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Study on the Microstructure and Properties of Ti40 Titanium Alloy by Thermo-hydrogenation Treatment

机译:热加氢处理Ti40钛合金的组织与性能研究

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Thermo-hydrogenation treatment is a new technology to adjust the microstructure,mechanical properties and thermal processing of titanium alloy by adding hydrogen to the titanium alloys for its reversible chemical reaction. In this paper, the microstructure evolution and tensile properties at both room and high temperatures of β type Ti40 alloy with hydrogenation and dehydrogenation were studied The results show that the grain size of Ti40 had little variation,and only resulted in slight lattice distortion. At the same time,its strength remains nearly invariant,but the plasticity reduces largely at room temperature. While fracture analyses show that, with the increase of the content of hydrogen,fracture morphology has the features of ductile-brittle transition. And the thermal plasticity of Ti40 hardly changes through the hydrogen charge and dehydrogenation,unless dehydrogenation up to 0. 5wt% H content, while the corresponding high-temperature strength has no reduction.
机译:热加氢处理是一种通过向钛合金中添加氢以进行可逆化学反应来调节钛合金的组织,力学性能和热处理的新技术。研究了加氢和脱氢的β型Ti40合金在室温和高温下的组织演变和拉伸性能。结果表明,Ti40的晶粒尺寸变化不大,仅引起轻微的晶格变形。同时,其强度几乎保持不变,但可塑性在室温下大大降低。断裂分析表明,随着氢含量的增加,断裂形态具有韧性-脆性转变的特征。 Ti 40的热可塑性几乎不会通过氢加氢和脱氢而改变,除非氢含量达到0. 5wt%时才脱氢,而相应的高温强度却没有降低。

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