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Impact Fracture Behavior of Ceramics and PE-Fiber-Reinforced Mortars

机译:陶瓷和PE纤维砂浆的冲击断裂行为

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Ceramics will be used for power generating systems in the next generation. When they are used in this system, damage due to foreign object is inevitable. However, few systematic and comprehensive investigations have been reported on this subject. Various ceramics including fiber-reinforced mortars were investigated to understand their behavior when impacted by a spherical projectile. The volume of the cone cracks was large in ceramics which underwent transgranular fracture, while it was small in which underwent an intergranular one. Even though the energy consuming ability by the formation of surfaces was low up to 3.5% of the kinetic energy of a projectile, this ability increased with the ratio of the intergranular fracture to the transgranular one. Boron carbide showed a lower pressure as compared to the other ceramics. Fiber reinforcing increased the ballistic limits, but no clear advantage was suggested when absorbing the kinetic energy of a projectile far over its limits.
机译:陶瓷将用于下一代发电系统。在本系统中使用它们时,不可避免地会受到异物的损坏。但是,关于该主题的报道很少有系统和全面的调查。对包括纤维增强砂浆在内的各种陶瓷进行了研究,以了解它们在球形弹丸撞击下的行为。经历了晶间断裂的陶瓷中,锥形裂纹的体积较大,而经历晶间断裂的陶瓷中,锥裂纹的体积较小。即使形成表面的能量消耗能力低至弹丸动能的3.5%,但这种能力却随着晶间断裂与跨晶断裂的比率而增加。与其他陶瓷相比,碳化硼的压力更低。纤维增强增加了弹道极限,但在吸收射弹的动能远远超过其极限时,没有提出明显的优势。

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