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首页> 外文期刊>Journal of Materials Processing Technology >FAST-forge A new cost-effective hybrid processing route for consolidating titanium powder into near net shape forged components
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FAST-forge A new cost-effective hybrid processing route for consolidating titanium powder into near net shape forged components

机译:快速锻造一种新的经济高效的混合处理途径,用于将钛粉固定到近网状锻造部件附近

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Reducing the high cost of titanium to a level where it can compete with currently used commodity metals offers opportunities to many industries to exploit its excellent combination of properties to improve performance or reduce weight. The key to decreasing cost is to reduce the number of processing steps to go from ore to component, as well as material wastage from excessive machining. This paper describes a new solid-state hybrid manufacturing route, termed by the authors as FAST-forge, for converting titanium alloy powder into components with wrought properties in two steps; utilising field assisted sintering technology (FAST) to produce a shaped preform billet that is finished to near fiet shape by a one-step precision hot forge. The route has been demonstrated at the laboratory scale using Ti-6A1-4V hydride-dehydride powder by producing fully consolidated, microstructurally homogeneous, double truncated cone specimens directly through FAST, which were then upset forged at a range of temperatures and strain rates. The microstructural evolution and forging behaviour of the Ti-6A1-4V after FAST consolidation is similar to conventional melt, multi-step forged product. Break up of primary a at high strains was observed at 950 degrees C and 0.01 s(-1), 0.1 s(-1,) and 1 s(-1). There is good agreement between finite element modelling of the hot forging and the experimental data, which will enable more complex shaped geometries to be produced via the proposed FAST-forge route in future. Such a route could be used to consolidate powder from a lower-cost alternative extraction Method to become a disruptive technology that will enable a step-change in the economics of titanium components. (C) 2016 Elsevier B.V. All rights reserved.
机译:将钛的高成本降低到它可以与目前使用的商品金属竞争的水平为许多行业提供了利用其优异的性能组合来提高性能或减轻重量的机会。降低成本的关键是减少从矿石到组件的处理步骤的数量,以及过度加工的材料浪费。本文描述了一种新的固态混合制造路线,由作者称为快速锻造,用于将钛合金粉末转化为两步的锻造性能的组分;利用现场辅助烧结技术(快速)以生产成形预制坯,通过一步精密热锻造完成在Fiet形状附近。通过直接通过快速生产完全固结的微结构均匀的双截锥样品,使用Ti-6a1 -4V氢化氢化物粉末在实验室规模上证明了该路线。然后在一系列温度和应变率下锻造锻造。快速固结后Ti-6a1-4V的微观结构演化和锻造行为类似于常规熔体,多步锻造产品。在950℃和0.01秒(-1),0.1s(-1,)和1 s(-1)中观察到高菌株处的初级A分解。热锻造的有限元建模与实验数据之间存在良好的一致性,这将通过未来通过所提出的快速锻造路线生产更复杂的形状几何形状。这种途径可用于从低成本的替代提取方法巩固粉末,以成为可破坏性的技术,使得钛成分的经济学能够实现逐步变化。 (c)2016 Elsevier B.v.保留所有权利。

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