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Modification of Sintered Titanium Alloys by Hot Isostatic Pressing

机译:通过热等静压改性烧结钛合金

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Powder metallurgy (PM) permits to obtain titanium alloys with properties and microstructures close to ingot metallurgy products. However, residual porosity is normally present in the products produced by the PM route of powder pressing and sintering (P&S), and this needs to be reduced by using post-sintering process step such as hot isostatic pressing (HIP) and forging. In this study, the microstructural and mechanical property changes caused by HIP of samples of two alloys, near-a Ti-3A1-2.5V alloy and α+β Ti-6A1-4V, produced by P&S route were investigated. Two types of powders were utilised: prealloyed powders and blend of elemental titanium powder and master alloy powder. Four conditions defined by HIP temperature, pressure and time were used to HIP the sintered samples with two geometries. The results show that, independent of the HIP conditions used, HIP increased the relative density of the samples to approximately 97.5% and their hardness by 30-50 HV depending on the HIP condition. However, HIP at 1000°C changes the fracture mode of the sintered samples from ductile to brittle.
机译:粉末冶金(PM)允许获得具有靠近铸锭冶金产品的性质和微观结构的钛合金。然而,残留孔隙率通常存在于由PM粉末压制和烧结途径(P&S)途径产生的产品中,并且需要通过使用烧结后工艺步骤如热等静压(臀部)和锻造来减少。在该研究中,研究了P&S途径产生的两种合金样品的髋关节髋关节引起的微观结构和机械性能变化,P&S途径产生的α+βTi-6a1-4v。利用两种类型的粉末:元素粉末和元素钛粉末和母合金粉末的混合物。通过臀部温度,压力和时间定义的四种条件用于将烧结样品髋髋髋髋髋髋髋静脉。结果表明,独立于所用的髋关节条件,髋关节根据髋关节条件将样品的相对密度提高到大约97.5%及其硬度30-50HV。然而,1000℃的髋关节将烧结样品的断裂模式从甘露韧带改变为脆性。

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