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Microstructural characteristics of 2124 Al-40 vol.% SiCp metal matrix composites produced by room temperature shock consolidation and hot shock consolidation

机译:室温冲击固结和热冲击固结制备的2124 Al-40 vol。%SiCp金属基复合材料的微观结构特征

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摘要

2124 Al - 40 vol.% SiCp metal matrix composites have been consolidated by room temperature shock consolidation using axisymmetric assembly and by one-dimensional hot shock consolidation using underwater shock wave assembly. Trimonite powder explosive was used in room temperature consolidation and SEP explosive was used in hot shock consolidation. The thickness of the explosive layer used in room temperature consolidation was 27 mm. The thickness of the water layer employed in the hot consolidation experiments was 15 mm. The hot shock consolidation was carried out at 200 degreesC, 300 degreesC and 400 degreesC. The microstructural variations across the cross section of the room temperature shock consolidated compact and, the effect of the temperature on microstructure and hardness of the hot consolidated composites have been investigated. Microstructural comparison was made between the composites produced by both room temperature consolidation and hot consolidation. (C) 2000 Kluwer Academic Publishers. [References: 23]
机译:通过使用轴对称组件的室温冲击固结和使用水下冲击波组件的一维热冲击固结,可以固结2124 Al-40%(体积)的SiCp金属基复合材料。 Trimonite粉末炸药用于室温固结,SEP炸药用于热冲击固结。在室温固结中使用的炸药层的厚度为27mm。热固结实验中使用的水层厚度为15毫米。在200℃,300℃和400℃下进行热冲击固结。研究了室温冲击固结坯的横截面的微观结构变化,以及温度对热固结复合材料的组织和硬度的影响。在通过室温固结和热固结生产的复合材料之间进行了微观结构比较。 (C)2000 Kluwer学术出版社。 [参考:23]

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