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Improvement in Hot Workability of Titanium Matrix Composite byThermohydrogen Treatment

机译:钛基质复合材料的热可加工性改善通过热氢处理

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Ti-6A1-4V matrix composite (TMC) reinforced with TiB plus TiC was prepared and hydrogenated. Isothermal compression tests and high temperature tensile tests were carried out to study the effect of the hydrogen on hot deformation and superplastic deformation. The flow behaviour and microstructure evaluation of hot deformation was investigated. The results show hydrogen can reduce the flow stress and decrease the deformation temperature or increase the strain rate at the same flow stress level in hot deformation. Hydrogen increasing β phase and promoting dynamic recrystallizaiton (DRX) was considered as the main reasons for hydrogen-induced plasticity in hot deformation. The results of superplastic deformation indicate hydrogen can decrease the superplastic temperature 100°C or increase strain rate one order of magnitude at the same elongation level in superplastic deformation. Hydrogen promoting DRX were considered as the main reason for improvement of superplastic elongation.
机译:用Tib加上TiC加固的Ti-6A1-4V基质复合物(TMC)和氢化。进行等温压缩试验和高温拉伸试验,以研究氢对热变形和超塑性变形的影响。研究了热变形的流动性能和微观结构评价。结果表明氢气可以降低流量应力并降低变形温度或在热变形中增加相同的流量应力水平的应变速率。氢气增加β相和促进动态rγ(DRX)被认为是热变形中氢诱导可塑性的主要原因。超塑性变形的结果表明氢气可以降低高速温度100℃或增加应变率在超塑性变形中的相同伸长率下的一个级。促进DRX的氢被认为是改善超塑性伸长率的主要原因。

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