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Flexural Properties, Thermal Conductivity and Electrical Resistivity of Prealloyed and Master Alloy Addition Powder Metallurgy Ti-6Al-4V

机译:预合金和中间合金添加粉末冶金Ti-6al-4V的弯曲性能,导热系数和电阻率

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摘要

A comparison between the properties achievable by processing the Ti&-6Al&-4V alloys by means of two powder metallurgy approaches, precisely prealloyed and master alloy addition, was carried out. Prealloyed and master alloy addition hydride&-dehydride powders characterised by an irregular morphology were shaped by means of cold uniaxial pressing and high vacuum sintered considering the effect of the variation of the sintering temperature and of the dwell time. Generally, the higher the temperature and the longer the dwell time, the higher the relative density and, consequently, the better the mechanical performances. Nevertheless, a higher processing temperature or a longer time leads also to some interstitials pick-up, especially oxygen, which affects the mechanical behaviour and, in particular, lowers the ductility. Although some residual porosity is left by the pressing and sintering route, mechanical properties, thermal conductivity and electrical resistivity values comparable to those of the wrought alloy are obtained.
机译:比较了通过两种粉末冶金方法(精确地预合金化和母合金添加)加工Ti&-6Al&-4V合金可获得的性能。考虑到烧结温度和停留时间变化的影响,通过冷单轴压制和高真空烧结,对具有不规则形貌特征的预合金和中间合金加氢和脱水粉末进行成型。通常,温度越高,停留时间越长,相对密度越高,因此机械性能越好。然而,较高的加工温度或较长的时间也会导致一些间隙,特别是氧气的吸收,这会影响机械性能,尤其会降低延展性。尽管通过压制和烧结路径留下了一些残余的孔隙率,但是获得了与锻造合金相当的机械性能,导热率和电阻率值。

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