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Evaluation of the Crack Resistance of Reactive Sintered Composite Boron Carbide-Based Materials

机译:基于反应性烧结复合硼碳化物材料的抗裂性评价

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The results of studying the crack resistance of reaction-sintered B4C-SiC composite materials impregnated with liquid silicon with identification and fracture methods are presented. With an increase in the amount of B4C in the reaction-sintered material, its fragility increases. The crack resistance of the material can be increased from 3.40 to 4.02 MPa center dot m(1/2) (when tested by different methods) by adding to the composite material up to 30 wt.% SiC. The material is destroyed mainly by the intercrystalline (intergranular) mechanism. Ceramics containing more than 90 wt.% B4C, is partially destroyed by the transcrystalline mechanism.
机译:介绍了研究用鉴定和断裂方法浸渍液体硅浸渍的反应烧结B4C-SiC复合材料的抗裂性的结果。 随着反应烧结材料中B4C的量增加,其脆性增加。 通过加入高达30重量%的复合材料,材料的抗裂性可以从3.40到4.02MPa中心点M(1/2)(当通过不同方法测试时)增加。%SiC。 该材料主要被肾间(晶间)机制销毁。 含有超过90重量%的陶瓷的陶瓷由经晶机制部分地破坏。

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