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首页> 外文期刊>Journal of Materials Science >High temperature flexural strength and fracture toughness of AlN with Y2O3 ceramic
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High temperature flexural strength and fracture toughness of AlN with Y2O3 ceramic

机译:Y2O3陶瓷对AlN的高温弯曲强度和断裂韧性

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摘要

The effects of temperature on the fast fracture behavior of aluminum nitride with 5 wt% Y2O3 ceramic were investigated. Four-point flexural strength and fracture toughness were measured in air at several temperatures (30-1,300 A degrees C). The flexural strength gradually decreased with the increase of temperature up to 1,000 A degrees C due to the change in the fracture mode from transgranular to intergranular, and then became almost constant up to 1,300 A degrees C. Two main flaw types as fracture origin were identified: small surface flaw and large pores. The volume fraction of the large pores was only 0.01%; however, they limited the strength on about 50% of the specimens. The fracture toughness decreased slightly up to 800 A degrees C controlled by the elastic modulus change, and then decreased significantly at 1,000 A degrees C due to the decrease in the grain-boundary toughness. Above 1,000 A degrees C, the fracture toughness increased significantly, and at 1,300 A degrees C, its value was close to that measured at room temperature.
机译:研究了温度对含5 wt%Y2O3陶瓷的氮化铝快速断裂行为的影响。在几个温度(30-1,300 A摄氏度)的空气中测量四点弯曲强度和断裂韧性。由于断裂模式从晶界到晶间的变化,随着温度的升高,直到1000 A摄氏度,抗弯强度逐渐降低,直到1300 A摄氏度时抗弯强度几乎恒定。确定了两种主要的缺陷类型作为断裂起源:小表面缺陷和大毛孔。大孔的体积分数仅为0.01%;但是,它们将强度限制在大约50%的样品上。在弹性模量变化的控制下,断裂韧性直到800 A摄氏度才略有下降,然后由于晶界韧性的降低而在1,000 A摄氏度时显着下降。高于1000 A时,断裂韧性显着提高,在1300 A时,其值接近室温下的值。

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