材料科学
断裂韧性
穿晶断裂
复合材料
晶间断裂
晶间腐蚀
韧性
晶界
体积分数
偏转(物理)
断裂力学
断裂(地质)
微观结构
光学
物理
作者
Fumihiko Kamiya,Hiroyuki Toda,Toshirō Kobayashi,M. Takasu,Naoyuki Okamoto
标识
DOI:10.2320/jinstmet1952.65.4_323
摘要
Al2O3/TiC composites having various fraction ratio between Al2O3 and TiC phases are prepared through the hot-press process. Static and dynamic fracture toughness values are measured experimentally. Crack deflection angle and areal fraction of each fracture path (intergranular and transgranular fractures both through the Al2O3 and TiC phases and Al2O3/TiC interface) are measured on lateral surface of specimens and fracture surfaces, respectively. Local fracture toughness in each fracture path is analyzed using the above data.Measured fracture toughness increases with the increase in the mass percent TiC phase. Local fracture toughness is higher for the passes through the TiC phase than those through the Al2O3 phase, whether it is transgranular or intergranular. The weakest path is the Al2O3/TiC interface in all of the samples.Microstructural configuration for improved fracture toughness in Al2O3/TiC composites is discussed in light of local fracture toughness at both grain interior and boundaries.
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