结构陶瓷氧化反应裂纹愈合动力学研究(Ⅲ)模型验证与修正:Al2O3-SiCW陶瓷裂纹愈合动力学研究[J].无机材料学报,2006(03):696-700. |
上一张
下一张
上一张
下一张
计量
- 下载量()
- 访问量()
文章评分
- 您的评分:
-
10%
-
20%
-
30%
-
40%
-
50%