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首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Fracture behaviour of tungsten-vanadium and tungsten-tantalum alloys and composites
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Fracture behaviour of tungsten-vanadium and tungsten-tantalum alloys and composites

机译:钨钒和钨钽合金及复合材料的断裂行为

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摘要

The influence of both microstructure and chemical composition on the fracture behaviour of tungsten-tantalum, tungsten-vanadium composites and alloys of varying chemical compositions are investigated. Industrial solid solution tungsten-tantalum alloys with different tantalum contents in the as-forged condition are investigated along with different tungsten-tantalum and tungsten-vanadium composites and alloys made by powder consolidation, severe plastic deformation using high pressure torsion and different subsequent heat treatments. To investigate the fracture behaviour, several crack propagation directions in relation to the forging direction and shear direction, respectively, are taken into account. Heat treatment of the composite material results in a more homogeneous distribution of the alloying element and the impacts of these specific heat treatments on microstructure and fracture toughness are discussed. The fracture experiments are performed within a temperature range from room temperature to 600 °C and reveal a strong dependence of the fracture toughness and fracture morphology on temperature and on the microstructure, and hence the processing history of the materials.
机译:研究了微观结构和化学成分对钨-钽,钨-钒复合材料和化学成分不同的合金的断裂行为的影响。研究了在锻造条件下具有不同钽含量的工业固溶钨-钽合金,以及不同的钨-钽和钨-钒复合材料以及通过粉末固结,使用高压扭转的严重塑性变形和不同的后续热处理制成的合金。为了研究断裂行为,分别考虑了相对于锻造方向和剪切方向的几个裂纹扩展方向。复合材料的热处理导致合金元素的分布更加均匀,并讨论了这些特定热处理对显微组织和断裂韧性的影响。断裂实验是在室温至600°C的温度范围内进行的,揭示了断裂韧性和断裂形态对温度和微观结构的强烈依赖性,因此对材料的加工历史也有很强的依赖性。

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